Huey P. Long Fieldhouse Exercise Physiology Laboratory
Baton Rouge, Louisiana, 70802, United States
Location status: Recruiting
NCT Number: NCT07654946
The goal of this clinical trial is to determine the association between near-infrared spectroscopy (NIRS)-derived mitochondrial oxidative phosphorylation (OXPHOS) capacity of the vastus lateralis muscles, and both local muscular endurance capacity and local muscular fatigability of the thigh muscles in young adults. Additionally, this trial aims to determine the effect of acute taurine supplementation on local muscular endurance capacity and local muscular fatigability when compared to a placebo condition. The main questions it aims to answer are:
1. Will there be a positive correlation between NIRS rate constant (a marker of mitochondrial function) and local muscular endurance capacity, along with a negative correlation between NIRS rate constant and local muscular fatigability? 2. Will acute taurine supplementation lead to improvements in local muscular endurance capacity and local muscular fatigability when compared to a placebo condition?
Participants will:
1. Complete a NIRS assessment to non-invasively assess the mitochondrial capacity of both vastus lateralis muscles 2. Complete two acute supplementation assessment visits (separated by 7-10 days) which involve small blood collections before and after taurine or placebo supplementation 3. Perform a single-leg extension time-to-exhaustion test to measure local muscular endurance capacity on one leg, along with a repeated maximal voluntary isometric contraction fatigue index test to measure local muscular fatigability on the opposite leg, during each acute supplementation assessment visit.
Interested in participating?
Request Info18 year–40 year
All sexes
Interventional
Not applicable
Baton Rouge, Louisiana, 70802, United States
Location status: Recruiting
Participants will be recruited from the Louisiana State University campus and the Greater Baton Rouge area. Interested and potentially eligible participants will be identified based on the responses provided to questions on a prescreen assessment survey completed electronically via RedCap. These individuals will then be scheduled for the in-person Screening and Familiarization Visit which will include: a review of the informed consent form; a review of the inclusion/exclusion criteria; a self-report medical history and medication inventory; the collection of demographic information; an assessment of height and weight; an assessment of body composition via bioelectrical impedance analysis; an assessment of resting blood pressure and heart rate; the completion of the Physical Activity Readiness Questionnaire for Everyone (PARQ+) and the Global Physical Activity Questionnaire (GPAQ); an ultrasound assessment to determine adipose tissue thickness at the NIRS assessment sites; and familiarization with primary study assessments. If eligible according to the Screening and Familiarization Visit, participants will complete the NIRS Assessment Visit. Following an overnight fast (≥ 12 hours), with ≥ 24 hours since most recent exercise participation, a NIRS occlusion-based recovery kinetics approach will be used to non-invasively assess the mitochondrial OXPHOS capacity of the vastus lateralis muscle of each leg. On the day prior to this visit, participants will be asked to complete a 24-hour food log. Participants will then be asked to repeat this reported 24-hour food consumption on the day prior to each of the two remaining study assessment visits. Acute Supplementation Assessment Visit 1 will be completed following an overnight fast (≥ 12 hours), with ≥ 72 hours since most recent exercise participation and ≥ 48 hours following the NIRS Assessment Visit. During Acute Supplementation Assessment Visit 1, a baseline blood sample (10 ml) will be collected upon participants' arrival. Participants will then ingest either a taurine or placebo supplement depending on a randomized supplementation order. Next, participants will wait for 60 minutes following supplement ingestion before having another blood sample (10 ml) collected. Then participants will complete the submaximal, single-leg extension (SLE) isotonic contraction time-to-exhaustion (TTE) test on a randomly determined leg, followed by the 4-minute repeated, single-leg maximal voluntary isometric contraction (MVIC) fatigue index test on the contralateral leg. 7-10 days after Acute Supplementation Assessment Visit 1, following a ≥ 12 hour overnight fast and ≥ 72 hours since most recent exercise participation, participants will complete Acute Supplementation Assessment Visit 2. During this visit, all visit procedures will be conducted identically relative to Acute Supplementation Assessment Visit 1, but participants will consume the alternate supplement according to a randomized supplementation order. The 7-10 days between acute supplementation assessment visits will serve as a standard washout period. An unblinded member of the study team will be responsible for randomizing the supplementation order and preparing the supplements for all participant visits. This unblinded study team member will not be involved in any other aspects of data collection, data processing, or data analysis. All study visits will be conducted in the LSU Exercise Physiology Laboratory.
