Skip to main content
Authors
© University Hospital Bonn

The Gut as a Key Player in Immunotherapy for MS

B-cell depletion therapies, in which B cells of the immune system, which may drive disease activity in multiple sclerosis (MS), are temporarily removed, have contributed significantly to improved treatment for patients in recent years. Researchers from the University Hospital of Bonn (UKB), the Universities of Bonn, Basel, Toronto, and Yale, along with their collaborators, have uncovered a previously unknown mechanism through which B-cell depletion therapies contribute to a better disease course in patients with MS. Surprisingly, the treatment appears to exert part of its beneficial effect by mobilizing regulatory immune cells that naturally reside in the gut. This study has now been published in the journal Science Translational Medicine.

In multiple sclerosis (MS), the most common chronic inflammatory disease of the central nervous system, B cells, which are part of our immune system, mistakenly attack the protective sheath surrounding nerves, known as the myelin sheath. This role in the development and progression of MS has brought this type of white blood cell into focus as a therapeutic target. It is important to note that researchers now know that not all B cells are harmful in MS. In addition to disease-causing B cells, there are also beneficial B cells that, in accordance with their actual function, help regulate immune responses and may have a positive effect on the course of the disease. An international research team led by Prof. Anne-Katrin Pröbstel from the UKB, as well as from the Universities of Basel and Bonn and the German Center for Neurodegenerative Diseases (DZNE), investigated in the study how B-cell depletion therapies affect these protective B-cell populations.

To this end, the first authors, Dr. Tradite Neziraj and Dr. Elisabeth Pössnecker, analyzed immune cells from various tissues. To do so, they collected cells from the blood, cerebrospinal fluid, and intestinal mucosal tissue of in the study participating control subjects and B-cell-depleted MS patients and examined the collected cells for type and function. They observed that B-cell depletion therapy promoted the trafficking of beneficial B cells from the gut into the bloodstream and the central nervous system of people with MS.

 

Immunotherapy promotes cell migration from the gut

“Our research shows that B cell depletion changes the levels of factors that regulate B cells and is associated with an increased migration of protective gut-derived B cells,” explains Prof. Dr. Pröbstel, Managing Director of the Center for Neurology at the University Hospital Bonn (UKB), a member of the Cluster of Excellence ImmunoSensationat the University of Bonn, and research group leader at the DZNE. “Interestingly, higher levels of these B cell-regulating factors were linked to better outcomes in patients with MS.”The findings provide new insights into why B-cell depletion therapies are so effective. Rather than simply removing harmful immune cells, the treatment may also help recruit beneficial immune cells from the gut. This discovery opens up new possibilities for developing future therapies that harness beneficial gut immune cells in MS and other inflammatory diseases.

 

Collaborations and Funding

The study was conducted in collaboration with Université de Lausanne and UMC Amsterdam. The research team of Prof. Pröbstel received funding for the study from the Swiss Multiple Sclerosis Society (SMSG), the Propatient Stiftung of the University Hospital of Basel, the Fondation Pierre Mercier pour la Science, the National Multiple Sclerosis Society, the Swiss National Science Foundation, the State Secretariat for Education, Research an Innovation (SERI) under the European Union's Horizon 2020 research and innovation program grant and the German Research Foundation (DFG) as part of Germany’s Excellence Strategy. Dr. Neziraj received funding through an “Early Investigator Research Award” from the U.S. Department of Defense’s Multiple Sclerosis Research Program and a postdoctoral fellowship from the SNF.

 

Publication

 Tradite Neziraj, Elisabeth Pössnecker et al.: Anti-CD20 B cell depletion is associated with elevated mucosal-originating circulating regulatory IgA B cells in multiple sclerosis; Science Translational Medicine; DOI: https://doi.org/10.1126/scitranslmed.aee1580

 

Scientific contact

Prof. Dr. Anne-Katrin Pröbstel
Center for Neurology & Department of Neuroimmunology and Neuromuscular Diseases
University Hospital Bonn (UKB)
German Center for Neurodegenerative Diseases (DZNE)
Cluster of Excellence ImmunoSensation3 at the University of Bonn
Email: anne-katrin.proebstel@ukbonn.de

 

Related news

Dr. Ivana Jorgacevic und Prof. Dr. Rayk Behrendt have discovered that the inflammatory messenger substance interferon-alpha can trigger Sjögren's syndrome: The researchers in Bonn.

News categories: Publication

New test points to precision treatment for autoimmune condition

Interferon alpha is an inflammatory mediator that can cause Sjögren’s syndrome, an autoimmune disease. This is revealed in a recent study carried out by the University Hospital Bonn together with the University of Bonn, the University of Edinburgh and Newcastle University. Their findings, which have been published in the journal “Lancet Rheumatology,” could make it easier in the medium term to develop drugs to fight this chronic condition.
View entry
Prof. Dr. Elvira Mass (left) and Prof. Dr. Tatjana Tchumatchenko (right)

News categories: Honors & Funding

Hunting for New Angles

New research questions often arise where different methods, mindsets and subject-specific cultures meet, and it is these kinds of encounter that Professor Elvira Mass and Professor Tatjana Tchumatchenko want to make happen in a targeted way in future. The two researchers have been picked as Henriette Herz Scouts by the Alexander von Humboldt Foundation.
View entry
Precise Konsortium

News categories: Publication Honors & Funding

Making Cancer Cells More Predictable: PRECISE Aims to Forecast Therapeutically Actionable Vulnerabilities

Which genes and signaling pathways does a cancer cell require to survive? And which of these could serve as therapeutic targets? The pan-European initiative PRECISE aims to identify such vulnerabilities not only through labor-intensive laboratory experiments but also by predicting them using computational models. The UKB and the University of Bonn, represented by Prof. Dr. Maximilian Billmann and Prof. Dr. Jonathan Schmid-Burgk, are among the founding partners of the consortium. The scientific vision of the initiative has now been published in a commentary in Nature Genetics.
View entry

Back to the news overview