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首页> 外文期刊>General Physiology and Biophysics >Hydroxyl radicals' production and ECG parameters during ischemia and reperfusion in rat, guinea pig and rabbit isolated heart
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Hydroxyl radicals' production and ECG parameters during ischemia and reperfusion in rat, guinea pig and rabbit isolated heart

机译:大鼠,豚鼠和家兔离体心脏缺血再灌注过程中羟自由基的产生和心电图参数

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摘要

Ischemic and reperfusion injury is a serious condition related to numerous biochemical and electrical abnormalities of the myocardium. It has been repeatedly studied in various animal models. In this study, the production of hydroxyl radicals and electrophysiological parameters were compared in three species. Rat, guinea pig and rabbit isolated hearts were perfused according to Langendorff under strictly identical conditions. The heart rate and arrhythmia were monitored during ischemia and reperfusion periods at defined time intervals; the production of hydroxyl radical was determined by HPLC as 2.5-dihydroxybenzoic acid (2.5-DHBA) formed by salicylic acid hydroxylation. Relationship between arrhythmias and production of 2.5-DHBA was studied. The inter-species differences were observed in timing of arrhythmias onset and their severity, and in the production of 2.5-DHBA in both ischemia and reperfusion. The most considerable changes were observed in rats, where arrhythmias appeared early and with highest severity during ischemia on one side and the regular rhythm was restored early and completely during reperfusion. The corresponding changes in the production of 2.5-DHBA were observed. It can be concluded that rat isolated heart is the most suitable model for evaluation of ischemia/reperfusion injury under given experimental conditions.
机译:缺血和再灌注损伤是与心肌的许多生化和电异常有关的严重状况。已经在各种动物模型中对其进行了反复研究。在这项研究中,比较了三种物种的羟基自由基的产生和电生理参数。在严格相同的条件下,根据Langendorff灌注大鼠,豚鼠和兔子的离体心脏。在缺血和再灌注期间以规定的时间间隔监测心率和心律不齐;通过HPLC确定羟基自由基的产生为通过水杨酸羟基化形成的2.5-二羟基苯甲酸(2.5-DHBA)。研究了心律失常与2.5-DHBA产生之间的关系。种间差异观察到心律不齐的发作时间及其严重性,以及缺血和再灌注中2.5-DHBA的产生。在大鼠中观察到最显着的变化,其中心律不齐出现较早,一侧缺血时严重程度最高,并且在再灌注过程中早期和完全恢复了正常节律。观察到2.5-DHBA产生的相应变化。可以得出结论,在给定的实验条件下,大鼠离体心脏是评估缺血/再灌注损伤的最合适模型。

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