The hypothalamic estrogen receptor α pathway is involved in high-intensity interval training-induced visceral fat loss in premenopausal rats.

IF 3.9 2区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Juanjuan Wang, Shuai Tian, Jinchan Du, Sihao Du, Wei Chen, Yang Liu
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引用次数: 0

Abstract

Background: Visceral adipose tissue (VAT) is strongly associated with metabolic diseases. Both high-intensity interval training (HIT) and moderate-intensity training (MIT) reduce VAT effectively; however, HIT might mediate greater VAT loss in females. The estrogen receptor α (ERα) pathway may play a key role. The aim of the present study was to confirm the role of adipose/hypothalamic ERα in HIT/MIT-mediated VAT loss, as well as the associated hypothalamic electrophysiology and body catabolism changes in pre- and post-menopausal animal models.

Methods: Ovariectomy (OVX) or sham surgeries were conducted to establish pre/postmenopausal female rat models. After distance-matched long-term HIT and MIT interventions, ERα expression in hypothalamic/VAT, as well as food intake, spontaneous physical activity (SPA), VAT mass and morphology, local field potential (LFPs) in paraventricular nuclei (PVN) and excessive post-exercise oxygen consumption (EPOC), were observed. A target chemical block during the post-exercise recovery period was executed to further verify the role of the hypothalamic ERα pathway.

Results: HIT enhanced the expression of ERα in the hypothalamus rather than VAT in the pre-, but not the postmenopausal group, which was accompanied by elevated LFP power density in α and β bands, enhanced EPOC and larger VAT loss than MIT. Chemical blockade of ERα suppressed EPOC and VAT catabolism mediated by HIT.

Conclusion: During the post-exercise recovery period, the hypothalamic ERα pathway involved in HIT induced EPOC elevation and VAT reduction in premenopausal female rats.

下丘脑雌激素受体α通路参与高强度间歇训练诱导的绝经前大鼠内脏脂肪减少。
背景:内脏脂肪组织(VAT)与代谢性疾病密切相关。高强度间歇训练(HIT)和中等强度间歇训练(MIT)都能有效降低增值税;然而,HIT可能介导雌性更大的VAT损失。雌激素受体α (ERα)通路可能起关键作用。本研究的目的是在绝经前和绝经后的动物模型中证实脂肪/下丘脑ERα在HIT/ mit介导的VAT损失中的作用,以及相关的下丘脑电生理和身体分解代谢变化。方法:采用卵巢切除(OVX)或假手术建立绝经前/绝经后雌性大鼠模型。在距离匹配的长期HIT和MIT干预后,观察下丘脑/VAT中ERα的表达,以及食物摄入量、自发性体力活动(SPA)、VAT质量和形态、室旁核(PVN)局部场电位(LFPs)和运动后过量耗氧量(EPOC)。在运动后恢复期进行靶化学阻滞以进一步验证下丘脑ERα通路的作用。结果:HIT增强了绝经前组下丘脑ERα而非VAT的表达,而绝经后组则没有,并伴有α和β带LFP功率密度升高,EPOC增强,VAT损失大于MIT。化学阻断ERα抑制HIT介导的EPOC和VAT分解代谢。结论:在运动后恢复期,下丘脑ERα通路参与HIT诱导绝经前雌性大鼠EPOC升高和VAT降低。
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来源期刊
Lipids in Health and Disease
Lipids in Health and Disease 生物-生化与分子生物学
CiteScore
7.70
自引率
2.20%
发文量
122
审稿时长
3-8 weeks
期刊介绍: Lipids in Health and Disease is an open access, peer-reviewed, journal that publishes articles on all aspects of lipids: their biochemistry, pharmacology, toxicology, role in health and disease, and the synthesis of new lipid compounds. Lipids in Health and Disease is aimed at all scientists, health professionals and physicians interested in the area of lipids. Lipids are defined here in their broadest sense, to include: cholesterol, essential fatty acids, saturated fatty acids, phospholipids, inositol lipids, second messenger lipids, enzymes and synthetic machinery that is involved in the metabolism of various lipids in the cells and tissues, and also various aspects of lipid transport, etc. In addition, the journal also publishes research that investigates and defines the role of lipids in various physiological processes, pathology and disease. In particular, the journal aims to bridge the gap between the bench and the clinic by publishing articles that are particularly relevant to human diseases and the role of lipids in the management of various diseases.
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