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Thermo-reversible injectable gel based on enzymatically-chopped low molecular weight methylcellulose for exenatide and FGF 21 delivery to treat types 1 and 2 diabetes.

J Control Release · 2014

Last updated 2026-05-28

Researchers developed a temperature-sensitive gel to deliver diabetes drugs exenatide and FGF 21. In animal tests, the exenatide gel lowered blood sugar for a week in type 1 diabetes models, while the FGF 21 gel normalized blood sugar for over 10 days in type 2 diabetes models. The gel was designed to release the drugs slowly without an initial rapid release.

AI summary of the abstract below.

JournalJ Control Release, 2014
Citations24
Relative citation ratio1.05
NIH percentile52
Molecules exenatide
Conditions studied Type 2 Diabetes

Abstract

Diabetes is the fastest growing metabolic disease that fails to utilize glucose properly due to insulin deficiency or insulin resistance. Although several limited studies demonstrated non-invasive means of protein delivery, major hurdles for commercial success such as short half-life, enzymatic degradation and low bioavailability still remain to overcome. Methylcellulose (MC), a hydrophobically-modified cellulose derivative, forms temperature reversible gel in aqueous solution. However, as the gelling temperature of MC is higher than body temperature, it should be lowered to below body temperature for practical clinical application. In order to decrease gelling temperature and increase bio-compatibility and bio-elimination of MC, the molecular weight of MC was decreased using enzymatic degradation method and confirmed by gel permeation chromatography. Bio-elimination of low molecular weight (LMw) MC was confirmed with non-invasive live image and ex vivo experiment. The exenatide and FGF 21 were physically loaded 100% into LMwMC-based thermo-reversible gel and slowly released from gel with no initial bursts. Exenatide-loaded LMwMC gel showed reduction of blood glucose level for a week in type 1 diabetic animal model. FGF 21-loaded LMwMC gel reduced glucose level to normal condition and maintained over 10 days in type 2 diabetic animal model. LMwMC-based thermo-reversible and injectable hydrogel provides a strong potential to be efficient protein drug delivery system for the treatment of type 1 and type 2 diabetes.

Verbatim abstract via PubMed 25245775 ↗

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