Showing posts with label general. Show all posts
Showing posts with label general. Show all posts

Friday, February 6, 2026

Open Letter: Focus On Hidden Transplanted Beta Cells

An open letter to everyone who cares about research aimed at type 1 diabetes cures.

I've been blogging on research aimed at curing type 1 diabetes for almost 20 years, but I've never sent out a message like this before.  However, for me, the results from a single person clinical trial of Sana Biotechnology's UP421 treatment should motivate a change in how we all think about research to cure T1D.

Until now, I've taken a "diversification of research" point of view.  At any time, there are 20 or 30 
active research projects aimed at curing T1D, and I supported all of them, based on their results to date.  I did not favor one over another based on what I thought would happen in the future.  My policy was that we don't know which one will succeed, so we need to support all of them and see which one actually does succeed.

But now, I'm starting to change my point of view.  I'm starting to see that one approach is working better; is moving to the front of the competitive pack, and deserves more support and more optimism, than the others.

Sana's UP421 study gave one person a small dose of genetically engineered beta cells.  The genetic engineering (using the CRISPR-Cas9 gene editing technology) is designed to render the cells invisible to the immune system in order to avoid the need for any immune suppression, both to prevent foreign organ rejection and to prevent autoimmune attacks.  C-peptides were generated and immune suppression was not needed.  Six month results were published in the New England Journal of Medicine, and they have released one year results at an investor's conference.  Sana is planning on a follow up product, SC451 to start clinical trials in 2026.

Obviously, this result has important limitations: one person, less than one year, a small dose, and a small effect.  It used cadaver beta cells and Sana is switching to a different cell source for the future.  However, what it did show was invisibility to the immune system, and steady generation of insulin for the first 6 months of data.  It did generate less insulin for the next six months, dropping to about half of its initial high point, and that will need to be investigated.

The reason I am excited about this result is that the required scientific breakthrough(s) have already happened.  The genetic engineering required to hide the transplanted beta cells appears to be successful in this one person study.  Much of the study's results were aimed at confirming this invisibility.  The remaining work is much more engineering development than scientific breakthrough.  Sana needs to 
transplant more cells, they need to be tested for longer, and (especially) in more, different people. 

I think that all organizations working to cure type 1 diabetes, should do the following for the next few years, and I think that we, as a community that cares about T1D research should be encouraging them to:
  1. Establish a focus on genetically engineering beta cells which evade the immune system, as a potential cure for type 1 diabetes.
  2. Put 5% of their research funds into helping Sana's SC451 product (or successors) progress down the path towards general availability.
  3. Start advocating with the FDA now to smooth the approval process for this treatment when it is available, and to ensure insurance coverage for this treatment.
  4. Put an additional 5% (or a little more) into adjacent research, non-Sana projects to use genetic engineering to hide beta cells.
Research is about the unknown, and I'm not saying that Sana is going to cure T1D, but I think they are close enough so that we should focus more on them and their research area (generically engineering beta cells to avoid the immune system).  I don't think spending 10% of our research money on this one area is extreme right now. 

BreakthroughT1D's Project ACT (Accelerate Cell Therapies), which they started in 2024, is already a step in this direction.  It's focus is wider than beta cells genetically engineered to hide from the immune system, but it certainly covers them.  In addition, the T1D Fund (BreakthroughT1D's venture capital business fund) is already funding Sana .  There is also a Swedish foundation which is focused on funding this research in a university setting.  These are all great steps, but the entire T1D community needs to "put a brick on the accelerator" for this.  

My thinking here is similar to BreakthroughT1D's (then JDRF's) policy on the Artificial Pancreas.  I believe that JDRF's actions there sped up availability of an Artificial Pancreas by several years, and I think we can do the same now, but this time with a cure.  

I have often said that the first signal we will get that a cure for type 1 diabetes will occur
is that one person will be cured in a clinical trial.  Sana's 2025 result is not quite that, but it is on the path.  

None of this means that I'm going to stop following (or even slow down following) other research areas.  I continue to believe that limiting ourselves to one one path to a cure is a dangerous form of scientific extremism.  So while I am calling on more focus and more support for genetic engineering to hide transplanted beta cells from the body's immune system, I'm not going to exclude other research paths from my blog.  I will continue to report on all cure focused research.

Note: There is also another company called Sana which does AI work.  This research is being done by Sana Biotechnology.

More Information on Sana Biotechnology's results:

Foundation created to support the university side of this research:

About Project ACT:


Joshua Levy
http://cureresearch4type1diabetes.blogspot.com
publicjoshualevy at gmail dot com
All the views expressed here are those of Joshua Levy, and nothing here is official BreakthroughT1D or JDCA news, views, policies or opinions.  I sometimes use generative AI ("chatbots") to generate draft blogs, parts of blogs, or drafter alternate wordings for these blogs.  I always review every part of every published blog to ensure that it is saying what I want, in the tone that I want, truthfully, and accurately.  My kid has type-1 diabetes and has participated in clinical trials, which might be discussed here.  I am obese and right on the border of T2D and therefore may be taking drugs for those conditions.  My blog contains a more complete non-conflict of interest statement. Thanks to everyone who helps with the blog! 

Sunday, October 16, 2022

JDRF Funding for a Cure 2022

In the US, we are in the "Walking Season" when JDRF (Juvenile Diabetes Research Foundation) asks us to walk to raise money for a cure for type-1 diabetes. So I'd like to do my part, by reminding you all of how important JDRF is to the human trials of potential cures for T1D, which I track.

Let me give you the punch line up front: 65% of the treatments currently in human trials have been funded by JDRF. (And the number is 78% for the later phase trials!) This is a strong impact; one that any non-profit should be proud of.  Below is a list of all the treatments, grouped by phase, and separated into trials that JDRF has funded, and those JDRF has never funded.  
 
I've made two big changes to how I track treatments this year.  
  • In the past, I counted each combination of treatments separately.  For example,  Diamyd, Etanercep, and Vitamin D was considered one possible cure and Diamyd alone was a separate possible cure, and Diamyd and Vitamin D was a third.  This year, I'm changing my methodology to group all of these possible cures together as one, since they are all really based on Diamyd.
  • In the past, I counted a possible cure separately if it was tested in different phases of type-1 diabetes.  For example, TOL-3021 was being tested on honeymooners, but also in people with established T1D, so it got counted twice.  This year, I'm no longer doing that.  Another example is Teplizumab.  It is in the approval process for at-risk people, but in phase-III trials for honeymooners, so it is listed in both phases but only counted once.

The List, Divided by Phases
Below is the list of all treatments, divided into five phases: In Process (of FDA Approval), Phase-III, Phase-II, Phase-II?, and Phase-I.  Phase-II trials are "classic" phase-II trials, which are done after a Phase-I trial.  What I call Phase-II? trials are done on treatments which never went through phase-I trials on people with T1D.  They've been shown safe in other diseases, so have skipped phase-I trials on people with T1D.  These Phase-II? trials might be Phase-II from the point of view of size and safety, but they are Phase-I in terms of effectiveness, so I'm putting them in their own category. 

In Process of FDA Approval
Summary: currently there is 1 drug which has been submitted to the US FDA for approval for sale, and it was funded by JDRF.
  • Teplizumab by Provention Bio (At Risk)
In the forth quarter of 2020, Provention Bio submitted Teplizumab for FDA approval.  Unfortunately, there have been some delays, but there is hope of an FDA decision in November  2022.  This application will cover people who are "At Risk" (as described below) for T1D, and the aim will be to delay the onset of T1D by 2-3 years.

