首页> 外文期刊>Mathematical research letters: MRL >Identification of cadmium-produced lipid hydroperoxides, transcriptomic changes in antioxidant enzymes, xenobiotic transporters, and pro-inflammatory markers in human breast cancer cells (MCF7) and protection with fat-soluble vitamins
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Identification of cadmium-produced lipid hydroperoxides, transcriptomic changes in antioxidant enzymes, xenobiotic transporters, and pro-inflammatory markers in human breast cancer cells (MCF7) and protection with fat-soluble vitamins

机译:镉产生的脂质氢过氧化物,抗氧化酶,异丙酸转运蛋白和人乳腺癌细胞(MCF7)中的促炎标志物的转录组变化和用脂溶性维生素的保护

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摘要

Cadmium (Cd) is a toxic metal that is regarded as a metallohormone with estrogen-like properties. The present study aimed at identification of lipid hydroperoxides produced in human breast cancer (MCF7) exposed to cadmium (Cd) at environmentally relevant levels. Cd induced cytotoxicity and oxidative stress and produced a series of 26 lipid hydroperoxide species including 14 phosphatidylcholine hydroperoxides (PC-OOH), 9 triacylglycerol hydroperoxides (TG-OOH), and 3 cholesteryl ester hydroperoxides (CE-OOH). Among these hydroperoxides, PC34:2-OOH, PC34:3-OOH, TG60:14-OOH, TG48:5-OOH, TG60:15-OOH, and CE20:4-OOH were produced in a dose-dependent manner, suggesting these as possible biomarkers for Cd exposure in MCF7 cells. In addition, Cd led to significant decreases in the gene expressions of antioxidants, detoxification enzymes, and xenobiotic transporters. In a protection trial, co-exposure of MCF7 cells to fat-soluble vitamins including vitamin A, D, and E reduced Cd-induced cytotoxicity, lipid peroxidation, oxidative stress, and inflammatory responses. Fat-soluble vitamins upregulated antioxidant and detoxification enzymes, and xenobiotic transporters. Therefore, dietary supplementation of such micronutrients is recommended for people at risk for exposure to Cd.
机译:镉(CD)是一种毒性金属,被认为是具有雌过生物的金属芳啉酮。目前的研究旨在鉴定在环境相关水平下暴露于镉(CD)的人乳腺癌(MCF7)中产生的脂质氢过氧化物。 CD诱导细胞毒性和氧化应激,并产生一系列26种脂质过氢过氧化物物种,包括14个磷脂酰胆碱氢过氧化钠(PC-OOH),9种三酰基甘油氢过氧化物(TG-OOH)和3个胆固醇酯氢过氧化物(CE-OOH)。在这些氢过氧化物中,PC34:2-OOH,PC34:3-OOH,TG60:14-OOH,TG48:5-OOH,以剂量依赖性方式生产4-OOH,提示这些作为MCF7细胞中CD暴露的可能生物标志物。此外,Cd导致抗氧化剂,解毒酶和异种酸转运蛋白基因表达的显着降低。在保护试验中,将MCF7细胞的共同暴露于脂溶性维生素,包括维生素A,D和E降低CD诱导的细胞毒性,脂质过氧化,氧化应激和炎症反应。脂溶性维生素上调抗氧化剂和解毒酶,Xenobiotic转运蛋白。因此,建议为有风险暴露于CD的人的膳食补充这种微量营养素。

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