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通过定时提高组织氧张力塑造早期神经发育:来自人类大脑类器官多组学分析的见解

Shaping early neural development by timed elevated tissue oxygen tension: Insights from multiomic analysis on human cerebral organoids.

作者信息

Liu Yuan-Hsuan, Chung Meng-Ting, Lin Hsi-Chieh, Lee Tse-Ang, Cheng Ya-Jen, Huang Chien-Chang, Wu Hsiao-Mei, Tung Yi-Chung

机构信息

Research Center for Applied Sciences, Academia Sinica, Taipei, Taiwan.

Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan.

出版信息

Sci Adv. 2025 Mar 14;11(11):eado1164. doi: 10.1126/sciadv.ado1164. Epub 2025 Mar 12.

Abstract

Oxygen plays a critical role in early neural development in brains, particularly before establishment of complete vasculature; however, it has seldom been investigated due to technical limitations. This study uses an in vitro human cerebral organoid model with multiomic analysis, integrating advanced microscopies and single-cell RNA sequencing, to monitor tissue oxygen tension during neural development. Results reveal a key period between weeks 4 and 6 with elevated intra-organoid oxygen tension, altered energy homeostasis, and rapid neurogenesis within the organoids. The timed oxygen tension elevation can be suppressed by hypoxia treatment or silencing of neuroglobin gene. This study provides insights into the role of oxygen in early neurogenesis from functional, genotypic, phenotypic, and proteomic aspects. These findings highlight the significance of the timed tissue oxygen tension elevation in neurogenesis and provide insights into the role of neuroglobin in neural development, with potential implications for understanding neurodegenerative diseases and therapeutic strategies.

摘要

氧气在大脑早期神经发育中起着关键作用,尤其是在完整血管系统建立之前;然而,由于技术限制,这方面的研究很少。本研究使用具有多组学分析的体外人脑类器官模型,结合先进的显微镜技术和单细胞RNA测序,来监测神经发育过程中的组织氧张力。结果显示,在第4周和第6周之间存在一个关键时期,类器官内的氧张力升高,能量稳态改变,类器官内神经发生迅速。缺氧处理或神经球蛋白基因沉默可抑制这种定时的氧张力升高。本研究从功能、基因型、表型和蛋白质组学方面深入探讨了氧气在早期神经发生中的作用。这些发现突出了定时组织氧张力升高在神经发生中的重要性,并为神经球蛋白在神经发育中的作用提供了见解,对理解神经退行性疾病和治疗策略具有潜在意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7db2/11900884/bba8d49ee207/sciadv.ado1164-f1.jpg

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