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Background: Heart failure with reduced ejection fraction (HFrEF) is characterized by impaired contractility and high mortality. Dysregulation of intracellular ion cycling underlies the decline in cardiac contractility. Modulation of cardiac Na+/H+ and Ca2+ handling is consider...

2026-02-20 | MTBLS13690 | MetaboLights

Background: Heart failure with reduced ejection fraction (HFrEF) is characterized by impaired contractility and high mortality. Dysregulation of intracellular ion cycling underlies the decline in cardiac contractility. Modulation of cardiac Na+/H+ and Ca2+ handling is consider...

2026-02-20 | MTBLS13696 | MetaboLights
Muscle ring finger-1 (MuRF1) is a muscle-specific protein implicated in the regulation of cardiac myocyte size and contractility. MuRF2, a closely related family member, redundantly interacts with protein substrates, and hetero-dimerizes with MuRF1. Mice lacking either MuRF1 or MuRF2 are phenotypica...
ORGANISM(S): Mus musculus 
Amino terminus of cardiac myosin binding protein-C regulates cardiac contractility
Trypanosoma cruzi infection is a major cause of cardiomyopathy. Gene profiling studies of hearts from infected mice have revealed prominent changes in gene expression within many functional pathways. This variety of transcriptomic changes in infected mice raises the question of whether gene express...
ORGANISM(S): Mus musculus 
Systemic hypertension increases cardiac workload and subsequently induces signaling networks in heart that underlie myocyte growth (hypertrophic response) through expansion of sarcomeres with the aim to increase contractility. However, conditions of increased workload can induce both adaptive and ma...
ORGANISM(S): Mus musculus 
TBX20 Consolidates Cardiac Reprogramming Factors to Enhance Contractility and Energy Metabolism in Human Induced Cardiomyocytes [CUT&RUN]
TBX20 Consolidates Cardiac Reprogramming Factors to Enhance Contractility and Energy Metabolism in Human Induced Cardiomyocytes [ATAC-Seq]
TBX20 Consolidates Cardiac Reprogramming Factors to Enhance Contractility and Energy Metabolism in Human Induced Cardiomyocytes [scRNA-Seq]
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