4.3 Article

Gliotransmitters and cytokines in the control of blood-brain barrier permeability

期刊

REVIEWS IN THE NEUROSCIENCES
卷 29, 期 5, 页码 567-591

出版社

WALTER DE GRUYTER GMBH
DOI: 10.1515/revneuro-2017-0092

关键词

astrocyte; ATP; blood-brain barrier; cytokines; endothelium; glutamate; microglia; pericyte

资金

  1. Russian Ministry of Science and Education [12.1223.2017/AP, 10.13039/501100003443]
  2. Grants-in-Aid for Scientific Research [17K08276] Funding Source: KAKEN

向作者/读者索取更多资源

The contribution of astrocytes and microglia to the regulation of neuroplasticity or neurovascular unit (NVU) is based on the coordinated secretion of gliotransmitters and cytokines and the release and uptake of metabolites. Blood-brain barrier (BBB) integrity and angiogenesis are influenced by perivascular cells contacting with the abluminal side of brain microvessel endothelial cells (pericytes, astrocytes) or by immune cells existing (microglia) or invading the NVU (macrophages) under pathologic conditions. The release of gliotransmitters or cytokines by activated astroglial and microglial cells is provided by distinct mechanisms, affects intercellular communication, and results in the establishment of microenvironment controlling BBB permeability and neuroinflammation. Glial glutamate transporters and connexin and pannexin hemichannels working in the tight functional coupling with the purinergic system serve as promising molecular targets for manipulating the intercellular communications that control BBB permeability in brain pathologies associated with excessive angiogenesis, cerebrovascular remodeling, and BBB-mediated neuroinflammation. Substantial progress in deciphering the molecular mechanisms underlying the (patho)physiology of perivascular glia provides promising approaches to novel clinically relevant therapies for brain disorders. The present review summarizes the current understandings on the secretory machinery expressed in glial cells (glutamate transporters, connexin and pannexin hemichannels, exocytosis mechanisms, membrane-derived microvesicles, and inflammasomes) and the role of secreted gliotransmitters and cytokines in the regulation of NVU and BBB permeability in (patho) physiologic conditions.

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