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首页> 外文期刊>The American Journal of Clinical Nutrition: Official Journal of the American Society for Clinical Nutrition >Portal infusion of amino acids is more efficient than peripheral infusion in stimulating liver protein synthesis at the same hepatic amino acid load in dogs.
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Portal infusion of amino acids is more efficient than peripheral infusion in stimulating liver protein synthesis at the same hepatic amino acid load in dogs.

机译:在狗的相同肝氨基酸负荷下,门静脉输注氨基酸比外周输注更有效地刺激肝蛋白合成。

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摘要

BACKGROUND: Hepatic glucose uptake is enhanced by the portal delivery of glucose, which creates a negative arterioportal substrate gradient. Hepatic amino acid (AA) utilization may be regulated by the same phenomenon, but this has not been proven. OBJECTIVE: We aimed to assess hepatic AA balance and protein synthesis with or without a negative arterioportal AA gradient. DESIGN: Somatostatin was infused intravenously, and insulin and glucagon were replaced intraportally at 4- and 3-fold basal rates, respectively, in 3 groups (n = 9 each) of conscious dogs with catheters for hepatic balance measurement. Arterial glucose concentrations were clamped at 9 mmol/L. An AA mixture was infused intravenously to maintain basal concentrations (EuAA), intraportally to mimic the postmeal AA increase (PoAA), or intravenously (PeAA) to match the hepatic AA load in PoAA. Protein synthesis was assessed with a primed, continuous [(14)C]leucine infusion. RESULTS: Net hepatic glucose uptake in the PoAA condition was < or =50% of that in the EuAA and PeAA conditions (P < 0.05). In the PoAA and PeAA conditions, hepatic intracellular leucine concentrations were 2- to 2.5-fold those in the EuAA condition (P < 0.05); net hepatic leucine uptake and [(14)C]leucine utilization were approximately 2-fold greater (P < 0.05) and albumin synthesis was 30% greater (P < 0.05) in the PoAA condition than in the EuAA and PeAA conditions. Phosphorylation of ribosomal protein S6 [downstream of the mammalian target of Rapamycin complex 1 (mTORC1)] was significantly higher in the PoAA, but not PeAA, condition than in the EuAA condition. CONCLUSIONS: Portal, but not peripheral, AA delivery significantly enhanced hepatic protein synthesis under conditions in which AAs, glucose, insulin, and glucagon did not differ at the liver, an effect apparently mediated by mTORC1 signaling.
机译:背景:葡萄糖的门静脉输送可提高肝脏对葡萄糖的摄取,从而造成负的运动门底物梯度。肝氨基酸(AA)的利用可能受相同现象的调节,但这尚未得到证明。目的:我们评估有或没有负运动门静脉AA梯度的肝AA平衡和蛋白质合成。设计:静脉注射生长抑素,并在3组(每组n = 9)有意识的狗中,分别以4倍和3倍的基础速率经门静脉内置换胰岛素和胰高血糖素,以进行肝平衡测量。动脉葡萄糖浓度钳制在9 mmol / L。静脉内注射AA混合物以维持基础浓度(EuAA),门内注射以模拟餐后AA升高(PoAA),或静脉内(PeAA)以匹配PoAA中的肝AA负荷。用灌注的,连续的[(14)C]亮氨酸输注评估蛋白质的合成。结果:PoAA条件下的肝净葡萄糖摄取量小于或等于EuAA和PeAA条件下的肝糖摄取量的50%(P <0.05)。在PoAA和PeAA条件下,肝细胞内亮氨酸浓度是EuAA条件下的2到2.5倍(P <0.05);与EuAA和PeAA条件相比,在PoAA条件下,肝脏净亮氨酸摄取和[(14)C]亮氨酸利用率提高了约2倍(P <0.05),白蛋白合成提高了30%(P <0.05)。在PoAA条件下,核糖体蛋白S6的磷酸化[雷帕霉素复合物1(mTORC1)的哺乳动物靶标的下游]明显高于EuAA条件,而不是PeAA条件。结论:在肝脏中AA,葡萄糖,胰岛素和胰高血糖素没有差异的情况下,门静脉(而不是外周)AA的递送显着增强了肝蛋白的合成,这显然是由mTORC1信号传导介导的。

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