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Stem cell models of human synapse development and degeneration

机译:人类突触开发和退化的干细胞模型

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Many brain disorders exhibit altered synapse formation in development or synapse loss with age. To understand the complexities of human synapse development and degeneration, scientists now engineer neurons and brain organoids from human-induced pluripotent stem cells (hIPSC). These hIPSC-derived brain models develop both excitatory and inhibitory synapses and functional synaptic activity. In this review, we address the ability of hIPSC-derived brain models to recapitulate synapse development and insights gained into the molecular mechanisms underlying synaptic alterations in neuronal disorders. We also discuss the potential for more accurate human brain models to advance our understanding of synapse development, degeneration, and therapeutic responses.
机译:许多脑疾病表现出改变的突触形成在开发或突触损失中随着年龄的增长。 为了了解人类突触开发和变性的复杂性,科学家现在从人诱导的多能干细胞(HIPSC)的工程师神经元和脑器有机体。 这些HIPSC衍生的脑模型开发了兴奋性和抑制突触和功能突触活动。 在这篇综述中,我们解决了HIPSC衍生的脑模型能够重新承载突触发育和洞察中所获得的突触机制潜在神经元疾病中所获得的能力。 我们还讨论了更准确的人类脑模型的潜力,以推进我们对康星发育,退化和治疗反应的理解。

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