化学
紫杉醇
胶束
内化
体内
药物输送
细胞毒性
壳聚糖
靶向给药
药理学
两亲性
药品
脂质体
生物物理学
体外
癌症研究
受体
前列腺癌
癌症
生物化学
水溶液
医学
生物
内科学
有机化学
共聚物
生物技术
聚合物
作者
Ding Qu,Mengying Jiao,Haijiao Lin,Chunli Tian,Guowei Qu,Jingwei Xue,Lingjing Xue,Caoyun Ju,Can Zhang
标识
DOI:10.1016/j.carbpol.2019.115498
摘要
Controlled release and tumor-selective distribution are highly desirable for anticancer nanomedicines. Here, we design and synthesize an anisamide-conjugated N-octyl-N,O-maleoyl-O-phosphoryl chitosan (a-OMPC) which can form amphiphilic micelles featuring pH-responsive release and high affinity to sigma-1 receptor-overexpressed tumors for paclitaxel (PTX) delivery. Thereinto, maleoyl and phosphoryl groups cooperatively contribute to pH-responsive drug release due to a conversion from hydrophile to hydrophobe in the acidic microenvironment of endo/lysosomes. We demonstrated that PTX-loaded a-OMPC micelles (PTX-aM) enhanced the cellular internalization via the affinity between anisamide and sigma-1 receptor, rapidly released drug in endo/lysosomes and elevated the cytotoxicity against PC-3 cells. The in vivo studies further verified that PTX-aM could largely accumulate at the tumor site even after 24 h of administration, resulting in obvious inhibition effect and prolonged survival period in PC-3 tumor xenograft-bearing mice. Moreover, OMPC showed no obvious hemolytic and acute toxicity. Collectively, this chitosan derivate holds a promising potential in application of prostate cancer-targeted drug delivery system.
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