An Integrated Tumor Microenvironment Responsive Polymeric Micelle for Smart Drug Delivery and Effective Drug Release

化学 药物输送 乙二醇 内化 PEG比率 胶束 胱胺 组合化学 控制释放 生物物理学 高分子化学 有机化学 化学工程 水溶液 生物化学 细胞 生物 工程类 经济 财务
作者
Nanxia Zhang,Weixing Liu,Zhipeng Dong,Yunxue Yin,Jun Luo,Tao Lu,Weifang Tang,Yue Wang,Yonghu Han
出处
期刊:Bioconjugate Chemistry [American Chemical Society]
卷期号:32 (9): 2083-2094 被引量:18
标识
DOI:10.1021/acs.bioconjchem.1c00385
摘要

Tumor microenvironment (TME) responsive polymeric micelles are promising carriers for drug delivery. In order to meet the needs of various applications, multifarious TME-responsive switches are used to construct smart polymeric micelles, which causes the complexity and corpulence of the polymeric micelle system and increases the difficulty of preparation. In this study, we designed and synthesized an ingenious TME-responsive switch through grafting disulfide bond-modified piperidinepropionic acid (CPA) on copolymer poly(ethylene glycol)- b -poly(aspartate)(PEG- b -PAsp) and built a novel pH/reduction-responsive PEG- b -PAsp- g -CPA polymeric micelle delivery system. The CPA-pendants can reverse the surface charge of the polymeric micelle from negative to positive at pH 6.5 because of the protonation of piperidine groups, thereby enhancing the internalization of cell. Subsequently, more piperidine groups are protonated at pH 5.0 which will increase the hydrophilicity of polymeric micelles and cause the hydrophobic core to swell, thus making the disulfide bonds packed in the core to be more easily broken by GSH. With the synergistic effect of the pH-triggered protonation of piperidine groups and reduction triggered break of disulfide bonds, the polymeric micelles will disintegrate and achieve efficient intracellular drug release. The TME-responsive polymeric micelles exhibited good biological safety, enhanced internalization, and rapid intracellular doxorubicin (DOX) release in vitro. Moreover, the PEG- b -PAsp- g -CPA/DOX polymeric micelles showed excellent antitumor efficacy and low systemic toxicity in lung tumor-bearing BALB/C mice. These results indicated that the novel integrated TME-responsive switch CPA helps the PEG- b -PAsp- g -CPA polymeric micelles to obtain excellent TME-responsiveness and antitumor drug delivery capabilities, while it also makes the preparation of TME-responsive polymeric micelles simpler and more convenient. This work provides a new idea for the architecture of TME-responsive polymeric micelles.
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