Mom's Story, A Child Learns About MS

Mom's Story, A Child Learns About MS
Available on Amazon and www.marynickum.com
Showing posts with label trial. Show all posts
Showing posts with label trial. Show all posts

Thursday, October 26, 2017

Results Announced from Phase 2 Clinical Trial of Ibudilast Suggest Reduction of Brain Atrophy (Shrinkage) in People with Progressive MS



SUMMARY
  • Top-line results were announced of a phase 2 clinical trial testing an oral anti-inflammatory therapy ibudilast (MN-166, MediciNova, Inc.) in people with progressive forms of MS.
  • The results announced in a press release concluded that ibudilast was well tolerated and significantly slowed the rate of brain atrophy compared to placebo. Brain atrophy (shrinkage) has been linked to cognitive and physical disability in MS.
  • The trial was conducted at the Cleveland Clinic and 27 other sites across the U.S., and involved 255 people with primary or secondary progressive MS.
  • The study was principally funded by NeuroNEXT Network, a clinical trials initiative of the National Institutes of Health, with additional support by MediciNova, the company that supplied ibudilast. The National MS Society also provided funding support.
  • Further details are schedule to be presented Saturday, October 28th at the MSParis2017 – 7th Joint ECTRIMS-ACTRIMS Meeting.
  • These phase 2 results may lead the way to the testing of ibudilast in larger phase 3 trial(s), which would be needed before the company could apply for marketing approval from the FDA, the European Medicines Agency or other regulatory agencies. Ibudilast was designated by the FDA as a “Fast Track Product” which could speed its future development as a possible treatment of progressive MS.

“These results sound like a very promising step toward a potential new therapy for people with progressive forms of MS, for whom there are few treatment options,” said Dr. Bruce Bebo, Executive Vice President, Research, National MS Society.

DETAILS
Background: Ibudilast (MN-166, MediciNova, Inc.) inhibits an enzyme called phosphodiesterase, resulting in suppression of inflammation. While considered a “New Molecular Entity” in the United States and Europe, ibudilast is marketed in Japan and Korea to treat cerebrovascular disorders and asthma. It is being also being investigated in the U.S. for its potential to treat ALS and drug addiction.

The study was principally funded by NeuroNEXT Network, a clinical trials initiative of the National Institutes of Health, with additional support by MediciNova, the company that will supply ibudilast. The National MS Society also provided funding support because of its focus on progressive MS and because the trial’s design may answer important questions about the best ways to measure the benefits of therapies aimed at protecting the nervous system from MS.

The study: The trial, known as “SPRINT-MS,” was led by Principal Investigator Robert Fox, M.D., M.S., FAAN, Staff Neurologist at the Mellen Center for Multiple Sclerosis at Cleveland Clinic. It was conducted at the Cleveland Clinic and 27 other sites across the U.S. The trial involved 255 people with primary or secondary progressive MS. The primary outcome measure was change in brain atrophy (as measured by an MRI analysis technique called brain parenchymal fraction) after 96 weeks.  Brain atrophy (shrinkage) has been linked to cognitive and physical disability in MS. Other imaging, safety, clinical and quality of life outcomes were also measured.

The results announced in a press release from MediciNova concluded that ibudilast was well tolerated and significantly slowed the rate of brain atrophy compared to placebo. Further details are schedule to be presented on Saturday, October 28th at the MSParis2017 – 7th Joint ECTRIMS-ACTRIMS Meeting.

What’s Next? These phase 2 results may lead the way to the testing of ibudilast in larger phase 3 trial(s), which would be needed before the company could apply for marketing approval from the FDA, the European Medicines Agency or other regulatory agencies. Ibudilast was designated by the U.S. Food and Drug Administration as a “Fast Track Product” which could speed its future development as a possible treatment of progressive MS.

