Ahmed Mai, Muffat Julien, Li Yun
Program in Developmental and Stem Cell Biology, The Hospital for Sick Children, Toronto, ON, Canada.
Program in Neurosciences and Mental Health, The Hospital for Sick Children, Toronto, ON, Canada.
Front Cell Dev Biol. 2023 Apr 10;11:1158373. doi: 10.3389/fcell.2023.1158373. eCollection 2023.
The brain is arguably the most complex part of the human body in form and function. Much remains unclear about the molecular mechanisms that regulate its normal and pathological physiology. This lack of knowledge largely stems from the inaccessible nature of the human brain, and the limitation of animal models. As a result, brain disorders are difficult to understand and even more difficult to treat. Recent advances in generating human pluripotent stem cells (hPSCs)-derived 2-dimensional (2D) and 3-dimensional (3D) neural cultures have provided an accessible system to model the human brain. Breakthroughs in gene editing technologies such as CRISPR/Cas9 further elevate the hPSCs into a genetically tractable experimental system. Powerful genetic screens, previously reserved for model organisms and transformed cell lines, can now be performed in human neural cells. Combined with the rapidly expanding single-cell genomics toolkit, these technological advances culminate to create an unprecedented opportunity to study the human brain using functional genomics. This review will summarize the current progress of applying CRISPR-based genetic screens in hPSCs-derived 2D neural cultures and 3D brain organoids. We will also evaluate the key technologies involved and discuss their related experimental considerations and future applications.
大脑可以说是人体在形态和功能上最为复杂的部分。关于调节其正常和病理生理学的分子机制,仍有许多不清楚的地方。这种知识的匮乏很大程度上源于人类大脑难以接近的特性以及动物模型的局限性。因此,脑部疾病难以理解,更难以治疗。最近在生成源自人类多能干细胞(hPSC)的二维(2D)和三维(3D)神经培养物方面取得的进展,提供了一个可用于模拟人类大脑的系统。诸如CRISPR/Cas9等基因编辑技术的突破,进一步将hPSC提升为一个可进行基因操作的实验系统。强大的基因筛选,以前仅限于模式生物和转化细胞系,现在可以在人类神经细胞中进行。结合迅速扩展的单细胞基因组学工具包,这些技术进步最终创造了一个前所未有的机会,利用功能基因组学来研究人类大脑。本综述将总结在源自hPSC的2D神经培养物和3D脑类器官中应用基于CRISPR的基因筛选的当前进展。我们还将评估所涉及的关键技术,并讨论它们相关的实验考虑因素和未来应用。