Showing posts with label PPMS. Show all posts
Showing posts with label PPMS. Show all posts

Sunday, March 25, 2018

First Annual Progressive MS Day – Wednesday, March 28, 2018

Okay, all of my fellow progressive MSers, we finally have a day to call our own! This Wednesday, March 28, 2018, will be the first ever Progressive MS Day, a time to draw the world’s attention to this most debilitating form of the scourge that is multiple sclerosis.

As most of you already know, the majority of MSers (approximately 85%) are stricken with the relapsing-remitting form of the disease (RRMS) which is, of course, no picnic itself. Despite the advent of immunosuppressive drugs that effectively reduce relapse rates and the formation of new lesions in relapsing patients – medicines that carry with them laundry lists of serious and potentially fatal side effects – many of these patients may eventually transition to a progressive form of the disease, known as secondary progressive MS (SPMS). This stage of the disease sees patients no longer experiencing relapses and remissions, but instead a slow and steady decline in physical and mental functioning. Though there are currently over a dozen drugs approved to treat RRMS, there is only one approved to treat SPMS.

A minority of MSers (about 10%-15%) start off with progressive disease. This form of the disease is known as primary progressive MS (PPMS) and is considered the most challenging type of MS to treat. Currently, there is only one approved drug for the treatment of PPMS, and its effect on this debilitating monster is relatively modest, slowing down the progression of disability by about 25% in some patients.

Given this backdrop, it’s high time that the public is made aware of the ugly side of MS, the side which doesn’t have patients Dancing with the Stars or climbing Mount Everest. Progressive MS Day will offer our community a chance to draw attention to this particularly daunting form of MS, and by doing so hopefully draw resources towards treating and ultimately conquering it. Several states are expected to officially recognize Progressive MS Day, along with most MS patient advocacy groups. It is expected that this first Annual Progressive MS Day will grow in scope in years to come, but this year the event will be staged primarily in the virtual world of the Internet. Baby steps, folks, for those of us who can take any steps at all.

Progressive MS Day has been kick-started by the drug company Genentech, which manufactures and markets Ocrevus, the only drug currently approved by the FDA for the treatment of progressive MS. Yes, it’s not like me to do any promotion on behalf of the drug companies, and I have written several lengthy articles on Ocrevus and the issues surrounding it (click here and here). But, just like politics, crippling diseases can make for strange bedfellows, and the idea of a Progressive MS Day seems pretty good to me regardless of where it was conceived. As patients and their loved ones struggling with this illness, let’s take hold of this day and make it our own.

So, what can you do to help spread the word? Well, you can start by using the fancy-schmancy Progressive MS Day Facebook frame on your Facebook profile picture. I must admit, being an avowed Facebook hater, I had no idea what a Facebook frame was, but I just managed to add it to my profile pic and I think it’s quite nifty indeed. Please follow the instructions on the below graphic to add the frame to your own profile pic, and it’ll be like we have all revealed ourselves to be members of one of the least influential secret societies on the planet.


In addition, please use the hashtag #ProgressiveMSDay on your social media posts regarding the event. That way, nefarious groups like the Russian intelligence services and Cambridge Analytica will be able to forever tag you as a person with a crippling illness.

Just to add my own Wheelchair Kamikaze twist to the day, I am requiring, with absolutely no exceptions, that everybody who reads this post compose a Progressive MS haiku and post it in the comments section of this blog or on my Facebook page, if that’s how you reached this blog post. If you cheat and don’t compose a haiku, I swear I will hunt you down, sneak up on you, and when you least expect it shout “Boogie Boogie Boogie” at you. Believe me, writing a Progressive MS Haiku is much more pleasant than having a surprise “Boogie Boogie Boogie” shouted at you. If you don’t believe me, just click on the video below:





For those who have forgotten the rules of writing a haiku, let me refresh your memory. Haiku is a Japanese form of poetry, composed of only three lines. The first line must be five syllables, the second seven syllables, and the final third line 5 syllables again. Easy peasy haiku squeezy. As luck would have it, “Progressive MS” is five syllables and therefore makes for an easy first or third line.

To get you started, here are a few Progressive MS haikus I composed myself. Please use the hashtag #ProgressiveMSHaiku if you post your own poetic creations on Facebook, Instagram, or Twitter.

Haiku #1
Progressive MS
Stole everything but my soul
You mother f*cker


Haiku #2
Progressive MS
Enough with the half-assed drugs
I want a damned cure


Haiku #3
Progressive MS
Stick my head in a blender
And please press purée


Haiku #4
Stripped of all pretense
I discovered my essence
Progressive MS

Right then, I’m sure you get the idea. Now let’s have at it…

Sunday, March 11, 2018

15 Years a Progressive MSer

You think back and it seems like a million years ago, or yesterday. The first Sunday of March 2003, an unusually cold day for that time of year. Despite the winter chill, you decide to take your beloved Labrador Retriever, Stella, for a long walk along the Hudson. After strolling about 2 miles on the paved path running next to the river, you turn homeward. You don’t return the same way you came but instead choose to take the city streets back to your wife, waiting in your apartment.

On the way home, you slowly notice that your right knee is buckling backward, causing a peculiar limp. It’s not painful as if with a sprain or bruise, but instead, a weird hitch that seems caused by weakness within the knee itself. As you walk further the limp becomes more pronounced, and the inside of your head starts feeling kind of fuzzy. It’s all very strange and unsettling. You know in your gut this isn't normal, that something fundamental has changed.

About two months later, after a disconcerting blur of doctor’s appointments and medical tests, you’re given a preliminary diagnosis of multiple sclerosis. It’s one week before your first wedding anniversary. You’re sad and disoriented and angry and frightened, very frightened. Though you’re still mostly ignorant about the disease itself, you instinctively know you've reached an unhappy line of demarcation. There will now be a time before the limp and after. Little do you suspect how stark a marker this will become, a deep impenetrable moat separating two entirely different lives, both lived in one lifetime.

Now, 15 years later, your old healthy life is receding faster and faster into the haze, like a dream remembered crisply upon awakening but lost to the ether by noon. After the limp appeared the disease hit fast and hard. No relapses and remissions for you, only progressing disability, a creeping paralysis. Less than four years after that cold day in March, the beast forced you to "retire" at the ripe old age of 43, just when your career was poised to go parabolic. A year later MS planted your ass firmly in a wheelchair. Fast forward 10 years to the present and your right side is dead weight. Your declining left side insists on following the same horrid script written by your right, like a bad sequel to a terrible movie. Somehow, on most days you outwit despair, focusing on whatever glimmers of hope the gaping abyss before you can’t hide. On other days the darkness wins out.

You remember that years before the limp you'd experienced a series of odd symptoms that defied explanation. In 1997 the doctors thought you might have a rare form of lupus, but the medical minds could never arrive at a conclusion, and during the five or six relatively quiet years after you pushed any concerns aside. On the whole, that would make it 21 years since things started going haywire. Your disease could be getting its bachelor’s degree by now. A BS in MS, or, more appropriately, a BS in BS. As an adult, you've been sick longer than you've been healthy. The gods must be crazy, and an indifferent universe could not care less.

You ponder all the things these wearisome years have taught you, from nuggets of wisdom to knowledge you’d rather not possess. You’d have been perfectly happy to live out your days not knowing that for some reason you quickly fall asleep in the noisy, claustrophobic confines of MRI machines, that you’d rather have a spinal tap than dental work, and that you have an innate ability to grasp complicated medical concepts and translate them into plain English. As hidden talents go, you have been fine with leaving that one undiscovered.

Then again, you always had a knack for cutting through the bullshit, and the reality is that most medical jargon exists primarily to confuse the public and hide the fact that large parts of the purportedly gleaming modern medical miracle machine are in reality constructed of chewing gum and chicken wire. You would relish being happily unaware of the fact that for some physicians medicine is indeed a calling, but for many others it is primarily a business. Just like any other job, some are very good at practicing medicine, but others just plain suck. What do you call somebody who graduates from medical school with a C- average? A doctor.

All the downtime that comes with being a cripple has provided you ample opportunity to dissect your long-lost healthy life and graced you with perspectives you likely would have otherwise never gleaned. You remember with deep regret all of the healthy time wasted on the small stuff, and you now see with crystal clarity that almost all of it was small stuff. If you could only have back half of the sleepless nights and anxiety-filled days vainly spent lamenting lost loves and missed opportunities. In retrospect, you see that new romances and promising circumstances inevitably came your way just as soon as you reluctantly let go of your negativity and allowed room for new people, places, and things. Our emotions are born of us, not we of them, and just as you now most often choose hope over despair, you could then have decided to seek contentment rather than wallow in self-imposed neurotic torment. Over the long run, most people are dealt an equal number of good and bad hands; it’s the way you choose to play them that determine the winners and losers. But just as youth is wasted on the young, health is wasted on the healthy.

