- ICH GCP
- US Clinical Trials Registry
- Klinisk utprøving NCT01935791
Investigating Brown Adipose Tissue Activation in Humans
Studieoversikt
Status
Forhold
Intervensjon / Behandling
- Annen: Period 1 Visit 1 - Cold PET-CT Vehicle, Visit 2 -Warm PET-CT Vehicle
- Legemiddel: Period 1 Visit 1 - Cold PET-CT Vehicle, Visit 2 -Warm PET-CT Glucagon
- Annen: Period 1 Visit 1 - Cold PET-CT Vehicle, no visit 2 as BAT negative
- Legemiddel: Period 2 - Visit 1 Warm Control vehicle, Visit 2 Warm Glucagon, Visit 3 Cold control
- Legemiddel: Period 2 - Visit 1 Warm Glucagon, Visit 2 Cold control , Visit 3 Warm control
- Legemiddel: Period 2 -Visit 1 cold control, Visit 2 warm control, Visit 3 Warm glucagon
- Legemiddel: Period 2 -Visit 1 cold control, visit 2 warm glucagon, visit 3 warm control
- Legemiddel: Period 2- Visit 1 Warm glucagon, visit 2 warm control, visit 3 cold control
- Legemiddel: Period 2 - Visit 1 Warm control, visit 2 cold control, visit 3 warm glucagon
Detaljert beskrivelse
Studietype
Registrering (Faktiske)
Fase
- Ikke aktuelt
Kontakter og plasseringer
Studiesteder
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-
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London, Storbritannia
- Imperial College London
-
-
Deltakelseskriterier
Kvalifikasjonskriterier
Alder som er kvalifisert for studier
Tar imot friske frivillige
Kjønn som er kvalifisert for studier
Beskrivelse
Inclusion Criteria:
- aged >18 years
Exclusion Criteria:
- medical conditions
- recreational drug use
- participation in other trials within the preceding 2 months
- blood donation within 3 months of study participation
Studieplan
Hvordan er studiet utformet?
Designdetaljer
- Primært formål: Grunnvitenskap
- Tildeling: Randomisert
- Intervensjonsmodell: Crossover-oppdrag
- Masking: Enkelt
Våpen og intervensjoner
Deltakergruppe / Arm |
Intervensjon / Behandling |
|---|---|
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Aktiv komparator: Period 1 Visit 1 - Cold PET-CT Vehicle, Visit 2 -Warm PET-CT Vehicle
Visit 1. Participants underwent F-fluorodeoxyglucose (18F-FDG) positron emission tomography, computerised tomography-(PET)CT, whilst wearing a cooling vest and receiving an infusion of gelofusine. Visit 2 Participants underwent F-fluorodeoxyglucose (18F-FDG) positron emission tomography, computerised tomography-(PET)CT, whilst receiving an infusion of gelofusine without a cooling vest. |
Temperature
|
|
Eksperimentell: Period 1 Visit 1 - Cold PET-CT Vehicle, Visit 2 -Warm PET-CT Glucagon
Visit 1. Participants underwent F-fluorodeoxyglucose (18F-FDG) positron emission tomography, computerised tomography-(PET)CT, whilst wearing a cooling vest and receiving an infusion of gelofusine Visit 2 Participants underwent F-fluorodeoxyglucose (18F-FDG) positron emission tomography, computerised tomography-(PET)CT, whilst receiving an infusion of Glucagon at a dose of 50ng/kg/min without a cooling vest.
