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首页> 外文期刊>Physiological Research >Treatment of rats with hypolipidemic compound pirinixic acid protects their hearts against ischemic injury: Are mitochondrial KATP channels and reactive oxygen species involved?
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Treatment of rats with hypolipidemic compound pirinixic acid protects their hearts against ischemic injury: Are mitochondrial KATP channels and reactive oxygen species involved?

机译:用降血脂的化合物哌立尼克酸治疗大鼠可保护心脏免受缺血性损伤:线粒体KATP通道和活性氧是否参与其中?

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摘要

Hypolipidemic compound pirinixic acid (WY-14643, WY) is known to exert pleiotropic (other than primary) effects, such as activation of peroxisome proliferator-activated receptors (PPAR-α), transcription factors regulating different cardiac functions. Their role in ischemia-reperfusion (I/R) injury and cardioprotection is less clear, although protective effects of PPAR agonists have been documented. This study was designed to explore the effects of WY on the I/R injury in the rat heart and potential mechanisms involved, including mitochondrial KATP channels (mitoKATP) opening and production of reactive oxygen species (ROS). Langendorff-perfused hearts of rats intragastrally treated with WY (3 mg/kg/day) for 5 days and of control animals were subjected to 30-min global ischemia and 2-h reperfusion with or without 15-min perfusion with mitoKATP blocker 5-hydroxydecanoate (5-HD) prior to I/R. Evaluation of the infarct size (IS, TTC staining) served as the main end-point of protection. Lipid peroxidation (a marker of ROS production) was determined by measurement of myocardial concentration of conjugated dienes (CD), whereas protein expression of endothelial NO synthase was analysed by Western blotting. A 2-fold increase in the cardiac protein levels of eNOS after treatment with WY was accompanied by lower post-I/R levels of CD compared with those in the hearts of untreated controls, although WY itself enhanced ROS generation prior to ischemia. IS was reduced by 47 % in the hearts of WY-treated rats (P<0.05), and this effect was reversed by 5-HD. Results suggest that PPAR-α activation may confer protection against lethal I/R injury in the rat heart that involves up-regulation of eNOS, mitoKATP opening and reduced oxidative stress during I/R.
机译:降血脂化合物哌立尼克酸(WY-14643,WY)已知发挥多效(除主要作用)作用,例如过氧化物酶体增殖物激活受体(PPAR-α)的活化,调节不同心脏功能的转录因子。尽管PPAR激动剂的保护作用已有文献报道,但它们在缺血再灌注(I / R)损伤和心脏保护中的作用尚不清楚。这项研究旨在探讨WY对大鼠心脏I / R损伤的影响以及涉及的潜在机制,包括线粒体KATP通道(mitoKATP)的开放和活性氧(ROS)的产生。用WY(3 mg / kg / day)进行胃内处理5天的大鼠和对照动物的Langendorff灌注心脏经受30分钟的整体缺血和2小时的再灌注,有或没有15分钟的mitoKATP受体阻滞剂5- I / R前使用羟基癸酸酯(5-HD)。评估梗塞面积(IS,TTC染色)是保护的主要终点。通过测量共轭二烯(CD)的心肌浓度确定脂质过氧化(ROS产生的标志),而通过蛋白质印迹分析内皮NO合酶的蛋白质表达。与未治疗的对照组心脏相比,经WY治疗后eNOS的心脏蛋白水平增加2倍,同时伴随I / R后CD水平降低,尽管WY本身可增强缺血前的ROS生成。 WY处理的大鼠心脏的IS降低了47%(P <0.05),而5-HD可以逆转这种作用。结果表明,PPAR-α激活可能赋予大鼠心脏抗致命I / R损伤的保护,该损伤涉及eNOS的上调,mitoKATP的开放和I / R期间氧化应激的降低。

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