Archive/Synthesis and Characterization of a Methoxypolyethylene Glycol-Modified Bortezomib Prodrug
Synthesis and Characterization of a Methoxypolyethylene Glycol-Modified Bortezomib Prodrug
Xuhuan Chen, Jian Hou, Feng Gao et al.
27 de julho de 2026
en

Abstract

To overcome the challenges of low water solubility, nonspecific biodistribution, limited tumor penetration, and easy inactivation of bortezomib (BTZ) under physiological conditions, we designed and synthesized a novel methoxypolyethylene glycol-modified bortezomib prodrug (mPEG2000-DEA-BTZ). This prodrug employs diethanolamine as a linker and mPEG2000 as the polymer chain, synthesized through a three-step reaction, with its chemical structure confirmed by 1H NMR. Solubility studies demonstrated that in PBS buffer at pH 7.4, the solubility of mPEG2000-DEA-BTZ was ≥436.0 mg/mL, corresponding to a bortezomib solubility of ≥66.7 mg/mL, over 167-fold higher than that of free BTZ (399 μg/mL). In vitro release experiments showed that only approximately 2% of BTZ was released from the prodrug within 24 h at pH 7.4, indicating excellent physiological stability. In contrast, drug release was significantly accelerated under acidic conditions (pH 6.5 and pH 5.0), with the cumulative release exceeding 90% at pH 5.0 within 4 h and approaching complete release at 24 h. Compared to the previously reported mPEG5000-CA-BTZ prodrug, the lower molecular weight mPEG2000 and diethanolamine linker employed in this study significantly improved the drug release rate and completeness. This pH-sensitive prodrug is expected to enhance the pharmacokinetic profile of bortezomib and achieve acidic tumor microenvironment-triggered targeted release, demonstrating significant potential for clinical translation.

IPC Classification

A61C07

Keywords

synthesischaracterizationmethoxypolyethyleneglycol-modifiedbortezomibprodrugmacromolovercomechallengeswatersolubilitynonspecificbiodistributionlimitedtumorpenetrationeasyinactivationphysiologicalconditionsdesignedsynthesizednovelmpeg2000-dea-btz
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