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Clinical Trials/NCT06881472
NCT06881472Active, not recruitingNot Applicable

The Separate and Combined Glucagonotropic Effects of Glucose-dependent Insulinotropic Polypeptide and Alanine in Subjects With and Without Type 1 Diabetes

Asger Lund, MD1 site in 1 country10 target enrollmentStarted: January 1, 2025Last updated:
Conditions
Interventions
Drugs

Trial Snapshot

Phase
Not Applicable
Status
Active, not recruiting
Sponsor
Enrollment
10
Locations
1
Primary Endpoint
bsAUC of glucagon concentration

Study Overview

Brief Summary

The hormone glucose-dependent insulinotropic polypeptide (GIP) is naturally produced in the intestine during a meal and stimulates insulin secretion from the pancreas. Insulin ensures that nutrients from the meal are transported from the blood into the cells, allowing the body to use it as energy. If blood sugar levels drop too much, the body naturally releases another hormone: glucagon. Glucagon is responsible for the breakdown of nutrients inside the cells, thus causing blood sugar levels to rise again. This occurs, for example, when a person is fasting or in an energy deficit. Unfortunately, glucagon is not released in people with type 1 diabetes when blood sugar levels are low. However, it is known that GIP contributes to the secretion of glucagon during low blood sugar levels in both healthy individuals and those with type 1 diabetes.

Protein intake through the diet is broken down in the body into amino acids. It is known that the ingestion of protein and thus amino acids leads to an increase in glucagon in both healthy individuals and those with type 1 diabetes. This causes the amino acids to be converted into sugar, but also allows potentially harmful waste products from the breakdown to be converted into harmless components. The relationship between GIP and amino acids, as well as their joint effect on glucagon, is still unknown, but studies in mice have shown that if GIP and amino acids are given simultaneously, glucagon secretion will be even higher than if they were administered separately. The purpose of this study is to gain a better understanding of how the three (GIP, amino acids, and glucagon) are interconnected and affect each other and to see if the experiments conducted in mice yield the same results in healthy individuals and those with type 1 diabetes. Moreover, the secretion of glucagon, and thus the increase in blood sugar, might protect individuals with type 1 diabetes from experiencing low blood sugar. This knowledge could potentially be used for new treatment approaches in diabetes in the future.

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Crossover
Primary Purpose
Basic Science
Masking
Triple (Participant, Investigator, Outcomes Assessor)

Eligibility Criteria

Ages
18 Years to 70 Years (Adult, Older Adult)
Sex
Male
Accepts Healthy Volunteers
No

Inclusion Criteria

  • •Caucasian ethnicity
  • •Age between 18 and 70 years
  • •T1D (diagnosed according to the criteria of the World Health Organization) with HbA1c <69 mmol/mol (<8.5%)
  • •Body mass index between 20-27 kg/m2
  • •T1D duration of 2-20 years
  • •C-peptide negative (arginin-stimulated C-peptide ≤ 100 pmol/l)
  • •Treatment with a stable basal-bolus or insulin pump regimen for ≥3 months
  • •Informed and written consent

Exclusion Criteria

  • •Anaemia (haemoglobin below normal range)
  • •Late microvascular complications except mild nonproliferative retinopathy
  • •Liver disease (alanine aminotransferase (ALAT) and/or aspartate aminotransferase (ASAT) >2 times normal values) or history of hepatobiliary disorder
  • •Treatment with any glucose-lowering drugs beside insulin
  • •Active or recent (within 5 years) malignant disease
  • •Active tobacco smoking / use
  • •Any condition considered incompatible with participation by the investigators

Arms & Interventions

GIP

Active Comparator

Intervention: Glucose-dependent Insulinotropic Polypeptide (GIP) (Drug)

GIP

Active Comparator

Intervention: Saline (NaCl 0,9 %) (placebo) (Drug)

Alanine

Active Comparator

Intervention: Saline (NaCl 0,9 %) (placebo) (Drug)

GIP + Alanine

Active Comparator

Intervention: Glucose-dependent Insulinotropic Polypeptide (GIP) (Drug)

Placebo

Placebo Comparator

Intervention: Saline (NaCl 0,9 %) (placebo) (Drug)

GIP + Alanine

Active Comparator

Intervention: alanine (Drug)

Alanine

Active Comparator

Intervention: alanine (Drug)

Outcomes

Primary Outcomes

bsAUC of glucagon concentration

Time Frame: From 0-150 minutes

Baseline Area under the curve of Glucagon concentration

Secondary Outcomes

  • bsAUC Glucagon 30-90(from 30-90 minutes)
  • bsAUC glucagon 90-150 min(from 90-150 minutes)

Investigators

Sponsor
Asger Lund, MD
Sponsor Class
Other
Responsible Party
Sponsor Investigator
Principal Investigator

Asger Lund, MD

Associate professor, MD, Ph.D.

University Hospital, Gentofte, Copenhagen

Study Sites (1)

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