首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Extracellular Matrix in Cardiovascular Pathophysiology: Temporal changes in myocardial collagen matrix metalloproteinases and their tissue inhibitors in the left ventricular myocardium in experimental chronic mitral regurgitation in rodents
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Extracellular Matrix in Cardiovascular Pathophysiology: Temporal changes in myocardial collagen matrix metalloproteinases and their tissue inhibitors in the left ventricular myocardium in experimental chronic mitral regurgitation in rodents

机译:心血管病理生理学中的细胞外基质:在啮齿动物实验性二尖瓣反流中左心室心肌胶原基质金属蛋白酶及其组织抑制剂的时间变化

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摘要

Mitral regurgitation (MR) imposes left ventricular volume overload, triggering rapid ventricular dilatation, increased myocardial compliance, and, ultimately, cardiac dysfunction. Breakdown of the extracellular matrix has been hypothesized to drive these rapid changes, partially from an imbalance in the matrix metalloproteinases (MMPs) and their tissue inhibitors [tissue inhibitors of metalloproteinase (TIMPs)]. In the present study, we developed a rat model of severe MR that mimics the human condition and investigated the temporal changes in extracellular matrix-related genes, collagen biosynthesis proteins, and proteolytic enzymes over a 20-wk period. Male Sprague-Dawley rats were anesthetized to a surgical plane with mechanical ventilation, and a thoracotomy was performed to expose the apex. Using transesophageal ultrasound guidance, a needle was inserted into the beating heart to perforate the anterior mitral leaflet and create severe MR. Animals were survived for 20 wk, with some animals terminated at 2, 10, and 20 wk for analysis of left ventricular tissue. A sham group that underwent the same surgery without mitral leaflet perforation and MR were used as controls. At 2 wk post-MR, increased collagen gene expression was measured, but protein levels of collagen did not corroborate this finding. In parallel, MMP-1-to-TIMP-4, MMP-2-to-TIMP-1, and MMP-2-to-TIMP-3 ratios were significantly elevated, indicating a proteolytic milieu in the myocardium, possibly causing collagen degradation. By 20 wk, many of the initial differences seen in the proteolytic ratios were not observed, with an increase in collagen compared with the 2-wk time point. Altogether, this data indicates that an imbalance in the MMP-to-TIMP ratio may occur early and potentially contribute to the early dilatation and compliance observed structurally.>NEW & NOTEWORTHY In this rodent model of severe mitral regurgitation that mimics the human condition, eccentric left ventricular dilatation occurred rapidly and persisted over the 20-wk period with parallel changes in myocardial collagen and matrix metalloproteinases that may drive the extracellular matrix breakdown.
机译:二尖瓣关闭不全(MR)导致左心室容量超负荷,触发快速的心室扩张,增加心肌顺应性,并最终导致心功能不全。推测细胞外基质的分解可驱动这些快速变化,部分原因是基质金属蛋白酶(MMP)及其组织抑制剂[金属蛋白酶组织抑制剂(TIMPs)]失衡。在本研究中,我们开发了一种模仿人类状况的严重MR大鼠模型,并研究了20周内细胞外基质相关基因,胶原蛋白生物合成蛋白和蛋白水解酶的时间变化。用机械通气将雄性Sprague-Dawley大鼠麻醉至手术平面,并进行开胸手术以暴露出顶点。在经食道超声引导下,将针头插入跳动的心脏,使二尖瓣前小叶穿孔并产生严重的MR。动物存活20周,一些动物在2、10和20周终止以分析左心室组织。将未经二尖瓣穿孔和MR手术的假手术组作为对照组。 MR后2周,测量到胶原蛋白基因表达增加,但胶原蛋白水平并未证实这一发现。同时,MMP-1-to-TIMP-4,MMP-2-to-TIMP-1和MMP-2-to-TIMP-3的比例显着升高,表明心肌中存在蛋白水解环境,可能导致胶原蛋白降解。到20周时,未观察到许多蛋白水解率的初始差异,与2周时相比,胶原蛋白增加。总体而言,这些数据表明MMP与TIMP的比例失衡可能在早期发生,并可能在结构上观察到早期扩张和顺应性。> NEW&NOTEWORTHY 在这种严重的二尖瓣关闭不全的啮齿动物模型中模仿人类的情况,偏心的左心室扩张迅速发生并持续20周,并伴有心肌胶原蛋白和基质金属蛋白酶的平行变化,这可能会导致细胞外基质分解。

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