The Molecular Basis for Remyelination Failure in Multiple Sclerosis

被引:77
作者
Gruchot, Joel [1 ]
Weyers, Vivien [1 ]
Goettle, Peter [1 ]
Foerster, Moritz [1 ]
Hartung, Hans-Peter [1 ]
Kuery, Patrick [1 ]
Kremer, David [1 ]
机构
[1] Heinrich Heine Univ, Med Fac, Dept Neurol, D-40225 Dusseldorf, Germany
关键词
multiple sclerosis; remyelination; oligodendroglial precursor cells; neural stem cells; microglia; NEURAL STEM-CELLS; SUBVENTRICULAR ZONE; PRECURSOR CELLS; OLIGODENDROCYTE DIFFERENTIATION; STEM/PROGENITOR CELLS; WHITE-MATTER; CORTICAL REMYELINATION; PROGENITOR CELLS; FATE DECISION; M2; MICROGLIA;
D O I
10.3390/cells8080825
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Myelin sheaths in the central nervous system (CNS) insulate axons and thereby allow saltatory nerve conduction, which is a prerequisite for complex brain function. Multiple sclerosis (MS), the most common inflammatory autoimmune disease of the CNS, leads to the destruction of myelin sheaths and the myelin-producing oligodendrocytes, thus leaving behind demyelinated axons prone to injury and degeneration. Clinically, this process manifests itself in significant neurological symptoms and disability. Resident oligodendroglial precursor cells (OPCs) and neural stem cells (NSCs) are present in the adult brain, and can differentiate into mature oligodendrocytes which then remyelinate the demyelinated axons. However, for multiple reasons, in MS the regenerative capacity of these cell populations diminishes significantly over time, ultimately leading to neurodegeneration, which currently remains untreatable. In addition, microglial cells, the resident innate immune cells of the CNS, can contribute further to inflammatory and degenerative axonal damage. Here, we review the molecular factors contributing to remyelination failure in MS by inhibiting OPC and NSC differentiation or modulating microglial behavior.
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页数:14
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