Friday, August 25, 2017

Study Questions Influence of High-Salt Diet on MS



SUMMARY
  • Some recent studies have suggested that high intake of salt in the diet might influence MS disease activity and progression, but other studies have not confirmed that link.
  • In work partly funded by the National MS Society, researchers took advantage of data accumulated from a previous clinical trial involving 465 people with possible early signs of MS (CIS) whose salt levels in urine were measured over the course of 5 years.
  • They found no connection between salt intake and MS activity.
  • The study, “Sodium Intake and Multiple Sclerosis Activity and Progression in BENEFIT,” was published in the July 2017 issue of the Annals of Neurology (2017;82:20-29).
  • Although this study does not support a link between high-salt diets and MS disease activity, research suggests that most Americans eat more salt than is recommended by federal guidelines. Reducing dietary salt is considered by most to be beneficial to the heart and circulatory system. 
DETAILS
Background: Several recent studies have suggested that dietary salt (sodium chloride) could potentially influence MS disease activity and progression. For example, one study of 70 people with relapsing-remitting MS, who were followed for two years, found that higher levels of salt measured in urine samples were associated with a higher rate of relapses and larger brain MRI lesions. In addition, mice fed a high-salt diet developed a more aggressive course of EAE, a laboratory model of MS. But two studies in pediatric MS did not find a relationship between self-reported salt intake and MS risk or relapse rates. Resolving this question is important because it offers the possibility that reducing salt intake might improve a person’s overall health and their course of MS.

This Study: In work partly funded by the National MS Society, researchers set out to determine if a high-salt diet is associated with faster conversion from a first neurologic episode (known as clinically isolated syndrome or CIS) to a diagnosis of definite multiple sclerosis, or with MS disease activity. Kathryn C. Fitzgerald, ScD (Johns Hopkins School of Medicine), Alberto Ascherio, MD, DrPH (Harvard T. H. Chan School of Public Health) and colleagues took advantage of data accumulated from a previous clinical trial involving 465 participants who participated in a trial called BENEFIT (Betaferon/Betaseron in Newly Emerging Multiple Sclerosis for Initial Treatment) over 5 years. The trial compared benefits of giving interferon to individuals with CIS early versus later. Each person provided an average of 14 urine samples throughout the five-year follow-up. The researchers estimated average long-term sodium intake from the multiple urine samples, adjusting for age, sex, height, weight, where participants lived, and many other variables.

Results: Researchers found that neither average nor high urine sodium levels were associated with conversion to definite MS. They also weren’t associated with new MRI lesions at any point in the five years, relapse rates, or progression of disability. These results suggest that high sodium intake does not play a major role in influencing MS disease course or activity in people treated with interferon, at least in the early stages of the disease.

While the study has several strengths, including its length, large sample size, and systematic collection of data, it has limitations: BENEFIT participants were treated nearly uniformly with interferon, and the results may not apply to people on other therapies or no therapy. In addition, participants in the BENEFIT trial were primarily Caucasian and resided in Europe and Canada, and it isn’t known if similar results would apply to other populations and ethnicities. The results also don’t answer the question of whether salt intake affects the risk of developing MS in the first place.

The study, “Sodium Intake and Multiple Sclerosis Activity and Progression in BENEFIT,” was published in the July 2017 issue of the Annals of Neurology (2017;82:20-29).

Comment: Although this study does not support a link between high-salt intake and MS disease activity, research suggests that most Americans eat more salt than is recommended by federal guidelines. Even in the absence of direct evidence that MS immune activity is influenced by salt, reducing dietary salt is considered by most to be beneficial to the heart and circulatory system.

Read More: Diet, along with exercise, cognitive health, and other healthy behaviors can make a big difference to how you feel as you deal with MS. Learn more about living well with MS

Friday, July 28, 2017

Researchers Recruiting People with Primary Progressive MS for Genetics Studies – Key to finding treatment options



Primary progressive MS is characterized by steadily worsening neurologic function from the onset of the disease. There are still many gaps in the knowledge we have about what differentiates relapsing-remitting from primary progressive MS, and the underlying mechanisms of primary progressive MS. The MS Genetics Group at the University of California San Francisco is recruiting people with primary progressive MS for a research study involving a one-time blood sample donation with the goal of identifying genetic factors driving the course of the disease. The team also is looking for people without MS who are not related to serve as controls. The team hopes to identify the major genetic factors that play a role in disease presentation and progression. Please note: you do not have to be located in or travel to California to participate. Everything for the study can be done remotely and is free of charge to participants.

