男性从维持状态到维持状态的三周内亮氨酸的动力学:适应和调节。

Human nutrition. Clinical nutrition Pub Date : 1987-01-01
V R Young, C Gucalp, W M Rand, D E Matthews, D M Bier
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引用次数: 0

摘要

之前对亮氨酸动力学的短期饮食研究结果表明,目前接受的成人对氨基酸的需求值过低。本研究探讨了在低亮氨酸摄入情况下延长饮食周期对健康年轻男性亮氨酸动力学和氮平衡的影响。他们(4或5科目/组)收到一个适当的亮氨酸摄入量(80毫克/公斤/天)1或2周(阶段1)其次是7日,14日或30毫克/公斤/天为3周(阶段2)返回到80毫克/公斤/天为一周(阶段3)。估计亮氨酸通量(低频),氧化(LO)和平衡(磅)是基于一个常数静脉注入L -亮氨酸1-13C,周期1月底,1和3周的周期2和3天1和3的时期。在美联储状态下,所有三个指标的LF和LO都在第二阶段的1至3周之间下降。在第二阶段的第1周,所有组的LB均为负,但在第3周时已接近平衡。3周时各组的氮平衡相似,但第3期的氮平衡显著高于(P < 0.05),与30 mg组(+4 mg /kg/d)相比,第7和14 mg组的氮平衡显著为正(+18 mg /kg/d),表明在第2期较低的亮氨酸摄入量发生了“耗损”。我们的解释是,在30 mg组中,LB是通过适应来实现的,而在7和14 mg组中,LB是通过调节来实现的,这与降低和降低亮氨酸摄取到蛋白质的速率(LF减去LO)有关。因此,判断亮氨酸需要量大于14 mg/kg/d,这是目前公认的健康成人需要量的上限。讨论了这些发现对评估营养需求的意义,重点是NB测量对评估人类氨基酸需求的局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Leucine kinetics during three weeks at submaintenance-to-maintenance intakes of leucine in men: adaptation and accommodation.

Previous results of short-term diet studies of leucine kinetics have suggested that the currently accepted requirement value for the amino acid in adults is too low. In the present study the effects of a more prolonged diet period at low leucine intakes on leucine kinetics and nitrogen balance (NB) were explored in healthy young men. They (4 or 5 subjects per group) received an adequate leucine intake (80 mg/kg/d) for 1 or 2 weeks (Period 1) followed by either 7, 14 or 30 mg/kg/d for 3 weeks (Period 2) with a return to 80 mg/kg/d for 1 week (Period 3). Estimates of leucine fluxes (LF), oxidation (LO) and balance (LB) were based on a constant intravenous infusion of L-[1-13C]leucine, at end of Period 1, at 1 and 3 weeks of Period 2 and on days 1 and 3 of Period 3. At all three intakes LF and LO, during the fed state, fell between 1 and 3 weeks of Period 2. LB was negative at 1 week of Period 2 for all groups but had approached equilibrium by 3 weeks. N balance at 3 weeks was similar for all groups but during Period 3 was significantly higher (P less than 0.05) and markedly positive (+18 mgN/kg/d) for the 7 and 14 mg groups, compared with the 30 mg group (+4 mgN/kg/d), indicating that 'depletion' had occurred at the lower leucine intakes during Period 2. Our interpretation is that LB was approached by an adaptation in the 30 mg group whereas it was achieved in the 7 and 14 mg groups by an accommodation, associated with a reduced and low rate of leucine uptake into protein (LF minus LO). Thus, the leucine requirement was judged to be greater than 14 mg/kg/d, a level currently accepted as the upper range of the requirement for healthy adults. The significance of these findings for assessment of nutrient requirements is discussed, with emphasis on the limitation of NB measurements for evaluation of human amino acid requirements.

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