You think of all the incredible souls you’ve met since your diagnosis, other MSers coping with the disease with their own mixture of poise and grit in the face of mounting indignities and physical insults. They have inspired you, commiserated with you, laughed and cried with you. You rue the toll you’ve seen the monster take on so many. You grieve for those who gave it their all but eventually succumbed. You remember each of them with perpetual sadness at their passing and mounting anger that more has not been done to put an end to this scourge. Treating but not curing is a great business model, but far too many human beings are left withering on the vine as the MS industry seems quite content with this paradigm, it's coffers overflowing.

The ripple effect of the disease is insidious, and you feel guilt at the impact your illness has had on your friends and loved ones. You are keenly aware of the palpable emotional pain felt by your old mom and dad when they see or hear about your ever compounding struggles, of the hidden disappointments experienced by your incredibly loyal wife who has watched her own dreams of a future filled with romance and adventure pilfered and plundered, of the unreturned emails and phone calls from friends left wondering why you choose to remain out of touch even though you hardly leave your apartment. You have no real answers for them, except that on some basic level you now understand why gravely wounded animals retreat into the brush to meet their fates alone.

Most 15 year anniversaries warrant some sort of celebration, but you don’t feel much like celebrating this one. You are grateful to still be here and to retain the functionality to write this essay, but having been struck with this disease is something you will never, ever get used to. Each day you awake to the shock that your dreams are not reality and your reality is not some demented dream. In instants without distraction, you wonder how much more of this you can take and even how much more of this you want to take? 

You somehow find ways to occupy yourself despite a growing alienation from the healthy world that surrounds you. You fight the envy you feel for those who walk and jog and gesticulate, utterly oblivious to their incredible good fortune at simply being able to do so. You listen to those tied in knots by troubles that you now realize are mere fripperies, and fight the urge to scream that you’d swap their plight for yours in half a heartbeat. You are not proud of these feelings, but there they are.

Most of all, you simply persevere. You try to make sense of it all, to tease some meaning from these last 15 years, to convince yourself that there is some method to this madness. You wonder if some long-ago actions taken or not taken, or decisions made or not made, might have led you down a path free from MS. You mourn what might have been, what almost was. You dig for nuggets of hope and reasons to believe, even if that means mining through vast mounds of existential detritus. 

Time and time again you ask yourself and the universe, “what’s the point?”, until you finally realize that the real question is “what’s the point of asking what’s the point?” You decide that if there are any answers, they are beyond the scope of your comprehension, and then you turn on the latest episode of The Walking Dead and start asking the really important questions, like how in the world you would charge your electric wheelchair during a zombie apocalypse? And, if you were to become a zombie, would you suddenly be able to walk? Or would you be one of The Rolling Dead?

Priorities, friends, priorities…

Here’s one of my favorite songs by the great American songwriter John Prine, the lyrics of which pretty much sum it all up for so many, sick and healthy alike. BTW, an “Angel from Montgomery” is what death row inmates used to call a governor’s stay of execution in the state of Alabama…


Monday, May 15, 2017

Ocrevus: Dialogue Between Two Neurologists

Yes, folks, another post on Ocrevus. Hope I’m not beating a dead horse here, but I feel this is a very important subject given the amount of hyperbolic press coverage this newly FDA approved drug has received. The Ocrevus picture is a complicated one, especially for patients with progressive MS. It’s now the only approved drug for this form of the disease, which is a good thing. Unfortunately, there are still questions regarding the efficacy and risk associated with Ocrevus when used on the progressive MS population. Much of these questions can be accounted for by the drugs newness to the market because its risk/reward profile in a real-world setting has not yet been established. While this is true of all new drugs, the fact that the progressive MS population is clamoring for treatment options puts these uncertainties under a bright spotlight.

I first read the below email exchange between two MS neurologists about a week ago on the invaluable MS Research Blog (click here), which is written by the MS neurologists and researchers at the Barts and London School of Medicine in Great Britain. The neurologist who posted this exchange is Dr. Giovanni Giovanonni, who was one of the co-authors of the Ocrevus progressive MS trial research paper. The other neuro involved in the exchange preferred to keep their anonymity. I posted a comment to Dr. Giovanni asking if I could repost this in Wheelchair Kamikaze to give it further exposure, and he agreed. A big thank you to him.

Here then, is the dialogue on the use of Ocrevus in PPMS between Dr. Giovanonni and his anonymous colleague. Just to be clear, in all the verbiage between the linebreaks "I" refers to Dr. Giovanonni, and "his/her" refers to the other neurologist. NEJM is the New England Journal Of Medicine, in which the Ocrevus PPMS trial results were published. I’ll add my two cents at the end of this post.

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I have started-up another email exchange with a colleague about the ORATORIO (ocrelizumab in PPMS) study. I have asked him/her if we could have this debate in the open on the blog, but he/she has asked to remain anonymous.

When I respond to MS-related questions that may be of interest to the broader community I prefer to answer them in the open, which is why I have redacted the discussion and posted it below:

The following are his/her primary questions:

'You were a co-author on the ocrelizumab in PPMS NEJM manuscript, which didn’t really address the issue of age/inflammatory activity as markers for treatment response. Both the rituximab data in OLYMPUS and the Gadolinium data in the supplement of the NEJM article indicate that the population that benefits is the young patient with inflammatory activity. B cell depletion is not benign, especially in the older population, and the ocrelizumab manuscript infers that all PPMS patients should be treated with ocrelizumab. Are you really treating all of your PPMS patients with B cell depletion, and, if not, why didn’t you push for more discussion about this issue in the NEJM paper?'

My response:

We tried to restrict the trial population as much as possible to mirror that of the responder subgroup in OLYMPUS (rituximab in PPMS) study. Please note the following specific inclusion criteria for the trial:

Age cut-off of 55 years of age

Disease duration of symptoms of less than 15 years in patients with an EDSS score of more than 5.0 at screening or less than 10 years in patients with an EDSS score of 5.0 or less at screening

Documented history or the presence at screening of an elevated IgG index or at least one IgG oligoclonal band detected in the cerebrospinal fluid

​The presence of absence of Gd-enhancing lesions was not part of the inclusion criteria and hence should not be used to select patients for ocrelizumab treatment in the real-life situation. The detection of Gd-enhancing lesions also depends on the frequency of imaging. If you are going to select patients for treatment I suggest you use the the three inclusion criteria above as your guide. I predict that these will probably exclude 70% of a typical PPMS clinic population.

Please note that the trial population in the ORATORIO study was not typical of other PPMS trials; the population was younger, less disabled, had higher proportion with Gd-enhancing lesions at baseline and higher on study number of relapse​s. As I have said before there were strong trends in both the Gd+ve and Gd-ve cohorts, therefore, we shouldn't limit treatment to patients with Gd-enhancing lesions only. If we did this we would be denying many patients access to an effective treatment.

I personally don't buy into MS being 2 or 3 diseases. MS is one disease and PPMS is simply more advanced MS; if patients are active they should be offered treatment regardless of their presenting clinical phenotype.


Regarding my own practice. We can't use rituximab in the UK; the NHS won't pay for it and are unlikely to pay for ocrelizumab either. NICE will assess the cost-effectiveness of ocrelizumab based on its price for relapsing-forms of MS and in PPMS ocrelizumab will be compared to best-supportive care. The latter means ocrelizumab is unlikely to pass the NICE cost-effectiveness threshold. I am hoping that Roche, who will be marketing ocrelizumab in Europe, approach NICE and the NHS to discuss differential pricing and to offer ocrelizumab at a cheaper price for patients with PPMS. Differential pricing is a 'hot potatoe' and I am not sure the NHS is ready for it; but I live in hope for my patients.

Please note ocrelizumab has yet to be licensed in Europe and we can't assume its license will be the same as the US.

At present we offer our patients with active PPMS off-label cladribine, a relatively cheap B-cell depleting agent. Like all DMTs it is a choice and not all patients take-up the offer. I am also aware that in the US a large number of neurologists are still using low-dose methotrexate in PPMS.

I am not sure we have enough data on B-cell depletion in PPMS to make a call on whether it is benign or non-benign. Hopefully, good quality safety data will emerge from post-marketing surveillance studies. I suspect as with all immunosuppressive therapies it won't be benign. I would recommend telling all your patients about infusion reactions, the herpetic infection risk, the possible malignancy risk and the likelihood that in time they may develop hypogammaglobulinaemia and need Ig-replacement therapy. Please note we have a large amount of clinical experience in children with agammaglobulineamia and these kids do well long-term, as long as we keep the Ig levels normal.

I am not sure you are correct in suggesting that we are recommending ocrelizumab for all-comers. The trial population defines the group we are advocating its use in. I am surprised the FDA did not include the CSF findings in the label. If I was a regulator I would state that CSF-ve PPMS should not be treated with ocrelizumab.


Regarding discussion in the NEJM paper; the editors of the NEJM essentially cull all speculative discussion and limit the discussion to issues in the trial. NEJM editors are renowned for rewriting submitted papers to keep them consistent for style. The NEJM article is not the forum for the kind of discussion you want to have. I suggest we have this discussion on the blog.

