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首页> 外文期刊>Nature Communications >Developmental GABA polarity switch and neuronal plasticity in Bioengineered Neuronal Organoids
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Developmental GABA polarity switch and neuronal plasticity in Bioengineered Neuronal Organoids

机译:生物工程神经元有机体的发育GABA极性开关和神经元塑性

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Brain organoids are promising tools for disease modeling and drug development. For proper neuronal network formation excitatory and inhibitory neurons as well as glia need to co-develop. Here, we report the directed self-organization of human induced pluripotent stem cells in a collagen hydrogel towards a highly interconnected neuronal network at a macroscale tissue format. Bioengineered Neuronal Organoids (BENOs) comprise interconnected excitatory and inhibitory neurons with supportive astrocytes and oligodendrocytes. Giant depolarizing potential (GDP)-like events observed in early BENO cultures mimic early network activity of the fetal brain. The observed GABA polarity switch and reduced GDPs in 40 day BENO indicate progressive neuronal network maturation. BENOs demonstrate expedited complex network burst development after two months and evidence for long-term potentiation. The similarity of structural and functional properties to the fetal brain may allow for the application of BENOs in studies of neuronal plasticity and modeling of disease.
机译:脑器有机体是疾病建模和药物开发的有希望的工具。对于适当的神经元网络形成兴奋性和抑制性神经元以及Glia需要共同发展。在这里,我们在宏观组织形式向高度互连的神经元网络报告人诱导的人诱导的多能干细胞的定向自组织。生物工程的神经元有机体(BenOs)包含互连的兴奋性和抑制性神经元,其具有支持性星形胶质细胞和少突胶质细胞。巨型去极化潜力(GDP)在早期Beno培养中观察到的胎儿脑的早期网络活性。观察到的GABA极性开关和减少的GDPS> 40天Beno表示逐步神经元网络成熟。班斯在两个月后展示加速复杂的网络爆发开发,并有条不紊地倾向。结构和功能性与胎儿脑的相似性可以允许在神经元塑性和疾病建模中应用BenOS。

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