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人类脑类器官的复杂活动和短期可塑性与轴突相互连接。

Complex activity and short-term plasticity of human cerebral organoids reciprocally connected with axons.

机构信息

Institute of Industrial Science, The University of Tokyo, Meguro, Tokyo, 153-8505, Japan.

Institute for AI and Beyond, The University of Tokyo, Bunkyo, Tokyo, 113-8655, Japan.

出版信息

Nat Commun. 2024 Apr 10;15(1):2945. doi: 10.1038/s41467-024-46787-7.

Abstract

An inter-regional cortical tract is one of the most fundamental architectural motifs that integrates neural circuits to orchestrate and generate complex functions of the human brain. To understand the mechanistic significance of inter-regional projections on development of neural circuits, we investigated an in vitro neural tissue model for inter-regional connections, in which two cerebral organoids are connected with a bundle of reciprocally extended axons. The connected organoids produced more complex and intense oscillatory activity than conventional or directly fused cerebral organoids, suggesting the inter-organoid axonal connections enhance and support the complex network activity. In addition, optogenetic stimulation of the inter-organoid axon bundles could entrain the activity of the organoids and induce robust short-term plasticity of the macroscopic circuit. These results demonstrated that the projection axons could serve as a structural hub that boosts functionality of the organoid-circuits. This model could contribute to further investigation on development and functions of macroscopic neuronal circuits in vitro.

摘要

跨区域皮质束是整合神经回路以协调和产生人类大脑复杂功能的最基本结构基元之一。为了理解跨区域投射对神经回路发育的机制意义,我们研究了一种用于跨区域连接的体外神经组织模型,其中两个大脑类器官通过一束相互延伸的轴突连接。与传统的或直接融合的大脑类器官相比,连接的类器官产生了更复杂和更强烈的振荡活动,这表明类器官之间的轴突连接增强并支持复杂的网络活动。此外,对类器官间轴突束的光遗传学刺激可以使类器官的活动同步,并诱导宏观电路的强大短期可塑性。这些结果表明,投射轴突可以作为一个结构枢纽,增强类器官电路的功能。该模型有助于进一步研究体外宏观神经元回路的发育和功能。

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