His/her response:

'Thanks for your prompt and thoughtful response. It was very helpful. When do you think we’ll be able to see the age cutoffs for the study? Given that the average age for the study was 45 (and for OLYMPUS it was much higher—about 50), there should be enough patients who entered the study between 50 and 55, to know whether the relatively small treatment effect in the whole group was made up primarily of those under 50. I would certainly like for my older PPMS patients to avoid the potential adverse effects of this drug if there is no clear benefit for this group.

I agree with you about MS being one disease( except possibly for unusual outliers, like the NMO story). So, wouldn’t you expect B cell depletion to work for the younger, more active SPMS patients, too?'

My second response:


There are numerous post-hoc subgroup analyses that are ongoing. I will ask the trial team to include your question about age on the list.


Regarding SPMS; yes, I would expect B cell depletion to work for SPMS as well. I wouldn't limit it to young, or early, SPMS either. Based on our length-dependent axonopathy hypothesis I would even expect patients in wheelchairs to benefit, however, the benefit will be limited to arm and bulbar function. The latter is why we are lobbying Roche to do a trial of ocrelizumab in more advanced MS, with the primary outcome being upper limb function.

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Just a few points that grabbed my attention when I first read this exchange: first, I was surprised to read that the Ocrevus PPMS trial was specifically designed to test the drug on patients identified as likely responders, based on the “failed” rituximab PPMS trials, which were held about 10 years ago. Even though that trial had been officially deemed unsuccessful, a subset of patients were identified who did respond well to the drug (younger, less disabled, shorter disease duration). Although I highly suspected that the Ocrevus trial was intentionally frontloaded with likely responders, I’d never before come cross info confirming my suspicions. I’m not aware of any other study that has been designed in such a fashion. I believe most drug trials try to mirror the general demographic makeup of the patient population in question, although almost all MS trials exclude patients with higher degrees of disability. Due to this trial design, Dr. Giovanonni  states that he’s surprised the FDA didn’t put some sort of prescribing restrictions on the Ocrevus label.

I also found it quite interesting that Dr. Giovanonni states that the prescribing guidelines for the drug, if based on the Ocrevus trial design, would generally exclude 70% of the PPMS population. This in the face of the FDA giving a blanket approval for Ocrevus to treat PPMS with no restrictions whatsoever. While I fully understand why many PPMS patients are anxiously awaiting being offered the drug, I fear that many may have unreasonably high expectations based on the breathless press coverage that greeted the Ocrevus FDA approval. Of course, there is the “any port in a storm” factor. With the dearth of other available treatment options, why not give the drug a shot, especially if a patient finds themselves being ravaged by the disease? It is, of course, up to each patient to decide how aggressively they want to treat their illness, and their tolerance for risk.

Dr. Giovanonni also makes mention of hypogammaglobulinaemia, a general term for a patient having an insufficient number of antibodies in their bloodstream to fend off infections. While it makes sense that Ocrevus could cause this condition, since the drug wipes out a patient’s B cell population and B cells produce antibodies, I hadn’t heard of this being of much concern. Rituxan (rituximab) also obliterates most B cells, and that drug has been used off label to treat MS and other autoimmune diseases for years, to the best of my knowledge without necessitating supplementation of patients’ antibodies via the use of IVIG infusions. PLEASE NOTE: Dr. G has explained, in the comments section below, that long term Rituximab therapy does indeed cause this antibody deficiency. I stand corrected. Thank you, Dr. Giovannoni. 

Lastly, I found it intriguing that this drug might not be made available to PPMS patients in Great Britain, based on its cost-effectiveness versus supportive care. This means that in the eyes of the NHS, Great Britain’s national healthcare system, the relative effectiveness (or lack thereof) of Ocrevus in treating PPMS may not warrant its approval for use, simply because supportive care is less expensive and the impact of Ocrevus on the disease is minimal enough to disqualify it based on the drug’s high price tag.

Having said that, let's not forget that slowing the progression of disease, even if only for a portion of the PPMS population, is no small feat. In addition, the beneficial effects of Ocrevus may accumulate over time, a data point that wouldn't have been caught during the short two-year clinical trial window. Any slowdown in the progression of disability provides patients valuable time during which more effective treatments work their way through the pipeline. While I have concerns about the drug itself, my primary beef is with the way the drug has been portrayed in the media, with eye-popping headlines and hyperbolic coverage by reporters without the depth or breath of experience to look much past the pharmaceutical company press releases. Let's hope that all MS neuros do their due diligence regarding Ocrevus, and keep their patients well-informed about reasonable expectations of benefit and also the downside potential of the drug. It's always important to keep in mind that doing nothing has tremendous proven downside potential, as well.

In short, while Ocrevus does appear to be quite potent in treating relapsing MS, those with progressive MS should likely keep their expectations in line with what was seen in the PPMS trial results. The drug displayed a 25% slowdown in the rate of disease progression, which although not insignificant is certainly not the miracle that the media has made it out to be. Patients shouldn’t expect Ocrevus to reverse their symptoms, or even stop the progression of their disease. Make no mistake, slowing down progression is a very good thing, but according to the above dialogue many PPMS patients may not even see that by way of benefit. Of course, there is always the possibility that the drug proves to be more effective in clinical use than was seen in the phase 3 trials, which is something we have seen with several other drugs.

All that being said, please allow me this one brief little editorial interlude:

HEY, ALL YOU MS NEUROLOGISTS  OUT THERE! STOP STUFFING YOUR POCKETS WITH PHARMACEUTICAL COMPANY MONEY AND START LOOKING FOR THE ACTUAL CAUSE OF THIS DAMNED DISEASE! ENOUGH WITH THE “TREATMENTS” WITH POTENTIALLY HORRIFIC SIDE EFFECTS! WE WANT CURES, DAMMIT! AND UNLESS YOU FOLKS STOP LOOKING FOR NEWER AND FANCIER WAYS OF TINKERING WITH THE HUMAN IMMUNE SYSTEM AND START LOOKING FOR THE ACTUAL REASON WHY THE MULTIPLE SCLEROSIS IMMUNE SYSTEM GOES BONKERS, WE WILL NEVER, EVER, GET A CURE! AN IMMUNE SYSTEM ATTACKING ITS OWN BODY IS A SYMPTOM, NOT A CAUSE! WE PATIENTS ARE SICK AND TIRED OF BEING SICK AND TIRED, AND IF WE WEREN’T SO SICK AND TIRED WE MIGHT AT THIS VERY MOMENT BE FORMING LYNCH MOBS! SO GET WITH IT, OR ELSE!!! WHEELCHAIRS CAN BE USED AS DEADLY WEAPONS!!! AND DON'T EVEN THINK OF ASKING ME HOW I KNOW THAT!!!

Okay, feeling a bit calmer now… And, yes, I realize there are MS researchers and neuros who aren’t inflating their incomes with legal pharmaceutical company bribery while their patients clamor for truly momentous breakthroughs. Those folks should be applauded, along with those pursuing creative approaches for tackling multiple sclerosis. As for the others, well, I still want/need their help, so I better keep my mouth shut…

Tuesday, March 28, 2017

Ocrevus Commentary: A New MS Drug With Breakthrough Potential And A Complicated History.

(What follows is my analysis of the potential promises and pitfalls associated with the new MS drug Ocrevus (Ocrelizumab). For those who have not already done so, I urge you to read – or at least scan – the interview I conducted with Dr. Peter Chin, one of the pioneering researchers who worked on this drug. Dr. Chin is the Group Medical Director of Neuroscience at the pharmaceutical company that makes ocrelizumab, Genentech – click here for the interview)


Ocrevus, a new MS drug which was approved by the FDA on March 28, 2017, has garnered breathless headlines in both the mainstream and medical press as a breakthrough medicine which has the potential to change the MS treatment landscape. Particularly heralded is the drug’s success in clinical studies in treating Primary Progressive Multiple Sclerosis (PPMS), a pernicious subtype of MS that currently has no approved therapies.

Assessing the overall potential of Ocrevus is more difficult than with most new drugs, as the therapy has a complicated history that must be considered when synthesizing informed views about it. Ocrevus, which will be marketed under the brand name Ocrevus, is a close sibling of the much older drug Rituxan (rituximab), whose mechanism of action Ocrevus closely mirrors. Rituximab, which is manufactured by the same company that makes Ocrevus, is already being used in many parts of the world as an effective MS therapy, even though it was never officially approved for this purpose. The reasons why Ocrevus rather than rituximab was advanced in studies as an MS therapy are somewhat controversial; complicating matters further are Ocrevus’s failure in trials for use in treating other autoimmune diseases (lupus and rheumatoid arthritis). Therefore, when attempting to make a sober assessment of Ocrevus, one must look not only at the drug itself, but also at how it currently came to be on the verge of FDA approval.

First, let’s look at Ocrevus itself, in terms of how the drug works and what recent clinical trials reveal about its effectiveness in the treatment of both relapsing and primary progressive multiple sclerosis.

Ocrevus is the first B cell therapy for MS proven to be effective in late stage clinical trials. In very simplistic terms, the human immune system is comprised chiefly of 2 types of cells, T cells and B cells, which each use different mechanisms to attack and kill invading bacteria or viruses. Until very recently, the vast majority of MS researchers, who see MS as an autoimmune disease in which the immune system turns against the body’s own cells, considered the multiple sclerosis disease process to be driven almost exclusively by T cells. MS drugs such as Tysabri and Gilenya were designed to specifically target these cells. B cells were given short shrift, and were largely dismissed as having no real relevance in the MS disease process.

