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The Experimental Evaluation and Molecular Dynamics Simulation of a Heat-Enhanced Transdermal Delivery System

机译:热增强透皮给药系统的实验评价和分子动力学模拟

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摘要

Transdermal delivery systems are useful in cases where preferred routes such as the oral route are not available. However, low overall extent of delivery is seen due to the permeation barrier posed by the skin. Chemical penetration enhancers and invasive methods that disturb the structural barrier function of the skin can be used to improve transdermal drug delivery. However, for suitable drugs, a fast-releasing transdermal delivery system can be produced by incorporating a heating source into a transdermal patch. In this study, a molecular dynamics simulation showed that heat increased the diffusivity of the drug molecules, resulting in faster release from gels containing ketoprofen, diclofenac sodium, and lidocaine HCl. Simulations were confirmed by in vitro drug release studies through lipophilic membranes. These correlations could expand the application of heated transdermal delivery systems for use as fast-release-dosage forms.Electronic supplementary materialThe online version of this article (doi:10.1208/s12249-012-9900-6) contains supplementary material, which is available to authorized users.
机译:透皮递送系统在没有优选途径如口服途径的情况下是有用的。然而,由于皮肤造成的渗透屏障,所以总体递送程度较低。破坏皮肤的结构屏障功能的化学渗透促进剂和侵入性方法可用于改善透皮药物递送。然而,对于合适的药物,可以通过将加热源结合到透皮贴剂中来产生快速释放的透皮递送系统。在这项研究中,分子动力学模拟表明热量增加了药物分子的扩散性,从而导致从含有酮洛芬,双氯芬酸钠和盐酸利多卡因的凝胶中更快地释放出来。通过亲脂膜的体外药物释放研究证实了模拟。这些相关性可以扩展加热的透皮给药系统以快速释放剂型的应用。电子补充材料本文的在线版本(doi:10.1208 / s12249-012-9900-6)包含补充材料,可用于授权用户。

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