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首页> 外文期刊>American Journal of Physiology >The impact of delivery profile of essential amino acids upon skeletal muscle protein synthesis in older men: clinical efficacy of pulse vs. bolus supply
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The impact of delivery profile of essential amino acids upon skeletal muscle protein synthesis in older men: clinical efficacy of pulse vs. bolus supply

机译:基本氨基酸的递送谱对老年人骨骼肌蛋白质合成的影响:脉冲与推注供应的临床疗效

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摘要

Essential amino acids (EAA) are responsible for skeletal muscle anabolic effects after nutrient intake. The pattern of appearance of EAA in blood, e.g., after intake of "slow" or "fast" protein sources or in response to grazing vs. bolus feeding patterns, may impact anabolism. However, the influence of this on muscle anabolism is poorly understood, particularly in older individuals. We determined the effects of divergent feeding profiles of EAA on blood flow, anabolic signaling, and muscle protein synthesis (MPS) in older men. Sixteen men (—70 yr) consumed EAA either as a single dose (bolus, 15 g; n = 8) or as small repeated fractions (pulse, 4 X 3.75 g every 45 min; n = 8) during 13C6 phenylalanine infusion. Repeated blood samples and muscle biopsies permitted measurement of fasting and postprandial plasma EAA, insulin, anabolic signaling, and MPS. Muscle blood flow was assessed by contrast-enhanced ultrasound (Sonovue). Bolus achieved rapid insulinemia (12.7 uAU/ml 25-min postfeed), essential aminoacidemia (—3,000 |xM, 45-65 min postfeed), and mTORCl activity; pulse achieved attenuated insulin responses, gradual low-amplitude aminoacidemia (—1,800 jxM 80-195 min after feeding), and undetectable mTORCl signaling. Despite this, equivalent anabolic responses were observed: fasting FSRs of 0.051 and 0.047%/h (bolus and pulse, respectively) increased to 0.084 and 0.073%/h, respectively. Moreover, pulse led to sustainment of MPS beyond 180 min, when bolus MPS had returned to basal rates. We detected no benefit of rapid aminoacidemia in this older population despite enhanced anabolic signaling and greater overall EAA exposure. Rather, apparent delayed onset of the "muscle-full" effect permitted identical MPS following low-amplitude-sustained EAA exposure.
机译:基本氨基酸(EAA)负责营养摄入后的骨骼肌代谢效应。血液中EAA的外观模式,例如,在摄入“慢”或“快速”蛋白质来源或响应于放牧比较的血管喂养模式后,可能会影响原始的原因。然而,这对肌肉合成代谢的影响很差,特别是在老年人中。我们确定了EAA对血流,合成代谢信号和肌蛋白合成(MPS)的发散喂养曲线的影响。在13C6苯丙氨酸输注期间,十六名男性(-70 yr)作为单剂量(血管,15g; n = 8)或作为小的重复馏分(每45分钟4×3.75g)的单剂量(脉冲,4×3.75g)。反复血液样本和肌肉活组织检查允许测量禁食和餐后等离子体EAA,胰岛素,合成代谢信号和MPS。通过对比度增强的超声(Sonovue)评估肌血流量。推注达到了快速的胰岛素血症(12.7uau / ml 25分钟的喂食),必需的氨基克血症(-3,000 | XM,45-65分钟的后喂食)和MTORCL活性;脉冲达到衰减的胰岛素反应,逐渐低振幅氨基血症(喂食后-1,800 JXM 80-195分钟),和未检测到的MTORCL信号传导。尽管如此,观察到等同的合成代谢反应:0.051和0.047%/ h(分别为0.047%/ h(分别为0.047%/ h的空腹响应分别增加到0.084和0.073%/ h。此外,当推杆MPS返回基础速率时,脉冲导致超过180分钟的MPS超过180分钟。我们在这种年龄较大的人群中检测到快速氨基血症血症的任何益处,尽管有增强的合成代谢信号和更大的整体EAA暴露。相反,在低幅度持续的EAA暴露之后,允许的“肌肉完全”效应的明显延迟发作。

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