Rationale: Specific subtle variations in the human genome are known to play a role in determining who is susceptible to developing multiple sclerosis, and may also influence the course of the disease. People living with MS can make a difference in studies searching for these genes by donating their DNA with a blood sample. Identifying the exact location and role of MS genes could help determine who is at risk for developing the disease and can provide clues to its cause, prevention, and lead to better treatments.

Details: Once an individual has completed the initial online intake form, they will receive a call from the study coordinator to discuss details and answer any questions. The consent form and health information privacy form can be signed electronically. Participants will then be emailed a link to two additional short online surveys and sent a blood-collection kit. The kit includes everything necessary for the blood draw, which can be taken to your local Quest Diagnostics Lab and returned in a prepaid envelope to the lab at UCSF. There is no cost to participants.

Contact: To participate or request additional information, please complete a brief intake survey.
OR you may contact UCSF directly:
Clinical Research Coordinator
UCSF Multiple Sclerosis Genetic Susceptibility Project
675 Nelson Rising Lane, Suite 235A, Box 3206
San Francisco, CA 94158
Email: msdb@ucsf.edu
Toll Free Phone: 1-866-MS-Genes (1-866-674-3637) or Office Phone: (415) 502-7202

Sunday, June 18, 2017

New Research on Lemtrada Reveals Insights into the Cause of Potential Side Effects



Researchers in the U.K. have evaluated additional findings about the immune-system impacts of Lemtrada® (alemtuzimab, Sanofi Genzyme), a disease-modifying therapy for treating people with relapsing MS.
The team used data from phase 3 clinical trials submitted to the European Medicines Agency during the drug’s successful approval process. Some of this data was previously reported at medical meetings and in Lemtrada’s prescribing information.
Among their findings, they report that Lemtrada caused long-term reduction of specific immune cells (memory B and T cells, including regulatory T cells). They also found that the body rapidly repopulated an overabundance of immature B cells.
They propose that the blockade of memory B and T cells drives the beneficial effects of Lemtrada.  
They also speculate that the known potential side effect for autoimmune thyroid disease and other autoimmune disorders may be triggered by the overabundance of immature B cells that occurs when there are few regulatory T cells to keep them in check.
Studies like this one, which reveal more information about a therapy’s mode of action, are important and may also lead to insights about how to reduce side effects.
Drs. Klaus Schmierer, David Baker and others at the Queen Mary University of London report their findings in JAMA Neurology, published online June 12, 2017. 
Read the open-access paper in JAMA Neurology
Read about Lemtrada
Read more about treating MS

Lemtrada is a registered trademark of Sanofi Genzyme
 

Sunday, May 7, 2017

Interesting Results...

Gene That Boosts Resistance to Malaria linked to Susceptibility to MS and Lupus in Sardinia


Researchers from Italy found a strong association between the gene that instructs the molecule “BAFF” and susceptibility to MS and lupus in studies of nearly 6,000 people in Sardinia. The BAFF gene is crucial to activation of immune B cells and is also associated with resistance to malaria. Malaria was common in Sardinia until it was eradicated in 1950. The rates of MS and certain immune-mediated diseases are high in Sardinia. Further research is necessary to confirm whether this high rate is related to BAFF, and whether MS could be treated by a therapy that targets BAFF.

Read more about this study from the Genetic Literacy Project

Read the scientific summary of the paper in The New England Journal of Medicine

Read more about efforts to end MS forever
 
 

Novel Protein Identified Inside Cells During MS Inflammation May Help Explain Nerve Damage


Researchers from the University of Alberta in Canada report that levels of Rab32 – a protein that directs traffic between cell organs – are increased in sites of active inflammation in brain tissue obtained from people with MS and in mouse models of MS-like disease. This increase was linked to the destruction of nerve cells. If the results are confirmed, this knowledge could explain part of the neurodegenerative process that leads to progression of disability in MS and could be a target for development of effective MS treatments.