The success of Ocrevus – a drug which destroys B cells – in treating MS has upended these prior assumptions and has forced researchers to rethink their multiple sclerosis disease models. In clinical trials, Ocrevus, an intravenous drug administered approximately every 6 months, proved to be remarkably effective in treating relapsing multiple sclerosis, and even had a modest effect on PPMS. Let’s look at the actual trial results.

Two separate trials were conducted testing Ocrevus against the interferon drug Rebif in patients with relapsing multiple sclerosis. These two trials were called OPERA 1 and OPERA 2 (click here). Both two-year trials involved one group of patients taking Ocrevus and another taking the interferon drug Rebif, and comparisons were made as to the overall effectiveness of Ocrevus versus the interferon drug. The results were very impressive. Compared to the Rebif treated patients, the Ocrevus trial subjects experienced a reduction in relapse rates of 46% and 47% in the two trials. Additionally, there was a 40% reduction in confirmed disability progression and a 95% reduction in new enhancing lesions. These results rival or surpass any of the other MS drugs currently on the market. There were no significant differences in the number of adverse events (bad side effects) between the Ocrevus and Rebif treated patient populations in the relapsing multiple sclerosis trials.

The Ocrevus PPMS trial was named ORATORIO (click here). This trial lasted 2 ½ years, and randomly assigned 732 patients in a 2 to 1 ratio to receive either Ocrevus or a placebo. In other words, twice as many trial subjects received Ocrevus than received placebo. The highlight of this study was that the Ocrevus treated patients experienced a 25% reduction in time to progression when compared to their placebo-controlled counterparts. Specifically, 29.6% of Ocrevus treated patients and 35.7% of placebo treated patients experienced a measure of disability progression over the course of the study. This is the first time in a placebo-controlled scientific trial that any multiple sclerosis drug has displayed effectiveness in slowing down the progression of disability in Primary Progressive patients. Ocrevus also displayed efficacy over placebo in a number of other outcome measures as well, including the timed 25 foot walk.

As I discussed with Dr. Chin during our interview, it’s important to understand that Ocrevus did not reverse or even stop the progression of disability in trial subjects. It slowed progression by about 25%. What does this mean for patients in a real-world setting? Well, speaking strictly in a broadly hypothetical basis, if an individual PPMS patient left untreated might need a cane four years after diagnosis, that same patient, if responsive to Ocrevus, might not need a cane for five years. Again, this is strictly a hypothetical case; PPMS effects patients in widely varying degrees of severity. Additionally, the ORATORIO trial only lasted 2 and half years. How the drug's effectiveness manifests over longer periods of time is not yet understood.

Unlike the relapsing multiple sclerosis Ocrevus trials, the PPMS trial did reveal some potentially troubling adverse events. Opportunistic infections (mostly respiratory infections and oral herpes) were more common in Ocrevus than placebo, and the rate of cancer in Ocrevus treated patients was approximately 3 times that found in placebo treated patients, 2.3% versus 0.8%. Though Genentech says that no direct causal relationship between the cancers in Ocrevus treated patients could be established, the fact that slightly more than 1 in 50 trial subjects on the drug developed cancer is sure to raise eyebrows, but since similar cancer rates were not seen in the relapsing multiple sclerosis trials these numbers are surely open to question.

There are also some concerns regarding the design ORATORIO study. Back in the mid-2000’s, Genentech conducted a PPMS trial using rituximab, which at first was deemed a failure. Later review of the trial data revealed, though, that a subset of PPMS patients did appear to gain benefit from rituximab therapy (click here). These patients were generally younger than 50 years old, were less disabled, and had enhancing lesions on their MRIs. It’s generally thought that patients fitting this description account for between 10%-15% of the overall PPMS population. The Ocrevus PPMS trial, though, included about 26% of patients fitting this profile, or approximately double that seen among real-life PPMSer’s. This means that the ORATORIO trial was heavily weighted with patients who were likely to respond to Ocrevus, since the drug acts in much the same way as rituximab. The Ocrevus PPMS trial was not designed to discern differences in the effectiveness of the drug between patients with enhancing lesions and those without, but Genentech says there was a “directional consistency” to the trial results, suggesting that the drug was effective in all patient subgroups to one degree or another. Still, the fact that the trial was frontloaded with likely responders is another eyebrow raiser, and may be something that the FDA looks at when making its approval decisions.

Okay, now that we’ve looked at the Ocrevus MS trials themselves, let’s dive into the history of the drug. Back in the early 2000’s, some MS researchers began investigating whether therapies that destroy B cells might be effective in treating MS. As mentioned earlier, at the time this with a rather radical idea. The drug that was chosen for study was Rituxan (whose generic name is rituximab – click here), a drug developed by Genentech years earlier that had been approved in 1997 for use in fighting non-Hodgkin’s lymphoma and certain types of leukemia. Rituximab, like Ocrevus, works by zeroing in on a protein found on most types of B cells, called CD20, and then killing the cells on which this protein is located. Though both drugs target and kill B cells, they do so in slightly different ways, and these differences may result in variances in safety and efficacy. Think of the drugs as two hitmen; one likes to slit his victims throats, the other prefers to strangle them. Both get the job done, but their differing killing techniques might effect witnesses differently. In the case of Ocrevus and rituximab, these differences may effect the actions of other immune cells, thus accounting for possible differences in the safety and efficacy of the drugs.

In the mid-2000’s, MS researchers put rituximab to the test by using it in “proof of concept” trials in patients with RRMS and PPMS. When the trial results were revealed in 2008, the drug proved itself to be extremely effective in treating relapsing remitting MS, but not effective in treating PPMS (click here and here). It’s important to note that the RRMS trials were small, early stage trials, but the PPMS trial was larger and later stage. As mentioned earlier, later parsing of the PPMS data did reveal a subgroup of patients on whom the drug appeared to have some positive effect.

Given the success of the rituximab RRMS trials, the fact that a subset of the PPMS trial population appeared to benefit from the drug, and rituximab’s long history as a successful oncology drug, it’s reasonable to assume that the drug would have been greenlighted for further development as an MS treatment. Instead, all development of rituximab as an MS treatment was halted, and the focus shifted instead to Ocrevus, a new experimental Genentech product that also targeted B cells via the CD20 protein. While there is some perfectly valid scientific rationale for this choice, many facts and circumstances point to financial motivations playing an oversized role in the decision to advance Ocrevus rather than rituximab as a potential treatment for MS.

The scientific rationale for choosing to proceed with Ocrevus is that the drug is comprised primarily of human proteins (the drug is a “humanized” monoclonal antibody), while rituximab contains a mix of mouse and human proteins (making it a “chimeric” monoclonal antibody, meaning that it contains proteins from more than one species). Theoretically, a humanized molecule should be better tolerated by patients than a chimeric drug, especially when used for treating chronic diseases which require continued administrations of the drug. That said, rituximab did have a very good safety profile in its role as an oncology drug, and very few adverse effects were seen in the early rituximab MS trials.

Genentech’s financial motivations for switching from rituximab to Ocrevus were many. First and foremost was the fact that rituximab was due to come off patent in 2015, meaning that other drugmakers would be free to come in and market their own versions of the drug at that time. As Ocrevus is a brand-new product, Genentech will have exclusive rights on it for decades to come. In addition, several corporate partnerships were also at play which made Ocrevus the preferred candidate for further development. Here’s an explanation of the situation, from an article that appeared on the biotech industry news site Genetic Engineering and Biotechnology News in 2010 (click here). Keep in mind that Roche is the parent company of Genentech:

“The operating profits for Rituxan are currently split 60–40 between Roche and Biogen Idec, respectively. But profits for Ocrevus would be split 70–30 in Genentech's favor, accounting for Genentech’s enthusiasm to move ahead with the development of Ocrevus in MS, at the expense of Rituxan, which loses patent protection in 2015.”

Of course, there is no direct proof that the switch from Rituxan to Ocrevus was driven primarily by financial considerations (except, perhaps, in files tucked away in the executive offices at Genentech), but I’ve learned through my years researching and writing about these topics that one can never be too jaded in assessing the motivations of the upper echelon decision-makers of Big Pharma. These are publicly traded companies whose officers are, by law, mandated to be beholden to their shareholders, not to the patients taking their products. Welcome to the realities of the medical industrial complex, in which diseases have been transformed into multibillion-dollar a year industries.

Whatever the circumstances, plans for further studies into the use of rituximab in treating MS were abandoned, and early trials using Ocrevus to treat MS were initiated. In addition to the MS trials, Ocrevus trials were also started on patients with rheumatoid arthritis (RA) and lupus erythematosus (LE). It’s interesting to note that rituximab was approved for use in treating rheumatoid arthritis in 2007, and has been used effectively and safely in that role since then (click here).

