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Investigating Brown Adipose Tissue Activation in Humans

17 maj 2021 uppdaterad av: Imperial College London
The purpose of this study is to determine what can activate brown adipose tissue (BAT).

Studieöversikt

Detaljerad beskrivning

We will investigate different stimuli (i.e. hormones) to determine which can stimulate BAT.

Studietyp

Interventionell

Inskrivning (Faktisk)

11

Fas

  • Inte tillämpbar

Kontakter och platser

Det här avsnittet innehåller kontaktuppgifter för dem som genomför studien och information om var denna studie genomförs.

Studieorter

Deltagandekriterier

Forskare letar efter personer som passar en viss beskrivning, så kallade behörighetskriterier. Några exempel på dessa kriterier är en persons allmänna hälsotillstånd eller tidigare behandlingar.

Urvalskriterier

Åldrar som är berättigade till studier

18 år och äldre (Vuxen, Äldre vuxen)

Tar emot friska volontärer

Nej

Kön som är behöriga för studier

Allt

Beskrivning

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

Det här avsnittet ger detaljer om studieplanen, inklusive hur studien är utformad och vad studien mäter.

Hur är studien utformad?

Designdetaljer

  • Primärt syfte: Grundläggande vetenskap
  • Tilldelning: Randomiserad
  • Interventionsmodell: Crossover tilldelning
  • Maskning: Enda

Vapen och interventioner

Deltagargrupp / Arm
Intervention / Behandling
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
Experimentell: 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
Experimentell: 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
Experimentell: 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
Experimentell: 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
Experimentell: 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
Experimentell: 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
Experimentell: 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

Vad mäter studien?

Primära resultatmått

Resultatmått
Åtgärdsbeskrivning
Tidsram
Brown Adipose Tissue Activation Following Glucagon or Saline Infusion
Tidsram: 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.
2hours
Increase in Energy Expenditure Following Glucagon or Saline Infusion
Tidsram: 2hours
Period 2 Increase in energy expenditure measured using indirect calorimetry for Cold control vs Warm Control vs Warm Glucagon.
2hours

Samarbetspartners och utredare

Det är här du hittar personer och organisationer som är involverade i denna studie.

Utredare

  • Huvudutredare: Waljit Dhillo, Imperial College London

Publikationer och användbara länkar

Den som ansvarar för att lägga in information om studien tillhandahåller frivilligt dessa publikationer. Dessa kan handla om allt som har med studien att göra.

Studieavstämningsdatum

Dessa datum spårar framstegen för inlämningar av studieposter och sammanfattande resultat till ClinicalTrials.gov. Studieposter och rapporterade resultat granskas av National Library of Medicine (NLM) för att säkerställa att de uppfyller specifika kvalitetskontrollstandarder innan de publiceras på den offentliga webbplatsen.

Studera stora datum

Studiestart

1 juli 2013

Primärt slutförande (Faktisk)

5 november 2018

Avslutad studie (Faktisk)

5 november 2018

Studieregistreringsdatum

Först inskickad

25 juli 2013

Först inskickad som uppfyllde QC-kriterierna

4 september 2013

Första postat (Uppskatta)

5 september 2013

Uppdateringar av studier

Senaste uppdatering publicerad (Faktisk)

18 maj 2021

Senaste inskickade uppdateringen som uppfyllde QC-kriterierna

17 maj 2021

Senast verifierad

1 maj 2021

Mer information

Termer relaterade till denna studie

Plan för individuella deltagardata (IPD)

Planerar du att dela individuella deltagardata (IPD)?

Nej

Läkemedels- och apparatinformation, studiedokument

Studerar en amerikansk FDA-reglerad läkemedelsprodukt

Nej

Studerar en amerikansk FDA-reglerad produktprodukt

Nej

produkt tillverkad i och exporterad från U.S.A.

Nej

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