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Latency and duration of stimulation of human muscle protein synthesis during continuous infusion of amino acids

机译:连续输注氨基酸期间刺激人类肌肉蛋白质合成的潜伏期和持续时间

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class="enumerated" style="list-style-type:decimal">The aim of this study was to describe the time course of the response of human muscle protein synthesis (MPS) to a square wave increase in availability of amino acids (AAs) in plasma. We investigated the responses of quadriceps MPS to a ≈1.7-fold increase in plasma AA concentrations using an intravenous infusion of 162 mg (kg body weight)−1 h−1 of mixed AAs. MPS was estimated from D3-leucine labelling in protein after a primed, constant intravenous infusion of D3-ketoisocaproate, increased appropriately during AA infusion.Muscle was separated into myofibrillar, sarcoplasmic and mitochondrial fractions. MPS, both of mixed muscle and of fractions, was estimated during a basal period (2.5 h) and at 0.5-4 h intervals for 6 h of AA infusion.Rates of mixed MPS were not significantly different from basal (0.076 ± 0.008 % h−1) in the first 0.5 h of AA infusion but then rose rapidly to a peak after 2 h of ≈2.8 times the basal value. Thereafter, rates declined rapidly to the basal value. All muscle fractions showed a similar pattern.The results suggest that MPS responds rapidly to increased availability of AAs but is then inhibited, despite continued AA availability. These results suggest that the fed state accretion of muscle protein may be limited by a metabolic mechanism whenever the requirement for substrate for protein synthesis is exceeded.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 这项研究的目的是描述人类肌肉蛋白质合成(MPS)对血浆中氨基酸(AAs)利用率增加的方波响应的时间过程。我们通过静脉内输注162 mg(kg体重) -1 h -1 的静脉输注四头肌MPS对血浆AA浓度增加约1.7倍的反应混合AA。在D3酮异己酸的初次,恒定静脉内输注后,根据蛋白质中D3亮氨酸的标记估计MPS,在AA输注期间适当地增加了MPS。 将肌肉分为肌原纤维,肌浆和线粒体部分。在基础期(2.5 h)以及以0.5-4 h的间隔进行AA输注6 h时,估计混合肌肉和各个部位的MPS。 混合MPS的费用与在AA注入的前0.5小时内为基础值(0.076±0.008%h -1 ),但在2小时后迅速升至峰值,约为基值的2.8倍。此后,利率迅速下降至基本价值。所有肌肉部分均显示出相似的模式。 结果表明,MPS对AA可用性的提高迅速做出反应,但尽管AA可用性持续,但仍被抑制。这些结果表明,只要超出蛋白质合成底物的要求,肌肉蛋白质的进食状态就会受到代谢机制的限制。

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