Skip to main content
News Icon

News categories: Publication

Unique immune signatures to distinguish MOGAD from MS

Myelin oligodendrocyte glycoprotein antibody-associated disease (MOGAD) is a rare autoimmune condition in which the body’s immune system mistakenly attacks the protective myelin sheath of nerve fibers in the central nervous system. Although MOGAD induces symptoms similar to multiple sclerosis (MS), its underlying biology appears to be fundamentally different. Understanding these distinctions is crucial for developing effective, disease-specific treatments. A new international study under contribution of ImmunoSensation2 member Prof. Anne-Katrin Pröbstel and her team now sheds light on these immune differences. The results have recently been published in Science Translational Medicine.

Myelin oligodendrocyte glycoprotein antibody–associated disease (MOGAD) is an autoimmune disease that shares symptoms with other demyelinating conditions, such as multiple sclerosis (MS). Like MS, MOGAD can cause inflammation of the optic nerve and spinal cord, potentially resulting in long-term disability. However, despite clinical similarities, MOGAD is driven by a distinct pathophysiology. This difference is thought to underlie the limited effectiveness of current immunomodulatory treatments that are otherwise used successfully in MS. Yet, studies exploring the underlying disease mechanisms have been scarce—until now.

Defining MOGAD as a distinct disease entity

A collaborative team of researchers from the Universities of Zurich, Munich, Toulouse, Lyon, Basel and Bonn has provided important new insights into the rare disease. The researchers performed detailed immune-cell profiling of MOGAD patients, comparing the results with data from individuals with MS and healthy controls. The analysis revealed striking differences across multiple immune-cell subsets, including natural killer (NK-), T-, and B-cells. These findings demonstrate that MOGAD is characterized by a unique immunological signature that sets it apart from MS and other neuroinflammatory diseases. “These findings support MOGAD as its own disease entity, distinct from other neuroinflammatory conditions such as MS,” explains Prof. Dr. Pröbstel, managing director of the Department of Neurology  at the University Hospital Bonn (UKB) and research group leader at the German Center for Neurodegenerative Diseases (DZNE).

Towards disease-specific treatment strategies

While MS therapies have long relied on broad immunomodulation, patients with MOGAD often respond poorly to these established treatments. Prof. Pröbstel and colleagues now provides a detailed map of the immune landscape in MOGAD, offering crucial clues for future therapeutic approaches. “Importantly, this work lays the foundation for hypothesis-driven research aimed at understanding MOGAD’s unique immunopathology and developing targeted therapies,” adds Prof. Pröbstel. By defining how immune cell populations differ between MOGAD and MS, the study paves the way for a more personalized approach to treating neuroinflammatory diseases. Before application in medical practice, the hypotheses developed on the basis of the profile data obtained must be validated in clinical studies.

Publication

Jonas Schmid et.al. (2025), Immune signatures link myelin oligodendrocyte glycoprotein antibody–associated disease to other autoantibody-mediated conditions, Science Translational Medicine, Vol 17, Issue 189, DOI: 10.1126/scitranslmed.adw0358

 

Contact

Prof. Dr. Anne-Katrin Pröbstel

Center for Neurology & Clinic for Neuroimmunology 

German Center for Neurodegenerative Diseases (DZNE)

Venusberg-Campus 1, 53127 Bonn

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
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
Bild

News categories: Publication

Focus on the Guardians of the Antibody Response

For the immune system to effectively combat pathogens, antibody responses must be precisely controlled. So-called follicular regulatory T cells (Tfr cells) play a key role in this process by limiting excessive immune responses and helping to maintain immune tolerance. Researchers at the University Hospital Bonn (UKB) and the University of Bonn have now developed a robust laboratory method that allows Tfr cells to be generated from precursor cells and studied in a targeted manner. The results were recently published in the journal Cellular & Molecular Immunology.
View entry

Back to the news overview