Genentech’s grand plans for Ocrevus were almost completely disrupted in 2010, when the trials in RA and lupus were halted due to patient deaths and the occurrence of opportunistic infections (click here ). In the parlance of medical research, the risk versus benefit analysis in these trials did not warrant further study. In the parlance of everyday people, dead patients suck. It should be noted that patients in the Ocrevus rheumatoid arthritis trial were also taking other immunosuppressive drugs, but then again so are most of the patients who have been using rituximab to treat their RA since its approval in 2007.

Ocrevus studies in MS were continued because these disastrous infections and patient deaths were not seen in early Ocrevus MS trials, and also because it’s generally assumed that MS patients and their doctors have a higher tolerance for risk due to the potentially catastrophic nature of the disease (click here). This assumption is borne out by the MS community’s acceptance of drugs like Tysabri, which has a proven link to the deadly brain infection PML. Hundreds of MS patients have contracted this infection due to their taking Tysabri. Other MS drugs, such as Gilenya and Tecfidera, have also been linked to opportunistic infections such as PML. MS certainly isn’t a disease for the faint of heart.

In the years since the rituximab MS studies were shelved by Genentech, MS neurologists have been using the drug on an “off label” basis due to the obvious potential of the drug displayed in those early trials. “Off label” refers to the fact that doctors are free to prescribe any FDA approved drug for any indication whatsoever, even if the drug has not been approved for that purpose (click here). Many MS neurologists here in the USA as well as in Europe have been using rituximab to treat MS patients safely and effectively for years. The use of rituximab in MS is especially prevalent in Sweden, and a recent study out of that country that took a retrospective look at MS patients treated with rituximab found that the drug was startlingly effective and had an excellent safety profile (click here). As noted earlier, rituximab has also proven safe and effective in treating rheumatoid arthritis. Remember, the RA trials for Ocrevus had to be halted due to opportunistic infections and patient deaths.

It should be noted that over its 20-year history rituximab has been linked to some cases of PML, but to a far lesser degree than drugs like Tysabri. In rheumatoid arthritis patients, it appears the rate of PML in Rituxan treated patients is on the order of 1 in 25,000 (click here). Rituximab has also been linked to other opportunistic infections, but again, at a lower rate than is seen in most other MS drugs. Let’s face it, any drug that profoundly changes the highly evolved human immune system is bound to open patients up to infections they wouldn’t otherwise contract. Ocrevus and rituximab both destroy B cells, one of the major components of the human immune system. No one knows what the long-term effects of living without any B cells might be. We do know, though, that the long-term effects of living with MS can be harrowing. Such is the state of the current MS treatment paradigm.

In conclusion, while the excitement generated by the impending approval of Ocrevus for relapsing multiple sclerosis and primary progressive multiple sclerosis is certainly warranted, expectations, especially for those with PPMS, should be kept realistic. Ocrevus will likely slow the rate of disability progression for some progressive MS patients, and even though this isn’t the revolutionary change patients battling PPMS are so fervently hoping for, it is a start. Relapsing multiple sclerosis patients can expect Ocrevus to be among the most effective disease modifying drugs on the market.

The fact that rituximab, a very similar drug with a proven record of efficacy and safety, is an available and very viable option should play into treatment decisions, as should the failed Ocrevus trials in RA and lupus, and the increased cancer rates seen in the Ocrevus PPMS trials (again, these rates could be aberrations). These factors need not make patients shy away from Ocrevus, but there is every reason to explore them with your neurologist. Don’t be afraid to ask your doctor why they might favor one drug over another. This holds true when deciding on any MS treatment. Remember, the doctor-patient relationship should never be a dictatorship, but a partnership. Here’s to hoping that Ocrevus proves itself worthy of the buzz it’s generated in advance of its anticipated FDA approval.

And here’s to more desperate hoping that MS researchers soon come up with methods other than profoundly kneecapping the human immune system in their search for ways to treat MS.

Tuesday, January 31, 2017

Ocrelizumab Commentary: A New MS Drug With Breakthrough Potential And A Complicated History.

(What follows is my analysis of the potential promises and pitfalls associated with the experimental MS drug ocrelizumab. For those who have not already done so, I urge you to read – or at least scan – the interview I conducted with Dr. Peter Chin, one of the pioneering researchers who worked on this drug. Dr. Chin is the Group Medical Director of Neuroscience at the pharmaceutical company that makes ocrelizumab, Genentech – click here for the interview)

Ocrelizumab, a new MS drug scheduled for review by the FDA on March 28, 2017, has garnered breathless headlines in both the mainstream and medical press as a breakthrough medicine which has the potential to change the MS treatment landscape. Particularly heralded is the drug’s success in clinical studies in treating Primary Progressive Multiple Sclerosis (PPMS), a pernicious subtype of MS that currently has no approved therapies.

Assessing the overall potential of ocrelizumab is more difficult than with most new drugs, as the therapy has a complicated history that must be considered when synthesizing informed views about it. Ocrelizumab, which will be marketed under the brand name Ocrevus, is a close sibling of the much older drug Rituxan (rituximab), whose mechanism of action ocrelizumab closely mirrors. Rituximab, which is manufactured by the same company that makes ocrelizumab, is already being used in many parts of the world as an effective MS therapy, even though it was never officially approved for this purpose. The reasons why ocrelizumab rather than rituximab was advanced in studies as an MS therapy are somewhat controversial; complicating matters further are ocrelizumab’s failure in trials for use in treating other autoimmune diseases (lupus and rheumatoid arthritis). Therefore, when attempting to make a sober assessment of ocrelizumab, one must look not only at the drug itself, but also at how it currently came to be on the verge of FDA approval.

First, let’s look at ocrelizumab itself, in terms of how the drug works and what recent clinical trials reveal about its effectiveness in the treatment of both relapsing and primary progressive multiple sclerosis.

Ocrelizumab is the first B cell therapy for MS proven to be effective in late stage clinical trials. In very simplistic terms, the human immune system is comprised chiefly of 2 types of cells, T cells and B cells, which each use different mechanisms to attack and kill invading bacteria or viruses. Until very recently, the vast majority of MS researchers, who see MS as an autoimmune disease in which the immune system turns against the body’s own cells, considered the multiple sclerosis disease process to be driven almost exclusively by T cells. MS drugs such as Tysabri and Gilenya were designed to specifically target these cells. B cells were given short shrift, and were largely dismissed as having no real relevance in the MS disease process.

The success of ocrelizumab – a drug which destroys B cells – in treating MS has upended these prior assumptions and has forced researchers to rethink their multiple sclerosis disease models. In clinical trials, ocrelizumab, an intravenous drug administered approximately every 6 months, proved to be remarkably effective in treating relapsing multiple sclerosis, and even had a modest effect on PPMS. Let’s look at the actual trial results.

Two separate trials were conducted testing ocrelizumab against the interferon drug Rebif in patients with relapsing multiple sclerosis. These two trials were called OPERA 1 and OPERA 2 (click here). Both two-year trials involved one group of patients taking ocrelizumab and another taking the interferon drug Rebif, and comparisons were made as to the overall effectiveness of ocrelizumab versus the interferon drug. The results were very impressive. Compared to the Rebif treated patients, the ocrelizumab trial subjects experienced a reduction in relapse rates of 46% and 47% in the two trials. Additionally, there was a 40% reduction in confirmed disability progression and a 95% reduction in new enhancing lesions. These results rival or surpass any of the other MS drugs currently on the market. There were no significant differences in the number of adverse events (bad side effects) between the ocrelizumab and Rebif treated patient populations in the relapsing multiple sclerosis trials.

The ocrelizumab PPMS trial was named ORATORIO (click here). This trial lasted 2 ½ years, and randomly assigned 732 patients in a 2 to 1 ratio to receive either ocrelizumab or a placebo. In other words, twice as many trial subjects received ocrelizumab than received placebo. The highlight of this study was that the ocrelizumab treated patients experienced a 25% reduction in time to progression when compared to their placebo-controlled counterparts. Specifically, 29.6% of ocrelizumab treated patients and 35.7% of placebo treated patients experienced a measure of disability progression over the course of the study. This is the first time in a placebo-controlled scientific trial that any multiple sclerosis drug has displayed effectiveness in slowing down the progression of disability in Primary Progressive patients. Ocrelizumab also displayed efficacy over placebo in a number of other outcome measures as well, including the timed 25 foot walk.

As I discussed with Dr. Chin during our interview, it’s important to understand that ocrelizumab did not reverse or even stop the progression of disability in trial subjects. It slowed progression by about 25%. What does this mean for patients in a real-world setting? Well, speaking strictly in a broadly hypothetical basis, if an individual PPMS patient left untreated might need a cane four years after diagnosis, that same patient, if responsive to ocrelizumab, might not need a cane for five years. Again, this is strictly a hypothetical case; PPMS effects patients in widely varying degrees of severity. Additionally, the ORATORIO trial only lasted 2 and half years. How the drug's effectiveness manifests over longer periods of time is not yet understood.

