The BH3 mimetic (±) gossypol induces ROS-independent apoptosis and mitochondrial dysfunction in human A375 melanoma cells in vitro

被引:0
作者
Lisa Haasler
Arun Kumar Kondadi
Thanos Tsigaras
Claudia von Montfort
Peter Graf
Wilhelm Stahl
Peter Brenneisen
机构
[1] Heinrich Heine University Düsseldorf,Institute of Biochemistry and Molecular Biology I, Medical Faculty
来源
Archives of Toxicology | 2021年 / 95卷
关键词
Malignant melanoma; Gossypol; Mitochondrial dysfunction; Apoptosis; ROS;
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学科分类号
摘要
A major challenge in current cancer therapy is still the treatment of metastatic melanomas of the skin. BH3 mimetics represent a novel group of substances inducing apoptosis. In this study, we investigated the cytotoxic effect of (±) gossypol (GP), a natural compound from cotton seed, on A375 melanoma cells and the underlying biochemical mechanisms. To prevent undesired side effects due to toxicity on normal (healthy) cells, concentrations only toxic for tumor cells have been elaborated. Viability assays were performed to determine the cytotoxicity of GP in A375 melanoma and normal (healthy) cells. For the majority of experiments, a concentration of 2.5 µM GP was used resulting in a ROS-independent but caspase-dependent cell death of A375 melanoma cells. At this level, GP was non-toxic for normal human epidermal melanocytes. GP has a very short half-life, however, it was demonstrated that only the “parent” compound and not decomposition products are responsible for the cytotoxic effect in A375 melanoma cells. GP significantly decreased mitochondrial membrane potential accompanied by a Drp1-dependent loss of mitochondrial integrity (fragmentation) in tumor cells. Taken together, GP induced a ROS-independent intrinsic apoptosis leading to the conclusion that within a specific concentration range, GP may work as effective anticancer drug without harmful side effects.
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页码:1349 / 1365
页数:16
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共 234 条
[1]  
Adams R(1960)Gossypol, a pigment of cottonseed Chem Rev 60 555-574
[2]  
Geissman TA(2013)Downregulation of tumor growth and invasion by redox-active nanoparticles Antioxid Redox Signal 19 765-778
[3]  
Edwards JD(2020)CNP mediated selective toxicity on melanoma cells is accompanied by mitochondrial dysfunction PLoS ONE 15 e0227926-363
[4]  
Alili L(2009)Emerging role for members of the Bcl-2 family in mitochondrial morphogenesis Mol Cell 36 355-751
[5]  
Aplak E(2018)Effect of the BH3 Mimetic polyphenol (−)-Gossypol (AT-101) on the in vitro and in vivo growth of malignant mesothelioma Front Pharmacol 9 1269-248
[6]  
Autret A(2016)HyPer family probes: state of the art Antioxid Redox Signal 24 731-73
[7]  
Martin SJ(2016)Redox nanodomains are induced by and control calcium signaling at the ER-mitochondrial interface Mol Cell 63 240-146
[8]  
Benvenuto M(2016)Subcellular ROS imaging methods: relevance for the study of calcium signaling Cell Calcium 60 65-91
[9]  
Bilan DS(2011)Implications of using the fluorescent probes, dihydrorhodamine 123 and 2',7'-dichlorodihydrofluorescein diacetate, for the detection of UVA-induced reactive oxygen species Free Radic Res 45 139-862
[10]  
Belousov VV(2001)Chemically de-acetylated 2',7'-dichlorodihydrofluorescein diacetate as a probe of respiratory burst activity in mononuclear phagocytes J Immunol Methods 251 81-2516