Department of Biomedical Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan, Korea.
Center for Soft and Living Matter, Institute for Basic Science (IBS), Ulsan, Korea.
Analyst. 2022 May 17;147(10):2023-2034. doi: 10.1039/d2an00172a.
Three-dimensional (3D) multicellular spheroid models can recapitulate the human tumour microenvironment with more accuracy than conventional cell culture models, as they include complex architectural structures and dynamic cellular interactions. Among the diverse platforms for spheroid formation, microfluidic platforms have been extensively applied to study spheroids because they can mimic the microenvironment. This review provides an overview of the advantages of 3D spheroid cultures with a summary of the recent applications for tumour microenvironment-focused cellular interactions, as well as the studies on spheroids and external stimuli. These 3D tumour spheroid-based microfluidic devices will provide a platform for a better understanding of cellular and external interactions, as well as the discovery of cancer therapeutics.
三维(3D)多细胞球体模型比传统的细胞培养模型更能准确地再现人类肿瘤微环境,因为它们包含复杂的结构和动态的细胞相互作用。在多种球体形成的平台中,微流控平台已被广泛应用于球体的研究,因为它们可以模拟微环境。本文综述了 3D 球体培养的优势,并总结了近期在肿瘤微环境相关细胞相互作用、球体与外部刺激的研究方面的应用。这些基于 3D 肿瘤球体的微流控装置将为更好地理解细胞和外部相互作用以及癌症治疗药物的发现提供一个平台。