Read more on ReliaWire
Read the open access paper in Journal of Neuroinflammation
Read more about Research to stop MS in its tracks

Sunday, November 6, 2016

New research strengthens genetics, MS link



In a large-scale, genome-wide analysis of more than 110,000 samples, researchers identified 200 genetic loci associated with multiple sclerosis. The study authors said that while the research highlights the role of several different immune cells that contribute to the initiation of this inflammatory disease, the mechanisms that lead this inflammatory disease to target the brain and spinal cord remain unclear.
By comparing the genomes of people with and without MS, the researchers identified 200 variants that were significantly more common among those with the disease. Most of these variants implicate genes that are associated with immune cells and immune system function, including a few potentially specific to brain-related functions.
Interestingly, many of the genes identified were known to also be involved in other autoimmune diseases, such as rheumatoid arthritis, Type I diabetes, and ulcerative colitis. This raises intriguing questions about why these diseases target different organs and have different clinical manifestations.
The findings were presented at the American Society of Human Genetics (ASHG) 2016 annual meeting in Vancouver, B.C.

Saturday, October 1, 2016

World’s Largest MS Research Conference Highlights Advances in Progressive MS, Gut Microbiome, Managing Symptoms, and New Approaches to Restoring Function

Results from clinical trials, including new approaches to treating progressive MS, lifestyle and wellness research and myelin repair strategies were among more than 2,000 presentations made at the European Committee for Treatment and Research in MS (ECTRIMS) meeting held in London, England in September.
The world’s largest gathering of MS researchers convened more than 9,000 scientists and clinicians and industry representatives from across the globe, including many National MS Society-funded researchers, meeting and presenting on cutting-edge MS research progress. In addition, the European Rehabilitation in MS network met jointly with ECTRIMS this year.
During the conference, the International Progressive MS Alliance announced new investments of over $14 million US dollars to support three Collaborative Network Awards. These international teams were selected to accelerate the pace of research in key areas to speed new therapies for progressive MS.

Below are highlights of presentations focused on stopping MS, restoring function, and ending MS forever. In most cases, studies presented are considered preliminary. Many will be analyzed more thoroughly, and likely published in peer-reviewed journals.

STOPPING MS

Many presentations showed continued benefits of available therapies and longer-term safety information, as well as more evidence that early and ongoing treatment with a disease-modifying therapy has long-term benefits for controlling disease activity, delaying accumulation of disability, and protecting quality of life.

Siponimod in secondary progressive MS: More details were presented from a 60-month, phase 3 clinical trial of the experimental oral therapy siponimod (Novartis Pharmaceuticals AG) involving 1,651 people with secondary progressive MS. The trial met its primary endpoint, with those on active treatment showing a modest 21% reduced risk of disability progression compared to those on placebo. Secondary endpoints suggested that those on active therapy had 23.4% lower average change in brain volume and reduced MRI-detected lesion volume. The medication showed a similar safety profile to others that work by preventing white blood cells from entering the central nervous system. (Abstract #250)

More details from trial of lipoic acid in secondary progressive MS: Dr. Rebecca Spain and colleagues (Oregon Health & Science University) presented results from a small, controlled clinical trial on the oral anti-oxidant supplement called lipoic acid in people with secondary progressive MS. The lipoic acid group had 66% less brain tissue shrinkage, or atrophy, than the group taking inactive placebo pills. This pilot study suggests potential benefits if they hold up in a larger trial. (Abstract #222)

New results on gut bacteria: Efforts are advancing to pinpoint bacteria in the gut that may drive inflammatory immune system activity in MS and others that can suppress it, which may open the door to novel probiotic or other therapeutic approaches to treating MS.
  • Drs. Yan Wang, Lloyd Kasper and colleagues (Dartmouth Medical School and Eastern Washington University) reported that treating mice with the gut-related molecule called polysaccharide A (PSA) expanded a type of immune cells called “Regulatory B cells” (Bregs) which promote an immune response that prevents mice from getting MS-like disease. (Abstract #181) Members of this team also reported that PSA had positive effects in mice with progressive MS-like disease. (Abstract #P465
  • Dr. Sergio Baranzini (University of California, San Francisco) and other collaborators in the National MS Society-supported MS Microbiome Consortium are analyzing gut bacteria to unearth clues about MS susceptibility and progression. They analyzed bacteria in stool samples from 64 people with MS who had received treatment for MS, and 68 people without MS. Certain bacteria were increased in people with MS, and those bacteria increased immune cells (T helper 1 cells) that are major players in MS immune attacks. Another type of bacteria that could suppress the immune attack was reduced. (Abstract #179
Disappointing results for nerve-protection approaches: A small two-year clinical trial of fluoxetine (same compound as the anti-depressant Prozac) did not meet its goal of improving walking speed in people with progressive MS. The multi-center team from Belgium is still analyzing other results, such as changes in MRI and cognition. (Abstract #253) Likewise, a trial conducted at the University of Oxford tested the ability of amiloride to protect against nerve damage in people with acute optic neuritis (often an early sign of MS) failed to show any neuroprotective benefit. (Abstract #102) Additional trials of neuroprotective approaches to MS are ongoing.

