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探讨径向胶质细胞生物学和脑发育中的葡萄糖代谢。

Toward an understanding of glucose metabolism in radial glial biology and brain development.

机构信息

School of Biological and Health Systems Engineering, Arizona State University, Tempe, AZ, USA

https://ror.org/02r109517 Center for Neurogenetics, Brain and Mind Research Institute, Weill Cornell Medicine, New York, NY, USA

出版信息

Life Sci Alliance. 2023 Oct 5;7(1). doi: 10.26508/lsa.202302193. Print 2024 Jan.

Abstract

Decades of research have sought to determine the intrinsic and extrinsic mechanisms underpinning the regulation of neural progenitor maintenance and differentiation. A series of precise temporal transitions within progenitor cell populations generates all the appropriate neural cell types while maintaining a pool of self-renewing progenitors throughout embryogenesis. Recent technological advances have enabled us to gain new insights at the single-cell level, revealing an interplay between metabolic state and developmental progression that impacts the timing of proliferation and neurogenesis. This can have long-term consequences for the developing brain's neuronal specification, maturation state, and organization. Furthermore, these studies have highlighted the need to reassess the instructive role of glucose metabolism in determining progenitor cell division, differentiation, and fate. This review focuses on glucose metabolism (glycolysis) in cortical progenitor cells and the emerging focus on glycolysis during neurogenic transitions. Furthermore, we discuss how the field can learn from other biological systems to improve our understanding of the spatial and temporal changes in glycolysis in progenitors and evaluate functional neurological outcomes.

摘要

几十年来的研究一直致力于确定神经祖细胞维持和分化的内在和外在机制。在胚胎发生过程中,祖细胞群体内的一系列精确的时间转换产生了所有适当的神经细胞类型,同时保持了一个自我更新祖细胞池。最近的技术进步使我们能够在单细胞水平上获得新的见解,揭示了代谢状态和发育进展之间的相互作用,这影响了增殖和神经发生的时间。这可能对发育中大脑的神经元特化、成熟状态和组织产生长期影响。此外,这些研究强调了需要重新评估葡萄糖代谢在决定祖细胞分裂、分化和命运中的指导作用。这篇综述重点介绍了皮质祖细胞中的葡萄糖代谢(糖酵解)以及神经发生过程中糖酵解的新兴焦点。此外,我们还讨论了该领域如何从其他生物系统中学习,以提高我们对祖细胞中糖酵解的时空变化的理解,并评估其功能神经学结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d73/10556723/368472d0dd84/LSA-2023-02193_Fig1.jpg

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