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首页> 外文期刊>American Journal of Physiology >Phenylbutyrate-induced glutamine depletion in humans: effect on leucine metabolism.
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Phenylbutyrate-induced glutamine depletion in humans: effect on leucine metabolism.

机译:苯丁酸引起的谷氨酰胺耗竭:对亮氨酸代谢的影响。

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摘要

The present study was designed to determine whether sodium phenylbutyrate (phi B) acutely induces a decrease in plasma glutamine in healthy humans, and, if so, will decrease estimates of whole body protein synthesis. In a first group of three healthy subjects, graded doses (0, 0.18, and 0.36 g.kg-1.day-1) of phi B were administered for 24 h before study: postabsorptive plasma glutamine concentration declined in a dose-dependent manner, achieving an approximately 25% decline for a dose of 0.36 g phi B.kg-1.day-1. A second group of six healthy adults received 5-h infusions of L-[1-14C]leucine and L-[1-13C]glutamine in the postabsorptive state on two separate days: 1) under baseline conditions and 2) after 24 h of oral treatment with phi B (0.36 g.kg-1.day-1) in a randomized order. The 24-h phenylbutyrate treatment was associated with 1) an approximately 26% decline in plasma glutamine concentration from 514 +/- 24 to 380 +/- 15 microM (means +/- SE; P < 0.01 with paired t-test) with no change in glutamine appearance rate or de novo synthesis; 2) no change in leucine appearance rate (Ra), an index of protein breakdown (123 +/- 7 vs. 117 +/- 5 mumol.kg-1.h-1; not significant); 3) an approximately 22% rise in leucine oxidation (Ox) from 23 +/- 2 to 28 +/- 2 mumol.kg-1.h-1 (P < 0.01), resulting in an approximately 11% decline in nonoxidative leucine disposal (NOLD = Ra-Ox), an index of protein synthesis, from 100 +/- 6 to 89 +/- 5 mumol.kg-1.h-1 (P < 0.05). The data suggest that, in healthy adults, 1) large doses of oral phenylbutyrate can be used as a "glutamine trap" to create a model of glutamine depletion; 2) a moderate decline in plasma glutamine does not enhance rates of endogenous glutamine production; and 3) a short-term depletion of plasma glutamine decrease estimates of whole body protein synthesis.
机译:本研究旨在确定苯基丁酸钠(phi B)是否会急性诱导健康人血浆谷氨酰胺的降低,如果是的话,则会降低对人体蛋白质合成的估计。在三名健康受试者的第一组中,研究前24小时给予phi B分级剂量(0、0.18和0.36 g.kg-1.day-1):吸收后血浆谷氨酰胺浓度以剂量依赖性方式降低,对于0.36 g phi B.kg-1.day-1的剂量,大约降低了25%。第二组的六名健康成年人在吸收后的状态下分别在两天内分别接受5小时的L- [1-14C]亮氨酸和L- [1-13C]谷氨酰胺输注:1)在基线条件下和2)24小时后随机用phi B(0.36 g.kg-1.day-1)口服治疗。 24小时苯丁酸酯治疗与1)血浆谷氨酰胺浓度从514 +/- 24 microM下降约380%到380 +/- 15 microM(平均值+/- SE;配对t检验P <0.01)降低约26%谷氨酰胺出现率或从头合成没有变化; 2)亮氨酸出现率(Ra)不变,蛋白质分解指数(123 +/- 7 vs. 117 +/- 5 mumol.kg-1.h-1;不显着); 3)亮氨酸氧化(Ox)从23 +/- 2升至28 +/- 2 mumol.kg-1.h-1约增加22%(P <0.01),导致非氧化亮氨酸减少约11%蛋白质合成指数(NOLD = Ra-Ox)从100 +/- 6到89 +/- 5 mumol.kg-1.h-1(P <0.05)。数据表明,在健康成年人中,1)大剂量口服丁酸苯基酯可用作“谷氨酰胺诱捕剂”以建立谷氨酰胺消耗模型。 2)血浆谷氨酰胺的适度下降不会提高内源性谷氨酰胺的产生率;和3)血浆谷氨酰胺的短期消耗会降低对全身蛋白质合成的估计。

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