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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.
Objective:
While the majority of current diabetes treatments focus on reducing blood glucose levels, hypoglycemia represents a significant risk associated with insulin treatment. Glucagon plays a major regulatory role in controlling hypoglycemia in vivo, but its short half-life and hyperglycemic effects prevent its therapeutic use for non-acute applications. The goal of this study was to identify a modified form of glucagon suitable for prophylactic treatment of hypoglycemia without increasing baseline blood glucose levels.
Methodology/Principal Findings:
Through application of the XTEN technology, we report the construction of a glucagon fusion protein with an extended exposure profile (Gcg-XTEN). The in vivo half-life of the construct was tuned to support nightly dosing through design and testing in cynomolgus monkeys. Efficacy of the construct was assessed in beagle dogs using an insulin challenge to induce hypoglycemia. Dose ranging of Gcg-XTEN in fasted beagle dogs demonstrated that the compound was biologically active with a pharmacodynamic profile consistent with the designed half-life. Prophylactic administration of 0.6 nmol/kg Gcg-XTEN to dogs conferred resistance to a hypoglycemic challenge at 6 hours post-dose without affecting baseline blood glucose levels. Consistent with the designed pharmacokinetic profile, hypoglycemia resistance was not observed at 12 hours post-dose. Importantly, the solubility and stability of the glucagon peptide were also significantly improved by fusion to XTEN.
Conclusions/Significance:
The data show that Gcg-XTEN is effective in preventing hypoglycemia without the associated hyperglycemia expected for unmodified glucagon. While the plasma clearance of this Gcg-XTEN has been optimized for overnight dosing, specifically for the treatment of nocturnal hypoglycemia, constructs with significantly longer exposure profiles are feasible. Such constructs may have multiple applications such as allowing for more aggressive insulin treatment regimens, treating hypoglycemia due to insulin-secreting tumors, providing synergistic efficacy in combination therapies with long-acting GLP1 analogs, and as an appetite suppressant for treatment of obesity. The improved physical properties of the Gcg-XTEN molecule may also allow for novel delivery systems not currently possible with native glucagon.
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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