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前庭刺激对代谢和身体成分的影响。

The influence of vestibular stimulation on metabolism and body composition.

机构信息

Queen's University Belfast, Wellcome-Wolfson Institute for Experimental Medicine, Belfast, UK.

Neurovalens Ltd, Belfast, UK.

出版信息

Diabet Med. 2020 Jan;37(1):20-28. doi: 10.1111/dme.14166. Epub 2019 Nov 8.

Abstract

Obesity, diabetes and metabolic disease represent an ongoing and rapidly worsening public health issue in both the developed, and much of the developing world. Although there are many factors that influence fat storage, it has been clearly demonstrated that the homeostatic cornerstone of metabolism lies within the hypothalamus. Moreover, neuronal damage to vital areas of the hypothalamus can drive reregulation or dysregulation of endocrine function, energy expenditure and appetite, thereby promoting a shift in overall metabolic function towards a state of obesity. Therefore, identification of treatments that influence the hypothalamus to improve obesity and associated metabolic diseases has long been a medical goal. Interestingly, evidence from animal studies suggests that activating the vestibular system, specifically the macular gravity receptor, influences the hypothalamus in a way that decreases body fat storage and causes a metabolic shift towards a leaner state. Given that the macular element of the vestibular system has been shown to activate with transdermal electrical stimulation applied to the mastoids, this may be a potential therapeutic approach for obesity, diabetes or related metabolic diseases, whereby repetitive stimulation of the vestibular system influences hypothalamic control of metabolic homeostasis, thereby encouraging decreased fat storage. Here, we present an up-to-date review of the current literature surrounding the vestibular influence of the hypothalamus and associated homeostatic sites in the context of current and novel therapeutic approaches for improved clinical management of obesity and diabetes.

摘要

肥胖、糖尿病和代谢疾病是发达地区和许多发展中国家目前持续存在且日益严重的公共卫生问题。尽管有许多因素影响脂肪储存,但已明确表明,代谢的内稳态基石存在于下丘脑。此外,下丘脑重要区域的神经元损伤会导致内分泌功能、能量消耗和食欲的重新调节或失调,从而促使整体代谢功能向肥胖状态转变。因此,寻找能够影响下丘脑以改善肥胖和相关代谢疾病的治疗方法一直是医学上的一个目标。有趣的是,动物研究的证据表明,激活前庭系统,特别是黄斑重力感受器,会以一种降低体脂储存并促使代谢向更瘦状态转变的方式影响下丘脑。鉴于前庭系统的黄斑成分已被证明可以通过贴在乳突上的经皮电刺激来激活,这可能是肥胖、糖尿病或相关代谢疾病的一种潜在治疗方法,即通过重复刺激前庭系统来影响下丘脑对代谢稳态的控制,从而鼓励减少脂肪储存。在这里,我们对当前有关前庭对下丘脑的影响以及在肥胖和糖尿病的临床管理改善方面的当前和新型治疗方法背景下的相关内稳态部位的文献进行了最新综述。

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