膳食共轭亚油酸对久坐和运动成年大鼠组织蛋白合成代谢的影响有限。

Reproduction, nutrition, development Pub Date : 2006-11-01 Epub Date: 2006-12-15 DOI:10.1051/rnd:2006040
Philippe Patureau Mirand, Laurent Mosoni, Marie-Agnès Arnal-Bagnard, Yannick Faulconnier, Jean-Michel Chardigny, Yves Chilliard
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引用次数: 13

摘要

共轭亚油酸异构体(CLA)和耐力训练对瘦体重的影响预计是由于它们对组织蛋白质代谢的作用。本研究旨在分析其对成年大鼠2块肌肉、小肠和肝脏蛋白质代谢的影响。4月龄雄性Wistar大鼠分别饲喂不含CLA、顺式-9、反式-11 CLA异构体(1 g.100 g(-1))、反式-10、顺式-12 CLA异构体(1 g.100 g(-1))或两种异构体(各1 g.100 g(-1))的饲料6周。一半的老鼠在跑步机上进行耐力训练。在这段时间结束时,给大鼠注射大量的(13)c -缬氨酸,以测定吸收后(实验1)和餐后(实验2)状态下的蛋白质合成速率。没有发现CLA或耐力训练对小肠的影响。训练减少了食物摄入量和肝脏蛋白质合成率,但对肌肉蛋白质合成率没有影响。在吸收后状态下,通过单独喂食肝脏中的反式-10,顺式-12 CLA异构体(+9%)或与腓肠肌中的顺式-9,反式-11异构体(+30%),蛋白质合成率增加,主要是在久坐大鼠中。在餐后状态下,顺式-9,反式-11 CLA异构体倾向于降低腓肠肌蛋白质合成速率。然而,没有发现CLA对肌肉蛋白含量的影响。综上所述,CLA异构体对成年大鼠组织蛋白代谢的影响有限,但存在差异。
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Dietary conjugated linoleic acid has limited effects on tissue protein anabolism in sedentary and exercising adult rats.

The effects of conjugated linoleic acid isomers (CLA) and endurance training on lean body mass are expected to result from their action on tissue protein metabolism. The aim of this study was to analyze their effects on protein metabolism in 2 muscles, the small intestine and liver of adult rats. Four-month-old male Wistar rats were fed diets containing either no CLA, cis-9, trans-11 CLA isomer (1 g.100 g(-1)), trans-10, cis-12 CLA isomer (1 g.100 g(-1)) or both isomers (1 g.100 g(-1) each) for 6 weeks. Half of the rats were subjected to endurance training by running on a treadmill. At the end of this period, the rats were injected with a flooding dose of (13)C-valine to determine protein synthesis rates in the post-absorptive (experiment 1) and in the post-prandial (experiment 2) states. No effect of CLA or endurance training were detected in the small intestine. Training reduced food intake and protein synthesis rates in the liver but no effect was found on the protein synthesis rates in muscles. In the post-absorptive state, protein synthesis rate was increased by feeding the trans-10, cis-12 CLA isomer alone in the liver (+9%) or in combination with the cis-9, trans-11 isomer in the gastrocnemius (+30%), mostly in sedentary rats. In the post-prandial state, the cis-9, trans-11 CLA isomer tended to reduce the protein synthesis rate in the gastrocnemius muscle. However, no effect of CLA was found on muscle protein amounts. In conclusion, CLA isomers would have limited but differential effects on tissue protein metabolism in adult rats.

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