Future Industries Institute, University of South Australia, Adelaide, SA 5095, Australia.
Int J Mol Sci. 2021 Nov 26;22(23):12827. doi: 10.3390/ijms222312827.
The MTT assay for cellular metabolic activity is almost ubiquitous to studies of cell toxicity; however, it is commonly applied and interpreted erroneously. We investigated the applicability and limitations of the MTT assay in representing treatment toxicity, cell viability, and metabolic activity. We evaluated the effect of potential confounding variables on the MTT assay measurements on a prostate cancer cell line (PC-3) including cell seeding number, MTT concentration, MTT incubation time, serum starvation, cell culture media composition, released intracellular contents (cell lysate and secretome), and extrusion of formazan to the extracellular space. We also assessed the confounding effect of polyethylene glycol (PEG)-coated gold nanoparticles (Au-NPs) as a tested treatment in PC-3 cells on the assay measurements. We additionally evaluated the applicability of microscopic image cytometry as a tool for measuring intracellular MTT reduction at the single-cell level. Our findings show that the assay measurements are a result of a complicated process dependant on many of the above-mentioned factors, and therefore, optimization of the assay and rational interpretation of the data is necessary to prevent misleading conclusions on variables such as cell viability, treatment toxicity, and/or cell metabolism. We conclude, with recommendations on how to apply the assay and a perspective on where the utility of the assay is a powerful tool, but likewise where it has limitations.
MTT 法(噻唑蓝比色法)常用于细胞毒性研究,是检测细胞代谢活性的经典方法,但在实际应用中常被错误解读。本研究旨在评估 MTT 法在反映细胞毒性、细胞活力和代谢活性方面的适用性和局限性。我们考察了包括细胞接种数、MTT 浓度、MTT 孵育时间、血清饥饿、细胞培养基组成、细胞内物质(细胞裂解液和分泌组)释放、甲瓒外排等在内的多种潜在混杂因素对 MTT 法检测的影响,同时评估了作为受试物的聚乙二醇(PEG)包覆金纳米颗粒(Au-NPs)对检测结果的混杂作用。此外,我们还评估了利用显微图像细胞仪在单细胞水平检测 MTT 还原的可行性。结果表明,检测结果是多种因素共同作用的复杂过程,因此需要对检测进行优化,并对数据进行合理解读,以避免对细胞活力、处理毒性和/或细胞代谢等变量产生误导性结论。本研究最后提出了 MTT 法的应用建议,并讨论了该方法的实用性,包括其强大之处和局限性。