Phase-III Human Trials
Summary: currently there are 2 treatments in a phase-III clinical trial.  Both are funded by JDRF:
  • Oral Insulin (Preventative)
  • Teplizumab by Provention Bio
Phase-II Human Trials
Summary: there are 16 trials in phase-II, and 12 of them have been funded by JDRF, while 4 have not. Here are the treatments that have been funded by JDRF:
  • ATG and GCSF by Haller at University of Florida (Established) 
  • Abatacept in honeymooners and as a prevention by Orban at Joslin Diabetes Center and Skyler at University of Miami (Prevention) 
  • Aldesleukin (Proleukin) at Addenbrooke’s Hospital, Cambridge, UK 
  • Diamyd in several combinations by Ludvigsson at Linköping University and Larsson at Lund University (Honeymoon and Prevention)
  • Gleevec by Gitelman at UCSF 
  • Gluten Free Diet: Three Studies  (Preventative)
  • Stem Cell Educator by Zhao (Established) 
  • Tocilizumab by Greenbaum/Buckner at Benaroya Research Institute 
  • TOL-3021 by Bayhill Therapeutics (Honeymoon and Established)   
  • Umbilical Cord Blood Infusion by Haller at University of Florida 
  • Ustekinumab by University of British Columbia
  • Verapamil by Shalev/Ovalle at University of Alabama at Birmingham
Not funded by JDRF:
  • ATG and autotransplant by several research groups: Burt, Snarski, and Li 
  • Dual Stem Cell by Tan at Fuzhou General Hospital 
  • Stem Cells of Arabia (Established)
  • Vitamin D by Stephens at Nationwide Children's Hospital (Prevention)
Phase-II? Human Trials
Summary: there are 13 trials in phase-II?, and 7 of them have been funded by JDRF, while 6 have not. Here are the treatments that have been funded by JDRF:
  • Alpha Difluoromethylornithine (DFMO) by DiMeglio
  • GABA by Diamyd
  • Golimumab by Janssen (Honeymoon and Established)
  • Hydroxychloroquine by Greenbaum (At Risk)
  • Intranasal Insulin by Harrison at Melbourne Health (Prevention)
  • Iscalimab (CFZ533) by Novartis
  • Rituximab by Pescovitz at Indiana University
Not funded by JDRF:
  • Azithromycin by Forsander
  • Ladarixin by Emanuele Bosi of Dompé Farmaceutici
  • Liraglutid (At Risk)
  • NNC0114-0006 and Liraglutide by Novo-Norsk (Established)
  • Rapamycin Vildagliptin Combo by IRCCS (Established)
  • Visbiome by Medical College of Wisconsin
Phase-I Human Trials
Summary: there are 22 trials in phase-I, and 15 of them are funded by JDRF, while 7 are not. Here is the list funded by JDRF:
  • AG019 and Teplizumab by ActoGeniX
  • DIMID1 (Faecal Microbiota Transplantation) at AMC Hospital 
  • CGSF by Haller at University of Florida 
  • Golimumab (At Risk)
  • MER3101 by Mercia (previously IBC-VS01 by Orban)
  • MonoPepT1De by Cardiff University
  • Mozobil by University of Alberta (Established)
  • MultiPepT1De (Multi Peptide Vaccine) by Powrie at King’s College London
  • Nasal insulin by Harrison at Melbourne Health (Prevention)
  • PRV-101 (Coxsackie B Vaccine) by Provention Bio (Prevention)
  • Tauroursodeoxycholic Acid (TUDCA) by Goland at Columbia University
  • TOPPLE T1D by Novo Nordisk (Established)
  • Pro insulin peptide by Dayan at Cardiff University 
  • VC-01 by Viacyte (Established)
  • VCTX210A by Viacyte/CRISPR (Established)
Not funded by JDRF:
  • AVT001 by Avotres
  • Baby Teeth Stem Cells by CAR-T Biotechnology 
  • Gluten Free Diet by Carlsson at Lund University
  • Mesenchymal Stromal Cell by Carlsson at Uppsala University
  • NN1845 (Glucose Sensitive Insulin) by Novo Nordisk
  • PIpepTolDC at City of Hope Medical Center
  • ProTrans by NextCell (Established)
Summary of all Trials
52 in total
34 funded by JDRF
So 65% of the human trials currently underway are funded (either directly or indirectly) by JDRF. Everyone who donates to JDRF should be proud of this huge impact; and everyone who works for JDRF or volunteers for it, should be doubly proud.

Just Looking at Trials on Established Type-1 Diabetics
 
12 of these treatments (23%) are being tested on people with established T1D.
Of these, 8 are funded by JDRF.
So 66% of the trials recruiting people with established T1D are funded by JDRF.

I'm not comparing these numbers to the 2020 numbers because I've changed the way I count potential cures, so the numbers are not equivalent.   However, I did do a quick comparison applying the older methodology to this year's data, and there was little change: 4 more phase-I trials, and 1 less phase-II trial. 

A Little Discussion
 
The money that we donate does many things:
  1. It finances more clinical trials (especially early clinical trials).
  2. It finances making clinical trials (especially early clinical trials) larger and better designed.
  3. It helps push possible cures to the next level of trial.  It finances moving phase-I trials to phase-II, and phase-II to phase III.
I like to say that there are two reasons for donating money for research into T1D.  People who like the research being done should donate money to move it forward, faster.  People who don't like the research being done should donate money to start up different research which (presumably) they will like more.  So no matter which group you are in, you should donate.  😀
  
Trial Populations
 
The list above uses the following marks to show the nature of the treatments, and if one treatment is being tested in different populations, then it will be listed more than once.
Honeymoon: Most trials are done on people within the first year of diagnosis.  All the studies listed above which are not Established, At Risk, or Prevention are in this Honeymoon category.
Established: One or more trials are open to people who have had type-1 diabetes for over a year. 
At Risk: One or more trials are open to people who have 2 or more autoantibodies, but have not yet started showing symptoms of type-1 diabetes.
Prevention: This treatment is aimed at preventing type-1 diabetes, not curing it.
If a trial is not marked, then it is for people in the honeymoon (first year) of T1D.

I give an organization credit for funding a treatment if they funded it at any point in development; I don't limit it to the current trial.  
 
I also give credit if JDRF funds research indirectly, through another organization.  For example, JDRF funds both nPOD and Immune Tolerance Network and so I give JDRF credit for clinical trials based on their work.
 
How I Count Trials for This Comparison
  • I mark the start of a research trial when the researchers start recruiting patients (and if there is any uncertainty, when the first patient is dosed). Some researchers talk about starting a trial when they submit the paper work, which is usually months earlier. 
  • For trials which use combinations of two or more different treatments, I give funding credit, if the organization in the past funded any component of a combination treatment, or if they are funding the current combined treatment.
  • I have made no attempt to find out how much funding different organizations gave to different research. This would be next to impossible for long research programs, anyway. 
  • Funding of research is not my primary interest, so I don't spend a lot of time tracking down details in this area. I might be wrong on details. 
Some Specific Notes:
  • I only include intervention studies here, because those are the only type of study that the FDA will accept for the eventual approval of a new treatment.  
    • The PreventT1D study (Vitamin D and Omega-3s) is a "field study" so not included.
    • A Rotavirus Vaccine study which was published a few years ago was a population based study, so also not included.
  • Oral Insulin: This trial was a phase-III trial, meaning that it was large and designed to provide enough information so that, if successful, the treatment could be widely used. However, as it turned out, only part was successful, and that part was phase-II sized, so I don't think we will see widespread use based on this trial alone. You can think of this as a phase-III trial with phase-II results.
This is an update and extension to blog postings that I've made for the previous twelve years:
Please remember that my blog (and therefore this posting) covers research aimed at curing or preventing type-1 diabetes that is currently being tested in humans. There is a lot more research going on than is counted here.

Please think of this posting as being my personal "thank you" note to all the JDRF staff, volunteers, and everyone who donates money to research a cure for type-1 diabetes:
Thank You!

Finally, if you see any mistakes or oversights in this posting, please tell me! There is a lot of information packed into this small posting, and I've made mistakes in the past. 

Joshua Levy
http://cureresearch4type1diabetes.blogspot.com
publicjoshualevy at gmail dot com
All the views expressed here are those of Joshua Levy, and nothing here is official JDRF or JDCA news, views, policies or opinions. My daughter has type-1 diabetes and participates in clinical trials, which might be discussed here. My blog contains a more complete non-conflict of interest statement. Thanks to everyone who helps with the blog.

Saturday, July 17, 2021

TrialNet In General

I have blogged dozens of times on clinical trials run by TrialNet, but I've never discussed TrialNet as an organization, so this blog contains some information on TrialNet, starting with their web site:
 
A Little History
 
The pre-history of TrialNet traces back to a large study called Diabetes Prevention Trial of Type 1 (DPT-1) which started 1994, which was testing oral insulin as a prevention of T1D.  TrialNet was formally founded in 2001, and (for me) is best known for their huge study now called "Pathway to Prevention" (previously called "Natural History Study").  This study is central to the mission of preventing T1D, by both (a) studying what is the normal progression of T1D and (b) creating a large pool of people in the process of developing T1D, which makes prevention focused clinical trials much easier to run. 

