Weightlessness Clinical Trial
— LTBRCocktailOfficial title:
Effects of a Nutritional Cocktail Consisting of Anti-oxidant and Anti-inflammatory Supplements to Prevent the Deconditioning Induced by 60 Days of Antiorthostatic Bed Rest
NCT number | NCT03594799 |
Other study ID # | 14-981 |
Secondary ID | |
Status | Completed |
Phase | N/A |
First received | |
Last updated | |
Start date | September 1, 2016 |
Est. completion date | December 2020 |
Verified date | January 2021 |
Source | Centre National d'Etudes Spatiales |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
The objective of this study is to investigate whether the cocktail of natural antioxidants XXS-2A-BR2 comprising vitamin E and coupled with omega-3 helps to prevent and / or reduce the deleterious effects induced by long term physical inactivity through antiorthostatic bedrest. During a randomized 60 day bed rest study in 20 healthy male adults the two following aims will be undertaken: - Sixteen scientific protocols will assess the changes in the cardiovascular, metabolism, muscle, bone, neuro sensorial, hematological and immunology systems. - In the above mentioned systems, the potential beneficial effects of the countermeasure protocol will also be investigated.
Status | Completed |
Enrollment | 20 |
Est. completion date | December 2020 |
Est. primary completion date | December 2020 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | Male |
Age group | 20 Years to 45 Years |
Eligibility | Inclusion Criteria: - Healthy male volunteer (see below the description of medical tests and laboratory analysis performed at the selection visit), - Age 20 to 45, - No overweight nor excessive thinness with BMI (weight Kg/ height m2) between 22 and 27, - Height between 158 and 190 cm, - No personal nor family past record of chronic or acute disease or psychological disturbances which could affect the physiological data and/or create a risk for the subject during the experiment, - Fitness level assessment: - if age < 35 years: 35 ml/min./kg < VO2max < 60ml/min./kg, - if age > 35 years: 30 ml/min./kg < VO2max < 60ml/min./kg - Active and free from any orthopedic, musculoskeletal and cardiovascular disorders, - Non smokers, - No alcohol, no drug dependence and no medical treatment, - No shift work or travel across more than one time zone in previous 2 months, - Covered by a Social Security system, - Have signed the information consent, - Free of any engagement during the three hospitalization planned periods. Exclusion Criteria: - - Past record of orthostatic intolerance, - Cardiac rhythm disorders, - Chronic back pains, - History of hiatus hernia or gastro-esophageal reflux, - History of thyroid dysfunction, renal stones, diabetes, migraines, - Past records of thrombophlebitis, family history of thrombosis or positive response in thrombosis screening procedure, - Allergy including xylocaine allergy - Abnormal result for lower limbs echo-doppler, - History or active claustrophobia, - History of genetic muscle and bone diseases of any kind, - History of sleep disorders, no shift work or travel across more than one time zone in previous two months - Vestibular disorders, - Audition problem, - Vision corrected no more than 20/30, color-blindness - Bone mineral density: T-score = -1.5, - Osteosynthesis material, presence of metallic implants, - History of knee problems or joint surgery/broken leg - Poor tolerance to blood sampling, - Having given blood (more than 8ml/kg) in a period of 8 weeks or less before the start of the experiment, - Special food diet, vegetarian or vegan, food allergy especially allergic to peanut or soya. - Positive reaction to any of the following tests: HVA IgM (hepatitis A), HBs antigen (hepatitis B), anti-HVC antibodies (hepatitis C), anti-HIV1+2 antibodies, - Subject already participating or in the exclusion period of a clinical research, - Refusal to give permission to contact his general practitioner, - Incarcerated persons, - Subject who, in the judgment of the investigator, is likely to be non-compliant during the study, or unable to cooperate because of a language problem or poor mental development, - Subject who has received more than 4500 Euros within 12 months for being a research subject. - Subject under guardianship or trusteeship. |
Country | Name | City | State |
---|---|---|---|
France | Medes-Imps | Toulouse |
Lead Sponsor | Collaborator |
---|---|
Centre National d'Etudes Spatiales | European Space Agency |
France,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Change in fasting plasma triglycerides concentration | Plasma triglycerides concentration will be analyzed by enzymatic colorimetric method (reagent kit) after ultracentrifugation to isolate chylomicrons and Very Low Density Lipoproteins | 60 days | |
Secondary | Change in vertebral bone marrow fat fraction. | This will be performed by using MR scanning sequences that specifically measure water and fat signals then calculate the respective content. | 60 days | |
Secondary | Change in B lymphopoiesis | Next generation sequencing (NGS) of IgM heavy chain transcripts extracted from PBMC will 1) indicate if the expression frequencies of Ig gene segments are modified during bed rest thereby indicating a change in B lymphopoiesis (because each B cell created in the marrow is characterized by its own VH-D-JH-Cµ mRNA) and 2) allow the assessment of the activities of enzymes required for the formation of the B cell antigen receptor repertoire.
