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首页> 外文期刊>Scandinavian cardiovascular journal : >Exploring effects of remote ischemic preconditioning in a pig model of hypothermic circulatory arrest
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Exploring effects of remote ischemic preconditioning in a pig model of hypothermic circulatory arrest

机译:远程缺血预处理在低温循环骤停血管模型中的影响

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Objectives. During aortic and cardiac surgery, risks for mortality and morbidity are inevitable. Surgical setups involving deep hypothermic circulatory arrest (DHCA) are effective to achieve organ protection against ischemic injury. The aim of this study was to identify humoural factors mediating additive protective effects of remote ischemic preconditioning (RIPC) in a porcine model of DHCA. Design. Twenty-two pigs were randomized into the RIPC group (n=11) and the control group (n=11). The RIPC group underwent four 5-minute hind limb ischemia-reperfusion cycles prior to cardiopulmonary bypass and DHCA. All animals underwent identical surgical procedures including 60min DHCA at 18 degrees C. Blood samples were collected from vena cava and sagittal sinus at several time points. After the 8-hour follow-up period, the brain, heart, and kidney tissue samples were collected for tissue analyses. Results. Serum levels of brain damage marker S100B recovered faster in the RIPC group, after 4hours of the arrest, (p<.05). Systemic lactate levels were lower and cardiac index was higher in the RIPC group postoperatively. Immunohistochemical cerebellum regional scores of antioxidant response regulator Nrf2 were better in the RIPC group (mean: 1.1, IQR: 0.0-2.5) compared with the control group (mean: 0.0, IQR: 0.0-0.0), reaching borderline statistical significance (p=.064). RIPC induced detectable modulations of plasma proteome and metabolites. Conclusions. The faster recovery of S100B, lower systemic lactate levels and favourable regional antioxidant response suggest possible neuronal cellular and mitochondrial protection by RIPC, whereas better cardiac index underlines functional effects of RIPC. The exact humoural factor remains unclear.
机译:目标。在主动脉和心脏手术期间,死亡率和发病率的风险是不可避免的。涉及深度低温循环停止(DHCA)的外科设置有效地实现了抗缺血性损伤的器官保护。本研究的目的是鉴定介导远程缺血预处理(RIPC)在DHCA猪模型中介导的幼儿系植物的因素。设计。将二十两只猪随机分为RIPC组(n = 11)和对照组(n = 11)。 RIPC组在心肺旁路和DHCA之前接受了四个5分钟的后肢缺血再灌注循环。所有动物接受相同的外科手术,包括在18℃下的60min DHCA,在几个时间点从腔静脉和矢状窦收集血液样品。在8小时后续期后,收集大脑,心脏和肾组织样品进行组织分析。结果。血清脑损伤标记物S100B在撕裂组中恢复得更快,在4小时的停滞后,(P <.05)。全身乳酸水平术后裂纹组较低,心脏指数较高。与对照组相比,免疫组化抗氧化响应调节剂NRF2的抗氧化反应调节剂NRF2的区域评分(平均:1.1,IQR:0.0-2.5)(平均:0.0,IQR:0.0.0),达到边界统计学意义(P = .064)。 RIPC诱导的血浆蛋白质组和代谢物的可检测调制。结论。 S100b的速度更快,较低的全身乳酸水平和有利的区域抗氧化反应表明,RIPC可能的神经元细胞和线粒体保护,而更好的心脏指数强调RIPC的功能作用。确切的幼儿因子仍然不清楚。

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