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Evaluation of a Training Program for Homozygous Sickle Cell Disease Patients

Evaluation of a Training Program for Homozygous Sickle Cell Disease Patients: Benefits on Physical Ability and Skeletal Muscle. An Interventional Pilot, Multicentric, Prospective, Longitudinal Study

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02571088
Acronym
EXDRE
Enrollment
40
Registered
2015-10-08
Start date
2014-09-30
Completion date
2016-04-30
Last updated
2021-09-13

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Hemoglobin S Disease, Sickle Cell Hemoglobin C Disease

Keywords

Sickle Cell Hemoglobin C Disease, Sports Training, Hemoglobin S Disease, Lactate

Brief summary

Sickle cell disease (SCD) is the most frequent inherited disease in the world. Literature reports that SCD patients display intolerance to exercise, important muscle weakness and profound remodeling of skeletal muscle including amyotrophy and rarefied microvascular network. Because strenuous exercise induces acidosis, hemorheological alterations, endothelial activation and oxidative stress, it constitutes a potential triggering factor of sickling and vaso-occlusive crisis. As a consequence, physical activity is usually discouraged in patients with SCD. However, moderate and regular physical activity seems to be not only safe but also beneficial for SCD patients.

Detailed description

Besides, endurance training is known to induce moderate muscle hypertrophy and increase microvascular network. Therefore, adapted, moderate and regular physical activity appears as a potential strategy able to improve muscle function, decrease symptoms of the disease and improve autonomy and quality of life of patients with SCD. However, it remains necessary to define the modalities of exercise therapy in SCD and to objectively evaluate the risks, limitations and gains on physical ability, muscle function and quality of life in patients with SCD.

Interventions

OTHERTraining Program

Each training session will last 45 min. Exercise will start by a 5-min warm-up cycling period, followed by 30 min of cycling at the power output (W) individually determined before and corresponding to the first lactate threshold corresponding approximately to 2.5 mmol/l . Then patients will cool down for 5 min. Finally, the training sessions will end by 5 min of light stretching. All training sessions will take place at the hospital and will be under the supervision of a physician. Heart rate, oxygen saturation and blood lactate concentrations will be regularly measured. Work rate will be adjusted according to the obtained results. As a safety procedure, blood lactate concentration must not exceed 4 mmol/L during the training sessions. A particular attention will be paid to the hydration of patients. Pain and fatigue will be evaluated everyday by the patients using (100 mm) visual analog scales.

Sponsors

Centre de Référence des Syndromes Drépanocytaires Majeurs
CollaboratorOTHER
Laboratoire de Physiologie de l'Exercice
CollaboratorUNKNOWN
Claude Bernard University
CollaboratorOTHER
Centre Hospitalier Universitaire de Saint Etienne
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Sickle cell disease patient (HbSS or HbS-βthal0), * Affiliated to a Health Security program, * Consent form signed, * Patients in stabilized state at the onset of the experiment: at least one month after an acute adverse event and at least 3 months after a blood transfusion.

Exclusion criteria

* Patients whom adhesion/compliance to the protocol appears uncertain, * Patient involved in another clinical trial or within the exclusion period of a previous clinical trial, * Patients known to be affected by a chronic inflammatory or infectious pathology, * Patients having an intercurrent infection, especially inflammatory, unsolved since less than one month, * Patients with clinical signs of heart failure or hospitalized for cardiac decompensation during the past 12 months, * Patients with left ventricular ejection fraction \< 50%, pulmonary arterial hypertension with tricuspid regurgitation velocity \> 2.5 m/s, atrial fibrillation, ventricular rhythm disorders during exercise, left ventricular hypertrophy (septal to lateral wall thickness ≥ 10 mm), significant valvulopathy, established coronary disease, uncontrolled hypertension, * Patients with a treatment against cardiac arrhythmia or altering sino-atrial node activity (beta-blockers, atropine, sympathomimetic agents…), * Patients under anti-coagulant treatment, * Patients with pacemaker or defibrillator, * Body Mass Index (BMI) \> 35, * Patients with hip osteonecrosis, * Patients with cerebral vasculopathy or history of stroke (cerebrovascular attack) with epilepsy, * Pregnant or lactating patients, * Homeless patients, * Patients with the inability to understand the aims,

Design outcomes

Primary

MeasureTime frameDescription
Power output (W) associated with the 4 mmol/L blood lactate concentration8 weeksThe blood lactate concentration curve in response to incremental exercise depends on the physical ability of patients. Endurance training is known to increase the power output (W) associated with a given blood lactate concentration. For the present study, we used the 4 mmol/L blood lactate concentration as a remarkable/singular point of the curve