Vitamin D deficiency and smoking linked to progression: Dr. Maria Isabel Zuluaga and team (Vall d’Hebron University, Barcelona) explored the independent impacts of smoking and vitamin D deficiency in a large group of people followed over time. They found that those with severe vitamin D deficiency (defined as blood levels at less than 8 ng/ml) showed an increased risk for MS disability, and active smokers also had an increased risk for disability progression. (Abstract #252) Graduate student Ms. Eva Rosa Petersen (Danish MS Center, Copenhagen) also found that smoking intensity was linked with higher frequency of relapses among people taking interferon beta. Smoking one pack of cigarettes per day increased relapse rates by 25%. (Abstract #178)

Vitamin D added to Rebif: A large international trial did not show a statistical difference between treatment groups after adding vitamin D (14,000 IU [350 µg] vitamin D3 daily) or placebo to Rebif therapy in relapsing MS, in terms of the percent of participants who were free from disease activity after 48 weeks. Dr. Raymond Hupperts (Orbis Medical Centre, Sittard-Geleen, The Netherlands), who presented results, noted that both groups were stable, which likely contributed to the inconclusive results. (Abstract #166)

Biomarkers under development: Teams are making headway toward having a simple test that can predict a person’s disease course, progression and response to therapy. Dr. Bibiana Bielekova (National Institute of Neurological Diseases and Stroke) and team examined proteins in the spinal fluid of people with neurological diseases, including all types of MS, and identified a “signature” of markers that distinguished MS from other diseases, and also differentiated relapsing MS from progressive MS. (Abstract #219). Other investigators also reported progress in this area, including advances using “neurofilament light chain” as a biomarker. (Such as Abstracts #183, #249) These early results need further development but indicate that  sensitive biomarkers for predicting disease course and response to therapy may become useful tools for the clinical management of MS.

RESTORING FUNCTION – WELLNESS, LIFESTYLE, SYMPTOMS

Home-based rehabilitation can work: With funding from the National MS Society, Dr. Gabriel Pardo (Oklahoma Medical Research Foundation) and colleagues compared the benefits of three approaches to rehabilitation for gait and balance in a small study: unsupervised home-based exercise 5 times/week; home-based exercise supervised remotely by a physical therapist 2-3 times per week via audio and visual conferencing; and home-based exercise plus in-person physical therapy 2-3 times/week. They found that all participants improved, and that the telerehabilitation program worked as well as the onsite program to improve gait and balance. Further research in larger trials could make telerehabilitation a cost-effective and more accessible alternative for people with MS. (Abstract #120)

Tackling fatigue: Dr. Vincent de Groot (VU University Medical Center, Amsterdam) reported results from three clinical trials testing different strategies over 16 weeks to lessen fatigue, in 90 people with MS: aerobic training, cognitive behavioral therapy, and energy conservation management. Only cognitive behavioral therapy effectively reduced severe fatigue in this short-term study. This is a commonly available type of psychotherapy. (Abstract #142) Read more about managing fatigue

Pain more common than previously reported: Dr. Carolyn Young (University of Liverpool) and colleagues found that nearly 66% of over 700 people with MS reported nerve pain. Higher levels were found in those who had MS for a longer time, had more severe disability, or were not working. (Abstract #P337Read more about addressing pain in MS

