Literature DB >> 30683889

Mechanical regulation of gene expression in cardiac myocytes and fibroblasts.

Jeffrey J Saucerman1, Philip M Tan1, Kyle S Buchholz2, Andrew D McCulloch3, Jeffrey H Omens2.   

Abstract

The intact heart undergoes complex and multiscale remodelling processes in response to altered mechanical cues. Remodelling of the myocardium is regulated by a combination of myocyte and non-myocyte responses to mechanosensitive pathways, which can alter gene expression and therefore function in these cells. Cellular mechanotransduction and its downstream effects on gene expression are initially compensatory mechanisms during adaptations to the altered mechanical environment, but under prolonged and abnormal loading conditions, they can become maladaptive, leading to impaired function and cardiac pathologies. In this Review, we summarize mechanoregulated pathways in cardiac myocytes and fibroblasts that lead to altered gene expression and cell remodelling under physiological and pathophysiological conditions. Developments in systems modelling of the networks that regulate gene expression in response to mechanical stimuli should improve integrative understanding of their roles in vivo and help to discover new combinations of drugs and device therapies targeting mechanosignalling in heart disease.

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Year:  2019        PMID: 30683889      PMCID: PMC6525041          DOI: 10.1038/s41569-019-0155-8

Source DB:  PubMed          Journal:  Nat Rev Cardiol        ISSN: 1759-5002            Impact factor:   32.419


  305 in total

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Review 5.  Mechanical stress-induced cardiac hypertrophy: mechanisms and signal transduction pathways.

Authors:  C Ruwhof; A van der Laarse
Journal:  Cardiovasc Res       Date:  2000-07       Impact factor: 10.787

Review 6.  Molecular targets and regulators of cardiac hypertrophy.

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Review 7.  Darwinian evolution and cardiovascular remodeling.

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Review 8.  Molecular regulation of cardiac hypertrophy.

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Review 9.  Heart failure.

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Journal:  JACC Heart Fail       Date:  2013-02-04       Impact factor: 12.035

Review 10.  Cardiac Remodeling: Concepts, Clinical Impact, Pathophysiological Mechanisms and Pharmacologic Treatment.

Authors:  Paula S Azevedo; Bertha F Polegato; Marcos F Minicucci; Sergio A R Paiva; Leonardo A M Zornoff
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  45 in total

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2.  Contractile work directly modulates mitochondrial protein levels in human engineered heart tissues.

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3.  Multiscale Models of Cardiac Muscle Biophysics and Tissue Remodeling in Hypertrophic Cardiomyopathies.

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Review 6.  Cardiac fibrosis.

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Journal:  Cardiovasc Res       Date:  2021-05-25       Impact factor: 10.787

Review 7.  Channelling the Force to Reprogram the Matrix: Mechanosensitive Ion Channels in Cardiac Fibroblasts.

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Journal:  Cells       Date:  2021-04-23       Impact factor: 6.600

Review 8.  Vascularisation of pluripotent stem cell-derived myocardium: biomechanical insights for physiological relevance in cardiac tissue engineering.

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Review 9.  Key Roles of RGD-Recognizing Integrins During Cardiac Development, on Cardiac Cells, and After Myocardial Infarction.

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Review 10.  Emerging therapeutic targets for cardiac arrhythmias: role of STAT3 in regulating cardiac fibroblast function.

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Journal:  Expert Opin Ther Targets       Date:  2020-11-23       Impact factor: 6.902

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