Chaicharoenaudomrung Nipha, Kunhorm Phongsakorn, Noisa Parinya
Laboratory of Cell-Based Assays and Innovations, School of Biotechnology, Institute of Agricultural Technology, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand.
World J Stem Cells. 2019 Dec 26;11(12):1065-1083. doi: 10.4252/wjsc.v11.i12.1065.
Three-dimensional (3D) culture systems are becoming increasingly popular due to their ability to mimic tissue-like structures more effectively than the monolayer cultures. In cancer and stem cell research, the natural cell characteristics and architectures are closely mimicked by the 3D cell models. Thus, the 3D cell cultures are promising and suitable systems for various proposes, ranging from disease modeling to drug target identification as well as potential therapeutic substances that may transform our lives. This review provides a comprehensive compendium of recent advancements in culturing cells, in particular cancer and stem cells, using 3D culture techniques. The major approaches highlighted here include cell spheroids, hydrogel embedding, bioreactors, scaffolds, and bioprinting. In addition, the progress of employing 3D cell culture systems as a platform for cancer and stem cell research was addressed, and the prominent studies of 3D cell culture systems were discussed.
三维(3D)培养系统正变得越来越受欢迎,因为它们比单层培养更能有效地模拟组织样结构。在癌症和干细胞研究中,3D细胞模型能紧密模拟天然细胞特征和结构。因此,3D细胞培养对于从疾病建模到药物靶点识别以及可能改变我们生活的潜在治疗物质等各种用途而言,是有前景且合适的系统。本综述全面概述了使用3D培养技术培养细胞,特别是癌症细胞和干细胞的最新进展。这里重点介绍的主要方法包括细胞球体、水凝胶包埋、生物反应器、支架和生物打印。此外,还阐述了将3D细胞培养系统用作癌症和干细胞研究平台的进展,并讨论了3D细胞培养系统的重要研究。