心脏重塑发生与进展的分子机制综述

A Review of the Molecular Mechanisms Underlying the Development and Progression of Cardiac Remodeling.

作者信息

Schirone Leonardo, Forte Maurizio, Palmerio Silvia, Yee Derek, Nocella Cristina, Angelini Francesco, Pagano Francesca, Schiavon Sonia, Bordin Antonella, Carrizzo Albino, Vecchione Carmine, Valenti Valentina, Chimenti Isotta, De Falco Elena, Sciarretta Sebastiano, Frati Giacomo

机构信息

Department of Medical Surgical Sciences and Biotechnologies, "La Sapienza" University of Rome, Latina, Italy.

Department of AngioCardioNeurology, IRCCS Neuromed, Pozzilli, Italy.

出版信息

Oxid Med Cell Longev. 2017;2017:3920195. doi: 10.1155/2017/3920195. Epub 2017 Jul 2.

Abstract

Pathological molecular mechanisms involved in myocardial remodeling contribute to alter the existing structure of the heart, leading to cardiac dysfunction. Among the complex signaling network that characterizes myocardial remodeling, the distinct processes are myocyte loss, cardiac hypertrophy, alteration of extracellular matrix homeostasis, fibrosis, defective autophagy, metabolic abnormalities, and mitochondrial dysfunction. Several pathophysiological stimuli, such as pressure and volume overload, trigger the remodeling cascade, a process that initially confers protection to the heart as a compensatory mechanism. Yet chronic inflammation after myocardial infarction also leads to cardiac remodeling that, when prolonged, leads to heart failure progression. Here, we review the molecular pathways involved in cardiac remodeling, with particular emphasis on those associated with myocardial infarction. A better understanding of cell signaling involved in cardiac remodeling may support the development of new therapeutic strategies towards the treatment of heart failure and reduction of cardiac complications. We will also discuss data derived from gene therapy approaches for modulating key mediators of cardiac remodeling.

摘要

参与心肌重塑的病理分子机制会改变心脏的现有结构,导致心脏功能障碍。在心肌重塑所特有的复杂信号网络中,不同的过程包括心肌细胞丢失、心肌肥大、细胞外基质稳态改变、纤维化、自噬缺陷、代谢异常和线粒体功能障碍。几种病理生理刺激,如压力和容量超负荷,会引发重塑级联反应,这一过程最初作为一种代偿机制对心脏起到保护作用。然而,心肌梗死后的慢性炎症也会导致心脏重塑,若持续时间过长,会导致心力衰竭进展。在此,我们综述参与心脏重塑的分子途径,尤其着重于与心肌梗死相关的途径。更好地理解参与心脏重塑的细胞信号传导可能有助于开发针对心力衰竭治疗和减少心脏并发症的新治疗策略。我们还将讨论从调节心脏重塑关键介质的基因治疗方法中获得的数据。

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