Andrew Philp
Associate Professor
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About
Andrew Philp is an Associate Professor at the University of Technology Sydney, Australia. His research primarily focuses on tumor biomechanics, metabolic physiology, and the effects of exercise on aging and muscle function. He has recently published articles exploring topics such as the metabolic implications of resistance exercise and mitochondrial adaptation in response to endurance training.
Articles (10)
A single bout of prior resistance exercise attenuates muscle atrophy and declines in myofibrillar protein synthesis during bed‐rest in older men
Impairments in myofibrillar protein synthesis (MyoPS) during bed rest accelerate skeletal muscle loss in older adults, increasing the risk of adverse secondary health outcomes. We investigated the effect of prior resistance exercise (RE) on MyoPS and muscle morphology during a disuse event in 10 healthy older men (65–80 years). Participants completed a single bout of unilateral leg RE the evening prior to 5 days of in‐patient bed‐rest. Quadriceps cross‐sectional area (CSA) was determined prior to and following bed‐rest. Serial muscle biopsies and dual stable isotope tracers were used to determine rates of integrated MyoPS (iMyoPS) over a 7 day habitual ‘free‐living’ phase and the bed‐rest phase, and rates of acute postabsorptive and postprandial MyoPS (aMyoPS) at the end of bed rest. Quadriceps CSA at 40%, 60% and 80% of muscle length significantly decreased in exercised (EX) and non‐exercised control (CTL) legs with bed‐rest. The decline in quadriceps CSA at 40% and 60% of muscle length was attenuated in EX compared with CTL. During bed‐rest, iMyoPS rates decreased from habitual values in CTL, but not EX, and were significantly different between legs. Postprandial aMyoPS rates increased above postabsorptive values in EX only. The change in iMyoPS over bed‐rest correlated with the change in quadriceps CSA in CTL, but not EX. A single bout of RE attenuated the decline in iMyoPS rates and quadriceps atrophy with 5 days of bed‐rest in older men. Further work is required to understand the functional and clinical implications of prior RE in older patient populations. image Key points Age‐related skeletal muscle deterioration, linked to numerous adverse health outcomes, is driven by impairments in muscle protein synthesis that are accelerated during periods of disuse. Resistance exercise can stimulate muscle protein synthesis over several days of recovery and therefore could counteract impairments in this process that occur in the early phase of disuse. In the present study, we demonstrate that the decline in myofibrillar protein synthesis and muscle atrophy over 5 days of bed‐rest in older men was attenuated by a single bout of unilateral resistance exercise performed the evening prior to bed‐rest. These findings suggest that concise resistance exercise intervention holds the potential to support muscle mass retention in older individuals during short‐term disuse, with implications for delaying sarcopenia progression in ageing populations.
Year:
2023
Collaborators (11)
Maya Kansara
Head, Translational Oncology Lab
Garvan Institute of Medical Research
Yasir Elhassan
University of Birmingham
Mark Larance
Senior Lecturer
University of Sydney
Kyle Hoehn
Professor
University of New South Wales - Randwick Campus
Paul Timpson
Co-Director Tumour Ecosystems program, Extended Leadership Team
Garvan Institute of Medical Research
Simon Schenk
Professor
University of California, San Diego
Yu Suk Choi
University of Western Australia
Frances Byrne
Senior lecturer
UNSW Sydney
Andrew Hoy
Associate Professor
University of Sydney
Leigh Breen
-
Danielle Debruin
Victoria University

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