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用于延长马来酸噻吗洛尔递送时间的壳聚糖纳米颗粒。

Chitosan nanoparticles for prolonged delivery of timolol maleate.

作者信息

Agnihotri Sunil A, Aminabhavi Tejraj M

机构信息

Drug Delivery Division, Center of Excellence in Polymer Science, Karnatak University, Dharwad, India.

出版信息

Drug Dev Ind Pharm. 2007 Nov;33(11):1254-62. doi: 10.1080/03639040701384942.

Abstract

Timolol maleate-loaded chitosan (CS) nanoparticles were prepared by desolvation method. Experimental variables such as molecular weight of CS and amount of crosslinking agent were varied to study their effect on drug entrapment efficiency, size and release rates of nanoparticles. Chemical stability of timolol maleate (TM) and crosslinking of CS were confirmed by Fourier transform infrared spectroscopy. Differential scanning calorimetric studies were performed on drug-loaded nanoparticles to investigate crystalline nature of the drug after entrapment. Results indicated amorphous dispersion of drug in the polymer matrix. Scanning electron microscopy revealed irregularly shaped particles. Mean particle size of nanoparticles ranged between 118 and 203 nm, while zeta potential ranged between +17 and +22 mV. Entrapment efficiency of nanoparticles ranged between 47.6 and 63.0%. In-vitro release studies were performed in phosphate buffer saline of pH 7.4. A slow release of TM up to 24 h was observed. A 3(2) full factorial design was employed and second-order regression models were used to study the response (% drug release at 4 h). Release data as analyzed by an empirical relationship suggested that drug release deviated from the Fickian trend.

摘要

采用去溶剂化法制备了载有马来酸噻吗洛尔的壳聚糖(CS)纳米粒。改变壳聚糖分子量和交联剂用量等实验变量,以研究它们对纳米粒药物包封率、粒径和释放速率的影响。通过傅里叶变换红外光谱法确认了马来酸噻吗洛尔(TM)的化学稳定性和壳聚糖的交联情况。对载药纳米粒进行差示扫描量热研究,以考察药物包封后其结晶性质。结果表明药物在聚合物基质中呈无定形分散。扫描电子显微镜显示颗粒形状不规则。纳米粒的平均粒径在118至203nm之间,而ζ电位在+17至+22mV之间。纳米粒的包封率在47.6%至63.0%之间。在pH 7.4的磷酸盐缓冲盐水中进行体外释放研究。观察到TM在长达24小时内缓慢释放。采用3(2)全因子设计,并使用二阶回归模型研究响应(4小时时的药物释放百分比)。通过经验关系分析的释放数据表明药物释放偏离了菲克扩散趋势。

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