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Modulatory effects of mesenchymal stem cells on microglia in ischemic stroke

Lei Hao, Yongtao Yang, Xiaoli Xu, Xiuming Guo, Zhan QunLing

2023Frontiers in Neurology26 citationsDOIOpen Access PDF

Abstract

Ischemic stroke accounts for 70–80% of all stroke cases. Immunity plays an important role in the pathophysiology of ischemic stroke. Microglia are the first line of defense in the central nervous system. Microglial functions are largely dependent on their pro-inflammatory (M1-like) or anti-inflammatory (M2-like) phenotype. Modulating neuroinflammation via targeting microglia polarization toward anti-inflammatory phenotype might be a novel treatment for ischemic stroke. Mesenchymal stem cells (MSC) and MSC-derived extracellular vesicles (MSC-EVs) have been demonstrated to modulate microglia activation and phenotype polarization. In this review, we summarize the physiological characteristics and functions of microglia in the healthy brain, the activation and polarization of microglia in stroke brain, the effects of MSC/MSC-EVs on the activation of MSC in vitro and in vivo , and possible underlying mechanisms, providing evidence for a possible novel therapeutics for the treatment of ischemic stroke.

Topics & Concepts

MicrogliaNeuroinflammationMesenchymal stem cellMedicineNeuroscienceStroke (engine)Central nervous systemPhenotypeInflammationImmunologyBiologyPathologyGeneBiochemistryMechanical engineeringEngineeringNeuroinflammation and Neurodegeneration MechanismsExtracellular vesicles in diseaseImmune cells in cancer
Modulatory effects of mesenchymal stem cells on microglia in ischemic stroke | Litcius