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Astrocytes in the regulation of cerebrovascular functions

期刊

GLIA
卷 69, 期 4, 页码 817-841

出版社

WILEY
DOI: 10.1002/glia.23924

关键词

astrocyte; cerebrovascular system; gliovascular interface

资金

  1. Association Europeenne contre les Leucodystrophies
  2. Fondation ARC pour la Recherche sur le Cancer
  3. Fondation pour la Recherche Medicale [AJE20171039094, FDT201904008077]
  4. Fondation pour l'Aide a la Recherche sur la Sclerose en Plaques
  5. Gefluc
  6. Fondation Bettencourt Schueller
  7. Association de Recherche Contre la Sclerose en Plaques (ARSEP)
  8. ED3C Doctoral Student Program
  9. Fondation Line Pomaret Delalande [PLP20170939025]
  10. Fondation France Alzheimer

向作者/读者索取更多资源

Astrocytes play a crucial role in regulating the cerebrovascular system by controlling perivascular homeostasis, blood-brain barrier integrity, metabolite transfer, and blood vessel contractility in response to neuronal activity. Although research in this area is still in its early stages, there have been discussions on the role of astrocytes in the cerebrovascular system.
Astrocytes are the most numerous type of neuroglia in the brain and have a predominant influence on the cerebrovascular system; they control perivascular homeostasis, the integrity of the blood-brain barrier, the dialogue with the peripheral immune system, the transfer of metabolites from the blood, and blood vessel contractility in response to neuronal activity. These regulatory processes occur in a specialized interface composed of perivascular astrocyte extensions that almost completely cover the cerebral blood vessels. Scientists have only recently started to study how this interface is formed and how it influences cerebrovascular functions. Here, we review the literature on the astrocytes' role in the regulation of the cerebrovascular system. We cover the anatomy and development of the gliovascular interface, the known gliovascular functions, and molecular factors, the latter's implication in certain pathophysiological situations, and recent cutting-edge experimental tools developed to examine the astrocytes' role at the vascular interface. Finally, we highlight some open questions in this field of research.

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