Raw JSON
{'hasResults': False, 'derivedSection': {'miscInfoModule': {'versionHolder': '2025-12-24'}, 'conditionBrowseModule': {'meshes': [{'id': 'D018883', 'term': 'Heat Stroke'}], 'ancestors': [{'id': 'D018882', 'term': 'Heat Stress Disorders'}, {'id': 'D014947', 'term': 'Wounds and Injuries'}]}, 'interventionBrowseModule': {'meshes': [{'id': 'D011795', 'term': 'Surveys and Questionnaires'}, {'id': 'D015444', 'term': 'Exercise'}], 'ancestors': [{'id': 'D003625', 'term': 'Data Collection'}, {'id': 'D004812', 'term': 'Epidemiologic Methods'}, {'id': 'D008919', 'term': 'Investigative Techniques'}, {'id': 'D017531', 'term': 'Health Care Evaluation Mechanisms'}, {'id': 'D011787', 'term': 'Quality of Health Care'}, {'id': 'D017530', 'term': 'Health Care Quality, Access, and Evaluation'}, {'id': 'D011634', 'term': 'Public Health'}, {'id': 'D004778', 'term': 'Environment and Public Health'}, {'id': 'D009043', 'term': 'Motor Activity'}, {'id': 'D009068', 'term': 'Movement'}, {'id': 'D009142', 'term': 'Musculoskeletal Physiological Phenomena'}, {'id': 'D055687', 'term': 'Musculoskeletal and Neural Physiological Phenomena'}]}}, 'protocolSection': {'designModule': {'bioSpec': {'retention': 'SAMPLES_WITH_DNA', 'description': 'Saliva sample'}, 'studyType': 'OBSERVATIONAL', 'designInfo': {'timePerspective': 'PROSPECTIVE', 'observationalModel': 'CASE_CONTROL'}, 'enrollmentInfo': {'type': 'ESTIMATED', 'count': 300}, 'patientRegistry': False}, 'statusModule': {'overallStatus': 'UNKNOWN', 'lastKnownStatus': 'RECRUITING', 'startDateStruct': {'date': '2020-11-02', 'type': 'ACTUAL'}, 'expandedAccessInfo': {'hasExpandedAccess': False}, 'statusVerifiedDate': '2021-03', 'completionDateStruct': {'date': '2024-11', 'type': 'ESTIMATED'}, 'lastUpdateSubmitDate': '2021-03-08', 'studyFirstSubmitDate': '2020-10-13', 'studyFirstSubmitQcDate': '2020-10-13', 'lastUpdatePostDateStruct': {'date': '2021-03-09', 'type': 'ACTUAL'}, 'studyFirstPostDateStruct': {'date': '2020-10-20', 'type': 'ACTUAL'}, 'primaryCompletionDateStruct': {'date': '2024-11', 'type': 'ESTIMATED'}}, 'outcomesModule': {'primaryOutcomes': [{'measure': 'Difference of the frequency of CYP24A1 gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of CYP24A1 gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of DRD2 gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of DRD2 gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of BDNF gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of BDNF gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of COMT gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of COMT gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of FAAH gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of FAAH gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of TPH2 gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of TPH2 gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of GRIN2B gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of GRIN2B gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of PER3 gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of PER3 gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of TNF-a gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of TNF-a gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of IL-6 gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of IL-6 gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of IL1B gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of IL1B gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of HSPA1B gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of HSPA1B gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}, {'measure': 'Difference of the frequency of TLR4 gene polymorphisms between the heatstroke group and the control group', 'timeFrame': 'At enrollment (day 1)', 'description': 'The frequency of TLR4 gene polymorphisms will calculated in each group by dividing the number of participants who present the polymorphism by the total number of participants in the group.'}]}, 'oversightModule': {'oversightHasDmc': False, 'isFdaRegulatedDrug': False, 'isFdaRegulatedDevice': False}, 'conditionsModule': {'conditions': ['Heat Stroke']}, 'descriptionModule': {'briefSummary': 'Although the circumstances of onset and management of exertional heatstroke have been identified for several years, its pathophysiology remains imperfectly understood. Exertional heatstroke is the result of both extrinsic (i.e. environmental) and intrinsic (i.e. individual) contributing factors.\n\nExtrinsic factors are well known (high ambient temperature and hygrometry, poorly "breathable" clothing, intense and prolonged physical effort) but some of them may be observed in milder conditions. In the French Armed Forces, 25% of the exertional heatstrokes that have been reported between 2005 and 2011 occurred below 17°C.\n\nIntrinsic factors, on the other hand, are numerous and less consensual, partly because of the imperfect knowledge of exertional heatstroke physiopathology. Potential factors include a thermoregulatory defect (inability to maintain a temperature plateau during an effort) and several genetic mutations may also contribute to explain a propensity to present an exertional heatstroke. While exertional heatstroke is clearly not a monogenic pathology, the association of several polymorphisms could contribute to this vulnerability. Among the genes that have been explored, mutations in ryanodine receptor type 1 (RyR 1), calsequestrin-1 or angiotensin-1 converting enzyme (ACE) appear to be potential candidates. However, it is very likely that other polymorphisms may be involved, such as: genes involved in sports performance and exercise rhabdomyolysis, in the inflammatory cascade, permeability of the digestive epithelial barrier, adenosine receptors and susceptibility to anxiety.