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首页> 外文期刊>Toxicology and Applied Pharmacology >Silymarin protects PBMC against B(a)P induced toxicity by replenishing redox status and modulating glutathione metabolizing enzymes--an in vitro study.
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Silymarin protects PBMC against B(a)P induced toxicity by replenishing redox status and modulating glutathione metabolizing enzymes--an in vitro study.

机译:水飞蓟素通过补充氧化还原状态和调节谷胱甘肽代谢酶来保护PBMC免受B(a)P诱导的毒性-一项体外研究。

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摘要

PAHs are a ubiquitous class of environmental contaminants that have a large number of hazardous consequences on human health. An important prototype of PAHs, B(a)P, is notable for being the first chemical carcinogen to be discovered and the one classified by EPA as a probable human carcinogen. It undergoes metabolic activation to QD, which generate ROS by redox cycling system in the body and oxidatively damage the macromolecules. Hence, a variety of antioxidants have been tested as possible protectors against B(a)P toxicity. Silymarin is one such compound, which has high human acceptance, used clinically and consumed as dietary supplement around the world for its strong anti-oxidant efficacy. Silymarin was employed as an alternative approach for treating B(a)P induced damage and oxidative stress in PBMC, with an emphasis to provide the molecular basis for the effect of silymarin against B(a)P induced toxicity. PBMC cells exposed to either benzopyrene (1 microM) or silymarin (2.4 mg/ml) or both was monitored for toxicity by assessing LPO, PO, redox status (GSH/GSSG ratio), glutathione metabolizing enzymes GR and GPx and antioxidant enzymes CAT and SOD. This study also investigated the protective effect of silymarin against B(a)P induced biochemical alteration at the molecular level by FT-IR spectroscopy. Our findings were quite striking that silymarin possesses substantial protective effect against B(a)P induced oxidative stress and biochemical changes by restoring redox status, modulating glutathione metabolizing enzymes, hindering the formation of protein oxidation products, inhibiting LPO and further reducing ROS mediated damages by changing the level of antioxidant enzymes. The results suggest that silymarin exhibits multiple protections and it should be considered as a potential protective agent for environmental contaminant induced immunotoxicity.
机译:多环芳烃是一类普遍存在的环境污染物,会对人体健康造成大量危害。 PAHs的重要原型B(a)P是第一个被发现的化学致癌物,并且被EPA归类为可能的人类致癌物。它经历代谢活化为QD,QD通过体内的氧化还原循环系统产生ROS,并氧化破坏大分子。因此,已经测试了多种抗氧化剂作为可能的B(a)P毒性保护剂。水飞蓟素是一种这样的化合物,具有很强的抗氧化功效,在全世界范围内被临床使用并作为膳食补充剂被人们广泛接受。水飞蓟素被用作治疗PBMC中B(a)P诱导的损伤和氧化应激的替代方法,重点是为水飞蓟素对抗B(a)P诱导的毒性提供分子基础。通过评估LPO,PO,氧化还原状态(GSH / GSSG比),谷胱甘肽代谢酶GR和GPx以及抗氧化剂CAT和CAT,监测暴露于苯并re(1 microM)或水飞蓟素(2.4 mg / ml)或两者的PBMC细胞的毒性。草皮。这项研究还通过FT-IR光谱研究了水飞蓟素对B(a)P诱导的生物化学变化的分子保护作用。我们的发现非常令人惊讶,水飞蓟素通过恢复氧化还原状态,调节谷胱甘肽代谢酶,阻碍蛋白质氧化产物的形成,抑制LPO并进一步减少ROS介导的损伤,对B(a)P诱导的氧化应激和生化变化具有实质性的保护作用。改变抗氧化酶的水平。结果表明水飞蓟素表现出多种保护作用,应被认为是环境污染物诱导的免疫毒性的潜在保护剂。

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