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Updated: Jun 22, 2025

Determining Immune System Suppression versus CNS Protection for Pharmacological Interventions in Autoimmune Demyelination
Published on: September 12, 2016
Corticosteroid-depending effects on peripheral immune cell subsets vary according to disease modifying strategies in
Lena Höpner1, Undine Proschmann1, Hernan Inojosa1
1Center of Clinical Neuroscience, Department of Neurology, Faculty of Medicine and University Hospital Carl Gustav Carus, Technical University Dresden, Dresden, Germany.
Background:
The primary treatment for acute relapses in multiple sclerosis (MS) is the intravenous administration of high-dose methylprednisolone (IVMP). However, the mechanisms through which corticosteroid treatment impacts acute neuroinflammation in people with MS (pwMS) remain not fully understood. In particular, the changes induced by glucocorticoids (GCs) on cells of the innate immune system and the differences between patients with distinct immunotherapies have received little attention to date.
Methods:
We conducted immunophenotyping using flow cytometry on peripheral blood mononuclear cells of pwMS who received IVMP treatment during a relapse. We compared the impact of an IVMP treatment on a broad variety of immune cell subsets within three groups: twelve patients who were treatment-naïve to disease modifying therapies (wDMT) to ten patients on platform therapies (PT) and eighteen patients on fingolimod therapy (FTY).
Results:
We observed pronounced interindividual short- and intermediate-term effects of IVMP on distinct immune cells subsets. In addition to the well-documented decrease in T-helper cells (Th cells), we detected significant alterations after the first IVMP infusion within the innate immune response among neutrophil, eosinophil and basophil granulocytes, monocytes and plasmacytoid dendritic cells (pDCs). When comparing patients wDMT to the PT and FTY cohorts, we found that IVMP had a similar impact on innate immune cells across all treatment groups. However, we did not observe a significant further decline in T lymphocyte counts during IVMP in patients with pre-existing lymphopenia under FTY treatment. Although T cell apoptosis is considered the main mechanism of action of GCs, patients with FTY still reported symptom improvement following IVMP treatment.
Conclusion:
In addition to T cell suppression, our data suggests that further immunoregulatory mechanisms of GC, particularly on cells of the innate immune response, are of greater significance than previously understood. Due to the regulation of the adaptive immune cells by DMTs, the impact of GC on these cells varies depending on the underlying DMT. Additional studies involving larger cohorts and cerebrospinal fluid samples are necessary to gain a deeper understanding of the immune response to GC in pwMS with different DMTs during relapse to define and explain differences in clinical response profiles.
Insights
High-dose methylprednisolone (IVMP) impacts innate immune cells in multiple sclerosis (MS) relapses. IVMP affects neutrophils, eosinophils, basophils, monocytes, and plasmacytoid dendritic cells similarly across different disease-modifying therapies.
Area of Science:
- Immunology
- Neuroscience
- Pharmacology
Background:
- Acute relapses in multiple sclerosis (MS) are primarily treated with intravenous high-dose methylprednisolone (IVMP).
- The precise mechanisms by which corticosteroids impact neuroinflammation in people with MS (pwMS) are not fully understood.
- Limited research exists on glucocorticoid (GC) effects on innate immune cells and variations across different immunotherapies.
Purpose of the Study:
- To investigate the impact of IVMP on diverse immune cell subsets in pwMS during relapse.
- To compare these effects across patient groups with different disease-modifying therapies (DMTs): treatment-naïve, platform therapies (PT), and fingolimod therapy (FTY).
Main Methods:
- Immunophenotyping using flow cytometry on peripheral blood mononuclear cells from pwMS undergoing IVMP treatment.
- Comparison of IVMP's effects on immune cell subsets across three patient cohorts: wDMT (n=12), PT (n=10), and FTY (n=18).
Main Results:
- IVMP demonstrated significant short- and intermediate-term effects on innate immune cells, including neutrophils, eosinophils, basophils, monocytes, and plasmacytoid dendritic cells (pDCs).
- These effects on innate immune cells were consistent across wDMT, PT, and FTY treatment groups.
- No significant further decline in T lymphocyte counts was observed during IVMP in FTY-treated patients with pre-existing lymphopenia, despite symptom improvement.
Conclusions:
- GCs exert immunoregulatory effects beyond T cell suppression, particularly on innate immune cells, which are more significant than previously recognized.
- The impact of GCs on adaptive immune cells is influenced by concurrent DMTs.
- Further research with larger cohorts and cerebrospinal fluid analysis is needed to fully elucidate GC immune responses in pwMS on various DMTs during relapse.
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