Kevan C. Herold of Yale University became chair of TrialNet on June 1st, 2021.  Prior to that, from 2015 to 2021, Carla J. Greenbaum of the Benaroya Research Institute was the chair, and before that, Jay Skyler.  Carla Greenbaum continues to direct the TrialNet Clinical Hub.
 
In writing this, I searched for a concise history of TrialNet, but was not able to find anything.  So if you have an interest in the history of science, this might make a great paper, or even a thesis.  Also, I was not able to find any public organizational or governance materials, so can't include any information on how TrialNet decisions are made.

Goals and Methods

TrialNet's goal is to prevent, delay and slow the progression of the T1D.  I would describe their basic method as a research funnel:
  1. They start out screening relatives of people with T1D, looking for those who have autoimmune antibodies.
  2. They then follow those people to see if the number of autoimmune antibodies increases, if they start having higher than normal blood glucose after eating carbohydrates, and if they are diagnosed with T1D.
  3. For those who develop T1D, they follow them to see how the disease evolves over time.

Throughout this whole process, they are recruiting people for more specific studies to test preventions or cures appropriate to their stage in the disease. 

Without TrialNet, if a researcher wanted to recruit 50 people at-risk for type-1 diabetes from the general population, they would need to test thousands of people to find the 50 they were looking for.  That process alone would likely take years and cost hundreds of thousands, if not millions, of dollars.  Even if they could focus on the relatives of people with T1D, they would still need to test 100s of people, and it would still cost a lot and take a long time.  But TrialNet has already found many people who can participate in those studies.

Research Achievements

I consider the following items to be TrialNet's three biggest achievements in chronological order: 
 
First: showing the normal progression of T1D.  In particular documenting the length of the honeymoon period, and what should be expected during that time.  To understand why this is important, consider the saga of BCG.  In the 1990s there was a small clinical trial which gave BCG to six people with newly diagnosed type-1 diabetes (no control group).  One of them went a few weeks without injecting insulin.  At the time (before the TrialNet results), this triggered a lot of optimism, including at least three follow-on studies.  The follow-on studies all had control groups and all failed, because (in fact) that result is pretty normal for the honeymoon period without any treatment at all.  With the TrialNet information, researchers do not waste their time following up these "normal, but we didn't know it was normal" results.  Also, there is now much more and much better information on what should be expected during the honeymoon period, which is a very stressful time for everyone involved.
 
Second, showing that a person who tests positive for two autoantibodies would later develop T1D in nearly all cases.   This process might take up to 10 years, but it would eventually happen.  Without TrialNet we would not know how number of autoantibodies related to chance of being diagnosed with T1D, or how long it would take on average.  The whole idea of using number of autoantibodies to predict chances of being diagnosed with T1D is based on TrialNet data.

I know that many people are unhappy with this knowledge, especially when their kids test positive for those first two autoantibodies.  However, this knowledge has opened up a wide range of research to try and prevent this diagnoses which would never have been possible without it.

Third,  Teplizumab, which I've blogged on before:
TrialNet did the earliest research into Teplizumab, and they continued researching Teplizumab even when clinical trials run by commercial companies were unsuccessful.  This dogged determination led directly to Teplizumab's current status. In November 2020, Teplizumab was submitted for marketing approval by the FDA for preventing or delaying the onset of T1D when given to people at-risk of the disease.  (Obviously, I'll blog if it is approved.)  If approved it will be a huge breakthrough: the first treatment to delay the onset of T1D.  More than that, the first treatment to change the immune reaction which causes T1D.  First treatments are rarely perfect, but even if not perfect, they often point the way to better treatments, and TrialNet was key to Teplizumab's research success.

Current Research

List of TrialNet's honeymoon research:
    http://www.trialnet.org/our-research/newly-diagnosed-t1d
List of TrialNet's at-risk research:  

In addition to TOPPLE T1D, which is for adults within 4 years of clinical diagnosis, TrialNet is
also running trials on Abatacept and Hydroxychloroquine (HCQ) for at-risk individuals.  In the past, TrialNet and has run multiple trials in honeymooners, most recently on ATG/GCSF, and also run two and oral insulin trials in people at risk of T1D.

By far the largest research project is TrialNet’s Pathway to Prevention which is focused on Risk Screening and Monitoring.  These are cooperative large scale monitoring trials, involving tens of thousands of people.  Relatives of people with T1D are tested for autoantibodies, and then monitored or enrolled in prevention trials if autoantibodies are found.  If they develop T1D, its progression is followed through the LIFT study. TrialNet's prevention studies are open to anyone who has  autoantibodies, no matter if they have relatives with T1D or not.

In the past, I know that some people did not want to participate in risk screening style research, because they "didn't want to know if there was nothing they could do".  However, that thinking is now out of date.  Because of several clinical studies underway to prevent or delay T1D, there now is something you can do, if you know ahead of time.  Furthermore, if Teplizumab is approved, then there will be a treatment available to delay the onset of T1D.

Also, these risk screening projects have been critical to learning how T1D naturally progresses, and also to finding people to participate in the more specific prevention and delay studies mentioned above.  So participants are helping to move forward important parts of T1D research, no matter how much they personally benefit during the study.

A final word about terminology: TrialNet uses a four stage timeline of T1D progression described here:
The basic summary is that stages 1 and 2 are people who have two or more autoantibodies [definition], but no symptoms that a patient would notice.  Stage 3 is honeymoon, and stage 4 is established type-1 diabetes.  However, this is not the terminology used (or understood) by most people effected by T1D, which is why I use more informal terminology: "at-risk" meaning people with 2 or more antibodies, but no symptoms (stage 1 and 2 in TrialNet terminology), and then "honeymoon" for stage 3 and "established" for stage 4.

More Reading


Joshua Levy
http://cureresearch4type1diabetes.blogspot.com
publicjoshualevy at gmail dot com
All the views expressed here are those of Joshua Levy, and nothing here is official JDRF or JDCA news, views, policies or opinions. My daughter has type-1 diabetes and participates in clinical trials, which might be discussed here. My blog contains a more complete non-conflict of interest statement. Thanks to everyone who helps with the blog.

Monday, November 16, 2020

Diversity, Inclusion and Equality (In T1D Research)

I think it is important that we all support the Black Lives Matter movement in whatever we do.  This posting harnesses my knowledge of type-1 diabetes research to discuss how we can overcome racism in type-1 diabetes research.
 
The first thing to understand is that there is racism in type-1 research and treatment (and the institution of medicine as a whole).  In this post, I'm going to focus on two areas:
  1. Under representation in clinical trials:  If a minority group is under represented in clinical trials, then they will be under helped by the medical progress that comes out of that research.  Clinical trials are the raw material from which medical progress emerges.  Fewer Black patients in clinical trials now results in worse outcomes in Black patients later, and this damage is done no matter why a minority group is under represented in research.

  2. Fewer doctor visits and less aggressive treatment by doctors:  The most important factor in good results from T1D treatment, is seeing your health care team often, and having a good therapeutic relationship with them.  If a patient doesn't visit, or doesn't trust their endocrinology team, then their long term health is going to suffer.  Again, it doesn't matter why someone sees an endo less often or why they have less trust.  If it happens, then it hurts. 

The Patients In Clinical Trials

I've reported on 100s of clinical trials over the last 12+ years.  They fall into two groups: the majority, which don't report the ethnic or racial makeup of the people who are enrolled, and a minority which do report, and show that Black and Hispanic patients are underrepresented.  Minority groups are enrolled as a much smaller percentage than their population percentage around the recruiting locations. 

The whole point of clinical trials is to test treatments on the same people who will eventually end up taking them.  The scientific phrase is "representative sample".   Therefore, if a study seriously under enrolls any group, that study is not medically effective in testing the treatment.  The question of why enrollment doesn't match population doesn't matter in terms of effectiveness of the study.  The study is failing its primary goal, regardless of "why". 

These are not new ideas.  In the end notes section, I discuss the 1979 Belmont Report, which laid the foundation (in the United States) of Justice as a basic requirement for human experiments.  It specifically required diversity of participation, so that everyone would benefit from medical research.  It is wrong to think that diversity requirements in clinical trials are a recent response or a modern sensitivity.  They are long standing requirements.