Flow cytometry will be used to determine if there is an egress of HSC/progenitors from the bone marrow into blood stream thereby indicating a decrease of the interactions between HSC and their niche. The same technique will be used to determine if there are changes in B cell subsets in peripheral blood. |
60 days | |
Secondary | Changes in myokines. | Mass spectrometry will be performed on proteins obtained from muscle biopsies, microdialysis and serum. The generated peptides will be analysed using high resolution mass shot-gun mass spectrometry. | 60 days | |
Secondary | Change in cardio-postural stability | The end point is a reduction in muscle pump indices: a) decrease in causality between EMG and Blood pressure, b) decrease in gain between EMG and Blood pressure, and c) decrease in the interaction time between EMG and Blood pressure. | 60 days | |
Secondary | Change in insulin sensitivity | Skeletal muscle insulin resistance will be assessed during a euglycaemic hyperinsulinaemic clamp.
Whole blood will be immediately analyzed for glucose concentration, serum insulin will be quantified by radioimmunoassay and catecholamines will be quantified by high-performance liquid chromatography. Peripheral insulin sensitivity will be calculated during the final hour of the clamp in steady state. |
60 days | |
Secondary | Changes in brain structure | Both structural and functional brain changes associated with head-down bedrest will be examined by 3T MRI. Imaging sequence parameters will be selected to maximize sensitivity to effects of interest. | 60 days | |
Secondary | Change in head movements in response to a virtual projectile | Subjects perform a video game-like task of shooting a projectile out of a hand-held tool so that it passes between the gaps of an oriented target grill. Since the projectile and the tool are long and narrow, the subject must place the tool at the same orientation as the grill to achieve success. On certain trials, the subject is required to move the head between the time that the target is acquired and the moment of the response. Trials vary in terms of what the subject can see and feel during the execution of the task, and on body posture.
A 3D motion caption system is used to track in real-time the movements of the subject' head and hands. A virtual reality helmet is used to provide visual and audio information. A moving head support will be used to allow the subject to tilt the head laterally in both seated and laying conditions. |
60 days | |
Secondary | Change in pulse wave velocity in carotid and femoral arteries | Change in pulse wave velocity in carotid and femoral arteries will be assessed by non-invasive ultrasound measurements. | 60 days | |
Secondary | Adipose Tissue Transcriptomics | Within-subjects changes in adipose gene expression between intervention groups will be evaluated using RNAseq | 60 days (pre and post bed rest) | |
Secondary | Measurement of changes to the sleep electroencephalogram (EEG) | Measurement of changes to objective sleep will be determined using continuous 24-h EEG monitoring at regular intervals throughout the protocol (including baseline, head down tilt, and recovery). | 60 days | |
Secondary | Measurement of changes in subjective sleep quality | Changes in subjective sleep quality will be measured using the Karolinska sleepiness scale (KSS) four times per day (mealtimes and bed time) doing every day of the protocol. | 60 days | |
Secondary | Measurement of changes in circadian rhythms of melatonin and cortisol | Changes to the circadian rhythms of melatonin and cortisol will be measured by radioimmunoassay on saliva samples taken hourly throughout the day at regular intervals throughout the protocol (including baseline, head down tilt, and recovery; same as for EEG). | 60 days | |
Secondary | Measurement of changes in the whole-blood transcriptome in response to 60-day head down tilt bed rest | Changes to the circadian rhythmicity of the whole-blood transcriptome will be measured by whole-genome microarray analyses of RNA extracted from six 4-hourly blood samples taken over a 24-h period at regular intervals throughout the protocol (including baseline, head down tilt, and recovery; same as for EEG). | 60 days | |
Secondary | Change in levels of S-nitrosylated proteins | Vastus Lateralis needle biopsies will be performed before, at the end of the Head Down Tilt period (after about 60 days of bedrest) and of the recovery phases. Change in levels of S-nitrosylated proteins will be measured in active vs. atrophic muscle following extended bed rest. | 60 days | |
Secondary | Change in skeletal muscle gene expression (transcriptome) | Vastus Lateralis needle biopsies will be performed before, at the end of the Head Down Tilt period (after about 60 days of bedrest) and of the recovery phases. Change in skeletal muscle gene expression will be analyzed by microarray technology. | 60 days | |
Secondary | Change in bone resorption marker CTX | Bone resorption marker CTX will be analyzed in the aliquots of total 24h-urine, collected at different timepoints of the study (pre, during and after the bedrest phase). | 60 days | |
Secondary | Change in de novo lipogenesis | Energy substrates labeled with stable (non radioactive) isotopes will be used to measure intermediary metabolism and fluxes. | 60 days | |
Secondary | Accuracy and precision of vestibular-evoked sway responses | In a healthy standing subject, Galvanic Vestibular Stimulation (GVS) evokes a postural sway response directed towards the anode electrode. The direction of the response is fixed in head coordinates and so it will rotate as the head is turned. To determine if bedrest has affected the accuracy and precision of this sway response, we will measure the direction of the ground reaction force (GRF) response evoked by GVS in standing volunteers under different head orientations. The mean direction (accuracy) along with the trial-to-trial variability (precision) of the GRF vector will be separately determined. Any reduction in accuracy or precision will indicate degraded vestibular control of balance. | 60 days | |
Secondary | Change in T wave morphology | 24h ECG Holters will be done at different timepoints of the study (pre, during and after the bedrest phase). A conventional Holter analysis will be performed using dedicated commercial software. Moreover, the recordings obtained will be analyzed using several advanced signal processing techniques, which will be focused on different aspects of ventricular repolarization. | 60 days |
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