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Neural stem cell niche heterogeneity

期刊

SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY
卷 95, 期 -, 页码 42-53

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.semcdb.2019.01.005

关键词

Neural stem cell; Niche; Microenvironment; Maintenance; Plasticity

资金

  1. Instituto Serrapilheira [Serra-1708-15285]
  2. Pro-reitoria de Pesquisa/Universidade Federal de Minas Gerais (PRPq/UFMG)
  3. National Institute of Science and Technology in Theranostics and Nanobiotechnology (CNPq/CAPES/FAPEMIG) [465669/2014-0]
  4. FAPEMIG [Rede Mineira de Engenharia de Tecidos e Terapia Celular (REMETTEC)] [RED-00570-16]
  5. FAPEMIG [Rede De Pesquisa Em Doencas Infecciosas Humanas E Animais Do Estado De Minas Gerais] [RED-00313-16]
  6. National Institute of Health [1R01CA179072-01A1]
  7. American Cancer Society Mentored Research Scholar grant [124443-MRSG-13-121-01-CDD]

向作者/读者索取更多资源

In mammals, new neurons can be generated from neural stem cells in specific regions of the adult brain. Neural stem cells are characterized by their abilities to differentiate into all neural lineages and to self-renew. The specific microenvironments regulating neural stem cells, commonly referred to as neurogenic niches, comprise multiple cell populations whose precise contributions are under active current exploration. Understanding the cross-talk between neural stem cells and their niche components is essential for the development of therapies against neurological disorders in which neural stem cells function is altered. In this review, we describe and discuss recent studies that identified novel components in the neural stem cell niche. These discoveries bring new concepts to the field. Here, we evaluate these recent advances that change our understanding of the neural stem cell niche heterogeneity and its influence on neural stem cell function.

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