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首页> 外文期刊>American Journal of Physiology >Enhanced NO and superoxide generation in dysfunctional hearts from endotoxemic rats.
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Enhanced NO and superoxide generation in dysfunctional hearts from endotoxemic rats.

机译:内毒素血症大鼠功能障碍性心脏中NO和超氧化物生成的增强。

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Free radicals have been implicated in the etiology of cardiac dysfunction during sepsis, but the actual species responsible remains unclear. We studied the alterations in myocardial nitric oxide (NO), superoxide, and peroxynitrite generation along with cardiac mechanical function and efficiency in hearts from lipopolysaccharide (LPS)-treated rats. Six hours after LPS (4 mg/kg ip) or saline (control) treatment, hearts were isolated and perfused for 1 h with recirculating Krebs-Henseleit buffer and paced at 300 beats/min. Cardiac work, O(2) consumption, and cardiac efficiency were markedly depressed in LPS hearts compared with controls. Plasma nitrateitrite level was elevated in LPS rats, and ventricular NO production was enhanced as measured by electron spin resonance spectroscopy, Ca(2+)-independent NO synthase (NOS) activity, and inducible NOS immunohistochemistry. Ventricular superoxide production was also enhanced in LPS-treated hearts as seen by lucigenin chemiluminescence and xanthine oxidase activity. Increased nitrotyrosine staining (immunohistochemistry) and higher lipid hydroperoxides levels were also detected in LPS-treated hearts, indicating oxygen radical-induced stress. Enhanced generation of both NO and superoxide, and thus peroxynitrite, occur in dysfunctional hearts from endotoxemic rats.
机译:败血症期间自由基与心脏功能障碍的病因有关,但尚不清楚引起该病的实际物种。我们研究了脂多糖(LPS)处理的大鼠心脏中一氧化氮(NO),超氧化物和过亚硝酸盐的生成以及心脏的机械功能和效率。 LPS(4 mg / kg ip)或生理盐水(对照)处理后六小时,分离心脏并用循环的Krebs-Henseleit缓冲液灌注1 h,并以300次/分钟的速度进行搏动。与对照组相比,LPS心脏的心脏工作,O(2)消耗和心脏效率显着降低。在LPS大鼠中血浆硝酸盐/亚硝酸盐水平升高,并且通过电子自旋共振光谱,Ca(2+)独立的NO合酶(NOS)活性和诱导型NOS免疫组织化学测量,心室NO产生增加。从光泽精化学发光和黄嘌呤氧化酶活性可以看出,经LPS处理的心脏的心室超氧化物生成也得到增强。在接受LPS治疗的心脏中,还发现了硝基酪氨酸染色增加(免疫组织化学)和脂质过氧化氢水平升高,表明氧自由基引起的压力。内毒素血症大鼠功能失调的心脏中会产生大量的NO和超氧化物,从而过氧化亚硝酸盐。

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