脂质代谢在神经干细胞调控中的作用。

Marlen Knobloch
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引用次数: 49

摘要

神经干细胞/祖细胞(NSPCs)在发育过程中产生数十亿个细胞,对大脑的正常形成至关重要。NSPCs在整个成年期持续存在的发现挑战了大脑再生能力差的观点,并为基于干细胞的再生疗法带来了希望。几十年来,人们一直在努力了解NSPC的需求及其调控,从而发现了许多可以影响NSPC行为和神经发生的转录因子和信号通路。然而,代谢在NSPC调控中的作用直到最近才引起人们的关注。特别是脂质代谢已被证明影响增殖和神经发生,为NSPC调节提供了令人兴奋的新的可能机制,因为脂质不仅是膜的组成部分,而且还可以作为替代能源和信号实体。在这里,我回顾了最近的文献研究在NSPC调节和神经发生中脂质代谢的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The Role of Lipid Metabolism for Neural Stem Cell Regulation.

Neural stem/progenitor cells (NSPCs) give rise to billions of cells during development and are critical for proper brain formation. The finding that NSPCs persist throughout adulthood has challenged the view that the brain has poor regenerative abilities and raised hope for stem cell-based regenerative therapies. For decades there has been a strong movement towards understanding the requirements of NSPCs and their regulation, resulting in the discovery of many transcription factors and signaling pathways that can influence NSPC behavior and neurogenesis. However, the role of metabolism for NSPC regulation has only gained attention recently. Lipid metabolism in particular has been shown to influence proliferation and neurogenesis, offering exciting new possible mechanisms of NSPC regulation, as lipids are not only the building blocks of membranes, but can also act as alternative energy sources and signaling entities. Here I review the recent literature examining the role of lipid metabolism for NSPC regulation and neurogenesis.

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