Beta Cells Which Hide From The Immune System
No Results from A Phase-I Trial of Ustekinumab
You can read my previous blogging on this treatment here:
News and updates on potential cures for type-1 diabetes, that are in human (or clinical) trials.
Faecal Microbiota Transplantation (FMT) is a surgical procedure where stool is transferred from a healthy donor into the gastrointestinal tract (usually the colon) of the patient. The standard use is to treat people whose gut microbiota has been decimated by antibiotic treatment or who have a runaway Clostridioides difficile infection (commonly called "C. diff"). The goal is to seed the regrowth of a healthy microbiota. This is sometimes called "bacteriotherapy" or "fecal transplant".
Recently some researchers have thought that type 1 diabetes might be triggered or encouraged by something in the gut microbiota. I reviewed this theory (in the context of probiotics) a year ago:
https://cureresearch4type1diabetes.blogspot.com/2019/11/is-there-any-association-between-gut.html
The DIMID1 Study
This study enrolled 20 adults with T1D during their honeymoon phase (within 6 weeks of diagnosis). Half got transplants from healthy people, and half got transplants from themselves. Both groups went through the same procedures, but the second group got no new microbiota. Both groups got three procedures in the first four months, and were followed for a year. The exact times are marked with an arrow in the charts below. The primary results were C-peptide production (which measures the body's ability to generate insulin), and the secondary results were a wide variety of immunological, microbiota, and blood sugar control measurements.
This study was funded by the AMC Hospital several Dutch organizations. It ran from 2013 to 2017 in the Netherlands. The researchers did not report on the ethnic composition of the participants.
Results
The primary results are summarized below. The blue lines represent the people who got the a transplant from a healthy (non-T1D) donor and the red represents people who got a transplant from themselves. These are all people in their honeymoon phase, and you can see the "transplant from healthy" group C-peptide numbers drop (as expected from an untreated group) but the "transplant from self" group stays steady, which is better than expected. After a year the "transplant from self" group has not gotten worse, but the "transplant from healthy" group has, and the difference is statistically significant. The "C" results are for fasting (sometimes called "baseline") C-peptide generation, while the "D" results are for C-peptide generated in response to eating a meal.
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Journal article: https://gut.bmj.com/content/gutjnl/early/2020/10/25/gutjnl-2020-322630.full.pdf
Personal note: this article is very well written, and easy to read. The authors often describe why they chose to do one thing rather than another, so it is very informative. People who want to understand why the gut microbiota might effect T1D can read the introduction for a quick, easy to understand justification.
Clinical trial registry: https://www.trialregister.nl/trial/3542
Discussion
Remembering that C-peptide is a measure of the body's ability to generate insulin, people who got the "transplant from self" treatment in their honeymoon phase did not deteriorate (in terms of generated C-peptide) over the next year. Those who got the "transplant from healthy" treatment lost their ability to generate insulin (as would be expected over the course of the honeymoon).
But, what does this mean? Is it important? Will it lead to a cure? These are the open questions. When I started this blog, results like this made me optimistic. I thought that if a treatment could preserve beta cells in early testing, then as we learned more about it, later tests might show it increased beta cells and lead to a cure. However, that has not happened in any of the treatments which showed this result early on. Therefore, I'm no longer so positive about them.
My current thinking is that these results are more likely to grow into a delay or prevention rather than a cure. In particular, if this treatment had the same effect on people who were at-risk of T1D, as this study showed for people in the honeymoon phase, then it would naturally cause a delay. If prevention turns out to be the natural result of a long delay, then this treatment could become that as well. All that would be required is to see the same results seen here, but in at-risk people rather than honeymooners. Of course, we can still hope for it turning in a cure, but that is less likely.
One interesting point about this result, is that the good effect was seen in the "transplant from self" group, rather than the "transplant from healthy" group. It seems more likely that a transplantation from someone who did not have T1D would be beneficial while moving Microbiota around within the same person would not change anything. However, in fact, the reverse is seen. That is an odd result (at least to me) so I'm interested in seeing where it goes, if it goes anywhere.
The researchers wanted to include 34 people in their study (17 in each group). Unfortunately, they were not funded enough to do that, so they ended up with 20 people (10 in each group). Luckily, their results were strong enough to show up with the smaller numbers, but that is not often true. So this study shows the practical impact of less money for research: fewer subjects in each study, and more uncertainty in the outcomes because of that.
Other Research
Only one other clinical trial is testing FMT right now. It is a pilot study, enrolling 10 people:
https://www.clinicaltrials.gov/ct2/show/NCT04124211
There are several clinical trials using probiotics to try to improve a patient's T1D. This can be viewed as an alternate treatment to FMT, both of which are based on the same "gut based T1D" theory.
Joshua Levy
Glucose sensitive insulin refers to any insulin formulation which becomes more available as blood glucose levels rise, and less available as those levels drop. You can think of these insulins as self regulating or self dosing. A person would inject enough to last for a day or more, but the insulin would only be used by the body when glucose levels were high. A highly sensitive insulin could eliminate the need for measuring blood glucose levels and for determining insulin doses based on food, exercise, or anything else. That would transform T1D management to the same injection each day. In the same way people take high blood pressure medicine each day, a T1D could take glucose sensitive insulin each day, and otherwise ignore their T1D. If successful, this could lead to a "practical cure" even if the person still "had" T1D.
NN1845 is a glucose sensitive insulin under development by Novo Nordisk.
The Phase-I Clinical Trial
Officially, this is one clinical trial, but it is better to think of it as two separate clinical trials under one authorization. Both parts are focused on how NN1845 will act within the body (called pharmacology) and how safe it is. Each part is expected to gather data for 10 days, so this study can be done quickly. A total of 78 people will be enrolled.
The first part will give healthy people (people who do not have T1D) one dose of NN1845, to measure adverse effects (bad side effects), how their blood glucose changes over time, and what happens to the NN1845. Half the people in this group will get NN1845 and half will get a placebo.
The second part will give people with established T1D either one dose of NN1845 or one dose of insulin degludec (Tresiba®). Again the researchers will look for adverse effects (bad side effects), how their blood glucose changes over time, and what happens to the NN1845.
This study is recruiting at the Novo Nordisk Investigational Site in Mainz, Germany, 55116. The only contact information provided is an American phone number:
(+1) 866-867-7178 clinicaltrials@novonordisk.com
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.
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.
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
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.
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.
Note: Teplizumab is listed separately here, because it is being tested separately for people with honeymoon type 1 diabetes.
Here are three recent updates on Teplizumab. You can read my previous summary of this drug here:https://cureresearch4type1diabetes.blogspot.com/2019/09/teplizumab-phase-ii-results-for.htmland all my Teplizumab postings here:https://cureresearch4type1diabetes.blogspot.com/search/label/Teplizumab