When I point this out, there are several defensive reactions that should be discussed.

"That doesn't really matter because human bodies react to T1D the same way, so we don't need to include Black Americans or Hispanic Americans to learn how to treat/cure them.  Diversity not really needed in clinical trials."

This is wrong for at least two reasons.  First, it is arrogant to say that T1D effects all racial and ethnic groups in the same way, to the point where we don't need to include the minority groups in studies.  Remember, this is not just saying that, so far as we know, all ethnic groups react to T1D the exact same way.  It is also saying that all future research will continue to show this, to the point where we don't even need to do the research in a way which would detect differences!  In addition to being arrogant, it is a profoundly unscientific attitude.

Second, a new drug is not just a physical treatment with possible side effects.  It is something that people will decide to use in a social context.  For example, a CGM device, which only comes in white, might be more comfortable for White people to wear.  The exact same device, but in black might have higher adoption rates by Black patients.  Testing that includes minorities might find that, but testing that doesn't include minorities will not.   Drugs have these kind of social issues as well.  A White kid may not care about taking an insulin needle to school.  However, a Black kid might need to consider the real danger of police over reaction to this exact same action (even if completely legal, and medically necessary).

"We don't discriminate when recruiting.  It's just that fewer minority patients take part in clinical trials."

This argument assumes that the only kind of discrimination is personal discrimination.  It assumes if the recruiting process is not explicitly racist, then there is no racism present at all. That is wrong because it ignores both historical racism and institutional racism.

But there is another problem here. This statement is about why there are fewer minorities in the study, and the "why" question doesn't matter in terms of effectiveness of the study.  What does matter is that large groups within the population are severely under represented.   As an example, if Hispanic patients are not enrolled in a clinical trial, the results will not be as useful to them as to the groups that were enrolled.  It is not just the results of that one study, but all future research based on that study will be less useful to the excluded group.  The question of why Hispanics (or any other minority) were under represented is helpful to fixing the problem, but it doesn't matter when measuring the size and importance of the problem. 

"We're in a White neighborhood, and there just aren't that many minorities near us."

First of all, as I've said above, it doesn't matter.  If you plan to publish a study that shows drug X has effect Y, and 90% of your participants are White, then you are really showing that drug X has effect Y in White people.  If that convention in writing titles were applied universally in scientific journal articles, the racism would be obvious.  The scientific process requires that the people you enroll represent the people you plan to treat.  There is no little footnote saying "if you work in an overwhelming White neighborhood then it's OK to test a drug on a non-representitive population". 

Also, this thinking assumes that location, as a cause of ethnic exclusion from studies, is an unsolvable act of nature.  It's not.  Researchers in a heavily White area can recruit at another site more convenient to minorities.  They can hire a shuttle, pay for transportation, hire minority recruiters, or advertise in specialty social media where minorities have a strong presence.  In short, they could spend extra effort to get a representative sampling of the whole American population.  In the past, spending less money to come out with results that were only applicable to Whites was an acceptable thing to do.  It shouldn't have been then, and it certainly isn't now.

Furthermore, the location of hospitals and clinics is often the result of systemic enduring racism, in many ways.  Rich philanthropists would build hospitals in their own neighborhoods.  Clinics and doctors would prefer to build in more wealthy areas with more people like themselves.  Even if made decades ago, these clinic location decisions skew research done today.   Of course, the existence of ethnic neighborhoods was often shaped by racism in housing, law, banking, policing, and society as a whole.

Managing Type 1 Diabetes

I don't think it is controversial to say that people with T1D have better outcomes when they see their endocrinology team more often, and have a good therapeutic relationship with that team.  A good relationship meaning that each side understands and trusts the other, etc.

Recent studies (both in ADA 2020 and previous ADA conferences) show very clearly that Black Americans with T1D visit their endo teams less often than other Americans, that their doctors suggest medical interventions less often, and that (generally) they trust their medical teams less. 

The results of these differences are less effective treatments, earlier and worse complications, and higher death rates.  Two recent studies showing worse results can be seen here, but there are dozens more:
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4533245/
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7207918/
The first included over 10,000 people and found racial differences even after adjusting for poverty.
The second, of 200+ people found racial differences even after adjusting for insurance coverage.

As before, there are several defensive reactions that should be discussed.
 
"That's just economics.  Black people are poorer than White people (on average) so they end up going to doctors less often for everything, not just T1D."
 
There are several ways to respond to this, but the first one that pops into my mind is: so what?  Sure relative wealth contributes to the issue, but the issue is caused by many different things, and the situation would be improved by improving any one of the causes.  The fact that poverty is part of the problem does not mean we should ignore the racist part of poverty.   We can, and should, try to fix all the problems, and if we can't or won't fix one (such as poverty), maybe that means we should try even harder to fix the others (like racism).
 
Second, this argument implies that poverty is not itself caused by racism.  Obviously, that is not true.  If there is one thing we have learned from all the recent videos of racism and of police brutality, it is that discrimination is alive and well and having a big impact in the day-to-day lives of people all over America.   We are now seeing videos where everyday people viciously discriminate against minorities by refusing them service, stopping them from walking down the street or delivering packages, calling the cops on them, assuming they are criminals, and many other forms of discrimination, including murder.  And if that is bad now, think what is was like a few decades ago!  It should be obvious to everyone that this kind of day-to-day interference in the lives of minorities is a major cause of poverty.  I don't think anyone should say "the cause is poverty not racism".  They should say "the cause is racism manifesting as poverty", or "the cause is racism and poverty".
 
Lastly, I want to repeat that many studies (including the two linked above) show bias even when poverty or insurance are taken into account.
 
"It's not the fault of the medical team, if Black patients do not see them as much as White patients."

One of the findings in this year's ADA conference was that medical professionals are less likely to recommend interventions to Black patients than to White patients.  Obviously, this has bad effects in type-1 management because it means that Black patients will (on average) have fewer tools to manage their type-1 diabetes.  But it also sends a message that seeing a doctor is less important.  After all, one of the reasons we see a doctor is to get recommendations for new equipment, so if your doctor tends not to give you those, then there is less reason to visit.  And for people who think "doctors don't do that any more" remember that habits are built in the past, so if doctors provided lower service to minorities 20 or 30 years ago, those same minorities are now deciding (as middle aged adults) to see their doctors less often or not at all.   And maybe bring their children in less often, because of their very real bad experiences from their own childhood.  Racist actions in the past cause racist results in the present via history, habit, stereotypes, "community knowledge" and in many other ways. 

Changing How I Report On Clinical Trials

I am convinced that the first step towards reducing racism in clinical trials is to measure and report on racism in clinical trials.  If a clinical trial is not including minorities, then it is contributing to racism in medicine, and if I report on the "results" of that trial without including the racial makeup of the study, then I am contributing to the racist result.
 
So, I'm going to change the way I report on clinical trials.  Starting now, for all Phase-II and later studies that I report on, I'm going to include information on the diversity of the patients enrolled in the study, and I'm going to specifically call out studies that don't report on the ethnic or racial make up of their patients at all.  I'm hoping that if science reporters in general do this, we will encourage researchers to report on the composition of their clinical trials and then actually improve that composition until it is representative of the general population where they do their research.

I don't think this is a big contribution, and I wish I could do more, but I can do this, so I will do it.  We all need to do what we can.  I'm also looking for more that I can do, so if you have suggestions in this regard, please do send them to me.

Measuring Progress To Decrease Racism

What should the racial or ethnic composition of the research population be?  I did not want to get sidetracked by this discussion above, so I'm putting it down here.  I focus mostly on studies in the US, and the participation of Black and Hispanic patients is so low that discussing what it should be often is used as a "red herring" to sidetrack the discussion.

But I think there are two good answers to this question.  One is to say that the makeup of all the studies done, taken together, should be the same as the makeup of the country as a whole.  The second is to say that the makeup of each study should be the same as the makeup of the area where the study is recruiting.  Area defined broadly.  I'm not talking about within 5 miles of the research site, but maybe 20 miles, or the entire metro area where the research site is located.   I think that both of these pieces of data should be reported on.
 
Every major funder of research (the FDA, NIH, JDRF, etc.) should report on the overall makeup of the patients in the clinical research they fund in the US.  This should be compared to the nation as a whole.  More regional funders (such as DRI, the Sansum Institute, etc.) should publish numbers and work towards matching the populations in their regions.
 
