RecruitingNot ApplicableNCT05414292

Impacts of Mechanistic Target of Rapamycin (mTOR) Inhibition on Aged Human Muscle (Rapamune)

Impacts of Mechanistic Target of Rapamycin (mTOR) Inhibition on Aged Human Muscle.


Sponsor

University of Nottingham

Enrollment

16 participants

Start Date

Aug 6, 2021

Study Type

INTERVENTIONAL

Conditions

Summary

As people age, muscle mass and function is lost and exercise training is an important way to reduce the effects of this and remain independent. However, not everyone can perform this exercise and the muscle responses to exercise are often reduced in older people. So far there has been no drug found to specifically treat or reduce this problem. Muscle size depends on the balance of muscle protein breakdown and synthesis (building). This balance is regulated by multiple signals within the body, but a particular molecule - the mechanistic target of rapamycin (mTOR), is known to play an important role. For protein synthesis to build up the muscles, this pathway is needed to start the process when triggered by eating protein or exercise. Although this would suggest that mTOR activity is good, excessive levels of this signalling seem to have negative impacts on muscle maintenance with age. In animal studies, blocking mTOR signalling has stopped the development of a number of age-related diseases and increased health-span. Drugs that block this pathway (e.g. Rapamune) reduce the stimulation of muscle protein synthesis, possibly through changing the immune system, but conversely have also been shown to increase muscle size and reduce markers of nerve supply loss. This means that drugs which block the mTOR pathway could, in older people, help to reduce the negative impacts of excessive mTOR signalling on muscle size and function. The investigators aim to recruit 16 healthy male volunteers over 50 years old to investigate how the drug Rapamune (which blocks the mTOR pathway) affects aged human muscle both on its own and when combined with resistance exercise training.


Eligibility

Sex: MALEMin Age: 50 YearsMax Age: 90 Years

Plain Language Summary

Simplified for easier understanding

This clinical trial is studying a drug called Rapamune (sirolimus) 1Mg Tablet and a behavioral approach called Unilateral resistance exercise training for people with age-related sarcopenia and muscle atrophy. The study is currently recruiting participants at 1 location.

This summary was AI-generated to explain the trial in plain language. It is not medical advice. Always discuss eligibility with your doctor before enrolling in a clinical trial.

Interested in this trial?

Get notified about updates and connect with the research team.

Interventions

DRUGRapamune (sirolimus) 1Mg Tablet

Take Rapamune to see the effect on muscle structure and function during a 14 week unilateral resistance exercise training programme.

BEHAVIORALUnilateral resistance exercise training

Participants will complete unilateral leg extension resistance training 3 times per week for 14 weeks at 75% of their 1 repetition maximum


Locations(1)

University of Nottingham School of Medicine

Derby, United Kingdom

View Full Details on ClinicalTrials.gov

For the most up-to-date information, visit the official listing.

Visit

NCT05414292


Related Trials