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首页> 外文期刊>Translational research: the journal of laboratory and clinical medicine >B-type natriuretic peptide enhances fibrotic effects via matrix metalloproteinase-2 expression in the mouse atrium in vivo and in human atrial myofibroblasts in vitro
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B-type natriuretic peptide enhances fibrotic effects via matrix metalloproteinase-2 expression in the mouse atrium in vivo and in human atrial myofibroblasts in vitro

机译:B型NatriuRetic肽通过体内和人心房肌纤维素在体外鼠群中的基质金属蛋白酶-2表达增强纤维化作用

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摘要

B-type natriuretic peptide (BNP) was approved by the US Food and Drug Administration in 2001 for the treatment of heart failure. However, the effects of BNP in clinical applications are controversial and uncertain. Recently, study indicated that high BNP levels are associated with an increased risk of developing atrial fibrillation. In this study, we investigated the direct effects of BNP on INF-alpha-induced atrial fibrosis mice, as well as its effects on human atrial myofibroblasts. We found that injecting INF-alpha-induced mice with recombinant human BNP enhanced atrial fibrosis via matrix metalloproteinase-2 (MMP-2) expression and collagen accumulation. Furthermore, we found that BNP stimulated MMP-2 expression in human atrial myofibroblasts. Treatment of human atrial myofibroblasts with cycloheximide had no effect on this outcome; however, treatment of cells with MG132 enhanced BNP-induced MMP-2 expression, indicating that protein stability and inhibition of proteasome-mediated protein degradation pathways are potentially involved. Inhibition of SIRT1 significantly decreased BNP-induced MMP-2 expression. Additionally, con focal and coimmunoprecipitation data indicated that BNP-regulated MMP-2 expression are likely to be mediated through direct interaction with SIRT1, which is thought to deacetylate MMP-2 and to increase its protein stability in human atrial myofibroblasts. Finally, we confirmed that SIRT1 is expressed and cytoplasmically redistributed as well as colocalized with MMP-2 in mouse fibrotic atrial tissue. We suggest a possible fibrosis-promoting role of BNP in the atrium, although the antifibrotic properties of BNP in the ventricle have been reported in previous studies, and that the coordination between MMP-2 and SIRT1 in BNP-induced atrial myofibroblasts participates in atrial fibrosis.
机译:B型利钠肽(BNP)于2001年通过美国食品和药物管理局批准用于治疗心力衰竭。然而,BNP在临床应用中的影响是有争议的和不确定的。最近,研究表明,高BNP水平与发育心房颤动的风险增加有关。在这项研究中,我们研究了BNP对INF-α诱导的心房纤维化小鼠的直接影响,以及其对人心房肌纤维细胞的影响。我们发现,通过基质金属蛋白酶-2(MMP-2)表达和胶原堆积,将具有重组人BNP增强的心房纤维化增强的心房纤维化的注射INF-α诱导的小鼠。此外,我们发现BNP刺激了人心房肌纤维细胞中的MMP-2表达。用环己酰亚胺治疗人心房肌纤维细胞对该结果没有影响;然而,用Mg132增强的BNP诱导的MMP-2表达的细胞治疗细胞,表明蛋白质稳定性和抑制蛋白酶介导的蛋白质降解途径可能涉及。抑制SIRT1显着降低了BNP诱导的MMP-2表达。另外,Conocal和CoImMunoprecipitipitipitipitipitipitipitipitipitipitipitipitipitipitipitipitipitipitipation数据表明,通过与SIRT1的直接相互作用介导BNP调节的MMP-2表达,这被认为是脱乙酰化物MMP-2并增加其在人心房肌纤维细胞中的蛋白质稳定性。最后,我们确认SIRT1被表达和细胞质重新分布,并且在小鼠纤维色组织中与MMP-2结合。我们提出了BNP在中庭的可能纤维化促进作用,尽管在先前的研究中报告了心室中BNP的抗纤维化特性,并且BNP诱导的心房纤维素细胞中MMP-2和SIRT1之间的协调参与心房纤维化。

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