Hoogstraten Charlotte A, Smeitink Jan A M, Russel Frans G M, Schirris Tom J J
Department of Pharmacology and Toxicology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, Nijmegen, Netherlands.
Radboud Center for Mitochondrial Medicine, Radboud University Medical Center, Nijmegen, Netherlands.
Front Toxicol. 2022 Feb 28;4:842396. doi: 10.3389/ftox.2022.842396. eCollection 2022.
Fourteen to 26 percent of all hospitalized cases of acute kidney injury are explained by drug-induced toxicity, emphasizing the importance of proper strategies to pre-clinically assess renal toxicity. The MTT assay is widely used as a measure of cell viability, but largely depends on cellular metabolic activity. Consequently, MTT as a single assay may not be the best way to assess cytotoxicity of compounds that reduce mitochondrial function and cellular metabolic activity without directly affecting cell viability. Accordingly, we aim to highlight the limitations of MTT alone in assessing renal toxicity of compounds that interfere with metabolic activity. Therefore, we compared toxic effects observed by MTT with a fluorescent assay that determines compromised plasma membrane permeability. Exposure of proximal tubule epithelial cells to nephrotoxic compounds reduced cellular metabolic activity concentration- and time-dependently. We show that compared to our fluorescence-based approach, assessment of cellular metabolic activity by means of MTT provides a composite readout of cell death and metabolic impairment. An approach independent of cellular metabolism is thus preferable when assessing cytotoxicity of compounds that induce metabolic dysfunction. Moreover, combining both assays during drug development enables a first discrimination between compounds having a direct or indirect mitochondrial toxic potential.
急性肾损伤的所有住院病例中有14%至26%是由药物诱导的毒性引起的,这凸显了在临床前评估肾毒性的适当策略的重要性。MTT法被广泛用作细胞活力的一种测量方法,但很大程度上依赖于细胞代谢活性。因此,MTT作为单一检测方法可能不是评估那些降低线粒体功能和细胞代谢活性而不直接影响细胞活力的化合物细胞毒性的最佳方法。相应地,我们旨在强调单独使用MTT在评估干扰代谢活性的化合物肾毒性方面的局限性。因此,我们将MTT观察到的毒性效应与一种测定质膜通透性受损的荧光检测方法进行了比较。近端肾小管上皮细胞暴露于肾毒性化合物后,细胞代谢活性呈浓度和时间依赖性降低。我们表明,与基于荧光的方法相比,通过MTT评估细胞代谢活性提供了细胞死亡和代谢损伤的综合读数。因此,在评估诱导代谢功能障碍的化合物的细胞毒性时,一种独立于细胞代谢的方法更可取。此外,在药物开发过程中结合这两种检测方法能够首次区分具有直接或间接线粒体毒性潜力的化合物。