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减肥手术可调节循环和心脏代谢物。

Bariatric surgery modulates circulating and cardiac metabolites.

作者信息

Ashrafian Hutan, Li Jia V, Spagou Konstantina, Harling Leanne, Masson Perrine, Darzi Ara, Nicholson Jeremy K, Holmes Elaine, Athanasiou Thanos

机构信息

Department of Surgery and Cancer, Faculty of Medicine, Imperial College London , SW11 2PH London, U.K.

出版信息

J Proteome Res. 2014 Feb 7;13(2):570-80. doi: 10.1021/pr400748f. Epub 2013 Nov 26.

Abstract

Bariatric procedures such as the Roux-en-Y gastric bypass (RYGB) operation offer profound metabolic enhancement in addition to their well-recognized weight loss effects. They are associated with significant reduction in cardiovascular disease risk and mortality, which suggests a surgical modification on cardiac metabolism. Metabolic phenotyping of the cardiac tissue and plasma postsurgery may give insight into cardioprotective mechanisms. The aim of the study was to compare the metabolic profiles of plasma and heart tissue extracts from RYGB- and sham-operated Wistar rats to identify the systemic and cardiac signature of metabolic surgery. A total of 27 male Wistar rats were housed individually for a week and subsequently underwent RYGB (n = 13) or sham (n = 14) operation. At week 8 postoperation, a total of 27 plasma samples and 16 heart tissue samples (8 RYGB; 8 Sham) were collected from animals and analyzed using (1)H nuclear magnetic resonance (NMR) spectroscopy and ultra performance liquid chromatography (UPLC-MS) to characterize the global metabolite perturbation induced by RYGB operation. Plasma bile acids, phosphocholines, amino acids, energy-related metabolites, nucleosides and amine metabolites, and cardiac glycogen and amino acids were found to be altered in the RYGB operated group. Correlation networks were used to identify metabolite association. The metabolic phenotype of this bariatric surgical model inferred systematic change in both myocardial and systemic activity post surgery. The altered metabolic profile following bariatric surgery reflects an enhancement of cardiac energy metabolism through TCA cycle intermediates, cardiorenal protective activity, and biochemical caloric restriction. These surgically induced metabolic shifts identify some of the potential mechanisms that contribute toward bariatric cardioprotection through gut microbiota ecological fluxes and an enterocardiac axis to shield against metabolic syndrome of cardiac dysfunction.

摘要

诸如Roux-en-Y胃旁路术(RYGB)等减肥手术,除了具有公认的减肥效果外,还能显著改善新陈代谢。它们与心血管疾病风险和死亡率的显著降低相关,这表明对心脏代谢进行了手术改变。术后对心脏组织和血浆进行代谢表型分析,可能有助于深入了解心脏保护机制。本研究的目的是比较RYGB手术组和假手术组Wistar大鼠的血浆和心脏组织提取物的代谢谱,以确定代谢手术的全身和心脏特征。总共27只雄性Wistar大鼠单独饲养一周,随后接受RYGB手术(n = 13)或假手术(n = 14)。术后第8周,从动物身上收集了总共27份血浆样本和16份心脏组织样本(8份RYGB组;8份假手术组),并使用氢核磁共振(NMR)光谱和超高效液相色谱(UPLC-MS)进行分析,以表征RYGB手术引起的整体代谢物扰动。发现RYGB手术组的血浆胆汁酸、磷酸胆碱、氨基酸、能量相关代谢物、核苷和胺类代谢物,以及心脏糖原和氨基酸发生了改变。使用相关网络来识别代谢物关联。这种减肥手术模型的代谢表型推断出术后心肌和全身活动的系统性变化。减肥手术后代谢谱的改变反映了通过三羧酸循环中间体增强心脏能量代谢、心脏肾脏保护活性和生化热量限制。这些手术引起的代谢变化确定了一些潜在机制,这些机制通过肠道微生物群生态通量和肠心轴有助于减肥手术对心脏的保护,以抵御心脏功能障碍的代谢综合征。

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