New trial confirms Ampyra (fampridine) benefits: Dr. Jeremy Hobart (Plymouth Hospitals NHS Trust) presented results from a large clinical trial of fampridine, a twice-a-day oral therapy that was previously approved for its ability to improve walking.. This trial wanted to show evidence that its benefits include meaningful functional improvements for people. The results over 6 months showed that 43% of those on active therapy had significantly better self-reported walking ability, mobility, and balance than those on placebo, with no new safety issues reported. (Abstract #254)

Cognitive rehabilitation enhances brain connections: Several studies showed that rehabilitation to improve cognition goes hand-in-hand with changes in brain connectivity (how areas of the brain interact). While many of these treatments are still experimental, some are available from rehabilitation specialists such as speech pathologists or neuropsychologists. Discuss options with your MS doctor:
  • Dr. Brian Sandroff (Kessler Foundation, West Orange, NJ) and colleagues showed that treadmill training improved information processing speed and brain connectivity in a small pilot study funded by the Society. (Abstract #P796
  • Dr. Pietro Iaffaldano (University of Bari, Italy) and colleagues showed that a home-based computerized training program that targeted specific cognitive issues improved overall cognitive function significantly more than a non-specific program. Also, those who had less function in certain brain areas showed greater improvement after cognitive training. (Abstract #145
  • Oiane Rilo (University of Deusto, Bilbao, Spain) and colleagues showed that a three-month, group-based cognitive rehabilitation program improved working memory, information processing speed, verbal memory and executive function (which is important in problem solving and planning), and altered brain connectivity. (Abstract #144)  
Emerging treatment for muscle spasticity: Dr. Daniel Kantor (Kantor Neurology, Ponte Vedra Beach, FL) and colleagues report that in a trial of 354 people with relapsing-remitting or secondary progressive MS, Arbaclofen Extended Release Tablets (Osmotica Pharmaceuticals) significantly reduced spasticity compared to baclofen. The extended-release tablets caused significantly less sleepiness, drowsiness and dizziness than baclofen. (Abstract #128) The company reports that it has filed for FDA approval of Arbaclofen.

RESTORING FUNCTION – NERVOUS SYSTEM REPAIR

More Anti-LINGO Results: In June 2016 Biogen announced that its phase 2 clinical trial of anti-LINGO (proposed name opicinumab), an approach to repair myelin, did not meet its primary endpoint of improvement in physical function, cognitive function, or disability. The trial involved 418 people with relapsing MS who were taking interferon beta-1a (Avonex) plus one of several doses of intravenous opicinumab or placebo for 72 weeks. Dr. Diego Cadavid from the company described ongoing evaluations from the extensive testing and monitoring during the trial, which are helping to pinpoint the patient population, dosage and outcome measures that would inform the design of any future trials of anti-LINGO.  (Abstract #192)

Myelin repair in pediatric and adult MS: Dr. Sabine Pfeifenbring (University of Göttingen, Germany) and an international team analyzed brain biopsies from children who had been diagnosed with MS and compared the extent of damage and natural myelin repair against those of adults with MS. They found that children showed less damage to myelin-making cells and more evidence of myelin repair than adults. However, some myelin repair was found to occur at virtually all ages in MS. (Abstract #194)

Exercise enhances myelin repair in mice: To investigate some reasons why exercise promotes benefits in people with MS, Drs. S. Jensen and Wee Yong (University of Calgary) did a study where mice with myelin damage in their spinal cords used running wheels soon after the injury. They reported finding more evidence of generation of myelin-making cells and myelin repair in the active mice than those that did not use the running wheels after injury. (Abstract: #P1210)

Emerging approaches to protection and repair:  Dr. Martin Sanders (Io therapeutics) presented results from mice suggesting that the compound IRX4204 promotes repair of damaged myelin in mice. He noted that previous studies suggested that IRX4204 also showed signs of reducing immune attacks and protecting against nerve loss. This work was supported in part by a National MS Society’s Fast Forward investment. (Abstract #193)

Drs. Sarah Starossom, Samia Khoury and team (Brigham and Women’s Hospital, Boston) reported on studies of Chi3l3, a naturally occurring molecule in the brain that can stimulate the transformation of resident stem cells into myelin-making cells. The team noted that it plays an important role in recovery from the MS-like disease in mice, and may have potential for development as a new treatment approach in MS. (Abstract #195)