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从实验性代偿性压力超负荷性心肌肥厚转变为失代偿之前肌动蛋白异构体表达的调节

Modulation of actin isoform expression before the transition from experimental compensated pressure-overload cardiac hypertrophy to decompensation.

作者信息

Berni Roberta, Savi Monia, Bocchi Leonardo, Delucchi Francesca, Musso Ezio, Chaponnier Christine, Gabbiani Giulio, Clement Sophie, Stilli Donatella

机构信息

Dept. of Evolutionary and Functional Biology, Physiology Section, Univ. of Parma, V. le G. P. Usberti 11/A, I-43100, Italy.

出版信息

Am J Physiol Heart Circ Physiol. 2009 May;296(5):H1625-32. doi: 10.1152/ajpheart.01057.2008. Epub 2009 Feb 27.

DOI:10.1152/ajpheart.01057.2008
PMID:19252091
Abstract

In a rat model of long-lasting pressure-overload hypertrophy, we investigated whether changes in the relative expression of myocardial actin isoforms are among the early signs of ventricular mechanical dysfunction before the transition toward decompensation. Forty-four rats with infrarenal aortic banding (AC rats) were studied. Hemodynamic parameters were measured 1 mo (AC(1) group; n = 20) or 2 mo (AC(2); n = 24) after aortic ligature. Then subgroups of AC(1) and AC(2) left ventricles (LV) were used to evaluate 1) LV anatomy and fibrosis (morphometry), 2) expression levels (immunoblotting) and spatial distribution (immunohistochemistry) of alpha-skeletal actin (alpha-SKA), alpha-cardiac actin (alpha-CA), and alpha-smooth muscle actin (alpha-SMA), and 3) cell mechanics and calcium transients in enzimatically isolated myocytes. Although the two AC groups exhibited a comparable degree of hypertrophy (+30% in LV mass; +20% in myocyte surface) and a similar increase in the amount of fibrosis compared with control animals (C group; n = 22), a worsening of LV mechanical performance was observed only in AC(2) rats at both organ and cellular levels. Conversely, AC(1) rats exhibited enhanced LV contractility and preserved cellular contractile behavior associated with increased calcium transients. Alpha-SKA expression was upregulated (+60%) in AC(1). In AC(2) ventricles, prolonged hypertension also induced a significant increase in alpha-SMA expression, mainly at the level of arterial vessels. No significant differences among groups were observed in alpha-CA expression. Our findings suggest that alpha-SKA expression regulation and wall remodeling of coronary arterioles participate in the development of impaired kinetics of contraction and relaxation in prolonged hypertension before the occurrence of marked histopathologic changes.

摘要

在一个持久压力超负荷肥大的大鼠模型中,我们研究了心肌肌动蛋白异构体相对表达的变化是否是在向失代偿转变之前心室机械功能障碍的早期迹象之一。对44只进行肾下主动脉缩窄的大鼠(AC大鼠)进行了研究。在主动脉结扎后1个月(AC(1)组;n = 20)或2个月(AC(2)组;n = 24)测量血流动力学参数。然后使用AC(1)组和AC(2)组左心室(LV)的亚组来评估:1)左心室解剖结构和纤维化(形态测量);2)α-骨骼肌肌动蛋白(α-SKA)、α-心肌肌动蛋白(α-CA)和α-平滑肌肌动蛋白(α-SMA)的表达水平(免疫印迹)和空间分布(免疫组织化学);3)酶解分离的心肌细胞中的细胞力学和钙瞬变。尽管与对照动物(C组;n = 22)相比,两个AC组表现出相当程度的肥大(左心室质量增加30%;心肌细胞表面积增加20%)以及纤维化量的相似增加,但仅在AC(2)大鼠的器官和细胞水平上观察到左心室机械性能恶化。相反,AC(1)大鼠表现出增强的左心室收缩力和保留的细胞收缩行为,伴有钙瞬变增加。AC(1)组中α-SKA表达上调(+60%)。在AC(2)组心室中,长期高血压还导致α-SMA表达显著增加,主要在动脉血管水平。各组之间α-CA表达未观察到显著差异。我们的研究结果表明,α-SKA表达调节和冠状动脉小动脉壁重塑参与了长期高血压在出现明显组织病理学变化之前收缩和舒张动力学受损的发展过程。

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