Biochemical mechanism of acetylsalicylic acid (Aspirin) selective toxicity toward melanoma cell lines

被引:30
作者
Vad, Nikhil M. [1 ]
Yount, Garret [3 ]
Moridani, Majid Y. [1 ,2 ]
机构
[1] Texas Tech Univ, Hlth Sci Ctr, Dept Pharmaceut Sci, Sch Pharm, Amarillo, TX 79106 USA
[2] Texas Tech Univ, Hlth Sci Ctr, Sch Med, Dept Pediat, Amarillo, TX 79106 USA
[3] CPMC Res Inst, San Francisco, CA USA
关键词
acetylsalicylic acid; aspirin; B16+F0; B16+F10; C32; cancer; GSH; melanoma; MeWo; quinone; reactive oxygen species; SK-MEL-5; SK-MEL-28;
D O I
10.1097/CMR.0b013e3283107df7
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
In the current work, we investigated the biochemical toxicity of acetylsalicylic acid (ASA; Aspirin) in human melanoma cell lines using tyrosinase enzyme as a molecular cancer therapeutic target At 2 h, ASA was oxidized 88% by tyrosinase. Ascorbic acid and NADH, quinone reducing agents, were significantly depleted during the enzymatic oxidation of ASA by tyrosinase to quinone. The 50% inhibitory concentration (48 h) of ASA and salicylic acid toward SK-MEL-28 cells were 100 mu mol/l and 5.2 mmol/l, respectively. ASA at 100 mu mol/l was selectively toxic toward human melanocytic SK-MEL-28, MeWo, and SK-MEL-5 and murine melanocytic B16+F0 and B16+10 melanoma cell lines. However, ASA was not significantly toxic to human amelanotic C32 melanoma cell line, which does not express tyrosinase enzyme, and human nonmelanoma BJ, SW-620, Saos, and PC-3 cells. Dicoumarol, a diaphorase inhibitor, and 1-bromoheptane, a GSH depleting agent, increased ASA toxicity toward SK-MEL-28 cells indicating quinone formation and intracellular GSH depletion played important mechanistic roles in ASA-induced melanoma toxicity. Ascorbic acid, a quinone reducing agent and GSH, an antioxidant and quinone trap substrate, prevented ASA cell toxicity. Trifluoperazine, inhibitor of permeability transition pore in mitochondria, prevented ASA toxicity. ASA led to significant intracellular GSH depletion in melanocytic SK-MEL-28 melanoma cells but not in amelanotic C32 melanoma cells. ASA also led to significant reactive oxygen species (ROS) formation in melanocytic SK-MEL-28 melanoma cells but not in amelanotic C32 melanoma cells. ROS formation was exacerbated by dicoumarol and 1-bromoheptane in SK-MEL-28. Our investigation suggests that quinone species, intracellular GSH depletion, ROS formation, and mitochondrial toxicity significantly contributed toward ASA selective toxicity in melanocytic SK-MEL-28 melanoma cells. Melanoma Res 18:386-399 (C) 2008 Wolters Kluwer Health vertical bar Lippincott Williams & Wilkins.
引用
收藏
页码:386 / 399
页数:14
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