|
Hormone
|
|
Aktiv komparator: Period 1 Visit 1 - Cold PET-CT Vehicle, no visit 2 as BAT negative
Visit 1. Participants underwent F-fluorodeoxyglucose (18F-FDG) positron emission tomography, computerised tomography-(PET)CT, whilst wearing a cooling vest and receiving an infusion of gelofusine. No brown adipose tissue (BAT) identified on visit 1, therefore no visit 2. |
Temperature
|
|
Eksperimentell: Period 2 - Visit 1 Warm Control vehicle, Visit 2 Warm Glucagon, Visit 3 Cold control
Visit 1- Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine. They were situated in an ambient temperature of 22-25 degrees celsius. Visit 2 - Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of Glucagon at a dose of 50ng/kg/min. They were situated in an ambient temperature of 22-25 degrees celsius. Visit 3 - Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine and wearing a cooling vest. |
Hormone
|
|
Eksperimentell: Period 2 - Visit 1 Warm Glucagon, Visit 2 Cold control , Visit 3 Warm control
Visit 1- Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of Glucagon at a dose of 50ng/kg/min. They were situated in an ambient temperature of 22-25 degrees celsius. Visit 2 - Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine and wearing a cooling vest. Visit 3 Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine. They were situated in an ambient temperature of 22-25 degrees celsius. |
Hormone
|
|
Eksperimentell: Period 2 -Visit 1 cold control, Visit 2 warm control, Visit 3 Warm glucagon
Visit 1 - Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine and wearing a cooling vest. Visit 2 - Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine. They were situated in an ambient temperature of 22-25 degrees celsius. Visit 3 - Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of Glucagon at a dose of 50ng/kg/min. They were situated in an ambient temperature of 22-25 degrees celsius. |
hormone
|
|
Eksperimentell: Period 2 -Visit 1 cold control, visit 2 warm glucagon, visit 3 warm control
Visit 1 - Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine and wearing a cooling vest. Visit 2- Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of Glucagon at a dose of 50ng/kg/min. They were situated in an ambient temperature of 22-25 degrees Celsius. Visit 3 - Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine. They were situated in an ambient temperature of 22-25 degrees Celsius. |
hormone
|
|
Eksperimentell: Period 2- Visit 1 Warm glucagon, visit 2 warm control, visit 3 cold control
Visit 1- Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of Glucagon at a dose of 50ng/kg/min. They were situated in an ambient temperature of 22-25 degrees Celsius. Visit 2 Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine. They were situated in an ambient temperature of 22-25 degrees Celsius. Visit 3- Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine and wearing a cooling vest. |
hormone
|
|
Eksperimentell: Period 2 - Visit 1 Warm control, visit 2 cold control, visit 3 warm glucagon
Visit 1 Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine. They were situated in an ambient temperature of 22-25 degrees Celsius. Visit 2- Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of gelofusine and wearing a cooling vest. Visit 3 Each participant had calorimetry testing and thermal imaging whilst receiving an infusion of Glucagon at a dose of 50ng/kg/min. They were situated in an ambient temperature of 22-25 degrees Celsius |
Hormone
|
Hva måler studien?
Primære resultatmål
Resultatmål |
Tiltaksbeskrivelse |
Tidsramme |
|---|---|---|
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Brown Adipose Tissue Activation Following Glucagon or Saline Infusion
Tidsramme: 2hours
|
Period 1 Brown Adipose Tissue (BAT) activation measured using metabolic rate of glucose (MR[gluc]) during F-fluorodeoxyglucose (18F-FDG) positron emission tomography (PET-CT) for Cold PET-CT Vehicle vs Warm PET-CT Vehicle vs warm PET-CT Glucagon.
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2hours
|
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Increase in Energy Expenditure Following Glucagon or Saline Infusion
Tidsramme: 2hours
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Period 2 Increase in energy expenditure measured using indirect calorimetry for Cold control vs Warm Control vs Warm Glucagon.
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2hours
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Samarbeidspartnere og etterforskere
Sponsor
Etterforskere
- Hovedetterforsker: Waljit Dhillo, Imperial College London
Publikasjoner og nyttige lenker
Studierekorddatoer
Studer hoveddatoer
Studiestart
Primær fullføring (Faktiske)
Studiet fullført (Faktiske)
Datoer for studieregistrering
Først innsendt
Først innsendt som oppfylte QC-kriteriene
Først lagt ut (Anslag)
Oppdateringer av studieposter
Sist oppdatering lagt ut (Faktiske)
Siste oppdatering sendt inn som oppfylte QC-kriteriene
Sist bekreftet
Mer informasjon
Begreper knyttet til denne studien
Nøkkelord
Ytterligere relevante MeSH-vilkår
Andre studie-ID-numre
- 13HH0688
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