Finally, each trial should publish the makeup of their patients, and these should be compared to the recruitment area(s).  This is something that the JDRF, FDA, NIH, etc. could change immediately.  All they need to do is make a condition of funding, that the researchers publish the racial composition of their participants.  When that data is published, it will provide it's own pressure to fix the problems which cause it.
 
End Notes
 
Historical Note: In the United States, the idea that the whole population must be represented in clinical research has been well established (on paper) since the Belmont Report of the late 1970s.  This federal report is part of the chain of events which led to the Federal Policy for the Protection of Human Subjects: Nuremberg Code (1947), Helsinki Declaration (1964), Belmont Report (1979), and finally the Common Rule (1991).  It listed the three fundamental ethical principles for using any human subjects for research as:
  • Respect for persons: protecting the autonomy of all people and treating them with courtesy and respect and allowing for informed consent. Researchers must be truthful and conduct no deception;
  • Beneficence: the philosophy of "Do no harm" while maximizing benefits for the research project and minimizing risks to the research subjects; and
  • Justice: ensuring reasonable, non-exploitative, and well-considered procedures are administered fairly — the fair distribution of costs and benefits to potential research participants — and equally.

The principal of "Justice" required both that minority groups must not be targeted for potentially dangerous clinical trials, nor could they be ignored by potentially beneficial ones.   Since all clinical trials are potentially dangerous and potentially beneficial, minority groups should not be over or under represented. 

More reading: https://en.wikipedia.org/wiki/Belmont_Report and https://www.hhs.gov/ohrp/regulations-and-policy/belmont-report/read-the-belmont-report/index.html

View Point: This blog posting is very US-centric.  I'm a White American, and a software engineer working in Silicon Valley, and these set my social context.  My views on who is a minority and who is the majority doesn't cover the whole world, and the examples I use are American.  If you're reading this in most of the rest of the world, they may not make sense to you, and I'm sorry for that.  The basic messages I'm trying to get across are universal, even if the details do change in different regions. 

Personal Note: Racism's huge impact and wide effect was "brought home" for me when I was buying my house.  It had a covenant prohibiting "any non-Caucasian person" from owning it.   This covenant has been unenforceable since 1953, but is still part of the deed of the house, and there is no legal way to remove it.   These covenants used to be relatively common in California, especially for single family homes.  There are plenty of people alive today who's housing choices were limited by these racist covenants.  The banking, policing, and social impact lasted long past 1953.  More reading:
https://www.cnn.com/2020/02/15/us/racist-deeds-covenants/index.html

I will say that reading these racist housing covenants in a news article is horrible, but reading them in a document you are about to sign as part of buying a house, is even worse.  Even though they are completely unenforceable, it made me feel so dirty, so unclean, and to think of the lives they ruined.

Note on language: English is undergoing a change in how we refer to ethnic and racial groups.  Both terminology and capitalization are in a state of flux.  For this blog posting I have capitalized ethnic and racial descriptors, and used them as adjectives rather than nouns.  For example writing "White people" and not "Whites" or "whites".

Thanks to reviewers: As you might expect, this blog went through more review than is usual, and it has benefited from everyone who read it and gave me feedback.  I want to thank all the reviewers.


Joshua Levy
http://cureresearch4type1diabetes.blogspot.com
publicjoshualevy at gmail dot com
All the views expressed here are those of Joshua Levy, and nothing here is official JDRF or JDCA news, views, policies or opinions. My daughter has type-1 diabetes and participates in clinical trials, which might be discussed here. My blog contains a more complete non-conflict of interest statement. Thanks to everyone who helps with the blog.

Saturday, October 24, 2020

JDRF Funding for a Cure 2020

In the US, we are in the "Walking Season" when JDRF (Juvenile Diabetes Research Foundation) asks us to walk to raise money for a cure for type-1 diabetes. So I'd like to do my part, by reminding you all of how important JDRF is to the human trials of potential cures for T1D, which I track.

Let me give you the punch line up front: 71% of the treatments currently in human trials have been funded by JDRF. (And the number is 80% for the later phase trials!) This is a strong impact; one that any non-profit should be proud of.  Below is a list of all the treatments, grouped by phase, and separated into groups that JDRF has funded, and those JDRF has never funded.  This message is even more important this year, when JDRF's donations have dropped precipitously due to the COVID pandemic.  This year, more than previous years, it is important to continue to fund research aimed at type 1 diabetes.

In Processes To Submit For FDA Approval
Summary: currently there is 1 drug in process of being submitted to the US FDA for approval for sale, and it was funded by JDRF.
  • Teplizumab by Provention Bio (At Risk)
In the forth quarter of 2020, Provention Bio plans to submit Teplizumab for FDA approval.   This application will cover people who are "At Risk" (as described below) for T1D, and the aim will be to delay the onset of T1D by 2-3 years.

Phase-III Human Trials
Summary: currently there are 2 treatments in a phase-III clinical trials.  Both are funded by JDRF:
  • Oral Insulin (Preventative)
  • Teplizumab by Provention Bio 

Note: Teplizumab is listed separately here, because it is being tested separately for people with honeymoon type 1 diabetes.

Phase-II Human Trials
Summary: there are 21 trials in phase-II, and 17 of them have been funded by JDRF, while 4 have not. Here are the treatments that have been funded by JDRF:
  • AAT (Alpha-1 Antitrypsin) by Kamada 
  • ATG and GCSF by Haller at University of Florida (Established) 
  • Abatacept by Orban at Joslin Diabetes Center 
  • Abatacept by Skyler at University of Miami (Prevention) 
  • Aldesleukin (Proleukin) at Addenbrooke’s Hospital, Cambridge, UK 
  • Diamyd, Ibuprofen ("Advil"), and Vitamin D by Ludvigsson at Linköping University
  • Diamyd, Etanercep, and Vitamin D  by Ludvigsson at Linköping University
  • Diamyd and Vitamin D by Larsson at Lund University (Prevention)
  • Gleevec by Gitelman at UCSF 
  • Gluten Free Diet: Three Studies  (Preventative)
  • Stem Cell Educator by Zhao (Established) 
  • Tocilizumab by Greenbaum/Buckner at Benaroya Research Institute 
  • TOL-3021 by Bayhill Therapeutics 
  • TOL-3021 by Bayhill Therapeutics (Established) 
  • Umbilical Cord Blood Infusion by Haller at University of Florida 
  • Ustekinumab by University of British Columbia
  • Verapamil by Shalev/Ovalle at University of Alabama at Birmingham
Not funded by JDRF:
  • ATG and autotransplant by several research groups: Burt, Snarski, and Li 
  • Dual Stem Cell by Tan at Fuzhou General Hospital 
  • Stem Cells of Arabia (Established)
  • Vitamin D by Stephens at Nationwide Children's Hospital (Prevention)
Phase-II? Human Trials
Summary: there are 14 trials in phase-II?, and 8 of them have been funded by JDRF, while 6 have not. Here are the treatments that have been funded by JDRF:
  • Alpha Difluoromethylornithine (DFMO) by DiMeglio
  • GABA by Diamyd
  • Golimumab by Janssen
  • Golimumab by Greenbaum (Established)
  • Hydroxychloroquine by Greenbaum (At Risk)
  • Intranasal Insulin by Harrison at Melbourne Health (Prevention)
  • Iscalimab (CFZ533) by Novartis
  • Rituximab by Pescovitz at Indiana University
Not funded by JDRF:
  • Azithromycin by Forsander
  • Ladarixin by  Emanuele Bosi of Dompé Farmaceutici
  • Liraglutid (At Risk)
  • NNC0114-0006 and Liraglutide by Novo-Norsk
  • Rapamycin Vildagliptin Combo by IRCCS (Established)
  • Visbiome by Medical College of Wisconsin
Phase-I Human Trials
Summary: there are 18 trials in phase-I, and 12 of them are funded by JDRF, while 6 are not. Here is the list funded by JDRF:
  • AG019 and Teplizumab by ActoGeniX
  • Alefacept by TrialNet 
  • CGSF by Haller at University of Florida 
  • Golimumab by (At Risk)
  • MER3101 by Mercia (previously IBC-VS01 by Orban)
  • MonoPepT1De by Cardiff University
  • Mozobil by University of Alberta (Established)
  • MultiPepT1De (Multi Peptide Vaccine) by Powrie at King’s College London
  • Nasal insulin by Harrison at Melbourne Health (Prevention)
  • Tauroursodeoxycholic Acid (TUDCA) by Goland at Columbia University
  • Pro insulin peptide by Dayan at Cardiff University 
  • VC-01 by Viacyte (Established)
Not funded by JDRF:
  • AVT001 by Avotres
  • Baby Teeth Stem Cells by CAR-T Biotechnology
  • Gluten Free Diet by Carlsson at Lund University
  • Mesenchymal Stromal Cell by Carlsson at Uppsala University
  • Microvesicles (MVs) and Exosomes by Nassar at Sahel Teaching Hospital 
  • ProTrans by NextCell (Established)
Summary of all Trials
56 in total
40 funded by JDRF
So 71% of the human trials currently underway are funded (either directly or indirectly) by JDRF. Everyone who donates to JDRF should be proud of this huge impact; and everyone who works for JDRF or volunteers for it, should be doubly proud.

