Department of Biochemistry, University of Toronto, Toronto, Canada.
Donnelly Centre, University of Toronto, Toronto, Canada.
Life Sci Alliance. 2020 Apr 17;3(5). doi: 10.26508/lsa.202000707. Print 2020 May.
Human cerebral organoid (hCO) models offer the opportunity to understand fundamental processes underlying human-specific cortical development and pathophysiology in an experimentally tractable system. Although diverse methods to generate brain organoids have been developed, a major challenge has been the production of organoids with reproducible cell type heterogeneity and macroscopic morphology. Here, we have directly addressed this problem by establishing a robust production pipeline to generate morphologically consistent hCOs and achieve a success rate of >80%. These hCOs include both a radial glial stem cell compartment and electrophysiologically competent mature neurons. Moreover, we show using immunofluorescence microscopy and single-cell profiling that individual organoids display reproducible cell type compositions that are conserved upon extended culture. We expect that application of this method will provide new insights into brain development and disease processes.
人类大脑类器官 (hCO) 模型为在可实验操作的系统中理解人类特有的皮质发育和病理生理学的基本过程提供了机会。尽管已经开发出多种生成大脑类器官的方法,但一个主要挑战是生产具有可重复的细胞类型异质性和宏观形态的类器官。在这里,我们通过建立一个强大的生产管道来直接解决这个问题,该管道能够生成形态一致的 hCO,成功率超过 80%。这些 hCO 包括放射状胶质干细胞区室和电生理功能成熟的神经元。此外,我们通过免疫荧光显微镜和单细胞分析显示,单个类器官显示出可重复的细胞类型组成,并且在延长培养后保持不变。我们预计该方法的应用将为大脑发育和疾病过程提供新的见解。