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Sequential activation of different pathway networks in ischemia-affected and non-affected myocardium inducing intrinsic remote conditioning to prevent left ventricular remodeling

机译:缺血性和非缺血性心肌中不同通路网络的顺序激活诱导内在的远程调节以防止左心室重塑

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摘要

We have analyzed the pathway networks of ischemia-affected and remote myocardial areas after repetitive ischemia/reperfusion (r-I/R) injury without ensuing myocardial infarction (MI) to elaborate a spatial- and chronologic model of cardioprotective gene networks to prevent left ventricular (LV) adverse remodeling. Domestic pigs underwent three cycles of 10/10 min r-I/R by percutaneous intracoronary balloon inflation/deflation in the mid left anterior descending artery, without consecutive MI. Sham interventions (n = 8) served as controls. Hearts were explanted at 5 h (n = 6) and 24 h (n = 6), and transcriptomic profiling of the distal (ischemia-affected) and proximal (non-affected) anterior myocardial regions were analyzed by next generation sequencing (NGS) and post-processing with signaling pathway impact and pathway network analyses. In ischemic region, r-I/R induced early activation of Ca-, adipocytokine and insulin signaling pathways with key regulator STAT3, which was also upregulated in the remote areas together with clusterin (CLU) and TNF-alpha. During the late phase of cardioprotection, antigen immunomodulatory pathways were activated with upregulation of STAT1 and CASP3 and downregulation of neprilysin in both zones, suggesting r-I/R induced intrinsic remote conditioning. The temporo-spatially differently activated pathways revealed a global myocardial response, and neprilysin and the STAT family as key regulators of intrinsic remote conditioning for prevention of adverse remodeling.
机译:我们已经分析了反复缺血/再灌注(rI / R)损伤后受缺血影响和远端心肌区域的通路网络,而没有引起心肌梗塞(MI),以阐述保护心脏基因网络的时空模型,以预防左心室(LV )不利的重塑。家猪在左中前降支动脉中经皮冠状动脉内球囊扩张/放气经历了10/10 min r-I / R的三个周期,而没有连续的MI。假手术(n = 8)作为对照。在第5小时(n = 6)和第24小时(n = ex6)移出心脏,通过下一代测序(NGS)分析远端(缺血影响)和近端(未受影响)前心肌区域的转录组分布信号通路影响和通路网络分析的后期处理。在缺血区域,r-I / R通过关键调节剂STAT3诱导Ca-,脂肪细胞因子和胰岛素信号转导通路的早期激活,在远端区域,clusterin(CLU)和TNF-alpha也被上调。在心脏保护的后期,抗原免疫调节通路被激活,STAT1和CASP3上调,而脑啡肽酶在两个区域中下调,提示r-I / R引起内在的远程调节。时空上不同的激活途径揭示了整体心肌反应,而脑啡肽酶和STAT家族是内在远程调节的关键调控因子,可防止不良重塑。

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