Just Looking at Trials on Established Type-1 Diabetics
9 of these treatments (16%) are being tested on people with established T1D.
Of these, 6 are funded by JDRF.
So 66% of the trials recruiting people with established T1D are funded by JDRF.

Compared to Last Year
In 2019 there were 56 treatments in clinical trials, in 2020 there are 56 (no change).
In 2019 there was 1 treatment in process of approval to sell, in 2020 there is 1 (no change).
In 2019 there was 2 treatment in Phase-III trials, in 2020 there are 2 (no change).
In 2019 there were 21 treatments in Phase-II trials, in 2020 there are 21 (no change).
In 2019 there were 14 treatments in Phase-II? trials, in 2020 there are 14 (no change).
In 2019 there were 18 treatments in Phase-I trials, in 2020 there are 18 (no change).
The fact that there were no changes at all from last year is discussed below.

A Little Discussion
The big break through from 2019 was that Provention Bio expected to submit Teplizumab for approval in 2020.  Their most recent press release says they are still on that schedule.  They expect to complete their application to the US FDA in the 4th quarter.  
 
This year was unusual in that the total numbers did not change.  That has never happened before.  The studies were not static, a few clinical trials were removed and a few were added, but the overall counts were remarkably consistent from 2019 to 2020.  This might be because the COVID pandemic has slowed down research, but it might also be something else, or just random chance.
 
The money that we all donate is the thing that is going to move more Phase-II studies into Phase-III studies, the Phase-I studies to Phase-II, create more Phase-I studies, and so on.  If you don't like where we are on research, donating money is the way to make it better.  And if you do like where we are, then money is the way to push these things forward into the market.  If you're worried about your money going to non-research, then you can do what I do: fill out the attached form or go to the following website and send it in with your donation: http://thejdca.org/good-giving-landing-page/  (Unfortunately I don't know how to do this for on-line donations.)


Notes on How Trials Are Grouped
 
The list above uses the following marks to show the nature of the treatments, and if one treatment is being tested in different populations, then it will be listed more than once.
Honeymoon: Most trials are done on people within the first year of diagnosis.  All the studies listed above which are not Established, At Risk, or Prevention are in this Honeymoon category.
Established: One or more trials are open to people who have had type-1 diabetes for over a year. 
At Risk: One or more trials are open to people who have 2 or more autoantibodies, but have not yet started showing symptoms of type-1 diabetes.
Prevention: This treatment is aimed at preventing type-1 diabetes, not curing it.
If a trial is not marked, then it is for people in the honeymoon (first year) of T1D.

I give an organization credit for funding a treatment if they funded it at any point in development; I don't limit it to the current trial. For example, JDRF is not funding the current trials for AAT, but they did fund earlier research into it, which helped it grow into human trials. I also include indirect funding of various kinds.  I also give credit if JDRF funds research through another organization.  For example, JDRF funds both nPOD and Immune Tolerance Network and so I give JDRF credit for clinical trials based on their work.

The Difference Between Phase-II and Phase-II? Trials
Phase-II trials are "classic" phase-II trials; they are done after a successful Phase-I trial in type-1 diabetes.  What I call Phase-II? trials are done on known safe treatments, so they don't need Phase-I trials, but have never been tested on type-1 diabetes before.  These Phase-II? trials might be Phase-II from the point of view of size and safety, but they are Phase-I in terms of effectiveness, so I'm putting them in their own category.
 
How I Count Trials for This Comparison
  • I mark the start of a research trial when the researchers start recruiting patients (and if there is any uncertainty, when the first patient is dosed). Some researchers talk about starting a trial when they submit the paper work, which is usually months earlier. 
  • For trials which use combinations of two or more different treatments, I give funding credit, if the organization in the past funded any component of a combination treatment, or if they are funding the current combined treatment. Also, I list experiments separately if they use at least one different drug. 
  • The ITN (Immune Tolerance Network) has JDRF as a major funder, so I count ITN as indirect JDRF funding. 
  • I have made no attempt to find out how much funding different organizations gave to different research. This would be next to impossible for long research programs, anyway. 
  • Funding of research is not my primary interest, so I don't spend a lot of time tracking down details in this area. I might be wrong on details. 
Some Specific Notes:
  • I only include intervention studies here, because those are the only type of study that the FDA will accept for the eventual approval of a new treatment.  
    • The PreventT1D study (Vitamin D and Omega-3s) is a "field study" so not included.
    • A Rotavirus Vaccine study which was published this year was a population based study, so also not included.
  • I've removed Dr. Faustman's BCG research from my list of potential cures, because it is no longer aimed at a cure.  For more information read this blog:
    https://cureresearch4type1diabetes.blogspot.com/2018/09/every-year-in-september-or-october-i.html and for even more details
    https://cureresearch4type1diabetes.blogspot.com/2018/07/dr-faustman-publishes-follow-on-bcg.html
  • Oral Insulin: This trial was a phase-III trial, meaning that it was large and designed to provide enough information so that, if successful, the treatment could be widely used. However, as it turned out, only part was successful, and that part was phase-II sized, so I don't think we will see widespread use based on this trial alone. You can think of this as a phase-III trial with phase-II results.
  • Serova's Cell Pouch and DRI's BioHub: These two clinical trials are both testing one piece of infrastructure which might be used later in a cure. They are testing a part of a potential cure. However, in both cases, the clinical trials being run now require immunosuppression for the rest of the patient's life, so I'm not counting them as testing a cure.
This is an update and extension to blog postings that I've made for the previous twelve years:
Please remember that my blog (and therefore this posting) covers research aimed at curing or preventing type-1 diabetes that is currently being tested in humans. There is a lot more research going on than is counted here.

Please think of this posting as being my personal "thank you" note to all the JDRF staff, volunteers, and everyone who donates money to research a cure for type-1 diabetes:
Thank You!

Finally, if you see any mistakes or oversights in this posting, please tell me! There is a lot of information packed into this small posting, and I've made mistakes in the past. 

Joshua Levy 
https://cureresearch4type1diabetes.blogspot.com 
publicjoshualevy at gmail dot com 
All the views expressed here are those of Joshua Levy, and nothing here is official JDRF or JDCA news, views, policies or opinions. My adult daughter has type-1 diabetes and participates in clinical trials, which might be discussed here. My blog contains a more complete non-conflict of interest statement. Thanks to everyone who helps with the blog.

Tuesday, February 5, 2019

How to find a clinical Trial (2019 Update)

The decision to join a clinical trial is a personal one, which I believe is best made between the person with type-1 diabetes (or parents) and their doctor.  However, I know that some type-1s don't have regular endocrinologists, and also some doctors don't tell their patients about available trials.  Therefore, I've put together this blog on how to find clinical trials, so that people with type-1 diabetes, who want to, can find trials to discuss with their medical team.

The web pages discussed below have a wide range of goals, so you will find trials aimed at curing, preventing, and treating type-1 diabetes, and also the complications caused by type-1 diabetes.  These trials also include many different methods: new drugs, new devices, diets, psychological treatments, surgeries, etc.

If you know of any web site useful to finding T1D studies, which is not on this list: please send it to me, so I can add it!

Web Sites That Search For Clinical Trials

JDRF has a good web page to find clinical trails based on age and location: https://www.jdrf.org/research/clinical-trials/
(This tool finds all type-1 diabetes studies, not just those funded by JDRF.)

