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Hydrogen preconditioning during ex vivo lung perfusion improves the quality of lung grafts in rats

机译:离体肺灌注期间的氢气预处理可改善大鼠肺移植的质量

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BACKGROUND: Although the benefits of ex vivo lung perfusion (EVLP) have been globally advocated, the potentially deleterious effects of applying EVLP, in particular activation of proinflammatory cascades and alteration of metabolic profiles, are rarely discussed. This study examined proinflammatory events and metabolic profiles in lung grafts on EVLP and tested whether preconditioning lung grafts with inhaled hydrogen, a potent, cytoprotective gaseous signaling molecule, would alter the lungs' response to EVLP. METHODS: Rat heart-lung blocks were mounted on an acellular normothermic EVLP system for 4 hr and ventilated with air or air supplemented with 2% hydrogen. Arterial and airway pressures were monitored continuously; perfusate was sampled hourly to examine oxygenation. After EVLP, the lung grafts were transplanted orthotopically into syngeneic rats, and lung function was examined. RESULTS: Placing lung grafts on EVLP resulted in significant upregulation of the messenger RNAs for several proinflammatory cytokines, higher glucose consumption, and increased lactate production. Hydrogen administration attenuated proinflammatory changes during EVLP through upregulation of the heme oxygenase-1. Hydrogen administration also promoted mitochondrial biogenesis and significantly decreased lactate production. Additionally, in the hydrogen-treated lungs, the expression of hypoxia-inducible factor-1 was significantly attenuated during EVLP. These effects were maintained throughout EVLP and led to better posttransplant lung graft function in the recipients of hydrogen-treated lungs. CONCLUSIONS: Lung grafts on EVLP exhibited prominent proinflammatory changes and compromised metabolic profiles. Preconditioning lung grafts using inhaled hydrogen attenuated these proinflammatory changes, promoted mitochondrial biogenesis in the lungs throughout the procedure, and resulted in better posttransplant graft function.
机译:背景:尽管已经广泛地提出了离体肺灌注(EVLP)的好处,但很少讨论应用EVLP的潜在有害作用,特别是促炎级联反应的激活和代谢谱的改变。这项研究检查了用EVLP进行的肺移植物中的促炎事件和代谢状况,并测试了用吸入氢(一种有效的细胞保护性气体信号分子)预处理肺移植物是否会改变肺对EVLP的反应。方法:将大鼠心肺模块安装在无细胞温热EVLP系统上4个小时,并用空气或补充有2%氢的空气通风。连续监测动脉和气道压力;每小时取样一次灌注液以检查氧合作用。 EVLP后,将肺移植物原位移植到同系大鼠中,并检查肺功能。结果:将肺移植物放置在EVLP上导致多种促炎细胞因子信使RNA的显着上调,更高的葡萄糖消耗和乳酸产量的增加。氢的给药通过上调血红素加氧酶-1减弱了EVLP期间的促炎性变化。氢的施用还促进了线粒体的生物发生并显着降低了乳酸的产生。另外,在氢处理的肺中,缺氧诱导因子-1的表达在EVLP期间显着减弱。这些效应在整个EVLP中都得到了维持,并在氢处理过的肺的受体中导致了更好的移植后肺移植功能。结论:EVLP上的肺移植物表现出明显的促炎性变化和代谢特性受损。在整个过程中,使用吸入氢气对肺移植物进行预处理可以减弱这些促炎性变化,促进肺中线粒体的生物发生,并改善移植后的移植物功能。

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