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高蛋白饮食对 Zucker 大鼠的代谢影响。

Metabolic effects of high-protein diets in Zucker rats.

作者信息

Peret J, Bach A C, Delhomme B, Bois-Joyeux B, Chanez M, Schirardin H

出版信息

Metabolism. 1984 Mar;33(3):200-7. doi: 10.1016/0026-0495(84)90036-2.

Abstract

The effects of dietary protein on the metabolism of proteins, carbohydrates, and especially, lipids were investigated in genetically obese Zucker rats and their lean siblings. For 40 days the rats received diets containing 15%, 64%, or 82% protein, included at the expense of cornstarch. In the obese animals, the high-protein diets led to decreased food intake and weight gain. While these diets decreased the activities of lipogenic enzymes along with the lipid gain, they did not decrease the final body-fat content. The increase protein intake stimulated hepatic ureogenesis and gluconeogenesis. Lipolysis was stimulated, as demonstrated by an accumulation of ketone bodies in the liver. Blood levels of triacylglycerols, free glycerol, and nonesterified fatty acids were concomitantly decreased, which suggests an accelerated turnover of lipids. Whatever the composition of the diet, total energy retention of the lean rats was always less than that of the obese rats. The changes observed on high-protein diets were essentially the same for the two groups, except that the final body-content of lipids in the lean rats was significantly lower. In the absence of exogenous carbohydrate, the lean rats were barely able to retain nitrogen and to maintain hepatic lipogenesis. Unlike the rats from other strains, the lean Zucker rats could not adapt to a low-carbohydrate diet; this failure may be due to a metabolic disorder.

摘要

在遗传性肥胖的 Zucker 大鼠及其瘦同胞中,研究了膳食蛋白质对蛋白质、碳水化合物尤其是脂质代谢的影响。大鼠连续 40 天食用含 15%、64%或 82%蛋白质的饲料,这些蛋白质以玉米淀粉为代价添加。在肥胖动物中,高蛋白饮食导致食物摄入量和体重增加减少。虽然这些饮食在脂质增加的同时降低了脂肪生成酶的活性,但并未降低最终的体脂含量。蛋白质摄入量的增加刺激了肝脏尿素生成和糖异生。脂肪分解受到刺激,肝脏中酮体的积累证明了这一点。血液中三酰甘油、游离甘油和非酯化脂肪酸的水平随之降低,这表明脂质周转加快。无论饮食组成如何,瘦大鼠的总能量保留始终低于肥胖大鼠。两组在高蛋白饮食上观察到的变化基本相同,只是瘦大鼠的最终体脂含量明显较低。在没有外源性碳水化合物的情况下,瘦大鼠几乎无法保留氮并维持肝脏脂肪生成。与其他品系的大鼠不同,瘦 Zucker 大鼠不能适应低碳水化合物饮食;这种失败可能是由于代谢紊乱。

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