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多细胞肿瘤球体的应用和进展:在其发展和分析中面临的挑战。

Applications and Advances of Multicellular Tumor Spheroids: Challenges in Their Development and Analysis.

机构信息

Cell Biology Lab, Department of Molecular Biology and Genetics, Democritus University of Thrace, 68100 Alexandroupolis, Greece.

出版信息

Int J Mol Sci. 2023 Apr 8;24(8):6949. doi: 10.3390/ijms24086949.

Abstract

Biomedical research requires both in vitro and in vivo studies in order to explore disease processes or drug interactions. Foundational investigations have been performed at the cellular level using two-dimensional cultures as the gold-standard method since the early 20th century. However, three-dimensional (3D) cultures have emerged as a new tool for tissue modeling over the last few years, bridging the gap between in vitro and animal model studies. Cancer has been a worldwide challenge for the biomedical community due to its high morbidity and mortality rates. Various methods have been developed to produce multicellular tumor spheroids (MCTSs), including scaffold-free and scaffold-based structures, which usually depend on the demands of the cells used and the related biological question. MCTSs are increasingly utilized in studies involving cancer cell metabolism and cell cycle defects. These studies produce massive amounts of data, which demand elaborate and complex tools for thorough analysis. In this review, we discuss the advantages and disadvantages of several up-to-date methods used to construct MCTSs. In addition, we also present advanced methods for analyzing MCTS features. As MCTSs more closely mimic the in vivo tumor environment, compared to 2D monolayers, they can evolve to be an appealing model for in vitro tumor biology studies.

摘要

生物医学研究需要进行体外和体内研究,以探索疾病过程或药物相互作用。自 20 世纪初以来,基础研究一直是在细胞水平上进行的,二维培养被作为金标准方法。然而,在过去几年中,三维(3D)培养已成为组织建模的新工具,在体外和动物模型研究之间架起了桥梁。癌症因其高发病率和死亡率而成为全球生物医学界的一个挑战。已经开发出各种方法来产生多细胞肿瘤球体(MCTS),包括无支架和支架结构,这些结构通常取决于所使用的细胞的需求和相关的生物学问题。MCTS 越来越多地用于涉及癌细胞代谢和细胞周期缺陷的研究。这些研究产生了大量的数据,需要精心设计和复杂的工具进行彻底分析。在这篇综述中,我们讨论了构建 MCTS 的几种最新方法的优缺点。此外,我们还介绍了分析 MCTS 特征的先进方法。由于 MCTS 比 2D 单层更能模拟体内肿瘤环境,因此它们可能成为体外肿瘤生物学研究的有吸引力的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d18/10138394/0668b884db61/ijms-24-06949-g001.jpg

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