- ICH GCP
- US Clinical Trials Registry
- Klinisk utprøving NCT00639613
The Role of Small Intestinal Endocrine Cells in Type 2 Diabetic Hyperglucagonemia (T2DM-PC1-2)
25. juni 2015 oppdatert av: Filip Krag Knop, University Hospital, Gentofte, Copenhagen
Exspression of Prohormone Convertase 1 and 2 in Small Intestinal Endocrine Mucosa Cells in Patients With Type 2 Diabetes
The purpose of this study is to determine whether excessive secretion of glucagon in type 2 diabetes originates from the pancreatic alpha-cells or endocrine cells in the mucosa of the small intestinal.
Studieoversikt
Status
Fullført
Forhold
Intervensjon / Behandling
Detaljert beskrivelse
Hyperglucagonemia contributes significantly to the hyperglycemia characterizing patients with Type 2 diabetes.
Fasting hyperglucagonemia induces hepatic glucose release resulting in elevated fasting levels of plasma glucose.
Furthermore, lack of postprandial suppression of glucagon secretion - exchanged for a paradoxical postprandial hypersecretion of glucagon - results in increased levels of postprandial plasma glucose.
Additionally, type 2 diabetes is characterized by decreased postprandial responses of the insulinotropic (and glucagonostatic) peptide hormone glucagon-like peptide-1 (GLP-1).
Recent studies from our group suggest that the intestines are involved in the diminshed suppression of glucagon following ingestion of nutrients.
Thus, suppression of glucagon during oral glucose ingestion diminishes and reverses to stimulation while suppression during intravenous administered glucose sustains along with development of glucose intolerance.
In the small intestines mucosal endocrine L-cells secrete GLP-1, which is processed from its precursor, proglucagon, by prohormone convertase 1 (PC1).
In the pancreatic alpha-cells proglucagon is processed to glucagon via prohormone convertase 2 (PC2).
We plan to examine biopsies from the mucosa of the small intestines from patients with type 2 diabetes and from healthy subjects for glucagon production.
Furthermore, the volunteers will be subjected to a standard meal test in order to correlate the gene expression studies with the level of postprandial hyperglucagonemia of the subjects.
Studietype
Observasjonsmessig
Registrering (Faktiske)
20
Kontakter og plasseringer
Denne delen inneholder kontaktinformasjon for de som utfører studien, og informasjon om hvor denne studien blir utført.
Studiesteder
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Copenhagen County
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Hellerup, Copenhagen County, Danmark, 2900
- Department of Internal Medicine F' laboratory
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Deltakelseskriterier
Forskere ser etter personer som passer til en bestemt beskrivelse, kalt kvalifikasjonskriterier. Noen eksempler på disse kriteriene er en persons generelle helsetilstand eller tidligere behandlinger.
Kvalifikasjonskriterier
Alder som er kvalifisert for studier
35 år og eldre (Voksen, Eldre voksen)
Tar imot friske frivillige
Ja
Kjønn som er kvalifisert for studier
Alle
Prøvetakingsmetode
Ikke-sannsynlighetsprøve
Studiepopulasjon
Patients with type 2 diabetes
Beskrivelse
Inclusion Criteria:
- Diagnosed with type 2 diabetes for at least 3 months
- Normal hemoglobin
- Informed consent
Exclusion Criteria:
- Liver disease (ALAT/ASAT > 2 x normal range)
- Diabetic nephropathy (se-creatinin > 130 µM and/or albuminuriu)
- Treatment with medication that can not be stopped for12 hours
Studieplan
Denne delen gir detaljer om studieplanen, inkludert hvordan studien er utformet og hva studien måler.
Hvordan er studiet utformet?
Designdetaljer
Kohorter og intervensjoner
Gruppe / Kohort |
Intervensjon / Behandling |
|---|---|
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2
Sunne fag
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Double-balloon enteroscopy allows for the entire gastrointestinal tract to be visualized in real time.
The technique involves the use of a balloon at the end of a special enteroscope camera and an overtube, which is also fitted with a balloon.
The procedure is usually done with the use of conscious sedation.
The enteroscope and overtube are inserted through the mouth and passed in conventional fashion (that is, as with gastroscopy) into the small bowel.
Following this, the endoscope is advanced a small distance in front of the overtube and the balloon at the end is inflated.
Using the assistance of friction at the interface of the enteroscope and intestinal wall, the small bowel is accordioned back to the overtube.
The overtube balloon is then deployed, and the enteroscope balloon is deflated.
The process is then continued until the entire small bowel is visualized.
Double-balloon enteroscopy allows for the sampling or biopsying of small bowel mucosa.
Liquid meal consisting of 100 g "Ny NAN" dissolved in 300 ml water (ca.
5000 kJ) to be ingested over 5 minutes.
Blood will be sampled for 4 hours following ingestion.
Samples are centrifuges and plasma will be analysed for glucagon, GLP-1, GIP, insulin and C-peptide concentrations.
|
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1
Patients with type 2 diabetes
|
Double-balloon enteroscopy allows for the entire gastrointestinal tract to be visualized in real time.
The technique involves the use of a balloon at the end of a special enteroscope camera and an overtube, which is also fitted with a balloon.
The procedure is usually done with the use of conscious sedation.
The enteroscope and overtube are inserted through the mouth and passed in conventional fashion (that is, as with gastroscopy) into the small bowel.
Following this, the endoscope is advanced a small distance in front of the overtube and the balloon at the end is inflated.
Using the assistance of friction at the interface of the enteroscope and intestinal wall, the small bowel is accordioned back to the overtube.
The overtube balloon is then deployed, and the enteroscope balloon is deflated.
The process is then continued until the entire small bowel is visualized.
Double-balloon enteroscopy allows for the sampling or biopsying of small bowel mucosa.
Liquid meal consisting of 100 g "Ny NAN" dissolved in 300 ml water (ca.
5000 kJ) to be ingested over 5 minutes.
Blood will be sampled for 4 hours following ingestion.
Samples are centrifuges and plasma will be analysed for glucagon, GLP-1, GIP, insulin and C-peptide concentrations.
|
Samarbeidspartnere og etterforskere
Det er her du vil finne personer og organisasjoner som er involvert i denne studien.
Etterforskere
- Hovedetterforsker: Filip K Knop, MD PhD, Department of Internal Medicine
Studierekorddatoer
Disse datoene sporer fremdriften for innsending av studieposter og sammendragsresultater til ClinicalTrials.gov. Studieposter og rapporterte resultater gjennomgås av National Library of Medicine (NLM) for å sikre at de oppfyller spesifikke kvalitetskontrollstandarder før de legges ut på det offentlige nettstedet.
Studer hoveddatoer
Studiestart
1. mars 2008
Primær fullføring (Faktiske)
1. juni 2015
Datoer for studieregistrering
Først innsendt
12. mars 2008
Først innsendt som oppfylte QC-kriteriene
12. mars 2008
Først lagt ut (Anslag)
20. mars 2008
Oppdateringer av studieposter
Sist oppdatering lagt ut (Anslag)
26. juni 2015
Siste oppdatering sendt inn som oppfylte QC-kriteriene
25. juni 2015
Sist bekreftet
1. juni 2015
Mer informasjon
Begreper knyttet til denne studien
Ytterligere relevante MeSH-vilkår
Andre studie-ID-numre
- H-B-2007-031
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