Unlike the relapsing multiple sclerosis ocrelizumab trials, the PPMS trial did reveal some potentially troubling adverse events. Opportunistic infections (mostly respiratory infections and oral herpes) were more common in ocrelizumab than placebo, and the rate of cancer in ocrelizumab treated patients was approximately 3 times that found in placebo treated patients, 2.3% versus 0.8%. Though Genentech says that no direct causal relationship between the cancers in ocrelizumab treated patients could be established, the fact that slightly more than 1 in 50 trial subjects on the drug developed cancer is sure to raise eyebrows, but since similar cancer rates were not seen in the relapsing multiple sclerosis trials these numbers are surely open to question.

There are also some concerns regarding the design ORATORIO study. Back in the mid-2000’s, Genentech conducted a PPMS trial using rituximab, which at first was deemed a failure. Later review of the trial data revealed, though, that a subset of PPMS patients did appear to gain benefit from rituximab therapy (click here). These patients were generally younger than 50 years old, were less disabled, and had enhancing lesions on their MRIs. It’s generally thought that patients fitting this description account for between 10%-15% of the overall PPMS population. The ocrelizumab PPMS trial, though, included about 26% of patients fitting this profile, or approximately double that seen among real-life PPMSer’s. This means that the ORATORIO trial was heavily weighted with patients who were likely to respond to ocrelizumab, since the drug acts in much the same way as rituximab. The ocrelizumab PPMS trial was not designed to discern differences in the effectiveness of the drug between patients with enhancing lesions and those without, but Genentech says there was a “directional consistency” to the trial results, suggesting that the drug was effective in all patient subgroups to one degree or another. Still, the fact that the trial was frontloaded with likely responders is another eyebrow raiser, and may be something that the FDA looks at when making its approval decisions.

Okay, now that we’ve looked at the ocrelizumab MS trials themselves, let’s dive into the history of the drug. Back in the early 2000’s, some MS researchers began investigating whether therapies that destroy B cells might be effective in treating MS. As mentioned earlier, at the time this with a rather radical idea. The drug that was chosen for study was Rituxan (whose generic name is rituximab – click here), a drug developed by Genentech years earlier that had been approved in 1997 for use in fighting non-Hodgkin’s lymphoma and certain types of leukemia. Rituximab, like ocrelizumab, works by zeroing in on a protein found on most types of B cells, called CD20, and then killing the cells on which this protein is located. Though both drugs target and kill B cells, they do so in slightly different ways, and these differences may result in variances in safety and efficacy. Think of the drugs as two hitmen; one likes to slit his victims throats, the other prefers to strangle them. Both get the job done, but their differing killing techniques might effect witnesses differently. In the case of ocrelizumab and rituximab, these differences may effect the actions of other immune cells, thus accounting for possible differences in the safety and efficacy of the drugs.

In the mid-2000’s, MS researchers put rituximab to the test by using it in “proof of concept” trials in patients with RRMS and PPMS. When the trial results were revealed in 2008, the drug proved itself to be extremely effective in treating relapsing remitting MS, but not effective in treating PPMS (click here and here). It’s important to note that the RRMS trials were small, early stage trials, but the PPMS trial was larger and later stage. As mentioned earlier, later parsing of the PPMS data did reveal a subgroup of patients on whom the drug appeared to have some positive effect.

Given the success of the rituximab RRMS trials, the fact that a subset of the PPMS trial population appeared to benefit from the drug, and rituximab’s long history as a successful oncology drug, it’s reasonable to assume that the drug would have been greenlighted for further development as an MS treatment. Instead, all development of rituximab as an MS treatment was halted, and the focus shifted instead to ocrelizumab, a new experimental Genentech product that also targeted B cells via the CD20 protein. While there is some perfectly valid scientific rationale for this choice, many facts and circumstances point to financial motivations playing an oversized role in the decision to advance ocrelizumab rather than rituximab as a potential treatment for MS.

The scientific rationale for choosing to proceed with ocrelizumab is that the drug is comprised primarily of human proteins (the drug is a “humanized” monoclonal antibody), while rituximab contains a mix of mouse and human proteins (making it a “chimeric” monoclonal antibody, meaning that it contains proteins from more than one species). Theoretically, a humanized molecule should be better tolerated by patients than a chimeric drug, especially when used for treating chronic diseases which require continued administrations of the drug. That said, rituximab did have a very good safety profile in its role as an oncology drug, and very few adverse effects were seen in the early rituximab MS trials.

Genentech’s financial motivations for switching from rituximab to ocrelizumab were many. First and foremost was the fact that rituximab was due to come off patent in 2015, meaning that other drugmakers would be free to come in and market their own versions of the drug at that time. As ocrelizumab is a brand-new product, Genentech will have exclusive rights on it for decades to come. In addition, several corporate partnerships were also at play which made ocrelizumab the preferred candidate for further development. Here’s an explanation of the situation, from an article that appeared on the biotech industry news site Genetic Engineering and Biotechnology News in 2010 (click here). Keep in mind that Roche is the parent company of Genentech:

“The operating profits for Rituxan are currently split 60–40 between Roche and Biogen Idec, respectively. But profits for Ocrelizumab would be split 70–30 in Genentech's favor, accounting for Genentech’s enthusiasm to move ahead with the development of Ocrelizumab in MS, at the expense of Rituxan, which loses patent protection in 2015.”

Of course, there is no direct proof that the switch from Rituxan to ocrelizumab was driven primarily by financial considerations (except, perhaps, in files tucked away in the executive offices at Genentech), but I’ve learned through my years researching and writing about these topics that one can never be too jaded in assessing the motivations of the upper echelon decision-makers of Big Pharma. These are publicly traded companies whose officers are, by law, mandated to be beholden to their shareholders, not to the patients taking their products. Welcome to the realities of the medical industrial complex, in which diseases have been transformed into multibillion-dollar a year industries.

Whatever the circumstances, plans for further studies into the use of rituximab in treating MS were abandoned, and early trials using ocrelizumab to treat MS were initiated. In addition to the MS trials, ocrelizumab trials were also started on patients with rheumatoid arthritis (RA) and lupus erythematosus (LE). It’s interesting to note that rituximab was approved for use in treating rheumatoid arthritis in 2007, and has been used effectively and safely in that role since then (click here).

Genentech’s grand plans for ocrelizumab were almost completely disrupted in 2010, when the trials in RA and lupus were halted due to patient deaths and the occurrence of opportunistic infections (click here ). In the parlance of medical research, the risk versus benefit analysis in these trials did not warrant further study. In the parlance of everyday people, dead patients suck. It should be noted that patients in the ocrelizumab rheumatoid arthritis trial were also taking other immunosuppressive drugs, but then again so are most of the patients who have been using rituximab to treat their RA since its approval in 2007.

Ocrelizumab studies in MS were continued because these disastrous infections and patient deaths were not seen in early ocrelizumab MS trials, and also because it’s generally assumed that MS patients and their doctors have a higher tolerance for risk due to the potentially catastrophic nature of the disease (click here). This assumption is borne out by the MS community’s acceptance of drugs like Tysabri, which has a proven link to the deadly brain infection PML. Hundreds of MS patients have contracted this infection due to their taking Tysabri. Other MS drugs, such as Gilenya and Tecfidera, have also been linked to opportunistic infections such as PML. MS certainly isn’t a disease for the faint of heart.

In the years since the rituximab MS studies were shelved by Genentech, MS neurologists have been using the drug on an “off label” basis due to the obvious potential of the drug displayed in those early trials. “Off label” refers to the fact that doctors are free to prescribe any FDA approved drug for any indication whatsoever, even if the drug has not been approved for that purpose (click here). Many MS neurologists here in the USA as well as in Europe have been using rituximab to treat MS patients safely and effectively for years. The use of rituximab in MS is especially prevalent in Sweden, and a recent study out of that country that took a retrospective look at MS patients treated with rituximab found that the drug was startlingly effective and had an excellent safety profile (click here). As noted earlier, rituximab has also proven safe and effective in treating rheumatoid arthritis. Remember, the RA trials for ocrelizumab had to be halted due to opportunistic infections and patient deaths.

It should be noted that over its 20-year history rituximab has been linked to some cases of PML, but to a far lesser degree than drugs like Tysabri. In rheumatoid arthritis patients, it appears the rate of PML in Rituxan treated patients is on the order of 1 in 25,000 (click here). Rituximab has also been linked to other opportunistic infections, but again, at a lower rate than is seen in most other MS drugs. Let’s face it, any drug that profoundly changes the highly evolved human immune system is bound to open patients up to infections they wouldn’t otherwise contract. Ocrelizumab and rituximab both destroy B cells, one of the major components of the human immune system. No one knows what the long-term effects of living without any B cells might be. We do know, though, that the long-term effects of living with MS can be harrowing. Such is the state of the current MS treatment paradigm.

In conclusion, while the excitement generated by the impending approval of ocrelizumab for relapsing multiple sclerosis and primary progressive multiple sclerosis is certainly warranted, expectations, especially for those with PPMS, should be kept realistic. Ocrelizumab will likely slow the rate of disability progression for some progressive MS patients, and even though this isn’t the revolutionary change patients battling PPMS are so fervently hoping for, it is a start. Relapsing multiple sclerosis patients can expect ocrelizumab to be among the most effective disease modifying drugs on the market.

