Mono-PEGylated dimeric exendin-4 as high receptor binding and long-acting conjugates for type 2 anti-diabetes therapeutics.
Bioconjug Chem · 2011
Last updated 2026-05-28Researchers created two modified versions of the diabetes drug exendin-4 (Ex4) called Di-Ex4 and PEG-Di-Ex4. Compared to the original Ex4, Di-Ex4 bound 3.5 times better to cells and lasted 2.7 times longer in the body, while PEG-Di-Ex4 lasted 13.7 times longer. At a dose of 25 nmol/kg, PEG-Di-Ex4 kept blood sugar under control for 40.1 hours, compared to 7.3 hours for the original Ex4.
AI summary of the abstract below.
| Journal | Bioconjug Chem, 2011 |
|---|---|
| Citations | 50 |
| Relative citation ratio | 1.56 |
| NIH percentile | 66 |
| Molecules | — |
| Conditions studied | Type 2 Diabetes |
Abstract
Dimerization is viewed as the most effective means of increasing receptor binding affinity, and both dimerization and PEGylation effectively prolong the life spans of short-lived peptides and proteins in vivo by delaying excretion via the renal route. Here, we describe the high binding affinities of two long-acting exendin-4 (Ex4) conjugates, dimerized Ex4 (Di-Ex4) and PEGylated Di-Ex-4 (PEG-Di-Ex4). Di-Ex4 and PEG-Di-Ex4 were prepared using cysteine and amine residue specific coupling reactions using Ex4-Cys, bisMal-NH(2), and activated PEG. The Ex4 conjugates produced were of high purity (>98.5%), as determined by size-exclusion chromatography and MALDI-TOF mass spectrometry. The receptor binding affinity of Di-Ex4 on RIN-m5F cells was 3.5-fold higher than that of Ex4, and the in vivo antihyperglycemic efficacy of Di-Ex4 was also greater than that of native Ex4 in type 2 diabetic db/db mice. Furthermore, Di-Ex4 and PEG-Di-Ex4 were found to have greater blood circulating t(1/2) and AUC(inf) values than native Ex4 by 2.7- and 13.7-fold, and by 4.0- and 17.3-fold, respectively. Accordingly, hypoglycemic durations were greatly increased to 15.0 and 40.1 h, respectively, at a dose of 25 nmol/kg (native Ex4 7.3 h). The results of this study show that combined dimerization and PEGylation are effective when applied to Ex4, and suggest that PEG-Di-Ex4 has considerable potential as a type 2 anti-diabetic agent.
Verbatim abstract via PubMed 21401109 ↗