Hydrogen Peroxide and Glutathione Dual Redox‐Responsive Nanoparticles for Controlled DOX Release

Polymer nanoparticulate drug delivery systems that respond to reactive oxygen species (ROS) and glutathione (GSH) simultaneously at biologically relevant levels hold great promise to improve the therapeutic efficacy to cancer cells with reduced side effects of chemo drugs. Herein, a novel redox dual...

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Veröffentlicht in:Macromolecular bioscience 2020-02, Vol.20 (2), p.e1900331-n/a
Hauptverfasser: Chen, Runhai, Ma, Zhifang, Xiang, Zehong, Xia, Yu, Shi, Qiang, Wong, Shing‐Chung, Yin, Jinghua
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Sprache:eng
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Zusammenfassung:Polymer nanoparticulate drug delivery systems that respond to reactive oxygen species (ROS) and glutathione (GSH) simultaneously at biologically relevant levels hold great promise to improve the therapeutic efficacy to cancer cells with reduced side effects of chemo drugs. Herein, a novel redox dual‐responsive amphiphilic block copolymer (ABP) that consists of a hydrophilic poly (ethylene oxide) block and a hydrophobic block bearing disulfide linked phenylboronic ester group as pendant is synthesized, and the DOX loaded nanoparticles (BSN‐DOX) based on ABPs with varied hydrophobic block length are fabricated for DOX delivery. The self‐immolative leaving reaction of phenylboronic ester triggered by extracellular ROS and the cleavage of disulfide linkages induced by intracellular GSH both lead to rapid DOX release from BSN‐DOX, resulting in an on‐demand DOX release. Moreover, BSN‐DOX show better tumor inhibition and lower side effects in vivo compared with free drug. A novel redox dual‐responsive amphiphilic block copolymer that consists of a hydrophilic poly (ethylene oxide) block and a hydrophobic block bearing disulfide linked phenylboronic ester group as pendant is synthesized for DOX delivery. A controlled DOX release that is triggered sequentially by extracellular reactive oxygen species and intracellular glutathione of cancer cells, and the selective toxicity to tumor cells are obtained.
ISSN:1616-5187
1616-5195
DOI:10.1002/mabi.201900331