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首页> 外文期刊>American Journal of Physiology >Downregulation of L-type Ca~(2+) channel in rat mesenteric arteries leads to loss of smooth muscle contractile phenotype and inward hypertrophic remodeling
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Downregulation of L-type Ca~(2+) channel in rat mesenteric arteries leads to loss of smooth muscle contractile phenotype and inward hypertrophic remodeling

机译:大鼠肠系膜动脉L型Ca〜(2+)通道的下调导致平滑肌收缩表型丧失和向内肥大重塑

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摘要

L-type Ca~(2+) channels (LTCCs) are important for vascular smooth muscle cell (VSMC) contraction, as well as VSMC differentiation, as indicated by loss of LTCCs during VSMC dedifferentiation. However, it is not clear whether loss of LTCCs is a primary event underlying phenotypic modulation or whether loss of LTCCs has significance for vascular structure. We used small interference RNA (siRNA) transfection in vivo to investigate the role of LTCCs in VSMC phenotypic expression and structure of rat mesenteric arteries. siRNA reduced LTCC mRNA and protein expression in rat mesenteric arteries 3 days after siRNA transfection to 12.7 ± 0.7% and 47.3 ± 13%, respectively: this was associated with an increased resting intracellular Ca~(2+) concentration ([Ca~(2+)]_i). Despite the high [Ca~(2+)]i, the contractility was reduced (tension development to nor-epinephrine was 3.5 ± 0.2 N/m and 0.8 ± 0.2 N/m for sham-transfected and downregulated arteries respectively; P < 0.05). Expression of contractile phenotype marker genes was reduced in arteries downregulated for LTCCs. Phenotypic changes were associated with a 45% increase in number of VSMCs and a consequent increase of media thickness and media area. Ten days after siRNA transfection arterial structure was again normalized. The contractile responses of LTCC-siRNA transfected arteries were elevated in comparison with matched controls 10 days after transfection. The study provides strong evidence for causal relationships between LTCC expression and VSMC contractile phenotype, as well as novel data addressing the complex relationship between VSMC contractility, phenotype, and vascular structure. These findings are relevant for understanding diseases, associated with phenotype changes of VSMC and vascular remodeling, such as atherosclerosis and hypertension.
机译:L型Ca〜(2+)通道(LTCC)对于血管平滑肌细胞(VSMC)的收缩以及VSMC的分化非常重要,正如VSMC去分化过程中LTCC的丧失所表明的那样。然而,尚不清楚LTCC的丧失是表型调节的主要事件还是LTCC的丧失是否对血管结构具有重要意义。我们在体内使用小干扰RNA(siRNA)转染来研究LTCC在VSMC表型表达和大鼠肠系膜动脉结构中的作用。 siRNA转染3天后,大鼠肠系膜动脉的LTCC mRNA和蛋白表达分别降低至12.7±0.7%和47.3±13%:这与静息细胞内Ca〜(2+)浓度升高有关[[Ca〜(2 +)] _ i)。尽管[Ca〜(2 +)] i较高,但收缩力却降低了(假手术和下调的动脉,去甲肾上腺素的张力分别为3.5±0.2 N / m和0.8±0.2 N / m; P <0.05 )。在为LTCCs下调的动脉中,收缩表型标记基因的表达减少。表型的变化与VSMC数量增加45%以及随之而来的培养基厚度和培养基面积增加有关。 siRNA转染后十天,动脉结构再次恢复正常。转染10天后,与匹配的对照相比,LTCC-siRNA转染的动脉的收缩反应升高。该研究为LTCC表达与VSMC收缩表型之间的因果关系提供了有力证据,也为解决VSMC收缩性,表型和血管结构之间的复杂关系提供了新数据。这些发现与了解疾病有关,这些疾病与VSMC的表型变化和血管重塑有关,例如动脉粥样硬化和高血压。

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