Beijing Institute of Basic Medical Sciences, Beijing, People's Republic of China.
Co-Innovation Center of Neuroregeneration, Nantong University, Nantong, People's Republic of China.
Stem Cells Dev. 2024 Jul;33(13-14):333-342. doi: 10.1089/scd.2024.0020. Epub 2024 Jun 11.
The proliferation of neural stem cells (NSCs) is precisely regulated by extracellular environmental factors. In situ hypoxia, one of the key factors involved in the regulation of NSC characteristics, has attracted increasing amounts of attention. Numerous studies have demonstrated that hypoxia can significantly promote the formation of neurospheres and the proliferation of NSCs in vitro and that intermittent hypoxia can promote the proliferation of endogenous NSCs in vivo. In this article, the effects of different concentrations of oxygen on NSC proliferation and differentiation both in vivo and in vitro are reviewed, and the potential applications of hypoxia-preconditioned NSCs, as well as research progress and challenges in the treatment of central nervous system diseases, are further summarized. Here, the critical role of oxygen in the neurogenesis of NSCs is emphasized, and insights into the use of hypoxia to regulate NSC characteristics are provided.
神经干细胞(NSCs)的增殖受到细胞外环境因素的精确调控。原位缺氧是调节 NSCs 特性的关键因素之一,越来越受到关注。大量研究表明,缺氧可显著促进体外神经球的形成和 NSCs 的增殖,间歇性缺氧可促进内源性 NSCs 在体内的增殖。本文综述了不同氧浓度对体内外 NSCs 增殖和分化的影响,进一步总结了缺氧预处理 NSCs 的潜在应用以及治疗中枢神经系统疾病的研究进展和挑战。文中强调了氧气在 NSCs 神经发生中的关键作用,并探讨了利用缺氧调节 NSCs 特性的方法。