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联合β-乳球蛋白补充和抗阻运动训练在前肢固定前对健康年轻成年人肌肉蛋白质合成率的影响:一项随机对照试验的研究方案。

The effect of combined β-lactoglobulin supplementation and resistance exercise training prior to limb immobilisation on muscle protein synthesis rates in healthy young adults: study protocol for a randomised controlled trial.

机构信息

Centre for Human and Applied Physiological Sciences, King's College London, London, UK.

School of Cardiovascular Medicine & Sciences, King's College London, London, UK.

出版信息

Trials. 2023 Jun 13;24(1):401. doi: 10.1186/s13063-023-07329-6.

Abstract

BACKGROUND

The decline in skeletal muscle mass experienced following a short-term period (days to weeks) of muscle disuse is mediated by impaired rates of muscle protein synthesis (MPS). Previous RCTs of exercise or nutrition prehabilitation interventions designed to mitigate disuse-induced muscle atrophy have reported limited efficacy. Hence, the aim of this study is to investigate the impact of a complex prehabilitation intervention that combines β-lactoglobulin (a novel milk protein with a high leucine content) supplementation with resistance exercise training on disuse-induced changes in free-living integrated rates of MPS in healthy, young adults.

METHODS/DESIGN: To address this aim, we will recruit 24 healthy young (18-45 years) males and females to conduct a parallel, double-blind, 2-arm, randomised placebo-controlled trial. The intervention group will combine a 7-day structured resistance exercise training programme with thrice daily dietary supplementation with 23 g of β-lactoglobulin. The placebo group will combine the same training programme with an energy-matched carbohydrate (dextrose) control. The study protocol will last 16 days for each participant. Day 1 will be a familiarisation session and days 2-4 will be the baseline period. Days 5-11 represent the 'prehabilitation period' whereby participants will combine resistance training with their assigned dietary supplementation regimen. Days 12-16 represent the muscle disuse-induced 'immobilisation period' whereby participants will have a single leg immobilised in a brace and continue their assigned dietary supplementation regimen only (i.e. no resistance training). The primary endpoint of this study is the measurement of free-living integrated rates of MPS using deuterium oxide tracer methodology. Measurements of MPS will be calculated at baseline, over the 7-day prehabilitation period and over the 5-day immobilisation period separately. Secondary endpoints include measurements of muscle mass and strength that will be collected on days 4 (baseline), 11 (end of prehabilitation) and 16 (end of immobilisation).

DISCUSSION

This novel study will establish the impact of a bimodal prehabilitation strategy that combines ß-lactoglobulin supplementation and resistance exercise training in modulating MPS following a short-term period of muscle disuse. If successful, this complex intervention may be translated to clinical practice with application to patients scheduled to undergo, for example, hip or knee replacement surgery.

TRIAL REGISTRATION

NCT05496452. Registered on August 10, 2022.

PROTOCOL VERSION

16-12-2022/1.

摘要

背景

短期(数天至数周)肌肉废用后,骨骼肌质量下降是由肌肉蛋白合成(MPS)率受损介导的。先前旨在减轻废用性肌肉萎缩的运动或营养预康复干预的随机对照试验(RCT)报告疗效有限。因此,本研究的目的是研究一种结合β-乳球蛋白(一种具有高亮氨酸含量的新型牛奶蛋白)补充剂和抗阻运动训练的复杂预康复干预措施对健康年轻成年人在自由生活状态下 MPS 综合率的废用诱导变化的影响。

方法/设计:为了达到这个目的,我们将招募 24 名健康的年轻(18-45 岁)男性和女性进行平行、双盲、2 臂、随机安慰剂对照试验。干预组将结合 7 天的结构化抗阻运动训练计划和每日 3 次的 23 克β-乳球蛋白饮食补充。安慰剂组将结合相同的训练计划和能量匹配的碳水化合物(葡萄糖)对照。每位参与者的研究方案将持续 16 天。第 1 天是一个熟悉的过程,第 2-4 天是基线期。第 5-11 天代表“预康复期”,在此期间,参与者将结合抗阻训练和他们指定的饮食补充方案。第 12-16 天代表肌肉废用引起的“固定期”,在此期间,参与者将在支架中固定一条腿,并继续他们指定的饮食补充方案,只是(即不进行抗阻训练)。本研究的主要终点是使用氘水示踪剂方法测量自由生活状态下 MPS 的综合率。在基线、7 天预康复期和 5 天固定期分别测量 MPS。次要终点包括肌肉质量和力量的测量,这些测量将在第 4 天(基线)、第 11 天(预康复结束)和第 16 天(固定结束)收集。

讨论

这项新的研究将确定一种双模态预康复策略的影响,该策略结合β-乳球蛋白补充剂和抗阻运动训练,在短期肌肉废用后调节 MPS。如果成功,这种复杂的干预措施可能会转化为临床实践,适用于计划接受例如髋关节或膝关节置换手术的患者。

试验注册

NCT05496452。注册于 2022 年 8 月 10 日。

方案版本

2022 年 12 月 16 日/1。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c53d/10265785/82049ff8ea0f/13063_2023_7329_Fig1_HTML.jpg

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