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The Beauty and the Dish: Brain Organoids Go Active

机译:美丽和菜:脑器有机体致力于活跃

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摘要

Structural and transcriptional changes during early brain maturation follow fixed developmental programs defined by genetics. However, whether this is true for functional network activity remains unknown, primarily due to experimental inaccessibility of the initial stages of the living human brain. Here, we developed human cortical organoids that dynamically change cellular populations during maturation and exhibited consistent increases in electrical activity over the span of several months. The spontaneous network formation displayed periodic and regular oscillatory events that were dependent on glutamatergic and GABAergic signaling. The oscillatory activity transitioned to more spatiotemporally irregular patterns, and synchronous network events resembled features similar to those observed in preterm human electroencephalography. These results show that the development of structured network activity in a human neocortex model may follow stable genetic programming. Our approach provides opportunities for investigating and manipulating the role of network activity in the developing human cortex.
机译:早期脑成熟期间的结构和转录变化遵循遗传学定义的固定发育方案。然而,这对于功能网络活动是真实的,主要是由于活人脑初始阶段的实验性可接不性。在这里,我们开发了人皮质有机体,其在成熟过程中动态地改变细胞群,并且在几个月内表现出一致的电活动增加。自发网络形成显示周期性和常规振荡事件,这些事件依赖于谷氨酸和Gabaergic信号传导。振荡活性转变为更加稳定性的不规则模式,并且类似于在早产人脑电图中观察到的特征类似的特征。这些结果表明,人neocortex模型中结构化网络活动的发展可能遵循稳定的遗传编程。我们的方法为调查和操纵了网络活动在发展中的人皮层中的作用提供了机会。

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