Parenteral nutrition with an amino acid solution containing a mixture of dipeptides. Evidence for efficient utilization of dipeptides in man.

M Brandl, D Sailer, K Langer, A Engelhardt, H Kleinhenz, S A Adibi, W Fekl
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Abstract

Ten healthy human subjects received parenteral nutrition consisting of 80 g of a dipeptide-amino acid mixture and 900 carbohydrate calories infused over a period of 12 h, and then fasted for another period of 12 h. The dipeptides included in the mixture were: glycyl-L-glutamine, glycyl-L-tyrosine, glycyl-L-leucine, glycyl-L-isoleucine, and glycyl-L-valine. Parenteral nutrition with the dipeptide-amino acid mixture was without any adverse reaction in any of the subjects. The urinary excretion of the 5 dipeptides during parenteral nutrition ranged between 1 and 2% of the amount infused. Plasma concentrations of dipeptides during parenteral nutrition, which ranged from 8-96 microM reflected their plasma half-lives. Glycyl-L-glutamine had the longest half-life, glycyl-L-leucine and glycyl-L-tyrosine the shortest half-lives. During parenteral nutrition there were increases in plasma amino acid concentrations including those of glutamine and tyrosine. Discontinuation of parenteral nutrition resulted in the disappearance of dipeptides from plasma, and the dissipation of increased plasma amino acid concentrations. In conclusion, the present results show efficient utilization of glycyl-dipeptides as substrates for parenteral nutrition in man. The results further show that the structure of amino acids in the C-terminal position has a significant influence on the metabolism of dipeptides.

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用含有二肽混合物的氨基酸溶液进行肠外营养。人类有效利用二肽的证据。
10名健康受试者接受由80克二肽-氨基酸混合物和900卡路里碳水化合物组成的肠外营养,持续12小时,然后禁食12小时。混合物中包含的二肽为:甘氨酸-l -谷氨酰胺、甘氨酸-l -酪氨酸、甘氨酸-l -亮氨酸、甘氨酸-l -异亮氨酸和甘氨酸-l -缬氨酸。二肽-氨基酸混合物的肠外营养在所有受试者中没有任何不良反应。在肠外营养期间,尿中5种二肽的排泄量在输注量的1%至2%之间。肠外营养期间二肽的血浆浓度在8-96微米之间,反映了它们的血浆半衰期。其中,甘氨酸-l -谷氨酰胺的半衰期最长,甘氨酸-l -亮氨酸和甘氨酸-l -酪氨酸的半衰期最短。在肠外营养期间,血浆氨基酸浓度增加,包括谷氨酰胺和酪氨酸。停用肠外营养导致血浆中二肽的消失,以及血浆中氨基酸浓度升高的耗散。综上所述,本研究结果表明甘酰二肽作为肠外营养的底物在人体中的有效利用。结果进一步表明,氨基酸在c端位置的结构对二肽的代谢有显著影响。
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