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使用动态接触角研究非水乙基纤维素凝胶基质的润湿行为。

Investigation of wetting behavior of nonaqueous ethylcellulose gel matrices using dynamic contact angle.

作者信息

Chan L W, Chow K T, Heng P W S

机构信息

Department of Pharmacy, Faculty of Science, National University of Singapore, 18 Science Drive 4, Singapor, 117543, Singapore.

出版信息

Pharm Res. 2006 Feb;23(2):408-21. doi: 10.1007/s11095-005-9259-4. Epub 2006 Jan 12.

Abstract

PURPOSE

This study reports the development of a method based on dynamic contact angle to investigate the wetting behavior of non-aqueous ethylcellulose (EC) gel matrices intended for topical drug delivery.

METHODS

Non-aqueous gel matrices were prepared from the three fine particle grades of EC and propylene glycol dicaprylate/dicaprate. Dynamic contact angle measurements of sessile drops of water and isopropylmyristate (IPM) on EC gel matrices were performed using a dynamic contact angle analyzer equipped with axisymmetric drop shape analysis of the sessile drop images. Gel density was determined by weighing known volumes of gel samples.

RESULTS

The EC gel matrices were wetted by both water and IPM, with much higher wettability by the latter. Increased EC concentration and polymeric chain length decreased the extent and rate of wetting. Linear correlation was observed between wetting parameters and rheological as well as mechanical properties of EC gel matrices.

CONCLUSIONS

The EC gel matrices exhibited both hydrophilic and lipophilic properties, with predominance of the latter. The extent and rate of wetting was governed by a balance of chemical and physical characteristics of the gel. EC gel matrices showed desirable wetting behavior in their function as a moisture-barrier, bioadhesive and vehicle for topical drug delivery.

摘要

目的

本研究报告了一种基于动态接触角的方法的开发,用于研究用于局部给药的非水乙基纤维素(EC)凝胶基质的润湿行为。

方法

由三种细颗粒级别的EC和丙二醇二辛酸酯/二癸酸酯制备非水凝胶基质。使用配备有轴对称液滴形状分析的动态接触角分析仪,对EC凝胶基质上的水滴和肉豆蔻酸异丙酯(IPM)的动态接触角进行测量。通过称量已知体积的凝胶样品来测定凝胶密度。

结果

水和IPM均可使EC凝胶基质润湿,后者的润湿性更高。EC浓度和聚合物链长度的增加会降低润湿程度和速率。在EC凝胶基质的润湿参数与流变学以及力学性能之间观察到线性相关性。

结论

EC凝胶基质兼具亲水性和疏水性,以后者为主。润湿程度和速率受凝胶化学和物理特性平衡的控制。EC凝胶基质在作为局部给药的防潮剂、生物黏附剂和载体的功能中表现出理想的润湿行为。

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