METHODS
((Peak torque from first 3 MVICs - Peak torque from final 3 MVICs)/(Peak torque from first 3 MVICs)) x 100. A Train.Red NIRS probe and surface EMG probes will be placed on the vastus lateralis to assess muscle oxygen saturation and excitation during the test.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Participants will ingest six taurine capsules (6 grams of taurine) following a baseline blood collection to determine baseline plasma taurine levels. 60 minutes following ingestion, there will be an additional blood collection to determine post-supplementation plasma taurine levels. Participants will then perform exercise assessments. The order of taurine supplementation relative to placebo supplementation will be randomized in a double-blind crossover with 7-10 days separating each condition.
Participants will ingest six placebo capsules (1.2 grams of microcrystalline cellulose) following a baseline blood collection to determine baseline plasma taurine levels. 60 minutes following ingestion, there will be an additional blood collection to determine post-supplementation plasma taurine levels. Participants will then perform exercise assessments. The order of placebo supplementation relative to taurine supplementation will be randomized in a double-blind crossover with 7-10 days separating each condition.
Time frame: From Acute Supplementation Assessment Visit 1 to Acute Supplementation Assessment Visit 2, 7-10 days
Within-participant comparison of single-leg extension time-to-exhaustion (a measure of local quadriceps muscular endurance capacity) when comparing the acute taurine supplementation and acute placebo supplementation conditions
Time frame: From Acute Supplementation Assessment Visit 1 to Acute Supplementation Assessment Visit 2, 7-10 days
Within-participant comparison of fatigue index during 24 repeated maximal voluntary isometric contractions (a marker of local quadriceps muscular fatigability) when comparing the acute taurine supplementation and acute placebo supplementation conditions
Time frame: From the NIRS Assessment Visit to Acute Supplementation Assessment Visit 2, approximately 2-3 weeks
The correlation between the rate constant of the vastus lateralis derived from the NIRS occlusion-based recovery kinetics assessment (a marker of mitochondrial OXPHOS capacity) and single-leg extension time-to-exhaustion (a maker of local quadriceps muscular endurance capacity).
Time frame: From the NIRS Assessment Visit to Acute Supplementation Assessment Visit 2, approximately 2-3 weeks
The correlation between the rate constant of the vastus lateralis derived from the NIRS occlusion-based recovery kinetics assessment (a marker of mitochondrial OXPHOS capacity) and single-leg muscular fatigue index (a maker of local quadriceps muscular fatigability).
Contact information is provided by the study sponsor or research team.
Carlante Emerson, MS
CONTACT
Efthymios Papadopoulos, PhD
CONTACT
Louisiana State University and A&M College
Other
Near-Infrared Spectroscopy-Derived Mitochondrial Oxidative Phosphorylation Capacity, Local Muscular Fatigue Resistance, and the Effects of Acute Taurine Supplementation
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.
Published trials that share one or more normalized conditions with this study.
NCT07455383
Cataplexy, Disorders of Excessive Somnolence
Cullman, Alabama, United States
View Trial DetailsNCT07014111
End Stage Renal Disease on Dialysis, Fatigue
Chicago, Illinois, United States
View Trial DetailsNCT07797790
Basal Ganglia Diseases, Behavior
Altmünster, Austria
View Trial DetailsNCT07424261
Autoimmune Diseases, Connective Tissue Diseases
Altenburg, Germany
View Trial Details