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Rapid Induction of Cerebral Organoids From Human Induced Pluripotent Stem Cells Using a Chemically Defined Hydrogel and Defined Cell Culture Medium

机译:使用化学成分确定的水凝胶和成分确定的细胞培养基从人诱导的多能干细胞中快速诱导脑类生物体

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摘要

Tissue organoids are a promising technology that may accelerate development of the societal and NIH mandate for precision medicine. Here we describe a robust and simple method for generating cerebral organoids (cOrgs) from human pluripotent stem cells by using a chemically defined hydrogel material and chemically defined culture medium. By using no additional neural induction components, cOrgs appeared on the hydrogel surface within 10–14 days, and under static culture conditions, they attained sizes up to 3 mm in greatest dimension by day 28. Histologically, the organoids showed neural rosette and neural tube-like structures and evidence of early corticogenesis. Immunostaining and quantitative reverse-transcription polymerase chain reaction demonstrated protein and gene expression representative of forebrain, midbrain, and hindbrain development. Physiologic studies showed responses to glutamate and depolarization in many cells, consistent with neural behavior. The method of cerebral organoid generation described here facilitates access to this technology, enables scalable applications, and provides a potential pathway to translational applications where defined components are desirable.
机译:组织类器官是一种有前途的技术,可以加速精密医学的社会发展和NIH的要求。在这里,我们描述了一种通过使用化学定义的水凝胶材料和化学定义的培养基,从人多能干细胞中生成脑器官(cOrgs)的强大而简单的方法。通过不使用其他神经诱导成分,cOrgs会在10-14天之内出现在水凝胶表面,在静态培养条件下,到28天时它们的最大尺寸可达3 mm。组织学上,类器官显示出神经玫瑰花结和神经管。样结构和早期皮质发生的证据。免疫染色和定量逆转录聚合酶链反应显示出代表前脑,中脑和后脑发育的蛋白质和基因表达。生理研究表明,许多细胞对谷氨酸和去极化的反应与神经行为一致。这里描述的大脑类器官的生成方法促进了对这项技术的访问,实现了可扩展的应用程序,并为需要定义组件的翻译应用程序提供了潜在途径。

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