Fürst P, Pogan K, Stehle P
Institute for Biological Chemistry and Nutrition, University of Hohenheim, Stuttgart, Germany.
Nutrition. 1997 Jul-Aug;13(7-8):731-7. doi: 10.1016/s0899-9007(97)83035-3.
Glutamine is a conditional indispensable amino acid during stress. However, limited solubility and instability of glutamine prevent its addition to presently available nutritional preparations. To overcome these drawbacks, we propose the dipeptide concept by which stable and highly soluble synthetic glutamine containing dipeptides are used. The synthetic dipeptides fulfill all chemical/physical properties to be considered as parenteral substrates. Numerous experimental studies show rapid clearance of parenteral supplied glutamine containing dipeptides without accumulation in tissues; the loss via the urine being inconsequential. Differences related to the dipeptide structure are not observed. There is overwhelming evidence existent that a nutritional support with supplemental glutamine dipeptide positively influences nitrogen excretion, immune status, gut integrity, morbidity, rehabilitation and outcome. Consequently, omission of glutamine from conventional TPN and its subsequent administration should be considered as a replacement of a deficiency rather than a supplementation. It might thus be conceivable that the beneficial effects observed with glutamine nutrition are simply a correction of disadvantages produced by an inadequacy of conventional amino acid solutions. The availability of stable glutamine containing preparations will certainly facilitate an adequate amino acid nutrition in routine clinical setting during episodes of stress and malnutrition.
谷氨酰胺在应激状态下是一种条件必需氨基酸。然而,谷氨酰胺的溶解性有限且不稳定,这使得它无法添加到现有的营养制剂中。为克服这些缺点,我们提出了二肽概念,即使用稳定且高度可溶的含谷氨酰胺合成二肽。这些合成二肽具备作为肠外营养底物所需的所有化学/物理性质。大量实验研究表明,肠外给予的含谷氨酰胺二肽能迅速被清除,不会在组织中蓄积;经尿液排出的量微不足道。未观察到与二肽结构相关的差异。有大量证据表明,补充谷氨酰胺二肽的营养支持对氮排泄、免疫状态、肠道完整性、发病率、康复及预后有积极影响。因此,在传统全胃肠外营养(TPN)中省略谷氨酰胺并随后给予谷氨酰胺,应被视为弥补不足而非补充。由此可以想象,谷氨酰胺营养所观察到的有益效果可能仅仅是纠正了传统氨基酸溶液不足所产生的弊端。稳定的含谷氨酰胺制剂的出现肯定会有助于在应激和营养不良期间的常规临床环境中实现充足的氨基酸营养。