首页> 外文期刊>Free radical research >Protective effects of fluvastatin against reactive oxygen species induced DNA damage and mutagenesis.
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Protective effects of fluvastatin against reactive oxygen species induced DNA damage and mutagenesis.

机译:氟伐他汀对活性氧的保护作用诱导DNA损伤和诱变。

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摘要

Oxidative stress may be an important factor in the development of diabetic complications. Advanced glycation end-products have drown attention as potential sources of oxidative stress in diabetes. We investigated the protective effects of fluvastatin, a 3-hydroxy-3-methylglutaryl coenzyme A reductase inhibitor, on oxidative DNA damage from reactive oxygen species or advanced glycation end-products in vitro, as well as effects of main fluvastatin metabolites and other inhibitors of the same enzyme, pravastatin and simvastatin. Protective effects were assessed in terms of the DNA breakage rate in a single-stranded phage DNA system in vitro. DNA was exposed to either reactive oxygen species or advanced glycation end-products. Fluvastatin and its metabolites showed a strong protective effect comparable to those seen with thiourea and mannitol, though pravastatin and simvastatin did not exert clear protective effects. Furthermore, fluvastatin reduced the mutagenesis by reactive oxygen species or advanced glycation end-products in Salmonella typhimurium test strains. Both pravastatin and simvastatin still lacked protective activity. Fluvastatin and its metabolites protect against oxidative DNA damage and may reduce risk of consequent diabetic complications.
机译:氧化应激可能是糖尿病并发症发展的重要因素。晚期糖基化终产物已成为糖尿病中氧化应激的潜在来源而引起人们的关注。我们研究了氟伐他汀,一种3-羟基-3-甲基戊二酰辅酶A还原酶抑制剂对体外活性氧或高级糖化终产物的氧化DNA损伤的保护作用,以及氟伐他汀主要代谢产物和其他抑制剂的保护作用。相同的酶,普伐他汀和辛伐他汀。根据体外单链噬菌体DNA系统中的DNA破损率评估保护作用。 DNA暴露于活性氧或高级糖基化终产物。氟伐他汀及其代谢产物显示出与硫脲和甘露醇相似的强保护作用,尽管普伐他汀和辛伐他汀没有明显的保护作用。此外,氟伐他汀减少了鼠伤寒沙门氏菌测试菌株中活性氧或晚期糖基化终产物的诱变作用。普伐他汀和辛伐他汀均仍缺乏保护活性。氟伐他汀及其代谢物可防止氧化性DNA损伤,并可以减少发生糖尿病并发症的风险。

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