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July 29, 2022International Journal of Molecular Sciences10 citationsOpen Access

Exogenous ANP Treatment Ameliorates Myocardial Insulin Resistance and Protects against Ischemia–Reperfusion Injury in Diet-Induced Obesity

YOYuhei OiTNTomohisa NagoshiHKHaruka Kimura

Key Result

Exogenous ANP treatment ameliorated myocardial insulin resistance, improved functional recovery, and reduced infarct size after ischemia-reperfusion injury in diet-induced obese mice.

Structured PICO

Does exogenous ANP treatment improve cardiac functional recovery and reduce infarct size after ischemia-reperfusion injury in mice with diet-induced obesity?

P
Population
Mice fed a high-fat diet (HFD) or normal-fat diet for 13 weeks (diet-induced obesity model)
I
Intervention
Exogenous ANP infusion subcutaneously for 3 weeks
C
Comparator
Without ANP infusion
O
Outcome
Cardiac functional recovery and infarct size after ischemia-reperfusion using the Langendorff modelsurrogate

Exogenous ANP treatment protects against ischemia-reperfusion injury and ameliorates myocardial insulin resistance in a mouse model of diet-induced obesity.

Abstract

Increasing evidence suggests natriuretic peptides (NPs) coordinate interorgan metabolic crosstalk. We recently reported exogenous ANP treatment ameliorated systemic insulin resistance by inducing adipose tissue browning and attenuating hepatic steatosis in diet-induced obesity (DIO). We herein investigated whether ANP treatment also ameliorates myocardial insulin resistance, leading to cardioprotection during ischemia-reperfusion injury (IRI) in DIO. Mice fed a high-fat diet (HFD) or normal-fat diet for 13 weeks were treated with or without ANP infusion subcutaneously for another 3 weeks. Left ventricular BNP expression was substantially reduced in HFD hearts. Intraperitoneal-insulin-administration-induced Akt phosphorylation was impaired in HFD hearts, which was restored by ANP treatment, suggesting that ANP treatment ameliorated myocardial insulin resistance. After ischemia-reperfusion using the Langendorff model, HFD impaired cardiac functional recovery with a corresponding increased infarct size. However, ANP treatment improved functional recovery and reduced injury while restoring impaired IRI-induced Akt phosphorylation in HFD hearts. Myocardial ultrastructural analyses showed increased peri-mitochondrial lipid droplets with concomitantly decreased ATGL and HSL phosphorylation levels in ANP-treated HFD, suggesting that ANP protects mitochondria from lipid overload by trapping lipids. Accordingly, ANP treatment attenuated mitochondria cristae disruption after IRI in HFD hearts. In summary, exogenous ANP treatment ameliorates myocardial insulin resistance and protects against IRI associated with mitochondrial ultrastructure modifications in DIO. Replenishing biologically active NPs substantially affects HFD hearts in which endogenous NP production is impaired.

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Cite This Study

Oi et al. (2022) studied Diet-induced obesity and ischemia-reperfusion injury. Exogenous ANP treatment vs. No ANP treatment was evaluated on Myocardial insulin resistance, cardiac functional recovery, and infarct size after ischemia-reperfusion. Exogenous ANP treatment ameliorated myocardial insulin resistance, improved functional recovery, and reduced infarct size after ischemia-reperfusion injury in diet-induced obese mice.

synapsesocial.com/papers/6a193288a0353395e957ff93https://doi.org/10.3390/ijms23158373
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