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Modeling Neurological Disorders in 3D Organoids Using Human-Derived Pluripotent Stem Cells

机译:使用人源多能干细胞建模3D细胞体中的神经障碍

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Modeling neurological disorders is challenging because they often have both endogenous and exogenous causes. Brain organoids consist of three-dimensional (3D) self-organizing brain tissue which increasingly is being used to model various aspects of brain development and disorders, such as the generation of neurons, neuronal migration, and functional networks. These organoids have been recognized as important in vitro tools to model developmental features of the brain, including neurological disorders, which can provide insights into the molecular mechanisms involved in those disorders. In this review, we describe recent advances in the generation of two-dimensional (2D), 3D, and blood-brain barrier models that were derived from induced pluripotent stem cells (iPSCs) and we discuss their advantages and limitations in modeling diseases, as well as explore the development of a vascularized and functional 3D model of brain processes. This review also examines the applications of brain organoids for modeling major neurodegenerative diseases and neurodevelopmental disorders.
机译:模拟神经系统障碍是挑战性的,因为它们通常具有内源性和外源性原因。脑器有机体由三维(3D)自组织脑组织组成,越来越多地用于模拟脑发育和疾病的各个方面,例如神经元,神经元迁移和功能网络的产生。这些有机体已被认为是重要的体外工具,以模拟大脑的发育特征,包括神经系统疾病,这可以提供对这些疾病所涉及的分子机制的见解。在本文中,我们描述了源自诱导多能干细胞(IPSC)的二维(2D),3D和血脑屏障模型的近期进步,我们讨论了模拟疾病的优缺点,如以及探索脑过程血管化和功能3D模型的发展。该审查还研究了脑器有机体对模拟主要神经变性疾病和神经发育性疾病的应用。

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