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Transcriptional Alterations by Ischaemic Postconditioning in a Pig Infarction Model: Impact on Microvascular Protection

机译:猪梗死模型中缺血后后处理的转录改变:对微血管保护的影响

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is reveale Although the application of cardioprotective ischaemia/reperfusion (I/R) stimuli after myocardial infarction (MI) is a promising concept for salvaging the myocardium, translation to a clinical scenario has not fulfilled expectations. We have previously shown that in pigs, ischaemic postconditioning (IPostC) reduces myocardial oedema and microvascular obstruction (MVO), without influencing myocardial infarct size. In the present study, we analyzed the mechanisms underlying the IPostC-induced microvascular protection by transcriptomic analysis, followed by pathway analysis. Closed-chest reperfused MI was induced by 90 min percutaneous balloon occlusion of the left anterior descending coronary artery, followed by balloon deflation in anaesthetised pigs. Animals were randomised to IPostC (n = 8), MI (non-conditioned, n = 8), or Control (sham-operated, n = 4) groups. After three hours or three days follow-up, myocardial tissue samples were harvested and subjected to RNA-seq analysis. Although the transcriptome analysd similar expression between IPostC and MI in transcripts involved in cardioprotective pathways, we identified gene expression changes responding to IPostC at the three days follow-up. Focal adhesion signaling, downregulated genes participating in cardiomyopathy and activation of blood cells may have critical consequences for microvascular protection. Specific analyses of the gene subsets enriched in the endothelium of the infarcted area, revealed strong deregulation of transcriptional functional clusters, DNA processing, replication and repair, cell proliferation, and focal adhesion, suggesting sustentative function in the endothelial cell layer protection and integrity. The spatial and time-dependent transcriptome analysis of porcine myocardium supports a protective effect of IPostC on coronary microvasculature post-MI.
机译:虽然心肌梗死后心脏保护性缺血/再灌注(I / R)刺激(MI)刺激的刺激是持有心肌的有前途的概念,但对临床情景的翻译没有满足的预期。我们之前已经表明,在猪,缺血性后处理(iPostc)减少了心肌水肿和微血管阻塞(MVO),而不会影响心肌梗塞大小。在本研究中,我们通过转录组分析分析了upostc诱导的微血管保护潜在的机制,其次是途径分析。闭合胸部再灌注MI诱导90分钟经皮球囊闭塞左前期下降冠状动脉,然后在麻醉猪中的气囊通气。将动物随机化为iPostC(n = 8),mi(无条件,n = 8),或对照(假手术,n = 4)组。在三小时或三天后进行后续后,收获心肌组织样品并进行RNA-SEQ分析。虽然在涉及心脏保护途径中的转录物和MI之间的转录组和MI之间的同类表达,但我们在三天随访时鉴定了对Ipostc的基因表达变化。局灶性粘附信号传导,参与心血管病变和血细胞活化的下调基因可能对微血管保护具有关键后果。富含梗死区域内皮的基因亚组的​​具体分析显示,转录功能簇,DNA加工,复制和修复,细胞增殖和局灶性粘附的强大放松管制,表明内皮细胞层保护和完整性的持续功能。猪心肌的空间和时间依赖性转录组分析支持iPostc对冠状动脉微血管特征后Mi的保护作用。

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