To explore the impact of omecamtiv mecarbil (OM) on the gene expression profile in adult male rats. Fourteen male Wistar rats were randomly assigned to a single OM (1.2 mg/kg/h; n = 6) or placebo (n = 8) 30-min infusion. Echocardiography was performed before and after OM infusion. Seven days after infusion, rats were euthanized, and left ventricular (LV) tissues were removed for quantitative polymerase chain reaction (RTq-PCR) experiments. After OM infusion, pro-apoptotic -to- ratio was decreased, with increased and similar gene expression. The gene expression of molecules regulating oxidative stress, including glutathione disulfide reductase () and superoxide dismutases (/), remained unchanged, whereas the expression of antioxidant glutathione peroxidase () increased. While LV gene expression of key energy sensors, peroxisome proliferator activator () α and γ, AMP-activated protein kinase (), and carnitine palmitoyltransferase 1 () remained unchanged after OM infusion, and the expression of pyruvate dehydrogenase kinase 4 () increased. The LV expression of the major myocardial glucose transporter decreased, with no changes in expression, whereas the LV expression of oxidized low-density lipoprotein receptor 1 () and arachidonate 15-lipoxygenase () increased, with no changes in fatty acid transporter . An increased LV expression of angiotensin II receptors and was observed, with no changes in angiotensin I-converting enzyme expression. The Kalikrein-bradykinin system was upregulated with increased LV expression of kallikrein-related peptidases , , and and bradykinin receptors B1 and B2 ( and ), whereas the LV expression of inducible nitric oxide synthase 2 () increased. LV expression in major molecular determinants involved in calcium-dependent myocardial contraction remained unchanged, except for an increased LV expression of calcium/calmodulin-dependent protein kinase II delta () in response to OM. A single intravenous infusion of OM, in adult healthy rats, resulted in significant changes in the LV expression of genes regulating apoptosis, oxidative stress, metabolism, and cardiac contractility.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9858687PMC
http://dx.doi.org/10.3390/genes14010122DOI Listing

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