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NCT Number: NCT06972407

The Effect of rs7903146 Genotype on Islet GLP-1 Production in Humans

The investigators recently demonstrated that blockade of Glucagon-Like Peptide-1's (GLP-1) receptor (GLP1R) results in changes in islet function without changes in circulating GLP-1. These effects are more pronounced in people with early type 2 diabetes (T2DM) in keeping with increased expression of PC-1/3 and GLP-1 that is observed in diabetic islets. However, its regulation is at present unknown. Common genetic variation in the TCF7L2 locus (T-allele at rs7903146) arguably confers the greatest genetic risk of T2DM. It is associated with α- and β-cell dysfunction. TCF7L2 (the product of TCF7L2) was first described as the transcription factor necessary for proglucagon expression in intestinal L-cells (which secrete GLP-1). This led to speculation that TCF7L2 confers risk of diabetes via changes in circulating GLP-1. This has turned out to not be the case. This raises the possibility that these diabetogenic effects are mediated via an inability of islet GLP-1 to adapt to rising glycemia. Therefore, this experiment will determine the contribution of islet GLP-1 to the functional abnormalities of the islet associated with the TCF7L2 locus.

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Key information

Age range

25 year–70 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 2

Primary location

Mayo Clinic in Rochester

Rochester, Minnesota, 55905, United States

About this study

The investigators recently demonstrated that blockade of Glucagon-Like Peptide-1's (GLP-1) receptor (GLP1R) results in changes in islet function without changes in circulating GLP-1. This supports other evidence (rodents and humans) that through the (inducible) expression of a prohormone convertase (PC-1/3), the α-cell can process proglucagon to intact GLP-1. 'Islet' or 'pancreatic' GLP-1 acts in a paracrine fashion to regulate insulin (basal and 1st phase) and glucagon secretion. These effects are more pronounced in people with early type 2 diabetes (T2DM) in keeping with increased expression of PC-1/3 and GLP-1 that is observed in diabetic islets.

Although pancreatic GLP-1 adapts to support islet function in T2DM, it is unclear if this mechanism is upregulated in prediabetes and whether it contributes to the phenotype(s) observed. There is evidence that α-cell proglucagon processing is subject to paracrine regulation by the β-cell. β-cell secretion of the signaling peptide 14-3-3-Zeta is decreased by GLP1R agonism, stimulating α-cell production of GLP-1. Common genetic variation in the TCF7L2 locus (T-allele at rs7903146) arguably confers the greatest genetic risk of T2DM4. It is associated with α- and β-cell dysfunction. TCF7L2 (the product of TCF7L2) was first described as the transcription factor necessary for proglucagon expression in intestinal L-cells (which secrete GLP-1). Does a relative absence or an inability of islet GLP-1 to adapt to rising glycemia explain the increased risk of T2DM associated with the T-allele at rs7903146? This experiment will determine the contribution of islet GLP-1 to the functional abnormalities of the islet associated with the TCF7L2 locus.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Subjects with the TT or CC genotype at rs7903146

Exclusion criteria

  • Age < 25 or > 70 years (to avoid studying subjects who could have latent type 1 diabetes, or the effects of age extremes in subjects with normal or impaired fasting glucose).
  • CT genotype at rs7903146
  • HbA1c > 6.5%
  • Use of any glucose-lowering agents including metformin or sulfonylureas.
  • For female subjects: positive pregnancy test at the time of enrollment or study.
  • History of prior upper abdominal surgery such as adjustable gastric banding, pyloroplasty and vagotomy.
  • Active systemic illness or malignancy.
  • Symptomatic macrovascular or microvascular disease.

Treatment and study plan

Exendin 9-39

Biological

A competitive antagonist of the GLP-1 receptor

Saline

Other

Saline infusion will serve as an inactive comparator

Primary outcomes

  1. Change in fasting glucose

    Time frame: Change in average glucose concentration between -30 min and 0 min of each study day (saline day vs. exendin 9-39 day)

    comparison of fasting glucose during saline vs. exendin 9-39 infusion

  2. Change in fasting glucagon

    Time frame: Change in average glucagon concentration between -30 min and 0 min of each study day (saline day vs. exendin 9-39 day)

    comparison of fasting glucagon during saline vs. exendin 9-39 infusion

Secondary outcomes

  1. Change in fasting insulin

    Time frame: Change in average insulin concentration between -30 min and 0 min of each study day (saline day vs. exendin 9-39 day)

    comparison of fasting insulin during saline vs. exendin 9-39 infusion

  2. Change in first phase insulin secretion

    Time frame: Change in integrated insulin concentrations (area above baseline) between 0 min and 30 min of each study day (saline day vs. exendin 9-39 day)

    comparison of first phase insulin secretion during saline vs. exendin 9-39 infusion

Study contacts

Contact information is provided by the study sponsor or research team.

Adrian Vella, MD

CONTACT

[email protected]

507-255-6515

Sponsors and collaborators

Lead sponsor

Mayo Clinic

Other

Registry information

Important dates

Study start
2026
Primary completion
2028
Study completion
2029
First posted
May 15, 2025
Registry last updated
Jan 30, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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