4.5 Article

Myelin repair strategies: a cellular view

期刊

CURRENT OPINION IN NEUROLOGY
卷 21, 期 3, 页码 278-283

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1097/WCO.0b013e3282fd1875

关键词

astrocytes; demyelination; multiple sclerosis; neural progenitors; oligodendrocytes; subventricular zone

资金

  1. NICHD NIH HHS [P30 HD040677, P30HD40677, P30 HD040677-08] Funding Source: Medline
  2. NINDS NIH HHS [R01NS045702, R01 NS045702-05, R01 NS039293-08, R01 NS056427, R01NS39293, R01NS1056427, R01 NS039293, R01 NS056427-03, R01 NS045702] Funding Source: Medline
  3. CSR NIH HHS [RG4019] Funding Source: Medline

向作者/读者索取更多资源

Purpose of review The development of successful myelin repair strategies depends on the detailed knowledge of the cellular and molecular processes underlying demyelination and remyelination in the central nervous system of animal models and in patients with multiple sclerosis (MS). Based on the complexity of the demyelination and remyelination processes, it should be expected that effective therapeutic approaches will require a combination of strategies for immunomodulation, neuroprotection, and myelin replacement. This brief review highlights recent cellular and molecular findings and indicates that future therapeutic strategies to enhance remyelination may also require combinatorial treatment to accomplish. Recent findings The relapsing-remitting course of some forms of multiple sclerosis has typically fueled hope for effective repair of multiple sclerosis lesions, if demyelinating activity could be attenuated. Recent findings support the potential of endogenous neural stem cells and progenitor cells to generate remyelinating oligodendrocytes. Importantly, interactions with viable axons and supportive astrocytic responses are required for endogenous immature cells to fulfill their potential remyelinating capacity. Summary The research described here will help in identifying the major obstacles to effective remyelination and potential therapeutic targets to guide development of comprehensive approaches for testing in animal models and eventual treatment of patients with multiple sclerosis.

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