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测定附着性对体外皮肤渗透影响的方法。

Method to determine the impact of substantivity on ex vivo skin-permeation.

机构信息

Department of Pharmaceutical Technology, Eberhard Karls University, Tuebingen, Germany.

Department of Pharmaceutical Technology, Eberhard Karls University, Tuebingen, Germany.

出版信息

Eur J Pharm Biopharm. 2018 Oct;131:1-7. doi: 10.1016/j.ejpb.2018.07.020. Epub 2018 Jul 24.

Abstract

Topical formulations are the most common therapeutic agents in the treatment of skin diseases. They contain one or more active pharmaceutical ingredients (API) which need to penetrate or permeate the skin in order to exert their effect. However, after application a part of the formulation is removed from the skin due to contact with the environment. Therefore, a part of the active is then not available for penetration and thus, a loss in therapeutic effect will result. To achieve the desired therapeutic outcome a sufficient fraction of the formulation must remain on the skin. The extent to which the loss of preparation affects penetration and permeation is less investigated. This work presents a method to examine the influence of mechanical stress and formulation loss on skin permeation. A movable punch with a defined weight simulated contact between clothing or skin and the applied formulation. Weight of the tool, number of contacts and speed settings were variable and were investigated. Ex vivo permeation experiments were performed in Franz diffusion cells using porcine skin. Three preparations with nonivamide as active ingredient were chosen as model formulations: A semisolid cream, an oil-in-oil emulsion and a film-forming formulation. The last two show sustained permeation profiles. The method uses skin-to-formulation and clothing-to-formulation contact to simulate the removal of the formulations from the skin.

摘要

局部制剂是治疗皮肤病最常用的治疗药物。它们含有一种或多种活性药物成分(API),需要穿透或渗透皮肤才能发挥作用。然而,在应用后,由于与环境接触,一部分制剂会从皮肤上去除。因此,一部分活性成分将无法穿透,从而导致治疗效果的损失。为了达到预期的治疗效果,制剂的必需有足够的一部分保留在皮肤上。制剂损失对穿透和渗透的影响研究得较少。本工作提出了一种方法来研究机械应力和制剂损失对皮肤渗透的影响。带有规定重量的可移动冲头模拟了衣服或皮肤与应用制剂之间的接触。工具的重量、接触次数和速度设置都是可变的,并进行了研究。在 Franz 扩散池中使用猪皮进行了离体渗透实验。选择了三种含有辣椒素作为活性成分的制剂作为模型制剂:半固体乳膏、油包水乳液和成膜制剂。后两种制剂表现出持续的渗透曲线。该方法使用皮肤与制剂和衣服与制剂的接触来模拟从皮肤上去除制剂。

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