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Exogenous citrate impairs glucose tolerance and promotes visceral adipose tissue inflammation in mice

ATP柠檬酸裂解酶 内分泌学 内科学 脂肪组织 柠檬酸 化学 碳水化合物代谢 蔗糖 胰岛素抵抗 柠檬酸合酶 葡萄糖摄取 生物 生物化学 胰岛素 医学
作者
João Gabriel Bernardo Leandro,Jair M. Espindola-Netto,Maria Carolina F. Vianna,Lilian Sales Gomez,Thainá M. Demaria,Mônica M. Marinho-Carvalho,Patrícia Zancan,Heitor A. Paula Neto,Mauro Sola‐Penna
出处
期刊:British Journal of Nutrition [Cambridge University Press]
卷期号:115 (6): 967-973 被引量:31
标识
DOI:10.1017/s0007114516000027
摘要

Abstract Overweight and obesity have become epidemic worldwide and are linked to sedentary lifestyle and the consumption of processed foods and drinks. Citrate is a metabolite that plays central roles in carbohydrate and lipid metabolism. In addition, citrate is the additive most commonly used by the food industry, and therefore is highly consumed. Extracellular citrate can freely enter the cells via the constitutively expressed plasma membrane citrate transporter. Within the cytosol, citrate is readily metabolised by ATP-citrate lyase into acetyl-CoA – the metabolic precursor of endogenously produced lipids and cholesterol. We therefore hypothesised that the citrate ingested from processed foods and drinks could contribute to increased postprandial fat production and weight gain. To test our hypothesis, we administered citrate to mice through their drinking water with or without sucrose and monitored their weight gain and other metabolic parameters. Our results showed that mice receiving citrate or citrate+sucrose did not show increased weight gain or an increase in the weight of the liver, skeletal muscles or adipose tissues (AT). Moreover, the plasma lipid profiles (TAG, total cholesterol, LDL and HDL) were similar across all groups. However, the group receiving citrate+sucrose showed augmented fasting glycaemia, glucose intolerance and the expression of pro-inflammatory cytokines (TNF- α , IL-1 β , IL-6 and IL-10) in their AT. Therefore, our results suggest that citrate consumption contributes to increased AT inflammation and altered glucose metabolism, which is indicative of initial insulin resistance. Thus, citrate consumption could be a previously unknown causative agent for the complications associated with obesity.
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