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Inhibitory effects of fluvastain and its metabolites on the formation of several reactive oxygen species.

机译:氟伐他汀及其代谢产物对几种活性氧物种形成的抑制作用。

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摘要

We investigated the inhibitory effects of fluvastain (FV) and its metabolites (M-2, M-3, M-4, M-5, and M-7) on the formation of several reactive oxygen species (ROS), such as singlet oxygen (1O2), superoxide anion (O2-), hydroxy radical (*OH), hypochlorite ion (OCL-), and linoleic acid peroxide (LOO*). Inhibitory effects of pravastatin (PV), simvastatin (SV), probucol (PR) and alpha-tocopherol (TOC) were also tested. The inhibitory effects of 5-hydroxy FV (M-2) and 6-hydroxy FV (M-3) on the formation of 1O2, O2-, *OH, and OCL- were strongest. Scavenging of 1O2 by M-4, M-5, (+)-FV, and (-)-FV was also noted. The inhibitory effects of (+)-FV on the formation of 1O2 were comparable to those of (-)-FV, PV, SV, PR and M-7 had little or no inhibitory effect on the formation of several ROS. In conclusion, FV and its metabolites, particulary M-2 and M-3, have the potential to protect against oxidative stress mediated by several ROS.
机译:我们调查了氟伐他汀(FV)及其代谢物(M-2,M-3,M-4,M-5和M-7)对几种活性氧(ROS)(例如单线态)形成的抑制作用氧(1O2),超氧阴离子(O2-),羟基自由基(* OH),次氯酸根离子(OCL-)和亚油酸过氧化物(LOO *)。还测试了普伐他汀(PV),辛伐他汀(SV),普罗布考(PR)和α-生育酚(TOC)的抑制作用。 5-羟基FV(M-2)和6-羟基FV(M-3)对1O2,O2-,* OH和OCL-形成的抑制作用最强。还注意到M-4,M-5,(+)-FV和(-)-FV对1O2的清除作用。 (+)-FV对1O2形成的抑制作用与(-)-FV相当,PV,SV,PR和M-7对几种ROS的形成几乎没有抑制作用。总之,FV及其代谢物,特别是M-2和M-3,具有防止多种ROS介导的氧化应激的潜力。

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