首页> 外文OA文献 >Inhibition of heart mitochondrial lipid peroxidation by non-toxic concentrations of carvedilol and its analog BM-91022811Abbreviations: TBARS, thiobarbituric acid-reactive substances; ROS, reactive oxygen species; TPP+, tetraphenylphosphonium ion; ΔΨ, mitochondrial membrane potential.
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Inhibition of heart mitochondrial lipid peroxidation by non-toxic concentrations of carvedilol and its analog BM-91022811Abbreviations: TBARS, thiobarbituric acid-reactive substances; ROS, reactive oxygen species; TPP+, tetraphenylphosphonium ion; ΔΨ, mitochondrial membrane potential.

机译:通过无毒浓度的Carvedilol及其模拟Bm-91022811abbrabiations的抑制抑制心脏线粒体脂质过氧化:TBAR,硫酰碱酸反应性物质; ROS,反应性氧气物种; TPP +,四苯基鏻离子; ΔΣ,线粒体膜电位。

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摘要

Carvedilol, a non-selective [beta]-adrenoreceptor blocker, has been shown to possess a high degree of cardioprotection in experimental models of myocardial damage. Reactive oxygen species have been proposed to be implicated in such situations, and antioxidants have been demonstrated to provide partial protection to the reported damage. The purpose of our study was to investigate the antioxidant effect of carvedilol and its metabolite BM-910228 by measuring the extent of lipid peroxidation in a model of severe oxidative damage induced by ADP/FeSO4 in isolated rat heart mitochondria. Carvedilol and BM-910228 inhibited the thiobarbituric acid-reactive substance formation and oxygen consumption associated with lipid peroxidation with 50 values of 6 and 0.22 [mu]M, respectively. Under the same conditions, the 50 values of [alpha]-tocopheryl succinate and Trolox were 125 and 31 [mu]M, respectively. As expected, the presence of carvedilol and BM-910228 preserved the structural and functional integrity of mitochondria under oxidative stress conditions for the same concentration range shown to inhibit lipid peroxidation, since they prevented the collapse of the mitochondrial membrane potential ([Delta][Psi]) induced by ADP/FeSO4 in respiring mitochondria. It should be stressed that neither carvedilol nor BM-910228 induced any toxic effect on mitochondrial function in the concentration range of the compounds that inhibits the peroxidation of mitochondrial membranes. In conclusion, the antioxidant properties of carvedilol may contribute to the cardioprotective effects of the compound, namely through the preservation of mitochondrial functions whose importance in myocardial dysfunction is clearly documented. Additionally, its hydroxylated analog BM-910220, with its notably superior antioxidant activity, may significantly contribute to the therapeutic effects of carvedilol.
机译:卡维地洛是一种非选择性的β-肾上腺素受体阻滞剂,在心肌损伤的实验模型中已显示出高度的心脏保护作用。已提出在这种情况下牵涉活性氧物质,并且已证明抗氧化剂可为所报告的损害提供部分保护。我们的研究目的是通过测量在离体大鼠心脏线粒体中ADP / FeSO4引起的严重氧化损伤模型中脂质过氧化的程度,研究卡维地洛及其代谢物BM-910228的抗氧化作用。卡维地洛和BM-910228抑制与脂质过氧化有关的硫代巴比妥酸反应性物质的形成和耗氧量分别为50和6以及0.22μM。在相同条件下,α-生育酚琥珀酸酯和Trolox的50值分别为125和31μM。如所期望的,卡维地洛和BM-910228的存在在氧化应激条件下针对抑制脂质过氧化的相同浓度范围保持了线粒体的结构和功能完整性,因为它们防止了线粒体膜电位(ΔPsi)的崩溃。 ])由ADP / FeSO4诱导呼吸性线粒体。应该强调的是,卡维地洛和BM-910228均不会在抑制线粒体膜过氧化的化合物浓度范围内对线粒体功能产生任何毒性作用。总之,卡维地洛的抗氧化特性可能有助于该化合物的心脏保护作用,即通过保留线粒体功能(明确记录了其在心肌功能障碍中的重要性)。此外,它的羟基化类似物BM-910220具有出色的抗氧化活性,可能会大大有助于卡维地洛的治疗作用。

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