The fact that rituximab, a very similar drug with a proven record of efficacy and safety, is an available and very viable option should play into treatment decisions, as should the failed ocrelizumab trials in RA and lupus, and the increased cancer rates seen in the ocrelizumab PPMS trials (again, these rates could be aberrations). These factors need not make patients shy away from ocrelizumab, but there is every reason to explore them with your neurologist. Don’t be afraid to ask your doctor why they might favor one drug over another. This holds true when deciding on any MS treatment. Remember, the doctor-patient relationship should never be a dictatorship, but a partnership. Here’s to hoping that ocrelizumab proves itself worthy of the buzz it’s generated in advance of its anticipated FDA approval.

And here’s to more desperate hoping that MS researchers soon come up with methods other than profoundly kneecapping the human immune system in their search for ways to treat MS.

Wednesday, March 2, 2016

Ocrelizumab PPMS Trial Data Released, Offers Reasons for Hope and Concern

Last month, at the annual ACTRIMS (American Committee for Treatment and Research in Multiple Sclerosis) conference, the full trial results for the Ocrelizumab PPMS drug trial were finally revealed. These results had been much anticipated by the MS community, as there are currently no proven effective treatments for Primary Progressive Multiple Sclerosis, and many previous PPMS drug trials have ended in failure.

Coincidentally, a few days before the conference, Ocrelizumab received “fast-track status” by the FDA (click here). The “Fast-Track” designation is given to drugs which promise to fill a prior unmet need, and generally shortens the approval process from 10 to 6 months. Since PPMS has no approved treatments, Ocrelizumab fits the requirements for the designation. Though fast-track designation means that Ocrelizumab will have an expedited approval process, it does not guarantee that the drug will ultimately be approved.

The anticipation over Ocrelizumab, which was developed by Roche Pharmaceuticals subsidiary Genentech, stems from the fact that trial results appear to demonstrate the drug to be effective in slowing down progression of disability in PPMS patients. In results presented at ACTRIMS, Ocrelizumab showed itself to be very potent in treating RRMS (click here), and in PPMS the drug slowed down disability progression by 24% (click here), making it the first major pharmaceutical product to demonstrate effectiveness in treating Primary Progressive Multiple Sclerosis in a scientifically rigorous placebo-controlled trial.

The data set presented at ACTRIMS confirmed info originally released last year, but the numbers revealed at the recent conference provided more details on the patient population included in the study (click here). Specifically, results were provided for two different subsets of patients – those with enhancing lesions (which signify acute immune activity within the central nervous system) and those without enhancing lesions. Only about 15% of patients with PPMS display enhancing lesions on their MRIs, and it was widely assumed that Ocrelizumab would likely only be effective in treating those patients. The results provided by Genentech at ACTRIMS , however, demonstrated that the drug appears to be just as effective in patients whose MRIs did not show any signs of enhancing lesions.

Great news, right? Well, if the numbers hold up it is great news, but there are certain aspects of the Ocrelizumab PPMS trials that raise some red flags. Ocrelizumab is a close cousin of the decades old drug Rituxan, which is also manufactured by Genentech. Both drugs work in almost the exact same fashion, by targeting and destroying immune system B cells, effectively ridding the body of the cells for periods of at least six or seven months. Ocrelizumab, like Rituxan, is administered approximately every six months, in two intravenous doses given one or two weeks apart.

Rituxan was originally intended for use against blood cancers, but was later found to be effective in treating a variety of autoimmune diseases, including Lupus, Rheumatoid Arthritis, and Relapsing Remitting Multiple Sclerosis. The human immune system consists of a wide variety of cells, but is primarily made up of B cells and T cells. Therefore, Ocrelizumab and Rituxan both eliminate a major component of the very complex immune system, which, it’s assumed, is why they are effective in treating so-called autoimmune diseases. Though Rituxan was never officially approved for use in MS, many MS neurologists prescribe the drug “off label” for their RRMS patients, in whom it has proven to be very effective in reducing relapses and the occurrence of MS lesions.

Back in 2008, trials of Rituxan on PPMS patients were deemed a failure, much to the intense disappointment of many patients, myself included. Subsequent analysis of the data generated by that failed trial, however, revealed that a subset of patients did seem to have a somewhat positive response to Rituxan – namely younger patients who displayed enhancing lesions, had been more recently diagnosed, and were less disabled than other trial participants (click here). Instead of pursuing more targeted trials with Rituxan, though, the drug’s manufacturer, Genentech, decided to develop a newer version of the compound, and thus Ocrelizumab was born.

Why invent a new version of an older, proven drug that uses the exact same mechanism of action as that older drug? Well, Genentech says it was done to develop a safer, more effective product, but a cynical person might point out that Rituxan had already proven itself to be relatively safe and quite effective but was due to come off patent in 2015, meaning that its window for generating tremendous profits was rapidly closing. By the time new trials were completed, Rituxan would no longer have patent protection. A new version of the drug, on the other hand, could be a golden egg laying goose. But, of course, only a very cynical person would point that out, not someone is bright eyed and bushy tailed as me.

Anyway, back to the current Ocrelizumab PPMS trials. Based on the lessons learned from the failed Rituxan trials, it looks like Genentech populated the Ocrelizumab PPMS trials with patients who were selected specifically because they were more likely to respond to treatment (click here). Whereas only about 15% of PPMS patients display enhancing lesions on their MRIs, the Ocrelizumab trial included about 27% of such patients. When compared to the trial’s placebo group, the patients that received the actual drug had twice as many enhancing lesions, meaning their disease was much more immunologically active. In addition, compared to other PPMS trials (all failed), patients in the Ocrelizumab trial were generally more recently diagnosed, and were much less likely to have been on any prior disease modifying medications (in the parlance of the medical research community, most of the patients were “treatment naïve”).

Still, when the numbers were broken down at ACTRIMS, they showed that the drug decreased the rate of disability progression by about 24% in both patients with enhancing lesions and without enhancing lesions. However, each subset of patients was too small to make these results statistically significant, meaning that the trial was, in the parlance of the medical research community, “underpowered”. Knowing that this was sure to be a very important issue, why would Genentech go ahead with a trial that was underpowered in this regard? Wouldn’t logic dictate that they design the trial to settle this vital issue in a statistically definitive manner? Seems kind of strange, no?

What may ultimately turn out to be the most troubling aspect of the Ocrelizumab PPMS trial, however, is that 11 cancers were detected in patients taking Ocrelizumab, versus only two in the placebo group. Eight of the cancers in the Ocrelizumab patients were breast cancers, versus zero in the placebo group. This is especially concerning because back in 2010, when Ocrelizumab was first developed, trials were started not only in MS but also on lupus and rheumatoid arthritis patients. Both the lupus and rheumatoid arthritis trials were halted because of patient deaths (due mostly to opportunistic infections), but the MS trials were allowed to continue because it was thought that MS patients would have a higher tolerance for risk (click here). Interestingly, in the Ocrelizumab RRMS trials, which actually included more patients than the PPMS trials, “only” four cancers were detected in the drug group, versus two in the placebo group.

Incidentally, in its over two decades of service, Rituxan has not been associated with the development of cancers or an alarming number of opportunistic infections, although rare instances of PML (the brain infection that is so concerning in patients taking Tysabri) have been seen in patients taking the drug.

If anything derails an FDA approval for Ocrelizumab in treating PPMS it may very well turn out to be the cancer issue. Even though the positive effect on PPMS generated by Ocrelizumab isn’t overwhelming (a 24% decrease in progression rates is nothing to sneeze at, but then again it’s hardly the dramatic effect PPMS patients are desperately seeking), on its own it would seem encouraging enough to garner an approval. However, given some of the questions regarding trial design and safety issues, it will be very interesting to see what the FDA decides. Another one time promising MS drug, Cladribine, was rejected by the FDA primarily because of cancers detected during drug trials (click here).

For some expert opinions on Ocrelizumab, here are two videos. The first is a video of Ottawa MS neurologist Dr. Mark Freedman discussing progressive MS in general, and then commenting specifically on the Ocrelizumab PPMS trial results. For those of you with short attention spans, he starts talking about Ocrelizumab at the 3:50 mark of the video. Dr. Freedman has some very interesting comments regarding the drug and its effectiveness, and B cell therapy in general. The video is well worth watching.





Here’s another MS neurologist, Dr. Clyde Markowitz, Director of the MS Center at the University of Pennsylvania, who seems much more enthusiastic about Ocrelizumab and its prospects for treating PPMS:





Being the always curious person that I am, and also hyperaware that drug companies often funnel money to doctors who prescribe their products, I did some quick checking and found that Dr. Markowitz received $64,461 from various pharmaceutical companies between August 2013 to December 2014, mostly for “consulting” and “honoraria” fees (click here). At least $6000 of this rather large sum came from Genentech, which, it turns out, was the number one drug company in handing out payments to doctors during that period (click here). And this was before the Ocrelizumab trials were completed.

