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首页> 外文期刊>Injury >Ischaemic post-conditioning protects lung from ischaemia-reperfusion injury by up-regulation of haeme oxygenase-1.
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Ischaemic post-conditioning protects lung from ischaemia-reperfusion injury by up-regulation of haeme oxygenase-1.

机译:缺血后处理可通过上调血红素加氧酶-1来保护肺免受缺血再灌注损伤。

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OBJECTIVE: The emergence of ischaemic post-conditioning (IPO) provides a potential method for experimentally and clinically attenuating various types of organ injuries. There has been little work, however, examining its effects in the setting of lung ischaemia reperfusion (IR). The stress protein, haeme oxygenase-1 (HO-1), has been found to exert a potent, protective role in a variety of lung injury models. In this study, we hypothesised that the induction of HO-1 by IPO plays a protective role against the deleterious effects of IR in the lung. METHODS: Anaesthetised and mechanically ventilated adult Sprague-Dawley rats were randomly assigned to one of the following groups (n=8 each): the sham-operated control group, the IR group (40 min of left-lung ischaemia and 105 min of reperfusion), the IPO group (three successive cycles of 30-s reperfusion per 30-s occlusion before restoring full perfusion) and the ZnPPIX+IPO group (ZnPPIX, an inhibitor of HO-1, was injected intra-peritoneally at 20 mg kg(-1) 24h prior to the experiment and the rest of the procedures were similar to that of the IPO group). Lung injury was assessed by arterial blood gas analysis, wet-to-dry lung weight ratio and tissue histological changes. The extent of lipid peroxidation was determined by measuring plasma levels of malondialdehyde (MDA) production. Expression of HO-1 was determined by immunohistochemistry. RESULTS: Lung IR resulted in a significant reduction of PaO(2) (data in IR, P<0.05 vs. data in sham) and increase of lung wet-to-dry weight ratio, accompanied with increased MDA production and severe lung pathological morphological changes as well as a compensatory increase in HO-1 protein expression, as compared with sham (All P<0.05). IPO markedly attenuated all the above pathological changes seen in the IR group and further increased HO-1 expression. Treatment with ZnPPIX abolished all the protective effects of post-conditioning. CONCLUSION: It may be concluded that IPO protects IR-induced lung injury via induction of HO-1.
机译:目的:缺血后处理(IPO)的出现为临床和临床减轻各种类型的器官损伤提供了一种潜在的方法。然而,几乎没有工作来研究其在肺缺血再灌注(IR)环境中的作用。已经发现应激蛋白血红素加氧酶-1(HO-1)在多种肺损伤模型中发挥了有效的保护作用。在这项研究中,我们假设IPO诱导HO-1对IR对肺部的有害作用起保护作用。方法:将麻醉和机械通气的成年Sprague-Dawley大鼠随机分为以下一组(每组8只):假手术对照组,IR组(左肺缺血40分钟和再灌注105分钟) ),IPO组(在恢复完全灌注之前每30s闭塞连续30s再灌注30个循环)和ZnPPIX + IPO组(ZnPPIX,HO-1抑制剂,以20 mg kg( -1)实验前24小时,其余程序与IPO组类似。通过动脉血气分析,肺干湿比和组织组织学变化评估肺损伤。脂质过氧化的程度通过测量血浆丙二醛(MDA)产生水平来确定。 HO-1的表达通过免疫组织化学确定。结果:肺IR导致PaO(2)显着降低(IR中的数据,P <0.05,与假手术中的数据相比),并且肺干重比增加,同时MDA产生增加和严重的肺病理形态与假手术相比,HO-1蛋白表达发生了变化,并且补偿性增加(所有P <0.05)。 IPO明显减弱了IR组中所有上述病理变化,并进一步增加了HO-1表达。 ZnPPIX处理消除了后处理的所有保护作用。结论:可以得出结论,IPO通过诱导HO-1保护IR诱导的肺损伤。

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