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苯扎氯铵阴道用黏附制剂的制剂研究。

Formulation studies of benzydamine mucoadhesive formulations for vaginal administration.

机构信息

Dipartimento di Chimica e Tecnologia del Farmaco, Università degli Studi di Perugia, Perugia, Italy.

出版信息

Drug Dev Ind Pharm. 2009 Jul;35(7):769-79. doi: 10.1080/03639040802592435.

Abstract

BACKGROUND

Vaginal cavity represents a good site for drug administration and delivery.

AIM

The aim of this work was the design of new mucoadhesive semisolid dosage forms for vaginal delivery of benzydamine.

METHOD

Simple gels, obtained by using sodium carboxymethylcellulose (NaCMC) and hydroxyethylcellulose (HEC), were employed as water phase of an oil-in-water emulsion (O/W cream) to obtain emulgels, more stable and manageable than gels. Successively, in order to modify the emulgel consistency, the ingredient cetostearylic alcohol was replaced by the same amount of gel or vaseline. All the preparations were submitted to mucoadhesion and rheological, extrusion, and release studies and compared to market vaginal cream Tantum Rosa.

RESULTS

HEC formulations showed good drug release profiles and good rheological behavior but low mucoadhesion strength, whereas NaCMC (4% gel) formulations had better drug release and very high mucoadhesive strength. However, the presence of NaCMC 4% conferred too much viscosity to the preparation. Taking into consideration all performances, the most suitable formulations for vaginal applications resulted in those containing NaCMC (3% gel) and with gel replacing cetostearylic alcohol as they showed good ex vivo performances in terms of manageability and high bioadhesion to vaginal mucosa.

摘要

背景

阴道腔是药物给药和递送的良好部位。

目的

本工作旨在设计新的用于阴道给予苯扎氯铵的粘膜粘附半固体制剂。

方法

简单凝胶,由羧甲基纤维素钠(NaCMC)和羟乙基纤维素(HEC)制成,用作水包油乳液(O/W 乳膏)的水相,以获得比凝胶更稳定和更易于处理的乳凝胶。随后,为了改变乳凝胶的稠度,用等量的凝胶或凡士林代替鲸蜡醇。所有制剂均进行粘膜粘附性和流变学、挤出和释放研究,并与市售阴道乳膏 Tantum Rosa 进行比较。

结果

HEC 制剂显示出良好的药物释放曲线和良好的流变学行为,但粘膜粘附强度低,而 NaCMC(4%凝胶)制剂具有更好的药物释放和非常高的粘膜粘附强度。然而,NaCMC 4%的存在使制剂的粘度过高。考虑到所有性能,对于阴道应用最适合的制剂是含有 NaCMC(3%凝胶)的制剂,并用凝胶代替鲸蜡醇,因为它们在管理性和对阴道粘膜的高生物粘附性方面表现出良好的离体性能。

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