There is also a blog created by Jennifer Schneider which has a great map to help you find type-1 clinical trials: https://type1trials.blogspot.com/ 
The map by itself is here:
https://www.google.com/maps/d/viewer?mid=1OL5RWPz-D1FiViGpxhAjqEEv2Q2Ck_n3&ll=45.137952951318496%2C-102.69609393571398&z=5

Using This Blog

When I blog about a new clinical trial, I usually link to their recruitment page, and include the names, emails, and phone numbers of the recruiters.  This information is usually with the first posting announcing that they have started recruiting.  I also include a link to the Clinical Trial Registry (often an "NCT" or "ISRCTN" number.  By following this link, you can often find even more information on the trial.  So you can search through this blog to find interesting clinical trials near you.

Other Organizations To Search

If you want to do more searching on your own, then you can check out the following web sites:

https://www.immunetolerance.org/patients/autoimmune-disease
The Immune Tolerance Network (ITN) is a very interesting organization, which I view as part of the "infrastructure" of diabetes research.  They help researchers organize and run clinical trials aimed at stopping autoimmune attack, and similar subjects within the immune system.  They cover research into type-1 diabetes, and also related autoimmune diseases.  At any one time, they usually have a dozen or so studies going on, and a couple are recruiting all the time.

Because ITN runs a network of doctors who cooperate in clinical trials, their trials often recruit at many different sites all over the US (and sometimes the world), so you have more chances to enroll.  Their studies are more likely to be available near you.

The ITN's Home Page: https://www.immunetolerance.org/

Official Clinical Trial Registries

All clinical trials should be registered at some official web site, so these are the largest and most diverse places to look for a study.  In general they contain a lot of information, but are clunky to use. They are more designed for research professionals, than random people looking for a trial.

You can search for phrases like "type-1" and "diabetes" and limit your search to studies that are recruiting right now, and even by location where they are recruiting.   Personally, I've found the JDRF site has the same information and is much easier for a patient or parent to use.  But the FDA site has more info, so if you find a trial using the JDRF site, you can look up the same trial on this site, and learn more about it.

http://www.clinicaltrials.gov
This is the official US FDA registration site for clinical trials.  It covers just about everything in the US, and many trials not done in the US are registered here as well.

http://www.who.int/trialsearch/
This is the United Nations's official registration site for clinical trials which covers the whole world.  Searching here will find trials registered in individual country's registry databases (all the sites listed in this section, plus many more).

https://www.clinicaltrialsregister.eu/ctr-search/search
This is the European Union's official registration site.

http://www.anzctr.org.au/BasicSearch.aspx
Australia and New Zealand

https://upload.umin.ac.jp/cgi-open-bin/ctr_e/index.cgi
Japan's clinical trial registry (in English).

Note: China has a clinical trial registry in English as well, but I could not get it to work:
http://chictr.org.cn/enIndex.aspx

Looking Near You

If you are near a major university or diabetes research center, you might want to "reach out" to them.  I know that UC San Francisco, Stanford, The Barbara Davis center at University of Denver, DRI (in Miami), University of Florida at Gainsville, the Joslin center and Harvard (both in Boston) are all doing multiple studies.

Google can help you find the recruiting web pages for these studies, by searching for the name of the University and following it with "endocrinology clinical trials".

Everyone Is Near The Web

Finally, If you are more a "do it yourself" person you might want to look at the Facebook group "Prevent Autoimmune Disorders".
https://www.facebook.com/groups/preventautoimmunedisorders/
This group is crowd sourcing a test of Vitamin-D and Fish Oils as a preventative.  You can read the information in this group, and decide weather or not to participate.

Joshua Levy 
http://cureresearch4type1diabetes.blogspot.com 
publicjoshualevy at gmail dot com 
All the views expressed here are those of Joshua Levy, and nothing here is official JDRF, JDCA, or Bigfoot Biomedical news, views, policies or opinions. In my day job, I work in software for Bigfoot Biomedical. My daughter has type-1 diabetes and participates in clinical trials, which might be discussed here. My blog contains a more complete non-conflict of interest statement. Thanks to everyone who helps with the blog.

Sunday, October 7, 2018

JDRF Funding for a Cure 2018

In the US, we are in the "Walking Season" when JDRF asks us to walk to raise money for a cure. So I'd like to do my part, by reminding you all of how important JDRF is to the human trials of potential cures for type-1 diabetes, which I track.

Let me give you the punch line up front: 69% of the treatments currently in human trials have been funded by JDRF. (And the number is 86% for the later phase trials.) This is a strong impact; one that any non-profit should be proud of.  Below is a list of all the treatments, grouped by phase, and separated into groups that JDRF has funded, and those JDRF has never funded.

Many of these treatments are being tested in more than one clinical trial.  For example, the "Polyclonal Tregs" treatment is running at least two trials, but since they are both testing the same treatment, it is only one item in the list. The list below uses the following marks to show the nature of the treatments:
    Established: One or more trials are open to people who have had type-1 diabetes for over a year.
    Presymptomatics: One or more trials are open to people who have 2 or more autoantibodies, but have not yet started showing symptoms of type-1 diabetes.
    Prevention: This treatment is aimed at preventing type-1 diabetes, not curing it.

I give an organization credit for funding a treatment if they funded it at any point in development; I don't limit it to the current trial. For example, JDRF is not funding the current trials for AAT, but they did fund earlier research into it, which helped it grow into human trials. I also include indirect funding of various kinds. The JDRF funds nPOD,  ITN, and several other organizations, so I include research done by these other groups as well.

The Difference Between Phase-II and Phase-II? Trials
Phase-II trials are "classic" phase-II trials; they are done after a successful Phase-I trial in type-1 diabetes.  What I call Phase-II? trials are done on known safe treatments, so they don't need Phase-I trials, but have never been tested on type-1 diabetes before.  These Phase-II? trials might be Phase-II from the point of view of size and safety, but they are Phase-I in terms of effectiveness, so I'm putting them in their own category.

