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优化硅橡胶基质中药物释放的实验设计及经皮给药研究。

Experimental design for optimizing drug release from silicone elastomer matrix and investigation of transdermal drug delivery.

机构信息

Faculty of Pharmaceutical Science, University of Iceland, Hofsvallagata 53, IS-107 Reykjavik, Iceland.

出版信息

Eur J Pharm Sci. 2011 Apr 18;42(5):559-67. doi: 10.1016/j.ejps.2011.02.011. Epub 2011 Mar 1.

DOI:10.1016/j.ejps.2011.02.011
PMID:21371556
Abstract

Silicone elastomers are commonly used for medical devices and external prosthesis. Recently, there has been growing interest in silicone-based medical devices with enhanced function that release drugs from the elastomer matrix. In the current study, an experimental design approach was used to optimize the release properties of the model drug diclofenac from medical silicone elastomer matrix, including a combination of four permeation enhancers as additives and allowing for constraints in the properties of the material. The D-optimal design included six factors and five responses describing material properties and release of the drug. The first experimental object was screening, to investigate the main and interaction effects, based on 29 experiments. All excipients had a significant effect and were therefore included in the optimization, which also allowed the possible contribution of quadratic terms to the model and was based on 38 experiments. Screening and optimization of release and material properties resulted in the production of two optimized silicone membranes, which were tested for transdermal delivery. The results confirmed the validity of the model for the optimized membranes that were used for further testing for transdermal drug delivery through heat-separated human skin. The optimization resulted in an excipient/drug/silicone composition that resulted in a cured elastomer with good tensile strength and a 4- to 7-fold transdermal delivery increase relative to elastomer that did not contain excipients.

摘要

硅橡胶弹性体通常用于医疗器械和外部假体。最近,人们对具有增强功能的基于硅橡胶的医疗器械越来越感兴趣,这些医疗器械可以从弹性体基质中释放药物。在本研究中,采用实验设计方法优化了模型药物双氯芬酸从医用硅橡胶弹性体基质中的释放性能,包括将四种渗透增强剂作为添加剂组合使用,并对材料性能进行了限制。D-最优设计包括六个因素和五个描述材料性能和药物释放的响应。第一个实验对象是筛选,根据 29 次实验,研究主要和交互作用。所有辅料均有显著影响,因此均包含在优化中,这也允许模型中可能包含二次项,并基于 38 次实验进行优化。释放和材料性能的筛选和优化导致生产了两种优化的硅橡胶膜,对其进行了经皮给药的测试。结果证实了模型对优化膜的有效性,这些膜用于进一步通过热分离人体皮肤进行经皮药物传递的测试。优化得到了一种赋形剂/药物/硅橡胶的组成,与不含赋形剂的弹性体相比,它形成了一种具有良好拉伸强度的固化弹性体,经皮输送增加了 4 至 7 倍。

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