Reactive oxygen species-sensitive nanophotosensitizers of aminophenyl boronic acid pinacol ester conjugated chitosan- g -methoxy poly(ethylene glycol) copolymer for photodynamic treatment of cancer

吡那考 硼酸 共聚物 乙二醇 共轭体系 壳聚糖 材料科学 乙烯 高分子化学 苯硼酸 有机化学 化学 催化作用 聚合物 复合材料
作者
Young‐Il Jeong,Taeyeon Kim,Eun Ju Hwang,Sang‐Woo Kim,Kai‐Christian Sonntag,Do Hoon Kim,Jae Woong Koh
出处
期刊:Biomedical Materials [IOP Publishing]
卷期号:15 (5): 055034-055034 被引量:9
标识
DOI:10.1088/1748-605x/ab9bb2
摘要

Abstract The aim of this study is to prepare reactive oxygen species (ROS)-sensitive nanophotosensitizers for targeted delivery of chlorin e6 (Ce6) and photodynamic tumor therapy. For this purpose, thiodipropionic acid (TDPA) was conjugated with phenyl boronic acid pinacol ester (PBAP) (TDPA-PBAP conjugates) and then the TDPA-PBAP conjugates were attached to the chitosan backbone of chitosan- g -methoxy poly(ethylene glycol) (ChitoPEG) copolymer (ChitoPEG-PBAP). Ce6-incorporated ChitoPEG-PBAP nanophotosensitizers have an ROS-sensitive manner in vitro . The size of ChitoPEG-PBAP nanoparticles increased or disintegrated in a responsive manner against H 2 O 2 concentration. The Ce6 release rate from ChitoPEG-PBAP nanophotosensitizers also increased by adding H 2 O 2 . These results indicated that nanophotosensitizers have sensitivity against ROS and showed triggered Ce6 release behavior. ChitoPEG-PBAP nanophotosensitizers can be more efficiently internalized into cancer cells compared to Ce6 alone and then produce ROS in a more efficient manner. Furthermore, ChitoPEG-PBAP nanophotosensitizers suppressed the viability of cancer cells in vitro and tumor growth in vivo with higher efficacy compared to Ce6 alone. Furthermore, ChitoPEG-PBAP nanophotosensitizers were efficiently delivered to irradiated tumor tissues, indicating that ChitoPEG-PBAP nanophotosensitizers can be delivered to the tumor with ROS-sensitive manner. We suggest that a ChitoPEG-PBAP nanophotosensitizer is a promising candidate for photodynamic therapy of cancers.
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