\n\nFinally, motivation is a mixed factor often claimed to be involved in exertional heatstroke but has never been quantified and needs to be objectified.\n\nTo date, none of these hypotheses has been clearly assessed by comparing patients who experienced exertional heatstroke to healthy subjects.'}, 'eligibilityModule': {'sex': 'ALL', 'stdAges': ['ADULT'], 'maximumAge': '45 Years', 'minimumAge': '18 Years', 'samplingMethod': 'NON_PROBABILITY_SAMPLE', 'studyPopulation': 'The study population will be composed of patients who are experiencing or who have experienced exertional heatstroke (heatstroke group) and people who have not (control group).', 'healthyVolunteers': True, 'eligibilityCriteria': 'Inclusion Criteria:\n\n* Active military\n* Between 18 and 45 years old\n* Ability to the walk/run test\n\nExclusion Criteria:\n\n* Ongoing drug treatment (for the control group only),\n* BMI greater than or equal to 30,\n* Contraindication to the ingestion of a core temperature capsule'}, 'identificationModule': {'nctId': 'NCT04593316', 'acronym': 'EXPLO-CCE', 'briefTitle': 'Study of Risk Factors for the Occurrence and Severity of Exertional Heatstroke in the Military Environment', 'organization': {'class': 'OTHER', 'fullName': 'Direction Centrale du Service de Santé des Armées'}, 'officialTitle': 'Study of Risk Factors for the Occurrence and Severity of Exertional Heatstroke in the Military Environment', 'orgStudyIdInfo': {'id': '2019PBMD03'}, 'secondaryIdInfos': [{'id': '2020-A01967-32', 'type': 'OTHER', 'domain': 'IDRCB'}]}, 'armsInterventionsModule': {'armGroups': [{'label': 'Exertional heatstroke group', 'description': 'Patients presenting or having presented exertional heatstroke.', 'interventionNames': ['Other: Saliva collection', 'Behavioral: Questionnaires', 'Other: Ingestible core temperature capsule intake', 'Other: Physical exercise', 'Other: Heart rate monitoring', 'Other: Core temperature monitoring']}, {'label': 'Control group', 'description': 'Healthy people who never experienced exertional heatstroke.', 'interventionNames': ['Other: Saliva collection', 'Behavioral: Questionnaires', 'Other: Ingestible core temperature capsule intake', 'Other: Physical exercise', 'Other: Heart rate monitoring', 'Other: Core temperature monitoring']}], 'interventions': [{'name': 'Saliva collection', 'type': 'OTHER', 'description': 'A saliva sample will be collected before physical exercise.', 'armGroupLabels': ['Control group', 'Exertional heatstroke group']}, {'name': 'Questionnaires', 'type': 'BEHAVIORAL', 'description': 'The participant will fill in questionnaires relative to his heath status and psychological and motivational resource questionnaires before physical exercise.', 'armGroupLabels': ['Control group', 'Exertional heatstroke group']}, {'name': 'Ingestible core temperature capsule intake', 'type': 'OTHER', 'description': 'The participant will ingest a capsule before physical exercise in order to continuously monitor core temperature during physical exercise.', 'armGroupLabels': ['Control group', 'Exertional heatstroke group']}, {'name': 'Physical exercise', 'type': 'OTHER', 'description': 'The participant will perform a walk/run test.', 'armGroupLabels': ['Control group', 'Exertional heatstroke group']}, {'name': 'Heart rate monitoring', 'type': 'OTHER', 'description': 'Heart rate will be monitored during physical exercise thanks to a chest belt.', 'armGroupLabels': ['Control group', 'Exertional heatstroke group']}, {'name': 'Core temperature monitoring', 'type': 'OTHER', 'description': 'Heart rate will be monitored during physical exercise thanks to an ingestible core temperature capsule.', 'armGroupLabels': ['Control group', 'Exertional heatstroke group']}]}, 'contactsLocationsModule': {'locations': [{'zip': '91223', 'city': 'Brétigny-sur-Orge', 'status': 'NOT_YET_RECRUITING', 'country': 'France', 'contacts': [{'name': 'Alexandra MALGOYRE, MD, PhD', 'role': 'CONTACT', 'email': 'alexandra.malgoyre@intradef.gouv.fr', 'phone': '178651317', 'phoneExt': '+33'}], 'facility': 'Institut de Recherche Biomédicale des Armées', 'geoPoint': {'lat': 48.61135, 'lon': 2.30593}}, {'zip': '13384', 'city': 'Marseille', 'status': 'RECRUITING', 'country': 'France', 'contacts': [{'name': 'Arnaud-Xavier JOUVION, MD', 'role': 'CONTACT', 'email': 'arnaud-xavier.jouvion@intradef.gouv.fr', 'phone': '491617679', 'phoneExt': '+33'}], 'facility': "Hôpital d'Instruction des Armées Laveran", 'geoPoint': {'lat': 43.29695, 'lon': 5.38107}}, {'zip': '75005', 'city': 'Paris', 'status': 'NOT_YET_RECRUITING', 'country': 'France', 'contacts': [{'name': 'Alexandra MALGOYRE, MD, PhD', 'role': 'CONTACT', 'email': 'alexandra.malgoyre@intradef.gouv.fr', 'phone': '178651317', 'phoneExt': '+33'}], 'facility': 'Ecole du Val-de-Grâce', 'geoPoint': {'lat': 48.85341, 'lon': 2.3488}}], 'centralContacts': [{'name': 'Arnaud-Xavier JOUVION, MD', 'role': 'CONTACT', 'email': 'arnaud-xavier.jouvion@intradef.gouv.fr', 'phone': '491617679', 'phoneExt': '+33'}, {'name': 'Keyne CHARLOT', 'role': 'CONTACT', 'email': 'keyne.charlot@intradef.gouv.fr', 'phone': '178651303', 'phoneExt': '+33'}]}, 'sponsorCollaboratorsModule': {'leadSponsor': {'name': 'Direction Centrale du Service de Santé des Armées', 'class': 'OTHER'}, 'responsibleParty': {'type': 'SPONSOR'}}}}