KU Leuven
Leuven, Vlaams-Brabant, 3000, Belgium
NCT Number: NCT06472427
This study specifically aims to elucidate the effects of intermittent exogenous ketosis (IEK) as well as hypoxia on muscular pro-angiogenic factors- after a 60-min HIIT bout in normoxia. Moreover, blood and muscle oxygenation status, as well as peripheral blood flow and cognitive function will be assessed.
Looking for future studies?
Notify Me18 year–35 year
All sexes
Interventional
Not applicable
Leuven, Vlaams-Brabant, 3000, Belgium
After an exercise bout, angiogenesis is incredibly important in the recovery process as an increased number of capillaries enables higher metabolite transport to and from the working muscle. Often, a training strategy consists of living-high (sleeping at -stimulated- altitude) and training low (training at sea level). A decreased oxygen availability, also known as hypoxia, however poses an additional stress on the human body, potentially compromising the overall training efficiency. Ketones are recently found to increase angiogenesis in response to overload training (increased skeletal muscle capillarization and VEGF content) and to increase serum EPO concentrations. Therefore, the investigators want to evaluate the isolated and interactive effects of both ketones and hypoxia on post-exercise recovery and factors implicated in skeletal muscle angiogenesis, after training in normoxia. Moreover, a performance test will be performed after 7h of hypoxic or normoxic recovery by means of a simulated 15 min all-out time trial. During the 7h post-exercise window, biological samples are collected (muscle biopsies, venous blood samples, urine, capillary blood samples). Moreover, blood and muscle oxygenation, peripheral blood flow and cognitive function are assessed at regular timepoints.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Altitude: sea level Dietary supplement: placebo. Water: 98.3% w/w Bitter flavour type: 0.7% w/w Monk fruit extract: 0.04% w/w Tasteva: 0.03% w/w Citric acid: 0.6% w/w Flavor blend: 0.02% w/w Bitter masking flavour: 0.2% w/w Passion fruit flavour: 0.005% w/w
Altitude: sea level Dietary supplement: Commercially available Ketone-IQ butanediol drink R-1,3-butanediol: 28.6% w/v in water
Altitude: 3,000m (simulated) Dietary supplement: placebo. Water: 98.3% w/w Bitter flavour type: 0.7% w/w Monk fruit extract: 0.04% w/w Tasteva: 0.03% w/w Citric acid: 0.6% w/w Flavor blend: 0.02% w/w Bitter masking flavour: 0.2% w/w Passion fruit flavour: 0.005% w/w
Altitude: 3,000m (simulated) Dietary supplement: Commercially available Ketone-IQ butanediol drink R-1,3-butanediol: 28.6% w/v in water
Time frame: Muscle biopsies are collected 10 minutes after the end of training as well as 3 hours later.
Measured using PCR on collected muscle biopsies
Time frame: Venous blood samples are collected 10 minutes after the end of training as well as 3 hours, 5 hours and 7 hours later.
Measured using ELISA on collected serum samples
Time frame: Muscle biopsies are collected 10 minutes after the end of training as well as 3 hours later.
Measured using Western Blotting on muscle biopsies
Time frame: Venous blood samples are collected immediately (5 minutes) after the end of training, as well as 3hours, 5hours and 7hours later..
Measured using ELISA on collected serum samples
Time frame: Continuously measured starting 30 minutes after the end of exerciseuntil 7.5 hours later
Measured using pulse oximetry with a sensor on the forehead
Time frame: Measured during resting measurements performed 30 minutes, 3hours and 30minutes as well as 6hours and 30minutes after the end of training.
Measured using NIRS with a sensor on the belly of the m. vastus lateralis (skeletal muscle)
Time frame: Measured during resting measurements performed 30 minutes, 3hours and 30minutes as well as 6hours and 30minutes after the end of the training
Measured using duplex ultrasonography
Time frame: Performed 7hours and 30minutes after the end of training
Measured as the average power output (W) during a 15 minutes all-out time trial
Time frame: Muscle biopsies are collected 10 minutes after the end of training as well as 3 hours later.
Measured using an enzymatic essay
KU Leuven
Other
The Acute Effect of (R)-1,3-butanediol Ingestion on Post-exercise Skeletal Muscle Angiogenesis in Healthy Adults Under Normoxic and Hypoxic Conditions.
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.
NCT06060093
Acid-Base Imbalance, Acidosis
Leuven, Vlaams-Brabant, Belgium
View Trial DetailsNCT05588427
Acid-Base Imbalance, Acidosis
Leuven, Vlaams-Brabant, Belgium
View Trial DetailsNCT05665855
Acid-Base Imbalance, Acidosis
Hamilton, Ontario, Canada
View Trial DetailsNCT05226962
Acid-Base Imbalance, Acidosis
Hamilton, Ontario, Canada
View Trial Details