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新型苯扎氯铵阴道给药的固体黏附系统。

New solid mucoadhesive systems for benzydamine vaginal administration.

机构信息

Dipartimento di Chimica e Tecnologia del Farmaco, Università degli Studi di Perugia, Via del Liceo 1, Perugia 06123, Italy.

出版信息

Colloids Surf B Biointerfaces. 2011 Jun 1;84(2):413-20. doi: 10.1016/j.colsurfb.2011.01.035. Epub 2011 Feb 1.

Abstract

The aim of this work was the realization of new formulations for vaginal application to improve the pharmacological effect of benzydamine, displaying both anti-inflammatory and antiseptic activities. For this reasons, this drug was formulated in solid dispersions, by using the mucoadhesive polymers HPMC and/or Carbopol(®), then compressed. Tablets were characterized by studies of friability, hardness, hydration, DSC, mucoadhesion and in vitro release. Kinetics, responsible for drug delivery, was investigated as well. Tablets prepared by using only HPMC showed the best results in terms of swelling and mucoadhesion (time and force) together with prolonged and complete drug release, by diffusive mechanism, through gelled layer. Despite the good mucoadhesive properties, Carbopol(®) does not represent a good excipient because, after the contact with water, it generates a spongy gel layer, not homogeneous, stiff, brittle and with breaking tendency when highly swelled. This kind of gel does not guarantee a linear drug release and could provoke discomfort because of fragment release. HPMC mucoadhesive tablets could be a proper delivery system for benzydamine administration representing a good alternative to traditional dosage forms for vaginal topical therapy.

摘要

本工作旨在通过使用粘膜粘附聚合物 HPMC 和/或 Carbopol(®)来制备阴道应用的新制剂,以改善苯扎氯铵的药理作用,该药物具有抗炎和防腐活性。为此,将该药物制成固体分散体,然后进行压缩。通过易碎性、硬度、水合作用、DSC、粘膜粘附性和体外释放研究对片剂进行了表征。还研究了药物传递动力学。仅使用 HPMC 制备的片剂在膨胀和粘膜粘附性(时间和力)方面表现出最佳效果,同时通过凝胶层以扩散机制实现了延长和完全的药物释放。尽管 Carbopol(®)具有良好的粘膜粘附性,但它不是一种良好的赋形剂,因为与水接触后,它会生成不均匀、坚硬、易碎且有破裂趋势的海绵状凝胶层。这种凝胶不能保证药物的线性释放,并且由于碎片释放可能会引起不适。HPMC 粘膜粘附性片剂可作为苯扎氯铵给药的合适传递系统,是阴道局部治疗传统剂型的良好替代品。

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