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OpenTrials
Completed

NCT Number: NCT02999802

Nutrient Sensing & Signaling in Aging Muscle

This research seeks to better understand how cellular and molecular bases of changes associated with aging contribute to decreased function and increased incidence of disease. Specific mechanism in muscle responsible for anabolic resistance - a key component of sarcopenia and frailty - will be identified. The proposed research is relevant to public health because the discovery of new targets for interventions and novel therapeutics to improve muscle strength and function, prevent falls, and reduce physical dependency will improve the healthspan and quality of life in older adults by improving their physical function and ability to remain independent and healthy for a longer period of time.

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Key information

Age range

65 year–80 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

UTMB

Galveston, Texas, 77555, United States

About this study

Anabolic resistance to nutrition is the reduced ability of skeletal muscle to increase protein synthesis in response to feeding. It is a major contributor to muscle atrophy in aging, inactivity, burns, trauma, and cancer cachexia. The effects of anabolic resistance on health and physical function are important. For example, the loss of muscle mass and strength with aging (sarcopenia) increases the risk for falls, physical dependency and morbidity in older adults. A major determinant of muscle size is muscle protein content, which is controlled by the fine balance between protein synthesis and breakdown. Recently, investigators have found that amino acids and exercise independently increase muscle protein synthesis and overall anabolism by activating the mammalian/mechanistic target of rapamycin complex 1 (mTORC1) signaling pathway in humans. Aging and inactivity reduce these anabolic effects, but the underlying mechanisms of anabolic resistance are not known. The purpose of this application is to better understand how anabolic resistance develops in skeletal muscle. The long-term goal is to identify specific molecular targets for the development of evidence-based clinical interventions to counteract anabolic resistance and muscle wasting in clinical populations. Here, investigators will focus on one potential mechanisms underlying anabolic resistance to amino acids: activation of mTORC1 in human muscle cells. The central hypothesis is that the physical activity restores mTORC1 signaling which is the primary contributor to anabolic resistance in human skeletal muscle. Investigators will test this hypothesis in healthy subjects with the following specific aim: Determine the effect of increasing habitual physical activity on anabolic resistance. Investigators will study human subjects utilizing stable isotopes model to measure amino acid kinetics and muscle protein metabolism in combination with molecular analysis of muscle to determine the regulatory role of amino acids, physical inactivity, and amino acid transporter functional activity on mTORC1. The proposed approach is innovative because it represents a new and substantial departure from the status quo as investigators will examine the underlying mechanisms of anabolic resistance to nutrition using novel methodological approaches. The proposed research is significant because it will lead to the development of evidence-based interventions to treat sarcopenia and muscle wasting.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • 65-80 yrs
  • Stable body weight for at least 1 year
  • Ability to sign consent form:

Exclusion criteria

  • Exercise training (>2 weekly sessions of moderate to high intensity aerobic or resistance exercise)
  • Physical dependence or frailty (impairment in the Activities of Daily Living (ADL), history of falls (>2/year), or >5% weight loss in the past year)
  • Significant heart, liver, kidney, blood, or respiratory disease
  • Peripheral vascular disease
  • Diabetes mellitus or other untreated endocrine disease
  • Active cancer
  • Acute infectious disease or history of chronic infections
  • Recent (within 3 months) treatment with anabolic steroids, or prolonged systemic corticosteroids.
  • Alcohol or drug abuse
  • Tobacco use (smoking or chewing)
  • Malnutrition (BMI < 18.5 kg/sq meter)
  • Obesity (BMI > 30 kg/sq meter)

Treatment and study plan

Exercise

Behavioral

Progressive resistance exercise training

Primary outcomes

  1. Change in muscle protein synthesis in response to amino acids

    Time frame: Change from baseline to 3 months

    Measurement of the change in muscle protein synthesis in response to amino acids by standard stable isotope method

Secondary outcomes

  1. Muscle mass

    Time frame: Change from baseline to 3 months

    Measurement in the change in muscle mass by DEXA scan

  2. Muscle function

    Time frame: Change from baseline to 3 months

    Measurement of the change in muscle function by standard methods

Sponsors and collaborators

Lead sponsor

The University of Texas Medical Branch, Galveston

Other

Collaborators

  • National Institute on Aging (NIA)

Registry information

Important dates

Study start
2015
Primary completion
2016
Study completion
2016
First posted
Dec 21, 2016
Registry last updated
Jun 13, 2018

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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