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Synthesis and characterization of chitosan quaternary ammonium salt and its application as drug carrier for ribavirin

机译:壳聚糖季铵盐的合成,表征及其在利巴韦林药物载体中的应用

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N-(2-hydroxyl) propyl-3-trimethyl ammonium chitosan chloride (HTCC) is hydro-soluble chitosan (CS) derivative, which can be obtained by the reaction between epoxypropyl trimethyl ammonium chloride (ETA) and CS. The preparation parameters for the synthesis of HTCC were optimized by orthogonal experimental design. ETA was successfully grafted into the free amino group of CS. Grafting of ETA with CS had great effect on the crystal structure of HTCC, which was confirmed by the XRD results. HTCC displayed higher capability to form nanoparticles by crosslinking with negatively charged sodium tripolyphosphate (TPP). Ribavrin- (RIV-) loaded HTCC nanoparticles were positively charged and were spherical in shape with average particle size of 200?nm. More efficient drug encapsulation efficiency and loading capacity were obtained for HTCC in comparison with CS, however, HTCC nanoparticles displayed faster release rate due to its hydro-soluble properties. The results suggest that HTCC is a promising CS derivative for the encapsulation of hydrophilic drugs in obtaining sustained release of drugs.
机译:N-(2-羟基)丙基-3-三甲基壳聚糖氯化铵(HTCC)是水溶性壳聚糖(CS)衍生物,可以通过环氧丙基三甲基氯化铵(ETA)与CS之间的反应获得。通过正交实验设计优化了合成HTCC的制备参数。 ETA已成功嫁接到CS的游离氨基中。 XRD结果证实,CS接枝ETA对HTCC的晶体结构影响很大。 HTCC通过与带负电的三聚磷酸钠(TPP)交联显示出更高的形成纳米颗粒的能力。负载利巴夫林(RIV)的HTCC纳米粒子带正电,并且呈球形,平均粒径为200?nm。与CS相比,HTCC获得了更有效的药物包封效率和载药量,但是HTCC纳米颗粒由于具有水溶性,因此释放速度更快。结果表明,HTCC是一种有希望的CS衍生物,用于在获得药物的持续释放中封装亲水性药物。

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