Secondary

MeasureTime frameDescription
Expression of erythrocytes membrane proteins (u.a.)8 weeksPatients will be subjected to blood samplings
Muscle fiber types distribution (%)8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
perimeter (µm) of muscle fiber8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
surface area (µm2) of muscle fiber8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
satellite cell account8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
Creatine Kinase (CK) of muscle8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
Phosphofructokinase (PFK) of muscle8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
Citrate Synthetase (CS) of muscle8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
HAD (µmol/min/g dry muscle) of muscle8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
COx (arbitrary unit, a.u.) of muscle8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
Lactate Dehydrogenase (LDH) of muscle8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
isoforms (%) of muscle8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
Activity of antioxidant enzymes (µmol/L/min)8 weeksPatients will be subjected to blood samplings
Number of capillaries per mm2 (capillary density) and in contact with a muscle fiber8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
surface area of microvessels (µm2)8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
diameter of microvessels (µm)8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
capillary tortuosity (quotient)8 weeksPatients will be subjected to a biopsy of the vastus lateralis muscle (≈ 200 mg).
expired volume (VE)8 weeksPatients will perform a submaximal incremental exercise on a cycle ergometer. Exercise will start at 20 W and 30 W for females and males, respectively. After 2 minutes at this load, and every 2 minutes thereafter, work rate will increase by 10 W and 15 W for females and males, respectively. Total exercise duration is expected to be within 8 to 14 minutes.
oxygen consumption (VO2)8 weeksPatients will perform a submaximal incremental exercise on a cycle ergometer. Exercise will start at 20 W and 30 W for females and males, respectively. After 2 minutes at this load, and every 2 minutes thereafter, work rate will increase by 10 W and 15 W for females and males, respectively. Total exercise duration is expected to be within 8 to 14 minutes.
carbon dioxide production (VCO2) (L/min)8 weeksPatients will perform a submaximal incremental exercise on a cycle ergometer. Exercise will start at 20 W and 30 W for females and males, respectively. After 2 minutes at this load, and every 2 minutes thereafter, work rate will increase by 10 W and 15 W for females and males, respectively. Total exercise duration is expected to be within 8 to 14 minutes.
respiratory quotient (QR)8 weeksPatients will perform a submaximal incremental exercise on a cycle ergometer. Exercise will start at 20 W and 30 W for females and males, respectively. After 2 minutes at this load, and every 2 minutes thereafter, work rate will increase by 10 W and 15 W for females and males, respectively. Total exercise duration is expected to be within 8 to 14 minutes.
Heart Rate (HR) (min-1)8 weeksPatients will perform a submaximal incremental exercise on a cycle ergometer. Exercise will start at 20 W and 30 W for females and males, respectively. After 2 minutes at this load, and every 2 minutes thereafter, work rate will increase by 10 W and 15 W for females and males, respectively. Total exercise duration is expected to be within 8 to 14 minutes.
lactate level (mmol/l) at the end of submaximal incremental exercise8 weeksPatients will perform a submaximal incremental exercise on a cycle ergometer. Exercise will start at 20 W and 30 W for females and males, respectively. After 2 minutes at this load, and every 2 minutes thereafter, work rate will increase by 10 W and 15 W for females and males, respectively. Total exercise duration is expected to be within 8 to 14 minutes.
Pulmonary volumes (L)8 weeksThe volumes are measured by plethysmography
Performance to the six minute walk test (m)8 weeks
Index of muscular blood flow and tissular oxygenation at rest (%)8 weeksPatients will perform a submaximal incremental exercise on a cycle ergometer. Exercise will start at 20 W and 30 W for females and males, respectively. After 2 minutes at this load, and every 2 minutes thereafter, work rate will increase by 10 W and 15 W for females and males, respectively. Total exercise duration is expected to be within 8 to 14 minutes.
Index of exercise using Near-infrared reflectance spectroscopy (NIRS) (%)8 weeksPatients will perform a submaximal incremental exercise on a cycle ergometer. Exercise will start at 20 W and 30 W for females and males, respectively. After 2 minutes at this load, and every 2 minutes thereafter, work rate will increase by 10 W and 15 W for females and males, respectively. Total exercise duration is expected to be within 8 to 14 minutes.
Maximal voluntary contraction (N)8 weeksMaximal Voluntary Contraction (MVC) will be measured 3 times 1 min apart to determine an initial MVC. After 10 min of rest following the MVC trials, neuromuscular fatigability will be assess by repetition of series of 10 submaximal contractions (of 4 s separated by 5 s) followed by a MVC trial until a decrease of 25% of the initial MVC is observed. No more than 7 series will be performed, even if the 25% decrease of initial MVC is not observed.
Neuromuscular fatigability (%)8 weeksIt is measured in the same time that MVC
Quality of life : Scores to the Short Form 36 (SF-36)8 weeks
Quality of life : Functional Assessment of Cancer Therapy (FACT Fatigue Part)8 weeks
Quality of life : State-Trait Anxiety Scale (STAI Y-A)8 weeks
Quality of life : Physical Self-Description Questionnaire( PSDQ)8 weeks
Complete blood count and biochemical analyses (ionogram, urea, creatinine, LDH, creatine phosphokinase (CPK), aspartate aminotransferase ; usual units)8 weeksPatients will be subjected to blood samplings
Blood and plasma viscosity (centipoise)8 weeksPatients will be subjected to blood samplings
Erythrocyte deformability (%)8 weeksPatients will be subjected to blood samplings
aggregation properties (a.u.)8 weeksPatients will be subjected to blood samplings
dense red blood cells (%)8 weeksPatients will be subjected to blood samplings
Plasma analyses of adhesion molecules and markers of inflammation8 weeksPatients will be subjected to blood samplings
oxidative stress8 weeksPatients will be subjected to blood samplings
NO metabolism (µmol/L)8 weeksPatients will be subjected to blood samplings
Red blood cell (RBC) adhesion to endothelial cells (count of adhering RBC /mm²)8 weeksPatients will be subjected to blood samplings
Various hemodynamic criteria using echocardiography at rest and exercise8 weeks
vaso-occlusive crises and acute chest syndrome8 weeksDuring the 8 weeks, all vaso-occlusive crises and acute chest syndrome will be collected

Countries

France

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Mar 5, 2026