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首页> 外文期刊>Cell Reports >Self-Organized Cerebral Organoids with Human-Specific Features Predict Effective Drugs to Combat Zika Virus Infection
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Self-Organized Cerebral Organoids with Human-Specific Features Predict Effective Drugs to Combat Zika Virus Infection

机译:具有人类特定特征的自组织脑类器官可预测对抗寨卡病毒感染的有效药物

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The human cerebral cortex possesses distinct structural and functional features that are not found in the lower species traditionally used to model brain development and disease. Accordingly, considerable attention has been placed on the development of methods to direct pluripotent stem cells to form human brain-like structures termed organoids. However, many organoid differentiation protocols are inefficient and display marked variability in their ability to recapitulate the three-dimensional architecture and course of neurogenesis in the developing human brain. Here, we describe optimized organoid culture methods that efficiently and reliably produce cortical and basal ganglia structures similar to those in the human fetal brain in vivo. Neurons within the organoids are functional and exhibit network-like activities. We further demonstrate the utility of this organoid system for modeling the teratogenic effects of Zika virus on the developing brain and identifying more susceptibility receptors and therapeutic compounds that can mitigate its destructive actions.
机译:人类的大脑皮层具有独特的结构和功能特征,而传统上用来模拟大脑发育和疾病的低等物种则没有。因此,已经将相当多的注意力放在指导多能干细胞形成称为类器官的人脑样结构的方法的开发上。但是,许多类器官分化协议效率低下,并且在概括人类大脑中三维结构和神经发生过程的能力方面显示出明显的可变性。在这里,我们描述了优化的类器官培养方法,该方法可高效可靠地产生与人类胎儿脑部体内相似的皮质和基底神经节结构。类器官中的神经元具有功能,并表现出类似网络的活动。我们进一步证明了该类器官系统的效用,可用于模拟寨卡病毒对发育中的大脑的致畸作用,并确定更多可减轻其破坏作用的易感性受体和治疗性化合物。

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