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June 30, 2015European Journal of Heart Failure136 citationsOpen Access

Searching for New Mechanisms of Myocardial Fibrosis with Diagnostic and/or Therapeutic Potential

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SHStéphane HeymansAGArantxa GonzálezAPAnne Pizard

Key Result

Further research into molecules, microRNAs, and matricellular proteins is needed to better understand the mechanisms triggering and maintaining myocardial fibrosis.

Key Points

  • To review emerging molecular mechanisms triggering and sustaining myocardial fibrosis and evaluate their diagnostic and therapeutic potential in cardiac disease.
  • Synthesized molecular mechanisms regulating cardiac fibroblast-to-myofibroblast differentiation and collagen turnover.
  • Evaluated the roles of signaling proteins, microRNA regulation of collagen expression, and enzyme-mediated collagen cross-linking.
  • Identified key signaling mediators including cardiotrophin-1, galectin-3, NADPH oxidases, and neutrophil gelatinase-associated lipocalin that stimulate myofibroblast differentiation.
  • Highlighted microRNA-mediated regulation of collagen gene expression and lysyl oxidase-mediated collagen cross-linking as central pathways driving tissue stiffness and cardiac dysfunction.

PICO

P
Population
Myocardial fibrosis

Abstract

Myocardial fibrosis is the result of excessive fibrillar collagen synthesis and deposition without reciprocally balanced degradation. It causes cardiac dysfunction, arrhythmias, and ischaemia, and thereby determines the clinical course and outcome of cardiac patients even when adequately treated. Therefore, further research is needed to identify and better understand the factors that trigger and maintain the myocardial fibrotic response against different injuries in a variety of cardiac diseases. Here, we will focus on the following major areas of research: molecules that stimulate the differentiation of fibroblasts into myofibroblasts and subsequently alter collagen turnover (e.g. cardiotrophin-1, galectin-3, NADPH oxidases, and neutrophil gelatinase-associated lipocalin), microRNA-induced alterations of collagen gene expression, and matricellular protein- and lysyl oxidase-mediated alterations of collagen cross-linking and deposition.

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Cite This Study

Heymans et al. (2015) conducted a review in Myocardial fibrosis. Further research into molecules, microRNAs, and matricellular proteins is needed to better understand the mechanisms triggering and maintaining myocardial fibrosis.

synapsesocial.com/papers/6a11c63635a4eec8fedcd058https://doi.org/10.1002/ejhf.312
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