Gcg-XTEN: an improved glucagon capable of preventing hypoglycemia without increasing baseline blood glucose

Nathan C Geething1, Wayne To, Benjamin J Spink

  • 1Amunix, Inc., Mountain View, California, United States of America.

Plos One
|April 27, 2010
PubMed
Abstract

Insights

A novel glucagon fusion protein, Gcg-XTEN, effectively prevents hypoglycemia without raising blood glucose. This modified glucagon offers a promising therapeutic for diabetes management and other metabolic conditions.

Area of Science:

  • Biochemistry
  • Endocrinology
  • Pharmacology

Background:

  • Insulin therapy for diabetes poses a risk of hypoglycemia, a dangerous drop in blood glucose.
  • Native glucagon, while counter-regulatory, has a short half-life and causes hyperglycemia, limiting its therapeutic use.
  • There is a need for a modified glucagon to prevent hypoglycemia without adverse effects.

Purpose of the Study:

  • To develop a modified glucagon (Gcg-XTEN) with an extended half-life for prophylactic hypoglycemia treatment.
  • To ensure the modified glucagon does not increase baseline blood glucose levels.
  • To improve the physical properties of glucagon for potential novel delivery systems.

Main Methods:

  • Utilized XTEN technology to create a glucagon fusion protein (Gcg-XTEN).
  • Tuned the in vivo half-life in cynomolgus monkeys for nightly dosing suitability.
  • Assessed efficacy in beagle dogs via insulin-induced hypoglycemia, including dose-ranging studies.

Main Results:

  • Gcg-XTEN demonstrated biological activity and a pharmacodynamic profile matching its designed half-life.
  • Prophylactic Gcg-XTEN (0.6 nmol/kg) protected dogs from hypoglycemia at 6 hours post-dose without altering baseline glucose.
  • Improved solubility and stability of glucagon were observed after fusion with XTEN.

Conclusions:

  • Gcg-XTEN effectively prevents hypoglycemia without causing hyperglycemia, unlike native glucagon.
  • Optimized for overnight dosing, Gcg-XTEN is suitable for nocturnal hypoglycemia treatment.
  • Potential applications include enabling more aggressive insulin regimens, treating insulinoma-induced hypoglycemia, combination therapies, and obesity treatment.

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