One can only imagine that Genentech is now going all out to, um, “influence” key doctors in its efforts to get the drug approved, much like politicians target key precincts and states in their quest to get elected. I’ve done plenty of ranting on the subject of drug companies making direct payments to the doctors who prescribe their products in previous blog posts, so I’ll refrain from launching into yet another insane tirade here, but suffice it to say I’ve yet to find any logical argument as to why this practice is tolerated, much less legal.

In all fairness, since Dr. Freedman practices in Canada, I was not able to find any info on payments he might’ve taken from drug companies. The truth is that very few MS neurologists are not on the pharmaceutical company dole. I’d encourage you to enter your doctor’s name in the “Dollars for Docs” database (click here), and see if your neuro has his hand in the cookie jar. Again, this doesn’t mean that the doctors named in the database allow pharmaceutical company money to affect their decision making process, but then again, the pharmaceutical companies wouldn’t be doling out millions and millions of dollars if they weren’t getting an appreciable return on investment.

Okay, sorry, I got a little sidetracked there. I certainly hope that all of my concerns about Ocrelizumab turn out to be completely unfounded, as having even a modestly effective treatment readily available for PPMS would be a major step forward in fighting the disease. However, it seems clear (to me, at least) that going after the immune system isn’t going to be the magic bullet that solves the Progressive Multiple Sclerosis problem, or the broader overall Multiple Sclerosis riddle.. Researchers urgently need to step outside the box and start coming at the issue from new angles if any truly dramatic progress is ever going to be made. In the meantime, here’s to hoping that Ocrelizumab proves itself to be a safe and reliable option for Primary Progressive patients, whose desperation for proven treatment options is beyond words.

Thursday, October 15, 2015

Ocrelizumab Update – RRMS Trials Successful; PPMS Trial Shows Positive Effect, But Many Questions Left Unanswered

When I last posted to Wheelchair Kamikaze, I profiled the experimental MS drug Ocrelizumab, which was developed by Swiss drug giant Roche (and their US subsidiary Genentech). In press releases put out by the company two weeks ago (click here), Ocrelizumab was touted as the first MS drug shown capable of putting the brakes on Primary Progressive Multiple Sclerosis (PPMS) – a subtype of the disease which until now has been largely untreatable – as well as it being highly effective in treating the more common Relapsing Remitting Multiple Sclerosis (RRMS). These results were even more noteworthy because Ocrelizumab is the first MS drug to specifically target immune system B cells, while other currently available MS drugs (Tysabri, Gilenya) were developed to target T cells, which until now were believed by many to be the primary culprits driving the MS disease process.

Though the initial Ocrelizumab press releases were scant on details, the news certainly appeared promising, though reservations were expressed by many MS researchers based on Ocrelizumab’s development history and its close similarity with another Roche product, Rituxan, a much older drug that had gone through early trials in RRMS (very successful) and PPMS (largely a failure, but with some hints of success) back in 2005-2008. Rituxan’s development as an MS treatment was halted by Roche because of what many believe to be strictly financial concerns. Reading my previous essay (click here) will provide much background on Ocrelizumab’s development and the issues surrounding the drug.

Roche presented the details of the Ocrelizumab RRMS and PPMS trials this past weekend at the ECTRIMS conference in Barcelona, Spain. The RRMS trials were named OPERA I and OPERA II, and the PPMS trial was named ORATORIO. The results of the OPERA I and OPERA II RRMS studies were indeed impressive. These studies compared Ocrelizumab to Rebif, an interferon drug long used to treat RRMS, and found that treatment with Ocrelizumab resulted in a 50% reduction of annualized relapse rates, a 40% reduction in progression, and an 80% reduction in enhancing lesions as shown on MRI when compared to patients taking Rebif (click here – login required, but sign-up process is easy and well worth it). Adverse events were found to be similar in both groups, which is encouraging as Rebif is considered one of the safer MS medications currently available.

It should be noted, however, that the two-year length of these trials may be insufficient to detect longer-term problems that may develop as a result of the intense B cell suppression that is Ocrelizumab’s primary mechanism of action. Nevertheless, it does appear that Ocrelizumab will become a very valuable weapon in the growing arsenal of drugs used to combat RRMS, though, like all current MS drugs, it doesn’t do a thing towards actually curing the disease. But I’ll save that rant for another day…

(Please note, the following information and accompanying commentary were largely gleaned from materials contained in articles and interviews that can be accessed by clicking here, here, here, and here. I would urge all to read them for greater context and background)

Results of the ORATORIO PPMS study, while initially impressive, still remain riddled with questions. Despite the screaming headlines hailing Ocrelizumab as a “revolutionary new MS drug” by the – as usual – hyperbolic mainstream medical media (click here), the actual picture remains far more nuanced. The ORATORIO trial design was heavily influenced by the results of the failed Rituxan PPMS trial back in 2008. Though that trial was officially deemed unsuccessful, subsequent examination of the data revealed that a subset of PPMS patients in the study were seemingly helped by the drug. These patients were generally younger, had shorter disease duration, were less disabled, and had enhancing lesions on their MRIs. It’s thought that patients who fall within these parameters make up about 15% of the overall PPMS population.

It appears that in designing the ORATORIO study, Roche chose trial subjects who were most likely to benefit from Ocrelizumab treatment, specifically those who fit the demographic and disease parameters outlined above. As presented at ECTRIMS, the results of the ORATORIO study are indeed impressive, demonstrating a marked slowing of disease progression, a reduction in MS enhancing lesions, a reduction in brain volume loss, and a stable time to walk 25 feet when compared to trial subjects given a placebo. Of course, these results also mean that many of the ORATORIO trial subjects were patients with enhancing lesions (only a fraction of PPMSer’s have such lesions) and who were relatively less disabled (as evidenced by the fact that they could still walk). The majority of trial subjects also appear to have been relatively recently diagnosed, with a disease duration of approximately 3-5 years, and were under 50 years old.

Unfortunately, when Roche presented the ORATORIO results at ECTRIMS, they declined to detail the breakdown of results by patient subgroups, claiming that such subgroup analysis had not yet been satisfactorily completed. This beggars belief, as one would think that examining the data in such a way as to determine which patient groups benefited the most from treatment would be among the highest research priorities, especially given the mixed results of the previous Rituxan PPMS trials. Instead, Roche chose to give a broad overview of favorable trial results without answering some of the most important questions about those results, primary among them whether or not the patients who most benefited were those with enhancing lesions. Indeed, in the Q&A period following Roche’s presentation, presenters were questioned on just this issue by conference attendees, who were given no suitable answers other than promises that the data would be forthcoming. Roche's presentation led several experts to say the primary progressive data were less impressive than those seen with Ocrelizumab in relapsing remitting disease.

Although Roche portrayed the safety profile of Ocrelizumab in the ORATORIO trial to be excellent, they did note that there were 11 cancers detected during the ORATORIO trial on patients taking Ocrelizumab, versus only two in the placebo group.

The results of the Ocrelizumab RRMS and PPMS studies have not yet been published in any scientific journals, and it is expected that much additional data will need to be provided to publishers before the trial results will be deemed fit for publication. Getting the drug through the regulatory approval process required by government agencies such as the FDA will also necessitate a much greater detailing of trial results, including subgroup analysis which will shed light on just which patient groups were treatment responders. While it seems that the RRMS results will likely stand up to more intense scrutiny, the PPMS results may prove to be less dramatic than originally portrayed when subjected to the spotlight of journal publication and regulatory approval.

That said, even in a worst-case scenario in which only a small subgroup of PPMS patients, those with enhancing lesions,  prove to benefit from Ocrelizumab treatment, the fact that any headway at all has been made in treating PPMS is a significant step forward. If in fact the drug’s efficacy is limited to patients with enhancing lesions, and such lesions are most likely to be found in patients in the earliest stages of the disease, the importance of early diagnosis will be brought to the forefront. Given current diagnostic tools and techniques, many patients with PPMS aren’t correctly diagnosed until the disease has long since taken hold, beyond the period when enhancing lesions are likely to be present. Additionally, the fact that Ocrelizumab targets B cells should open up new avenues of investigation for MS researchers worldwide, as this potential mechanism of MS disease action has until now been largely discounted by most mainstream researchers. Perhaps these investigations might finally unravel some of the deepest mysteries of the disease, and (crossing the fingers I can still cross) eventually lead to a cure for all forms of the disease.

At this point, only time will provide us with the answers we seek. The next chapters of the Ocrelizumab saga will be getting these studies peer-reviewed and published in medical journals, a process which will shed much light on issues still in need of clarification. Roche is targeting the first quarter of 2016 for regulatory approval in both RRMS and PPMS. It will be very interesting to see whether or not Ocrelizumab is approved for the PPMS population as a whole, or, as many researchers suspect, for only a subgroup of progressive MS patients. Again, even if the latter case holds true, we will have at least made some headway in the fight against an insidious form of Multiple Sclerosis that until now has defied efforts to combat it.

At long last, it appears that the attentions of Multiple Sclerosis researchers are finally focusing on progressive MS, an area of investigation which until very recently had largely been neglected. The confounding problems represented by progressive MS will never be solved until well-funded trials are directed specifically at this disease subtype, a circumstance that finally seems to be coming to fruition. And that’s no small thing…