Key result
TRPV2 knockout in mice attenuates LV dysfunction and dilatation post-MI compared to wild-type.
Why the study?
The role of TRPV2-expressing macrophages in cardiac function recovery following acute myocardial infarction was not fully understood.
Does TRPV2 knockout improve cardiac performance following myocardial infarction in mice?
Does TRPV2 knockout improve cardiac performance following myocardial infarction in mice?
Absolute Event Rate: 8% vs -26.2%
p-value: p=0.03
TRPV2 knockout attenuates macrophage-dependent pro-inflammatory processes and improves cardiac recovery post-MI in mice, suggesting TRPV2 as a potential therapeutic target.
TRPV2 modulation effects post-AMI remain unclear in humans; animal data leave open its therapeutic relevance.
BACKGROUND: We have recently shown that the expression of the transient receptor potential vanilloid 2 channel, TRPV2, is upregulated in the peri-infarct zone 3-5 days following an acute myocardial infarction (AMI). Further analysis has demonstrated that invading monocytes maturing to macrophages merely harbor the documented elevated expression of this channel. PURPOSE: Assess cardiac function in TRPV2-KO mice compared to TRPV2-WT following AMI and analyze the potential involvement of TRPV2-expressing macrophages in the recovery process. METHODS: TRPV2-KO or WT mice were induced with AMI by ligation of the left anterior descending artery (LAD). In another set of experiments, TRPV2-KO mice induced with AMI, were intravenously (IV) injected with WT or TRPV2-KO peritoneal macrophages in order to directly assess the potential contribution of TRPV2-expressing macrophages to cardiac healing. Cardiac parameters were obtained by echocardiography 1 day and 30 days post infarction. The relative changes in the ejection fraction (EF) and additional cardiac parameters between baseline (day 1) and day 30 were calculated and statistical significance was determined (SPSS). RESULTS: The in vivo study showed that while EF was significantly decreased in the WT animals between baseline and day 30, EF was only slightly and insignificantly reduced in the KO animals. Likewise LVESD and LVESA were significantly modified exclusively in the WT animals. Moreover, intravenous administration of peritoneal WT macrophages, but not KO macrophages, significantly reduced survival of post-MI TRPV2-KO mice. CONCLUSION: The data suggest that knockout of the TRPV2 channel may attenuate macrophage-dependent pro-inflammatory processes and result in better cardiac recovery. TRPV2 may thus represent a novel therapeutic target for treatment of patients undergoing an acute MI.
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Entin‐Meer et al. (2017) studied Acute myocardial infarction (n=23). TRPV2 knockout vs. TRPV2-WT (wild-type) was evaluated on Percent change in ejection fraction from baseline to day 30 (p=0.03). Whole-body knockout of the TRPV2 channel in mice significantly attenuated left ventricular dysfunction and dilatation 30 days after acute myocardial infarction compared to wild-type mice.
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