Why the study?
Does temporary systemic inhibition of the WNT pathway with GNF-6231 improve cardiac repair and function following myocardial infarction in mice?
Does temporary systemic inhibition of the WNT pathway with GNF-6231 improve cardiac repair and function following myocardial infarction in mice?
Temporary systemic inhibition of the WNT pathway using GNF-6231 post-MI improves cardiac function, reduces adverse remodeling, and decreases infarct size in a mouse model.
Supports WNT inhibition as a post-MI repair strategy; should not change practice pending human trials.
AIMS: The WNT/β-catenin pathway is temporarily activated in the heart following myocardial infarction (MI). Despite data from genetic models indicating both positive and negative roles for the WNT pathway depending on the model used, the effect of therapeutic inhibition of WNT pathway on post-injury outcome and the cellular mediators involved are not completely understood. Using a newly available, small molecule, GNF-6231, which averts WNT pathway activation by blocking secretion of all WNT ligands, we sought to investigate whether therapeutic inhibition of the WNT pathway temporarily after infarct can mitigate post injury cardiac dysfunction and fibrosis and the cellular mechanisms responsible for the effects. METHODS AND RESULTS: cardiac progenitors, improved survival of cardiomyocytes, and inhibited collagen I synthesis by cardiac myofibroblasts. CONCLUSION: Systemic, temporary pharmacologic inhibition of the WNT pathway using an orally bioavailable drug immediately following MI resulted in improved function, reduced adverse remodeling and reduced infarct size in mice. Therapeutic WNT inhibition affected multiple aspects of infarct repair: it promoted proliferation of cardiac progenitors and other interstitial cells, inhibited myofibroblast proliferation, improved cardiomyocyte survival, and reduced collagen I gene expression by myofibroblasts. Our data point to a promising role for WNT inhibitory therapeutics as a new class of drugs to drive post-MI repair and prevent heart failure.
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Dikshya Bastakoty (2016) studied this question.
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