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首页> 外文期刊>Molecular Metabolism >Constant hepatic ATP concentrations during prolonged fasting and absence of effects of Cerbomed Nemos ? on parasympathetic tone and hepatic energy metabolism
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Constant hepatic ATP concentrations during prolonged fasting and absence of effects of Cerbomed Nemos ? on parasympathetic tone and hepatic energy metabolism

机译:长期禁食期间恒定的肝ATP浓度,并且没有Cerbomed Nemos的作用?交感神经张力与肝能量代谢的关系

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Objective Brain insulin-induced improvement in glucose homeostasis has been proposed to be mediated by the parasympathetic nervous system. Non-invasive transcutaneous auricular vagus nerve stimulation (taVNS) activating afferent branches of the vagus nerve may prevent hyperglycemia in diabetes models. We examined the effects of 14-min taVNS vs sham stimulation by Cerbomed Nemos? on glucose metabolism, lipids, and hepatic energy homeostasis in fasted healthy humans (n?=?10, age 51?±?6?yrs, BMI 25.5?±?2.7?kg/m2). Methods Heart rate variability (HRV), reflecting sympathetic and parasympathetic nerve activity, was measured before, during and after taVNS or sham stimulation. Endogenous glucose production was determined using [6,6-2H2]glucose, and hepatic concentrations of triglycerides (HCL), adenosine triphosphate (ATP), and inorganic phosphate (Pi) were quantified from 1H/31P magnetic resonance spectroscopy at baseline and for 180?min following stimulation. Results taVNS did not affect circulating glucose, free fatty acids, insulin, glucagon, or pancreatic polypeptide. Rates of endogenous glucose production (P?=?0.79), hepatic HCL, ATP, and Pi were also not different (P?=?0.91, P?=?0.48 and P?=?0.24) between taVNS or sham stimulation. Hepatic HCL, ATP, and Pi remained constant during prolonged fasting for 3?h. No changes in heart rate or shift in cardiac autonomic function from HRV towards sympathetic or parasympathetic predominance were detected. Conclusion Non-invasive vagus stimulation by Cerbomed Nemos? does not acutely modulate the autonomic tone to the visceral organs and thereby does not affect hepatic glucose and energy metabolism. This technique is therefore unable to mimic brain insulin-mediated effects on peripheral homeostasis in humans. Author Video Download video (13MB) Help with mp4 files Author Video . Watch what authors say about their articles.
机译:目的已提出脑胰岛素诱导的葡萄糖稳态的改善是由副交感神经系统介导的。激活迷走神经传入分支的非侵入性经皮耳迷走神经刺激(taVNS)可以预防糖尿病模型中的高血糖症。我们研究了禁忌健康人(n = 10,51岁±6)中14分钟的taVNS与假刺激对Cerbomed Nemos ?的葡萄糖代谢,脂质和肝能量稳态的影响。年,BMI 25.5±2.7?kg / m 2 )。方法在taVNS或假刺激之前,期间和之后测量反映交感神经和副交感神经活动的心率变异性(HRV)。使用[6,6- 2 H 2 ]葡萄糖以及甘油三酸酯(HCL),三磷酸腺苷(ATP)和无机磷酸盐( Pi)分别在基线和刺激后180分钟内通过 1 H / 31 P磁共振波谱进行定量。结果taVNS不会影响循环葡萄糖,游离脂肪酸,胰岛素,胰高血糖素或胰多肽。在taVNS或假刺激之间,内源性葡萄糖产生的速率(Pα=α= 0.79),肝HCL,ATP和Pi的速率也没有差异(Pα=α0.91,Pα=α0.48和Pα=α0.24)。长时间禁食3?h时,肝脏的HCL,ATP和Pi保持恒定。没有检测到心率变化或心脏自主神经功能从HRV向交感或副交感优势转变。结论Cerbomed Nemos ?的非侵入性迷走神经刺激不能急性调节内脏器官的自主神经张力,因此不影响肝糖和能量代谢。因此,该技术无法模拟人胰岛素对人外周稳态的介导作用。作者视频下载视频(13MB)mp4文件帮助作者视频。观看作者对文章的评论。

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