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Published on: March 26, 2015
Senolytic treatment induces oligodendrocyte dysfunction and demyelination in the corpus callosum
Evan R Lombardo1, Robert S Pijewski1, Jake T Lustig1
1Department of Neuroscience, University of Connecticut School of Medicine, Farmington, CT 06030.
Abstract:
Aging is a primary risk factor for disease progression in multiple sclerosis (MS). Because of this, treatments that can reduce the consequences of molecular aging, like senescence, have been proposed as a strategy to address disease progression. However, the effects of senolytics, a class of drugs which selectively ablate senescent cells, on the central nervous system are largely unknown. Here, we examined the effects of senolytic treatment on myelination and oligodendrocyte function in vivo using C57BL6/J mice and in vitro using primary rat oligodendrocyte cultures. Initial data showed that naïve young (3 to 4 mo) and aged (22 mo) C57BL6/J mice treated with dasatinib and quercetin (D+Q) developed significant demyelination compared to vehicle-treated controls, though no cell death was observed in the brain. In vitro, oligodendrocyte progenitor cells treated with D+Q in differentiation media exhibited significantly reduced myelin basic protein protein and morphological complexity, also without inducing cell death. Bulk RNA sequencing and ingenuity pathway analysis of D+Q treated oligodendrocytes identified differentially expressed genes associated with endoplasmic reticulum stress. These data suggest that D+Q evokes the unfolded protein response in oligodendrocytes, causing oligodendrocyte dysfunction and myelination failure. Due to the resemblance between oligodendrocytes treated with D+Q and those found in MS lesions, D+Q treatment offers a potential method to model an aspect of oligodendrocyte dysfunction relevant to MS. Therefore, understanding the mechanism by which D+Q perturb oligodendrocyte function may provide insight into some of the pathological features contributing to disease progression in MS.
Insights
Senolytic drugs, like dasatinib and quercetin (D+Q), unexpectedly caused demyelination and oligodendrocyte dysfunction in mice and cell cultures. This suggests D+Q may model aspects of multiple sclerosis pathology.
Area of Science:
- Neuroscience
- Aging Research
- Pharmacology
Background:
- Aging exacerbates multiple sclerosis (MS) progression.
- Senolytics, drugs targeting senescent cells, are explored for aging-related diseases.
- Central nervous system effects of senolytics remain largely uncharacterized.
Purpose of the Study:
- To investigate the impact of senolytic treatment on myelination and oligodendrocyte function.
- To explore senolytic drug effects in the central nervous system using in vivo and in vitro models.
Main Methods:
- Treatment of young and aged C57BL6/J mice with dasatinib and quercetin (D+Q).
- In vitro studies using primary rat oligodendrocyte cultures exposed to D+Q.
- Analysis of myelination, cell morphology, myelin basic protein expression, and gene expression (RNA sequencing).
Main Results:
- D+Q treatment led to significant demyelination in mice without causing brain cell death.
- Oligodendrocyte progenitor cells showed reduced myelin basic protein and morphological complexity in vitro.
- RNA sequencing revealed endoplasmic reticulum stress and unfolded protein response activation in D+Q-treated oligodendrocytes.
Conclusions:
- Senolytic treatment with D+Q induces oligodendrocyte dysfunction and myelination failure.
- The observed effects mimic oligodendrocyte dysfunction seen in MS lesions.
- D+Q may serve as a model to study MS-related oligodendrocyte pathology and disease progression.

