Sazonova Elena V, Yapryntseva Maria A, Pervushin Nikolay V, Tsvetcov Roman I, Zhivotovsky Boris, Kopeina Gelina S
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russia.
Faculty of Medicine, MV Lomonosov Moscow State University, 119991 Moscow, Russia.
Cells. 2024 Feb 23;13(5):388. doi: 10.3390/cells13050388.
The development of resistance to chemotherapy is one of the main problems for effective cancer treatment. Drug resistance may result from disturbances in two important physiological processes-cell proliferation and cell death. Importantly, both processes characterize alterations in cell metabolism, the level of which is often measured using MTT/MTS assays. To examine resistance to chemotherapy, different cancer cell lines are usually used for the in vitro modulation of developing resistance. However, after the creation of resistant cell lines, researchers often have difficulty in starting investigations of the mechanisms of insensitivity. In the first stage, researchers should address the question of whether the drug resistance results from a depression of cell proliferation or an inhibition of cell death. To simplify the choice of research strategy, we have suggested a combination of different approaches which reveal the actual mechanism. This combination includes rapid and high-throughput methods such as the MTS test, the LIVE/DEAD assay, real-time cell metabolic analysis, and Western blotting. To create chemoresistant tumor cells, we used four different cancer cell lines of various origins and utilized the most clinically relevant pulse-selection approach. Applying a set of methodological approaches, we demonstrated that three of them were more capable of modulating proliferation to avoid the cytostatic effects of anti-cancer drugs. At the same time, one of the studied cell lines developed resistance to cell death, overcoming the cytotoxic action.
化疗耐药性的产生是有效治疗癌症的主要问题之一。耐药性可能源于两个重要生理过程——细胞增殖和细胞死亡的紊乱。重要的是,这两个过程都体现了细胞代谢的改变,其水平通常使用MTT/MTS检测来衡量。为了检测对化疗的耐药性,通常使用不同的癌细胞系进行体外耐药性诱导。然而,在创建耐药细胞系后,研究人员往往难以开始对不敏感机制的研究。在第一阶段,研究人员应该解决耐药性是由细胞增殖抑制还是细胞死亡抑制导致的问题。为了简化研究策略的选择,我们建议结合不同的方法来揭示实际机制。这种组合包括快速且高通量的方法,如MTS检测、活/死检测、实时细胞代谢分析和蛋白质印迹法。为了创建化疗耐药的肿瘤细胞,我们使用了四种不同来源的癌细胞系,并采用了最具临床相关性的脉冲选择方法。应用一组方法,我们证明其中三种细胞系更能调节增殖以避免抗癌药物的细胞抑制作用。同时,其中一个研究的细胞系对细胞死亡产生了耐药性,克服了细胞毒性作用。