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Renoprotective Mechanism of Remote Ischemic Preconditioning Based on Transcriptomic Analysis in a Porcine Renal Ischemia Reperfusion Injury Model

机译:基于转录组学的远程缺血预处理的肾脏保护机制在猪肾缺血再灌注损伤模型中的作用

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摘要

Ischemic preconditioning (IPC) is a well-known phenomenon in which tissues are exposed to a brief period of ischemia prior to a longer ischemic event. This technique produces tissue tolerance to ischemia reperfusion injury (IRI). Currently, IPC’s mechanism of action is poorly understood. Using a porcine single kidney model, we performed remote IPC with renal IRI and evaluated the IPC mechanism of action. Following left nephrectomy, 15 female Yorkshire pigs were divided into three groups: no IPC and 90 minutes of warm ischemia (control), remote IPC immediately followed by 90 minutes of warm ischemia (rIPCe), and remote IPC with 90 minutes of warm ischemia performed 24 hours later (rIPCl). Differential gene expression analysis was performed using a porcine-specific microarray. The microarray analysis of porcine renal tissues identified 1,053 differentially expressed probes in preconditioned pigs. Among these, 179 genes had altered expression in both the rIPCe and rIPCl groups. The genes were largely related to oxidation reduction, apoptosis, and inflammatory response. In the rIPCl group, an additional 848 genes had altered expression levels. These genes were primarily related to immune response and inflammation, including those coding for cytokines and cytokine receptors and those that play roles in the complement system and coagulation cascade. In the complement system, the membrane attack complex was determined to be sublytic, because it colocalized with phosphorylated extracellular signal-regulated kinase. Furthermore, alpha 2 macroglobulin, tissue plasminogen activator, uterine plasmin trypsin inhibitor, and arginase-1 mRNA levels were elevated in the rIPCl group. These findings indicate that remote IPC produces renoprotective effects through multiple mechanisms, and these effects develop over a long timeframe rather than immediately following IPC.
机译:缺血预处理(IPC)是一种众所周知的现象,其中在较长的缺血事件之前,组织会经历短暂的局部缺血。该技术产生组织对缺血再灌注损伤(IRI)的耐受性。目前,人们对IPC的作用机理了解甚少。使用猪单肾模型,我们通过肾脏IRI进行了远程IPC并评估了IPC的作用机理。左肾切除术后,将15只约克郡雌性猪分为三组:无IPC和90分钟的温暖缺血(对照),立即进行远程IPC,然后进行90分钟的温暖缺血(rIPCe),并进行具有90分钟的温暖缺血的远端IPC 24小时后(rIPCl)。使用猪特异性微阵列进行差异基因表达分析。猪肾脏组织的微阵列分析鉴定了预处理猪中的1,053个差异表达的探针。在这些基因中,有179个基因在rIPCe和rIPC1组中均有表达改变。这些基因在很大程度上与氧化还原,细胞凋亡和炎症反应有关。在rIPC1组中,另外的848个基因改变了表达水平。这些基因主要与免疫反应和炎症有关,包括那些编码细胞因子和细胞因子受体的基因,以及在补体系统和凝血级联中发挥作用的基因。在补体系统中,膜攻击复合物被确定为可分解的,因为它与磷酸化的细胞外信号调节激酶共定位。此外,rIPCl组的α2巨球蛋白,组织纤溶酶原激活物,子宫纤溶酶胰蛋白酶抑制剂和精氨酸酶-1 mRNA水平升高。这些发现表明,远程IPC通过多种机制产生了肾脏保护作用,并且这些作用会持续很长时间,而不是紧随IPC之后。

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