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Chitosan in Mucoadhesive Drug Delivery: Focus on Local Vaginal Therapy

机译:粘膜黏附药物递送中的壳聚糖:专注于局部阴道疗法

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摘要

Mucoadhesive drug therapy destined for localized drug treatment is gaining increasing importance in today’s drug development. Chitosan, due to its known biodegradability, bioadhesiveness and excellent safety profile offers means to improve mucosal drug therapy. We have used chitosan as mucoadhesive polymer to develop liposomes able to ensure prolonged residence time at vaginal site. Two types of mucoadhesive liposomes, namely the chitosan-coated liposomes and chitosan-containing liposomes, where chitosan is both embedded and surface-available, were made of soy phosphatidylcholine with entrapped fluorescence markers of two molecular weights, FITC-dextran 4000 and 20,000, respectively. Both liposomal types were characterized for their size distribution, zeta potential, entrapment efficiency and the in vitro release profile, and compared to plain liposomes. The proof of chitosan being both surface-available as well as embedded into the liposomes in the chitosan-containing liposomes was found. The capability of the surface-available chitosan to interact with the model porcine mucin was confirmed for both chitosan-containing and chitosan-coated liposomes implying potential mucoadhesive behavior. Chitosan-containing liposomes were shown to be superior in respect to the simplicity of preparation, FITC-dextran load, mucoadhesiveness and in vitro release and are expected to ensure prolonged residence time on the vaginal mucosa providing localized sustained release of entrapped model substances.
机译:注定用于局部药物治疗的粘膜粘附药物治疗在当今的药物开发中正变得越来越重要。壳聚糖由于其已知的生物降解性,生物粘附性和出色的安全性而提供了改善粘膜药物治疗的手段。我们已经使用壳聚糖作为粘膜粘附聚合物来开发脂质体,以确保延长在阴道部位的停留时间。两种类型的粘膜粘附脂质体,即壳聚糖包被的脂质体和含壳聚糖的脂质体(壳聚糖既是包埋的又是表面可用的),是由大豆磷脂酰胆碱制成的,其具有截留的两种分子量的荧光标记,分别为FITC-葡聚糖4000和20,000。 。对两种脂质体类型的大小分布,ζ电势,包封效率和体外释放曲线进行了表征,并与普通脂质体进行了比较。发现了壳聚糖在表面上可利用并且嵌入在含壳聚糖的脂质体中的脂质体中的证据。对于含壳聚糖和壳聚糖包被的脂质体均证实了表面可利用的壳聚糖与模型猪粘蛋白相互作用的能力,这暗示了潜在的粘膜粘附行为。含壳聚糖的脂质体在制备的简便性,FITC-葡聚糖负载量,粘膜粘附性和体外释放方面显示出优越的性能,并有望确保在阴道粘膜上的停留时间延长,从而提供被困模型物质的局部持续释放。

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