Amity Institute of Molecular Medicine & Stem Cell Research, Amity University, Noida, Uttar Pradesh 201313, India.
Amity Institute of Biotechnology, Amity University, Noida, Uttar Pradesh 201313, India.
Curr Pharm Des. 2021;27(19):2237-2251. doi: 10.2174/1381612826666201019104712.
Stem cell based toxicity prediction plays a very important role in the development of the drug. Unexpected adverse effects of the drugs during clinical trials are a major reason for the termination or withdrawal of drugs. Methods for predicting toxicity employ in vitro as well as in vivo models; however, the major drawback seen in the data derived from these animal models is the lack of extrapolation, owing to interspecies variations. Due to these limitations, researchers have been striving to develop more robust drug screening platforms based on stem cells. The application of stem cells based toxicity testing has opened up robust methods to study the impact of new chemical entities on not only specific cell types, but also organs. Pluripotent stem cells, as well as cells derived from them, can be evaluated for modulation of cell function in response to drugs. Moreover, the combination of state-of-the -art techniques such as tissue engineering and microfluidics to fabricate organ- on-a-chip, has led to assays which are amenable to high throughput screening to understand the adverse and toxic effects of chemicals and drugs. This review summarizes the important aspects of the establishment of the embryonic stem cell test (EST), use of stem cells, pluripotent, induced pluripotent stem cells and organoids for toxicity prediction and drug development.
基于干细胞的毒性预测在药物开发中起着非常重要的作用。药物在临床试验中出现意外的不良反应是药物终止或撤回的主要原因。毒性预测方法既采用体外模型也采用体内模型;然而,这些动物模型中得出的数据的主要缺点是由于物种间的差异,缺乏外推性。由于这些限制,研究人员一直在努力开发基于干细胞的更强大的药物筛选平台。基于干细胞的毒性测试的应用为研究新化学实体对不仅特定细胞类型而且对器官的影响提供了强大的方法。多能干细胞以及由其衍生的细胞可用于评估药物对细胞功能的调节作用。此外,将组织工程和微流控等最先进技术结合起来制造器官芯片,已经产生了适用于高通量筛选的测定法,以了解化学物质和药物的不良和毒性作用。本综述总结了建立胚胎干细胞测试(EST)、使用干细胞、多能性、诱导多能干细胞和类器官进行毒性预测和药物开发的重要方面。