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首页> 外文期刊>Basic Research in Cardiology: Official Journal of the German Association of Cardiovascular Research >Atrial overexpression of angiotensin-converting enzyme 2 improves the canine rapid atrial pacing-induced structural and electrical remodeling
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Atrial overexpression of angiotensin-converting enzyme 2 improves the canine rapid atrial pacing-induced structural and electrical remodeling

机译:血管紧张素转换酶2的心房过表达改善了犬快速心房起搏引起的结构和电重构

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The purpose of this study was to investigate whether atrial overexpression of angiotensin-converting enzyme 2 (ACE2) by homogeneous transmural atrial gene transfer can reverse atrial remodeling and its mechanisms in a canine atrial-pacing model. Twenty-eight mongrel dogs were randomly divided into four groups: Sham-operated, AF-control, gene therapy with adenovirus-enhanced green fluorescent protein (Ad-EGFP) and gene therapy with Ad-ACE2 (Ad-ACE2) (n = 7 per subgroup). AF was induced in all dogs except the Sham-operated group by rapid atrial pacing at 450 beats/min for 2 weeks. Ad-EGFP and Ad-ACE2 group then received epicardial gene painting. Three weeks after gene transfer, all animals except the Sham group underwent rapid atrial pacing for another 3 weeks and then invasive electrophysiological, histological and molecular studies. The Ad-ACE2 group showed an increased ACE2 and Angiotensin-(1-7) expression, and decreased Angiotensin II expression in comparison with Ad-EGFP and AF-control group. ACE2 overexpression attenuated rapid atrial pacing-induced increase in activated extracellular signal-regulated kinases and mitogen-activated protein kinases (MAPKs) levels, and decrease in MAPK phosphatase 1(MKP-1) level, resulting in attenuation of atrial fibrosis collagen protein markers and transforming growth factor-beta 1. Additionally, ACE2 overexpression also modulated the tachypacing-induced up-regulation of connexin 40, down-regulation of connexin 43 and Kv4.2, and significantly decreased the inducibility and duration of AF. ACE2 overexpression could shift the renin-angiotensin system balance towards the protective axis, attenuate cardiac fibrosis remodeling associated with up-regulation of MKP-1 and reduction of MAPKs activities, modulate tachypacing-induced ion channels and connexin remodeling, and subsequently reduce the inducibility and duration of AF.
机译:这项研究的目的是调查是否均匀的透壁心房基因转移的心房血管紧张素转换酶2(ACE2)的心房过度表达可以逆转心房重构及其在犬心房起搏模型中的机制。将28只杂种犬随机分为四组:假手术,房颤对照,腺病毒增强的绿色荧光蛋白(Ad-EGFP)基因治疗和Ad-ACE2(Ad-ACE2)基因治疗(n = 7)每个子组)。除假手术组外,所有狗均以450次/分的快速心房起搏持续2周诱发房颤。然后,Ad-EGFP和Ad-ACE2组接受心外膜基因绘画。基因转移后三周,除假手术组外,所有动物均进行了快速心房起搏,持续了三周,然后进行了侵入性电生理,组织学和分子学研究。与Ad-EGFP和AF对照组相比,Ad-ACE2组显示ACE2和血管紧张素(1-7)表达增加,而血管紧张素II表达降低。 ACE2的过表达减弱了快速的心房起搏诱导的激活的细胞外信号调节激酶和丝裂原激活的蛋白激酶(MAPKs)水平的增加,并降低了MAPK磷酸酶1(MKP-1)的水平,从而导致心房纤维化胶原蛋白标记和转化生长因子-β1.此外,ACE2的过表达还调节了快搏诱导的连接蛋白40的上调,连接蛋白43和Kv4.2的下调,并显着降低了AF的诱导性和持续时间。 ACE2的过度表达可能使肾素-血管紧张素系统的平衡向保护轴移动,减弱与MKP-1上调和MAPKs活性降低相关的心脏纤维化重塑,调节速激肽诱导的离子通道和连接蛋白重塑,从而降低诱导性和房颤的持续时间。

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