Pennington Biomedical Research Center
Baton Rouge, Louisiana, 70808, United States
NCT Number: NCT04799171
The goal of the study is to determine whether aerobic or resistant exercise can improve in vivo mitochondrial capacity of skeletal muscle cells similarly in healthy younger, middle aged and older adults. This confers long-term changes in this tissue which in-turn contribute to improved metabolic health and functional capacity through epigenetic regulation of novel exercise response genes.
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Notify Me18 year and older
All sexes
Interventional
Not applicable
Baton Rouge, Louisiana, 70808, United States
The goal of the study is to understand the biological pathways and molecules driving the exercise response variation of the muscle mitochondria in vivo to elucidate the underlying mechanisms for the health benefits of exercise training in young, middle aged and older adults. This knowledge will improve investigators understanding of biological basis for targeted "precision medicine" exercise and non-exercise interventions to improve age related conditions. The mitochondrial capacity measurement via non-invasive 31P magnetic resonance spectroscopy (31-MRS) will provide a tangible link between the two primary foci of the parent MoTrPAC study: molecular drivers of exercise response and key phenotypic health outcomes.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
ADULT PARTICIPANT INCLUSION CRITERIA - YOUNG PARTICIPANTS
ADULT PARTICIPANT INCLUSION CRITERIA - MIDDLE AGE PARTICIPANTS
ADULT PARTICIPANT INCLUSION CRITERIA - OLD AGE PARTICIPANTS
Exclusion criteria
ADULT PARTICIPANT EXCLUSION CRITERIA
Diabetes (self-report and screening tests)
Abnormal bleeding or coagulopathy (self-report)
Thyroid disease (screening test)
Pulmonary (self-report)
Metabolic bone disease (self-report)
Estrogens, progestins (self-report)
Pregnancy (screening test) and pregnancy-related conditions (self-report)
Elevated blood pressure readings (screening test)
Cardiovascular (self-report, screening test, and clinician judgement)
Abnormal blood lipid profile (screening test)
Cancer (self-report)
Chronic infection (self-report)
Chronic renal insufficiency (screening test)
Hematocrit (screening test)
Blood donation (self-report)
Autoimmune disorders (self-report)
Alcohol consumption (self-report)
Tobacco (self-report)
Marijuana (self-report)
Shift workers (self-report)
Cognitive status (screening)
Psychiatric illness (self-report and screening test)
Weight change (self-report)
Other (clinician judgement)
EXCLUSIONS FOR MEDICATION USE
Cardiovascular
Anticoagulants (coumadin or Direct Oral Anticoagulants)
Antiarrhythmic drugs: amiodarone, dronaderone, profafenone, disopyrimide, quinidine
Antiplatelet drugs (other than aspirin ≥100 mg/day): dipyridamole, clopidogrel, ticagrelor
Lipid-lowering medications
Psychiatric drugs
Antiepileptic drugs
Muscle relaxants
Pulmonary, inflammation
Chronic oral steroids
Genitourinary
Hormonal
Narcotics and narcotic receptor agonists
Anti-malarials
Subjects will be asked to lie supine on MRI table with the 31P surface coil placed over the right vastus lateralis, and straps to immobilize the leg. At the start of the scan session, the investigators will instruct the participant on the isometric contraction exercise and coach the participant through a demonstration. The average flexion repetition time is on the order of 1.5 s for a 30 s duration at maximum kick intensity.
Subjects will be asked to lie supine on MRI table with the 31P surface coil placed over the right vastus lateralis, and straps to immobilize the leg. At the start of the scan session, the investigators will instruct the participant on the isometric contraction exercise and coach the participant through a demonstration. The average flexion repetition time is on the order of 1.5 s for a 30 s duration at maximum kick intensity.
Subjects will be asked to lie supine on MRI table with the 31P surface coil placed over the right vastus lateralis, and straps to immobilize the leg. At the start of the scan session, the investigators will instruct the participant on the isometric contraction exercise and coach the participant through a demonstration. The average flexion repetition time is on the order of 1.5 s for a 30 s duration at maximum kick intensity.
Time frame: Baseline visit - before any muscle biopsies or exercise training.
The plot of PCr peak height vs. time will be fitted with a mono-exponential equation whose free parameters are the recovery time constant (tau) and scaling coefficients. Percent change in tau between pre- and post-intervention scans will be our primary measurement of the maximal mitochondrial capacity response to exercise training.
Time frame: After week 12 visit - after all muscle biopsies and exercise training.
The plot of PCr peak height vs. time will be fitted with a mono-exponential equation whose free parameters are the recovery time constant (tau) and scaling coefficients. Percent change in tau between pre- and post-intervention scans will be our primary measurement of the maximal mitochondrial capacity response to exercise training.
Pennington Biomedical Research Center
Other
Aging and the Mitochondrial Response to Exercise Training, Measured by Noninvasive 31P Magnetic Resonance Spectroscopy (MoTrMito)
Acronym: MoTrMito
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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