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Review
. 2021 Jun 1;12(3):887-896.
doi: 10.1093/advances/nmaa123.

Measuring Protein Turnover in the Field: Implications for Military Research

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Review

Measuring Protein Turnover in the Field: Implications for Military Research

Katrina L Hinde et al. Adv Nutr. .

Abstract

Protein turnover reflects the continual synthesis and breakdown of body proteins, and can be measured at a whole-body (i.e. aggregated across all body proteins) or tissue (e.g. skeletal muscle only) level using stable isotope methods. Evaluating protein turnover in free-living environments, such as military training, can help inform protein requirements. We undertook a narrative review of published literature with the aim of reviewing the suitability of, and advancements in, stable isotope methods for measuring protein turnover in field research. The 2 primary approaches for measuring protein turnover are based on precursor- and end-product methods. The precursor method is the gold-standard for measuring acute (over several hours) skeletal muscle protein turnover, whereas the end-product method measures chronic (over several weeks) skeletal muscle protein turnover and provides the opportunity to monitor free-living activities. Both methods require invasive procedures such as the infusion of amino acid tracers and muscle biopsies to assess the uptake of the tracer into tissue. However, the end-product method can also be used to measure acute (over 9-24 h) whole-body protein turnover noninvasively by ingesting 15N-glycine, or equivalent isotope tracers, and collecting urine samples. The end-product method using 15N-glycine is a practical method for measuring whole-body protein turnover in the field over short (24 h) time frames and has been used effectively in recent military field research. Application of this method may improve our understanding of protein kinetics during conditions of high physiological stress in free-living environments such as military training.

Keywords: 15N-glycine; military training; nutrition; physiological stress; protein metabolism; protein status; stable isotope tracer.

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Figures

FIGURE 1
FIGURE 1
Mean ± SE pattern of urinary enrichment in ammonia (circles) and urea (squares) over 48 h following a single oral dose of 200 mg 15N-glycine. Reproduced from Grove & Jackson (55), with permission.

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