纳米载体
体内
胶束
体内分布
药物输送
细胞毒性
乙二醇
生物相容性
阿霉素
药品
药理学
癌细胞
材料科学
靶向给药
流式细胞术
共轭体系
生物物理学
化学
体外
癌症
生物化学
医学
纳米技术
分子生物学
化疗
生物
聚合物
有机化学
生物技术
内科学
冶金
外科
水溶液
复合材料
作者
Xing Guo,Chunli Shi,Jie Wang,Shubin Di,Shaobing Zhou
出处
期刊:Biomaterials
[Elsevier BV]
日期:2013-03-16
卷期号:34 (18): 4544-4554
被引量:228
标识
DOI:10.1016/j.biomaterials.2013.02.071
摘要
Chemotherapy is widely applied to treat cancer patients but its application is limited due to the systemic toxicity and low efficacy. Nanocarrier system, which is capable of delivering their toxic cargos specifically into cancer cells and then greatly overcomes these disadvantages, has drawn a broad attention. Here we developed a drug-conjugated micelle for a better drug delivery in which folic acid was attached to the DOX-conjugated poly(ethylene glycol)-poly(ε-caprolactone) to target tumor; DOX was further connected with a hydrazone linker (FA-hyd) for a pH-triggered drug release. Comparing to other DOX-conjugated micelles either linked with carbamate (FA-cbm) or lacking FA(m-hyd), the developed FA-hyd demonstrated excellent biocompatibility; When analyzed with Alamar blue assays, flow cytometry and confocal laser scanning microscopy (CLSM), the pH-sensitive FA-functionalized DOX-conjugated micelles presented much better efficiency of cellular uptake and higher cytotoxicity to tumor cells. In vivo pharmacokinetics and biodistribution studies indicated that FA-hyd micelles significantly prolonged the blood circulation time of drug and enriched drug into the tumors rather than normal tissues. In vivo antitumor activity demonstrated that FA-hyd micelles had the highest safety to body and the best therapeutic efficacy to tumors. Therefore, this drug delivery system is deemed as a potential nanocarrier for cancer therapy.
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