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聚乙二醇化壳聚糖纳米粒的合成及评价及其作为难溶性药物(布洛芬)载体的研究。

Synthesis and evaluation of PEG-O-chitosan nanoparticles for delivery of poor water soluble drugs: ibuprofen.

机构信息

Department of Chemistry, Amirkabir University of Technology, P.O. Box 1587-4413, Tehran, Iran.

Department of Chemistry, Amirkabir University of Technology, P.O. Box 1587-4413, Tehran, Iran.

出版信息

Mater Sci Eng C Mater Biol Appl. 2014 Aug 1;41:91-9. doi: 10.1016/j.msec.2014.04.035. Epub 2014 Apr 26.

Abstract

Current methods for preparation of PEGylated chitosan have limitations such as harsh de protecting step and several purification cycles. In the present study, a facile new method for conjugating methoxy polyethylene glycol (mPEG) to chitosan under mild condition is introduced to improve water solubility of chitosan and control the release of poor water soluble drugs. The method consists of chitosan modification by grafting the C6 position of chitosan to mPEG which is confirmed by Fourier transformed-infrared (FT-IR) and proton nuclear magnetic resonance ((1)HNMR) analyses. The amine groups at the C2 position of chitosan are protected using sodium dodecylsulfate (SDS) which is removed by dialyzing the precipitation against Tris solution. The chemical structure of the prepared polymer is characterized by FTIR and (1)HNMR. The synthesized polymer is then employed to prepare nanoparticles which are characterized by transmission electron microscopy (TEM), atomic force microscopy (AFM), scanning electron microscopy (SEM), and dynamic light scattering (DLS) for their size and morphology. The nanoparticles are used for encapsulation of ibuprofen followed by in vitro release investigation in gastrointestinal and simulated biological fluids. The chitosan nanoparticles are used as control. The PEGylated nanoparticles show a particle size of 80 nm with spherical morphology. The results clearly show that drug release from PEGylated chitosan nanoparticles is remarkably slower than chitosan. In addition, drug encapsulation and encapsulation efficiency in PEGylated nanoparticles are dependent on the amount of drug added to the formulation being significantly higher than chitosan nanoparticles. This study provides an efficient, novel, and facile method for preparing a nano carrier system for delivery of water insoluble drugs.

摘要

目前制备聚乙二醇化壳聚糖的方法存在局限性,如脱保护步骤苛刻和需要多个纯化循环。本研究介绍了一种在温和条件下将甲氧基聚乙二醇(mPEG)接枝到壳聚糖上的简便新方法,以提高壳聚糖的水溶性并控制难溶性药物的释放。该方法通过将壳聚糖的 C6 位接枝到 mPEG 上来修饰壳聚糖,这通过傅里叶变换红外(FT-IR)和质子核磁共振(1HNMR)分析得到证实。壳聚糖上 C2 位的氨基用十二烷基硫酸钠(SDS)保护,然后通过透析沉淀对抗 Tris 溶液去除。通过 FTIR 和 1HNMR 对制备的聚合物的化学结构进行了表征。然后,将合成的聚合物用于制备纳米粒子,通过透射电子显微镜(TEM)、原子力显微镜(AFM)、扫描电子显微镜(SEM)和动态光散射(DLS)对其大小和形态进行了表征。纳米粒子用于封装布洛芬,然后在胃肠道和模拟生物流体中进行体外释放研究。壳聚糖纳米粒子用作对照。聚乙二醇化纳米粒子的粒径为 80nm,呈球形形态。结果清楚地表明,聚乙二醇化壳聚糖纳米粒子的药物释放速度明显慢于壳聚糖。此外,聚乙二醇化纳米粒子中的药物包封和包封效率取决于加入制剂中的药物量,明显高于壳聚糖纳米粒子。本研究为制备用于输送难溶性药物的纳米载体系统提供了一种高效、新颖、简便的方法。

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