Cures in Phase-III Human Trials
Summary: currently there is only one treatment in a phase-III clinical trial, and that is aimed at prevention.  It is funded by JDRF:
  • Oral Insulin (Preventative)
Cures in Phase-II Human Trials
Summary: there are 22 trials in phase-II, and 18 of them have been funded by JDRF, while 4 have not. Here are the treatments that have been funded by JDRF:
  • AAT (Alpha-1 Antitrypsin) by Kamada 
  • ATG and GCSF by Haller at University of Florida (Established) 
  • Abatacept by Orban at Joslin Diabetes Center 
  • Abatacept by Skyler at University of Miami (Prevention) 
  • Aldesleukin (Proleukin) at Addenbrooke’s Hospital, Cambridge, UK 
  • Diamyd, Ibuprofen ("Advil"), and Vitamin D by Ludvigsson at Linköping University
  • Diamyd, Etanercep, and Vitamin D  by Ludvigsson at Linköping University
  • Diamyd and Vitamin D by Larsson at Lund University (Prevention)
  • Gleevec by Gitelman at UCSF 
  • Gluten Free Diet: Three Studies  (Preventative)
  • Polyclonal Tregs by both Trzonkowski and Gitelman  
  • Stem Cell Educator by Zhao (Established) 
  • Teplizumab (AbATE study team) 
  • Teplizumab by Herold/Skyler/Rafkin (Prevention)
  • Tocilizumab by Greenbaum/Buckner at Benaroya Research Institute 
  • Umbilical Cord Blood Infusion by Haller at University of Florida 
  • Ustekinumab by University of British Columbia
  • Verapamil by Shalev/Ovalle at University of Alabama at Birmingham
Not funded by JDRF:
  • ATG and autotransplant by Burt, and also Snarski, and also Li 
  • Dual Stem Cell by Tan at Fuzhou General Hospital 
  • Stem Cells of Arabia (Established)
  • Vitamin D by Stephens at Nationwide Children's Hospital (Prevention)
Cures in Phase-II? Human Trials
Summary: there are 12 trials in phase-II, and 7 of them has been funded by JDRF, while 5 have not. Here are the treatments that have been funded by JDRF:
  • Alpha Difluoromethylornithine (DFMO) by DiMeglio
  • GABA by Diamyd
  • GNbAC1 by GeNeuro (Established)
  • Golimumab by Janssen
  • Golimumab by Greenbaum (Established)
  • Intranasal Insulin by Harrison at Melbourne Health (Prevention)
  • Rituximab by Pescovitz at Indiana University
Not funded by JDRF:
  • Albiglutide by GlaxoSmithKline
  • Ladarixin by  Emanuele Bosi of Dompé Farmaceutici
  • Liraglutid (Presymptomatics)
  • NNC0114-0006 and Liraglutide by Novo-Norsk
  • Rapamycin Vildagliptin Combo by IRCCS (Established)
Cures in Phase-I Human Trials
Summary: there are 24 trials in phase-I, and 15 of them are funded by JDRF, while 9 are not. Here is the list funded by JDRF:
  • Alefacept by TrialNet 
  • ßAir by Beta-O2's at Uppsala University Hospital in Sweden (Established) 
  • TOL-3021 by Bayhill Therapeutics (Established) 
  • CGSF by Haller at University of Florida 
  • Exsulin and Ustekinumab by Rosenberg at Jewish General Hospital, Canada (Established) 
  • Golimumab by (Presymptomatics)
  • IBC-VS01 by Orban at Joslin Diabetes Center  
  • Metformin by Littleford at The University of Exeter (Prevention)
  • MonoPepT1De by Cardiff University
  • Mozobil by University of Alberta (Established)
  • MultiPepT1De (Multi Peptide Vaccine) by Powrie at King’s College London
  • Nasal insulin by Harrison at Melbourne Health (Prevention)
  • Tauroursodeoxycholic Acid (TUDCA) by Goland at Columbia University
  • Pro insulin peptide by Dayan at Cardiff University 
  • VC-01 by Viacyte (Established)
Not funded by JDRF:
  • CGSF and autotransplant by Esmatjes at Hospital Clinic of Barcelona (Established) 
  • Encapsulated Islets at University clinical Hospital Saint-Luc (Established) 
  • Gluten Free Diet by Carlsson at Lund University
  • IMCY-0098 by Imcyte
  • Mesenchymal Stromal Cell by Carlsson at Uppsala University
  • Microvesicles (MVs) and Exosomes by Nassar at Sahel Teaching Hospital 
  • Monolayer Cellular Device (Established) 
  • ProTrans by NextCell (Established)
  • Substance P by Vanilloid Genetics at Hospital for Sick Children Toronto (Established)
    Summary of all Trials
    59 in total
    41 funded by JDRF
    So 69% of the human trials currently underway are funded (either directly or indirectly) by JDRF. Everyone who donates to JDRF should be proud of this huge impact; and everyone who works for JDRF or volunteers for it, should be doubly proud.

    Just Looking at Trials on Established Type-1 Diabetics
    16 of these treatments (27%) are being tested on established type-1 diabetics.
    Of these, 9 are funded by JDRF.
    So 56% of the trials recruiting established type-1 diabetics are funded by JDRF.

    Compared to Last Year
    In 2017 there were 55 treatments in clinical trials, in 2018 there are 59 (growth of 7%).
    In 2017 there was 1 treatment in Phase-III trials, in 2018 there is one (no change).
    In 2017 there were 22 treatments in Phase-II trials, in 2018 there are 22 (no change).
    In 2017 there were 8 treatments in Phase-II? trials, in 2018 there are 12 (growth of 50%).
    In 2017 there were 24 treatments in Phase-I trials, in 2018 there are 24 (no change).

    A Little Discussion
    This year there are no phase-III trials aimed at curing type-1 diabetes, and that's been true for many years.  Indeed, since I've tracked research, there has never been a phase-III trial aimed at people with established type-1.  Back in the 2000s, there were a couple aimed at curing honeymoon type-1, but none were successful, and none have started for years.

    That's discouraging, because it means we are a long way from a cure.  However, for me, it's a reason to donate.  Money is the thing that is going to move the Phase-II studies into Phase-III studies, and the Phase-I studies to Phase-II, create more Phase-I studies, and so on.  And if we think "nothing looks promising in the next few years, so I won't give money" that results in nothing looking promising in the future, either.  If you're worried about your money going to non-research, then you can do what I do: fill out the attached form or go to the following website and send it in with your donation:  http://thejdca.org/good-giving-landing-page/  (Unfortunately I don't know how to do this for on-line donations.)

    How I Count Trials for This Comparison
    • I give an organization credit for funding a cure if it funded that cure at any point in it's development cycle. 
    • I mark the start of a research trial when the researchers start recruiting patients (and if there is any uncertainty, when the first patient is dosed). Some researchers talk about starting a trial when they submit the paper work, which is usually months earlier. 
    • If there are different clinical trials aimed at proving effectiveness as a cure and as a preventative, or effectiveness in honeymooners and established diabetics, then those are counted separately. 
    • For trials which use combinations of two or more different treatments, I give funding credit, if the organization in the past funded any component of a combination treatment, or if they are funding the current combined treatment. Also, I list experiments separately if they use at least one different drug. 
    • The ITN (Immune Tolerance Network) has JDRF as a major funder, so I count ITN as indirect JDRF funding. 
    • I have made no attempt to find out how much funding different organizations gave to different research. This would be next to impossible for long research programs, anyway. 
    • Funding of research is not my primary interest, so I don't spend a lot of time tracking down details in this area. I might be wrong on details. 
    • I use the term "US Gov" for all the different branches and organizations within the United States of America's federal government (so includes NIDDK, NIAID, NICHD, etc.) 
    • I don't work for the US Gov, JDRF, or any of the other organizations discussed here. I have a more complete non-conflict of interest statement on my web site. 
    Some Specific Notes:
    • GNbAC1 by GeNeuro used JDRF's nPOD project.
    • NextGen's ProTrans product is a form of Wharton's Jelly, and JDRF has funded related research into Wharton's Jelly, but has not funded this program specifically, so it is listed as non-JDRF.
    • I'm removing Dr. Faustman's BCG research from my list of potential cures.  For more information read this blog:
      https://cureresearch4type1diabetes.blogspot.com/2018/09/every-year-in-september-or-october-i.html and for even more details
      https://cureresearch4type1diabetes.blogspot.com/2018/07/dr-faustman-publishes-follow-on-bcg.html
    • Oral Insulin: This trial was a phase-III trial, meaning that it was large and designed to provide enough information so that if, if successful, the treatment could be widely used. However, as it turned out, only part was successful, and that part was phase-II sized, so I don't think we will see widespread use based on this trial alone. You can think of this as a phase-III trial with phase-II results.
    • Serova's Cell Pouch and DRI's BioHub: These two clinical trials are both testing one piece of infrastructure which might be used later in a cure. They are testing a part of a potential cure. However, in both cases, the clinical trials being run now require immunosuppression for the rest of the patient's life, so I'm not counting them as testing a cure.
    • Substance P at Hospital for Sick Children Toronto: This trial is avoiding the honeymoon period by testing for insulin production.  Patients must inject more than 1/2 unit/kg to be accepted, therefore they will accept recently diagnosed people, if they are injecting enough insulin to be passed the honeymoon.  I'm counting this as "Established".
    This is an update and extension to blog postings that I've made for the previous seven years:
    Please remember that my blog (and therefore this posting) covers research aimed at curing or preventing type-1 diabetes that is currently being tested in humans. There is a lot more research going on than is counted here.

    Please think of this posting as being my personal "thank you" note to all the JDRF staff, volunteers, and everyone who donates money to research a cure for type-1 diabetes:
    Thank You!

    Finally, if you see any mistakes or oversights in this posting, please tell me! There is a lot of information packed into this small posting, and I've made mistakes in the past.  As in previous years, I'll be at the Santa Clara (California) JDRF One Walk. New this year, I'll be part of the Bigfoot Team.  Come by and say "hi", or strike up a conversation about research.  I love to talk about research!

    Joshua Levy 
    https://cureresearch4type1diabetes.blogspot.com 
    publicjoshualevy at gmail dot com 
    All the views expressed here are those of Joshua Levy, and nothing here is official JDRF, JDCA, or Bigfoot Biomedical news, views, policies or opinions. In my day job, I work in software for Bigfoot Biomedical. My daughter has type-1 diabetes and participates in clinical trials, which might be discussed here. My blog contains a more complete non-conflict of interest statement. Thanks to everyone who helps with the blog.