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Brain organoids: an ensemble of bioassays to investigate human neurodevelopment and disease

机译:脑器有机体:生物测定的集合,用于调查人类神经发育和疾病

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摘要

Understanding etiology of human neurological and psychiatric diseases is challenging. Genomic changes, protracted development, and histological features unique to human brain development limit the disease aspects that can be investigated using model organisms. Hence, in order to study phenotypes associated with human brain development, function, and disease, it is necessary to use alternative experimental systems that are accessible, ethically justified, and replicate human context. Human pluripotent stem cell (hPSC)-derived brain organoids offer such a system, which recapitulates features of early human neurodevelopment in vitro, including the generation, proliferation, and differentiation of neural progenitors into neurons and glial cells and the complex interactions among the diverse, emergent cell types of the developing brain in three-dimensions (3-D). In recent years, numerous brain organoid protocols and related techniques have been developed to recapitulate aspects of embryonic and fetal brain development in a reproducible and predictable manner. Altogether, these different organoid technologies provide distinct bioassays to unravel novel, disease-associated phenotypes and mechanisms. In this review, we summarize how the diverse brain organoid methods can be utilized to enhance our understanding of brain disorders. Facts
机译:了解人类神经和精神疾病的病因是一项挑战。基因组变化、长期发育和人脑发育特有的组织学特征限制了可以使用模式生物研究的疾病方面。因此,为了研究与人脑发育、功能和疾病相关的表型,有必要使用可访问的、伦理上合理的、复制人类环境的替代实验系统。人类多能干细胞(hPSC)衍生的脑类器官提供了这样一个系统,它概括了体外早期人类神经发育的特征,包括神经前体细胞的生成、增殖和分化为神经元和神经胶质细胞,以及发育中大脑中不同的新兴细胞类型在三维(3-D)中的复杂相互作用。近年来,许多脑类器官协议和相关技术已经被开发出来,以一种可重复和可预测的方式概括胚胎和胎儿大脑发育的各个方面。总之,这些不同的类有机物技术提供了不同的生物测试,以揭示新的、与疾病相关的表型和机制。在这篇综述中,我们总结了如何利用不同的大脑类器官方法来增强我们对大脑疾病的理解。事实

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