Muscle Atrophy Clinical Trials

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Assessing the Dose-response of Muscle Protein Synthesis to Super-whey at Rest and in Response to Acute Exercise in Older Adults

Status: Recruiting
Location: See location...
Intervention Type: Other
Study Type: Interventional
Study Phase: Not Applicable
SUMMARY

Skeletal muscle accounts for approximately 45-55% of total body mass in healthy adults and plays a pivotal role in whole-body metabolic health, locomotion and physical independence. Undesirable loss of skeletal muscle mass (atrophy) is, however, a common feature of many diseases and scenarios including ageing, bed rest/immobilisation, cancer and physical inactivity. Despite the exact mechanisms causing muscle atrophy being not yet fully understood, anabolic resistance (reduced muscle building in response to protein feeding and exercise) is thought to be key, especially for age-related skeletal muscle losses (known as sarcopenia). As such, the search for optimal strategies (e.g., exercise and/ or nutritional interventions) to combat this anabolic blunting remains a hot-topic in scientific research. Leucine, an essential and branched chain amino acid (EAA/BCAA), is thought to be the most potent AA for stimulating muscle protein synthesis (MPS; the muscle building process). Although, as a stand-alone supplement, leucine is unlikely to provoke a robust and prolonged state of MPS, low doses of leucine-enriched mixed-EAAs can elicit similar increases in MPS as compared to a large dose of whey protein. As reduced appetite and increased satiety (feeling fuller) are common with advancing age, supplementation of a low-dose protein (i.e., leucine-enriched) that can adequately stimulate MPS may contribute to muscle health maintenance in older adults and reduce satiation following a meal. This study aims to examine which of three doses of a novel leucine-enriched whey protein (super-whey) best stimulates muscle building in older adults

Eligibility
Participation Requirements
Sex: Male
Minimum Age: 65
Maximum Age: 85
Healthy Volunteers: t
View:

• Participant is in the desired age-ranges (young adults: 18-35 years; older adults: 65+ years).

• Participant is willing and able to give informed consent for participation in the study.

• Participant is physically able to perform resistance exercise

Locations
Other Locations
United Kingdom
Centre of Ageing, Metabolism and Physiology
RECRUITING
Derby
Time Frame
Start Date: 2023-01-31
Estimated Completion Date: 2026-10
Participants
Target number of participants: 30
Treatments
Experimental: Super-Whey protein Dose 1
All protein sources will be given in doses that are considered low/normal, both in relation to recommended dietary advice and commercially available supplements. As such, no adverse reactions or side effects are expected through consumption of these supplementations. This protein dose will be 5 g protein and will be given as a single bolus dose.
Experimental: Super-Whey protein Dose 2
All protein sources will be given in doses that are considered low/normal, both in relation to recommended dietary advice and commercially available supplements. As such, no adverse reactions or side effects are expected through consumption of these supplementations. This protein dose will be 10 g protein and will be given as a single bolus dose.
Experimental: Super-Whey protein Dose 3
All protein sources will be given in doses that are considered low/normal, both in relation to recommended dietary advice and commercially available supplements. As such, no adverse reactions or side effects are expected through consumption of these supplementations. This protein dose will be 20 g protein and will be given as a single bolus dose.
Related Therapeutic Areas
Sponsors
Leads: University of Nottingham

This content was sourced from clinicaltrials.gov