Key result
Ghrelin-knockout mice had a significantly higher incidence of malignant arrhythmia-induced mortality after myocardial infarction compared to wild-type mice (17.4% vs 2.4%; P<0.05).
Why the study?
Does ghrelin reduce malignant arrhythmia-induced mortality and cardiac sympathetic nerve activity after acute myocardial infarction in mice?
Does ghrelin reduce malignant arrhythmia-induced mortality and cardiac sympathetic nerve activity after acute myocardial infarction in mice?
Absolute Event Rate: 17.4% vs 2.4%
p-value: p=<0.05
Both endogenous and exogenous ghrelin suppress cardiac sympathetic nerve activity and prevent malignant arrhythmia after acute myocardial infarction via vagal afferent nerves in a mouse model.
Ghrelin deficiency raises post-MI arrhythmia mortality in mice; hypothesis-generating for ghrelin modulation in humans.
Ghrelin is a GH-releasing peptide mainly excreted from the stomach. Ghrelin administration has been shown to inhibit cardiac sympathetic nerve activity (CSNA), reduce malignant arrhythmia, and improve prognosis after acute myocardial infarction (MI). We therefore investigated the effects and potential mechanisms of the action of endogenous ghrelin on survival rate and CSNA after MI by using ghrelin-knockout (KO) mice. MI was induced by left coronary artery ligation in 46 KO mice and 41 wild-type mice. On the first day, malignant arrhythmia-induced mortality was observed within 30 min of the ligation and had an incidence of 2.4% in wild-type and 17.4% in KO mice (P < 0.05). We next evaluated CSNA by spectral analysis of heart rate variability. CSNA, represented by the low frequency/high frequency ratio, was higher in KO mice at baseline (2.18 ± 0.43 vs. 0.98 ± 0.09; P < 0.05), and especially after MI (25.5 ± 11.8 vs. 1.4 ± 0.3; P < 0.05), than in wild-type mice. Ghrelin (150 μg/kg, s.c.) 15 min before ligation suppressed the activation of CSNA and reduced mortality in KO mice. Further, this effect of ghrelin was inhibited by methylatropine bromide (1 mg/kg, i.p.) or by perineural treatment of both cervical vagal trunks with capsaicin (a specific afferent neurotoxin). Our data demonstrated that both exogenous and endogenous ghrelin suppressed CSNA, prevented the incidence of malignant arrhythmia, and improved the prognosis after acute MI. These effects are likely to be via the vagal afferent nerves.
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Mao et al. (2012) studied Acute myocardial infarction (n=87). Ghrelin knockout vs. Wild-type was evaluated on Malignant arrhythmia-induced mortality within 30 min of ligation (p=<0.05). Ghrelin-knockout mice had a significantly higher incidence of malignant arrhythmia-induced mortality after myocardial infarction compared to wild-type mice (17.4% vs 2.4%; P<0.05).
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