Senolytic treatment diminishes microglia and decreases severity of experimental autoimmune encephalomyelitis
Sienna S Drake1, Aliyah Zaman1, Christine Gianfelice1
1Montréal Neurological Institute, McGill University, Montréal, Québec, Canada.
Background:
The role of senescence in disease contexts is complex, however there is considerable evidence that depletion of senescent cells improves outcomes in a variety of contexts particularly related to aging, cognition, and neurodegeneration. Much research has shown previously that inflammation can promote cellular senescence. Microglia are a central nervous system innate immune cell that undergo senescence with aging and during neurodegeneration. The contribution of senescent microglia to multiple sclerosis, an inflammatory neurodegenerative disease, is not clear, but microglia are strongly implicated in chronic active lesion pathology, tissue injury, and disease progression. Drugs that could specifically eliminate dysregulated microglia in multiple sclerosis are therefore of great interest to the field.
Results:
A single-cell analysis of brain tissue from mice subjected to experimental autoimmune encephalomyelitis (EAE), a mouse model of CNS inflammation that models aspects of multiple sclerosis (MS), identified microglia with a strong transcriptional signature of senescence including the presence of BCL2-family gene transcripts. Microglia expressing Bcl2l1 had higher expression of pro-inflammatory and senescence associated genes than their Bcl2l1 negative counterparts in EAE, suggesting they may exacerbate inflammation. Notably, in human single-nucleus sequencing from MS, BCL2L1 positive microglia were enriched in lesions with active inflammatory pathology, and likewise demonstrated increased expression of immune genes suggesting they may be proinflammatory and contribute to disease processes in chronic active lesions. Employing a small molecule BCL2-family inhibitor, Navitoclax (ABT-263), significantly reduced the presence of microglia and macrophages in the EAE spinal cord, suggesting that these cells can be targeted by senolytic treatment. ABT-263 treatment had a profound effect on EAE mice: decreasing motor symptom severity, improving visual acuity, promoting neuronal survival, and decreasing white matter inflammation.
Conclusion:
These results support the hypothesis that microglia and macrophages exhibit transcriptional features of cellular senescence in EAE and MS, and that microglia expressing Bcl2l1 demonstrate a proinflammatory signature that may exacerbate inflammation resulting in negative outcomes in neuroinflammatory disease. Depleting microglia and macrophages using a senolytic results in robust improvement in EAE disease severity, including across measures of neurodegeneration, inflammation, and demyelination, and may therefore represent a novel strategy to address disease progression in multiple sclerosis.
Insights
Targeting senescent microglia and macrophages with senolytic drugs shows promise for treating neuroinflammatory diseases like multiple sclerosis (MS). This approach reduced disease severity and improved outcomes in mouse models, suggesting a novel therapeutic strategy.
Area of Science:
- Neuroimmunology
- Cellular senescence
- Neuroinflammation
Background:
- Cellular senescence, particularly in microglia, is implicated in aging and neurodegeneration.
- Inflammation can promote cellular senescence, and microglia are key immune cells in the central nervous system.
- The role of senescent microglia in multiple sclerosis (MS) is unclear but they are linked to disease pathology.
Purpose of the Study:
- To investigate the presence and role of senescent microglia in experimental autoimmune encephalomyelitis (EAE), a model for MS.
- To determine if senescent microglia expressing BCL2-family genes contribute to neuroinflammation.
- To evaluate the therapeutic potential of targeting senescent microglia and macrophages in EAE.
Main Methods:
- Single-cell RNA sequencing of brain tissue from EAE mice and human MS samples.
- Analysis of microglia transcriptional signatures for senescence markers, including BCL2-family genes.
- Treatment of EAE mice with Navitoclax (ABT-263), a BCL2-family inhibitor, and assessment of disease outcomes.
Main Results:
- Senescent microglia with a pro-inflammatory signature, expressing Bcl2l1, were identified in EAE and MS lesions.
- BCL2L1-positive microglia were enriched in active MS lesions, suggesting a role in disease pathology.
- Navitoclax treatment reduced microglia/macrophage burden, improved motor and visual symptoms, promoted neuronal survival, and decreased inflammation in EAE mice.
Conclusions:
- Microglia and macrophages exhibit senescence features in EAE and MS, with Bcl2l1-expressing microglia showing a pro-inflammatory profile.
- Targeting senescent microglia and macrophages with senolytics significantly ameliorated EAE disease severity.
- Senolytic therapy represents a potential novel strategy for managing neuroinflammation and disease progression in multiple sclerosis.
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