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叶酸修饰的普鲁兰醋酸酯纳米粒的制备及其用于肿瘤靶向给药。

Preparation of folate-modified pullulan acetate nanoparticles for tumor-targeted drug delivery.

机构信息

Institute of Biomedical Engineering, Chinese Academy of Medical Science, Peking Union Medical College, The Key Laboratory of Biomedical Material of Tianjin, PO Box 25-204, Tianjin 300192, PR China.

出版信息

Drug Deliv. 2010 Jan;17(1):48-57. doi: 10.3109/10717540903508979.

Abstract

The purpose of this work was to develop a novel nano-carrier with targeting property to tumor. In this study, pullulan acetate (PA) was synthesized by the acetylation of pullulan to simplify the preparation technique of nanoparticles. Folic acid (FA) was conjugated to PA in order to improve the cancer-targeting activity. The products were characterized by proton nuclear magnetic resonance (¹H NMR) spectroscopy. Epirubicin-loaded nanoparticles were prepared by a solvent diffusion method. The loading efficiencies and EPI content increased with the amount of triethylamine (TEA) increasing in some degree. FPA nanoparticles could incorporate more epirubicin than PA nanoparticles. The folate-modified PA nanoparticles (FPA/EPI NPs) exhibited faster drug release than PA nanoparticles (PA/EPI NPs) in vitro. Confocal image analysis and flow cytometry test revealed that FPA/EPI NPs exhibited a greater extent of cellular uptake than PA/EPI NPs against KB cells over-expressing folate receptors on the surface. FPA/EPI NPs also showed higher cytotoxicity than PA/EPI NPs. The cytotoxic effect of FPA/EPI NPs to KB cells was inhibited by an excess amount of folic acid, suggesting that the binding and/or uptake were mediated by the folate receptor.

摘要

本工作旨在开发具有靶向肿瘤特性的新型纳米载体。在本研究中,通过对普鲁兰多糖进行乙酰化来合成醋酸普鲁兰多糖,以简化纳米粒的制备技术。将叶酸(FA)接枝到 PA 上以提高癌症靶向活性。通过质子核磁共振(¹H NMR)光谱对产物进行了表征。采用溶剂扩散法制备了载表柔比星的纳米粒。载药量和 EPI 含量在一定程度上随三乙胺(TEA)用量的增加而增加。FPA 纳米粒比 PA 纳米粒能包载更多的表柔比星。与 PA 纳米粒(PA/EPI NPs)相比,叶酸修饰的 PA 纳米粒(FPA/EPI NPs)在体外具有更快的药物释放速度。共聚焦图像分析和流式细胞术检测结果表明,FPA/EPI NPs 对表面过表达叶酸受体的 KB 细胞的细胞摄取程度大于 PA/EPI NPs。FPA/EPI NPs 的细胞毒性也高于 PA/EPI NPs。FPA/EPI NPs 对 KB 细胞的细胞毒性作用被过量的叶酸所抑制,表明结合和/或摄取是由叶酸受体介导的。

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