Selective Pharmacological Blockade of GPR39 Markedly Reduces No Reflow and Infarct Volumes in a Rat Model of Acute Myocardial Infarction
Our aim was to determine whether selective pharmacological blockade of GPR39 by the novel drug, VC108, reduces no reflow (NRV) and infarct (INV) volumes during acute myocardial infarction (AMI). Immuocytochemistry and qPCR of isolated rat cardiac cells as well as immunohistochemistry and western blot of rat myocardium was performed for presence of GPR39. Rats underwent 1 h of coronary occlusion and 1 h of reperfusion. Groups 1 and 2 animals received drug/vehicle prior to or during coronary occlusion. Groups 3 and 4 received drug/vehicle 5 min prior to or 30 min after reperfusion. Readouts also included tissue pO2, hemodynamics, and wall thickening. In Groups 5 and 6 animals, drug was injected for measurement of plasma and tissue levels. Immunocytochemistry and qPCR of cells and immunohistochemistry and western blot of tissue revealed GPR39 expression in all cardiac cells analyzed as well as entire myocardial tissue. There was marked reduction in NRV and INV in groups 1 and 3 animals where both were measured and in Group 2 where INV was measured. In contrast, Group 4 animals failed to show reduction in NRV and INV with the drug. The reduction in NRV in all animals was associated with higher tissue pO2 in VC108 compared to vehicle treated animals. Similar results were obtained for INV in only in Group 2 animals. In Group 3 animals direct cardiomyocyte effect of VC108 was seen in myocardium as evidenced by reduced necrosis and apoptosis. We conclude that VC108 is very effective in reducing INV and NRV in an AMI model when given before coronary occlusion or just prior to reperfusion (the latter being clinically more relevant) both in male and female rats. This effect is not seen after reperfusion. VC108 acts by blocking GPR39, resulting in vasodilation through pericyte and VSMC relaxation. It also directly protects cardiomyocytes by preventing downstream effects of GPR39 stimulation. New and NoteworthyGPR39 is the receptor for 15-HETE, which is a vasoconstrictor with direct cardiomyocyte detrimental effects. Pharmacological inhibition of GPR39 by a novel inhibitor, VC108, reduces coronary no reflow after acute myocardial infarction by relaxing contracted pericytes surrounding capillaries, whereby increasing oxygen delivery. GPR39 inhibition also reduces necrosis and ferroptosis by interrupting aberrant downstream signaling responsible for cell death. Hence, pharmacological inhibition of GPR39 by VC108 offers a novel treatment of acute myocardial infarction. Graphical AbstractProposed mechanism of action of VC108 when given prior to and during coronary occlusion based on our results. The drug inhibits the action of the vasoconstrictor, 15-HETE, on GPR39. This causes vasodilation by relaxing contracted pericytes and increasing capillary perfusion, resulting in increased tissue pO2 and reduction in no reflow (left side). When tissue pO2 is not associated with necrosis, GPR39 inhibition by VC108 directly affects cardiomyocytes by inhibiting downstream signaling of GPR39 present in cardiomyocytes that can lead to cell injury and death. Hence, less necrosis and apoptosis are noted in VC108 versus vehicle treated animals. Created in https://BioRender.com. O_FIG O_LINKSMALLFIG WIDTH=137 HEIGHT=200 SRC="FIGDIR/small/699339v2_ufig1.gif" ALT="Figure 1"> View larger version (29K): org.highwire.dtl.DTLVardef@1058995org.highwire.dtl.DTLVardef@8bc0ceorg.highwire.dtl.DTLVardef@11f44e0org.highwire.dtl.DTLVardef@1e2e337_HPS_FORMAT_FIGEXP M_FIG C_FIG