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Characterization of the Inflammatory and Fibrotic Response in a Mouse Model of Cardiac Pressure Overload

机译:心脏压力超负荷小鼠模型中炎症和纤维化反应的特征

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摘要

Myocardial fibrosis is an integral component of most cardiac pathologic conditions and contributes to the development of both systolic and diastolic dysfunction. Because of the availability of genetically manipulated animals, mouse models are essential for understanding the mechanisms involved in the pathogenesis of cardiac fibrosis. Accordingly, we characterized the inflammatory and fibrotic response in a mouse model of cardiac pressure overload due to transverse aortic constriction (TAC). Following TAC, mouse hearts exhibited induction of chemokines and proinflammatory cytokines, associated with macrophage, but not neutrophil, infiltration. Induction of inflammatory cytokines was followed by a late upregulation of Transforming Growth Factor (TGF)-β isoforms, activation of the Smad2/3 and Smad1/5 pathways, induction of matricellular proteins, and deposition of collagen. Inflammatory activity decreased after 28 days of TAC; at this timepoint established fibrosis was noted, accompanied by ventricular dilation and systolic dysfunction. Late induction of inhibitory mediators, such as TGF-β may play an essential role in the transition from inflammation to fibrosis by suppressing inflammatory gene synthesis while inducing matrix deposition. Our findings identify molecular mediators and pathways with a potential role in cardiac fibrosis laying the foundations for studies exploring the pathogenesis of fibrotic cardiac remodeling using genetically targeted mice.
机译:心肌纤维化是大多数心脏病理状况不可或缺的组成部分,并导致收缩功能和舒张功能障碍的发展。由于存在基因改造动物,因此小鼠模型对于了解参与心脏纤维化发病机制的机制至关重要。因此,我们表征了由于横向主动脉缩窄(TAC)引起的心脏压力超负荷的小鼠模型中的炎症和纤维化反应。 TAC后,小鼠心脏表现出趋化因子和促炎细胞因子的诱导,与巨噬细胞相关,但与嗜中性粒细胞浸润无关。炎性细胞因子的诱导之后是转化生长因子(TGF)-β亚型的后期上调,Smad2 / 3和Smad1 / 5途径的激活,母体细胞蛋白的诱导以及胶原蛋白的沉积。 TAC 28天后,炎症活动减少;在这个时间点注意到已建立纤维化,并伴有心室扩张和收缩功能障碍。抑制性介体(例如TGF-β)的后期诱导可能在抑制炎症基因合成的同时诱导基质沉积,从而在从炎症向纤维化的转变中发挥重要作用。我们的发现确定了在心脏纤维化中可能具有潜在作用的分子介体和途径,为使用遗传靶向小鼠探索纤维化心脏重塑的发病机理奠定了基础。

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