Center for Immunity, Inflammation, and Regenerative Medicine (CIIR), Division of Nephrology, Department of Medicine, University of Virginia, Charlottesville, VA, USA.
School of Engineering, University of Virginia, Charlottesville, VA, USA.
Curr Stem Cell Res Ther. 2022;17(3):226-236. doi: 10.2174/1574888X16666210804113626.
The advent of organoids has renewed researchers' interest in in vitro cell culture systems. A wide variety of protocols, primarily utilizing pluripotent stem cells, are under development to improve organoid generation to mimic organ development. The complexity of organoids generated is greatly influenced based on the method used. Understanding the process of kidney organoid formation gives developmental insights into how renal cells form, mature, and interact with the adjacent cells to form specific spatiotemporal structural patterns. This knowledge can bridge the gaps in understanding in vivo renal developmental processes. Evaluating genetic and epigenetic signatures in specialized cell types can help interpret the molecular mechanisms governing cell fate. In addition, development in single-cell RNA sequencing, 3D bioprinting and microfluidic technologies has led to better identification and understanding of a variety of cell types during differentiation and designing of complex structures to mimic the conditions in vivo. While several reviews have highlighted the application of kidney organoids, there is no comprehensive review of various methodologies specifically focusing on kidney organoids. This review summarizes the updated differentiation methodologies, applications, and challenges associated with kidney organoids. Here we have comprehensively collated all the different variables influencing the organoid generation.
类器官的出现重新激发了研究人员对体外细胞培养系统的兴趣。目前正在开发各种方案,主要利用多能干细胞,以改善类器官的生成,模拟器官发育。生成的类器官的复杂性在很大程度上取决于所使用的方法。了解肾脏类器官形成的过程可以深入了解肾脏细胞如何形成、成熟以及与相邻细胞相互作用,形成特定的时空结构模式。这一知识可以弥合对体内肾脏发育过程理解的差距。评估特定细胞类型中的遗传和表观遗传特征有助于解释控制细胞命运的分子机制。此外,单细胞 RNA 测序、3D 生物打印和微流控技术的发展,使得在分化过程中更好地识别和理解各种细胞类型,并设计出能够模拟体内条件的复杂结构。虽然有几篇综述强调了肾脏类器官的应用,但没有全面综述专门针对肾脏类器官的各种方法。本综述总结了肾脏类器官的最新分化方法、应用和挑战。在这里,我们全面整理了影响类器官生成的所有不同变量。