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Effect of Chemical Permeation Enhancers on Skin Permeability: In silico screening using Molecular Dynamics simulations

机译:化学渗透促进剂对皮肤渗透性的影响:使用分子动力学模拟进行计算机筛选

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摘要

Breaching of the skin barrier is essential for delivering active pharmaceutical ingredients (APIs) for pharmaceutical, dermatological and aesthetic applications. Chemical permeation enhancers (CPEs) are molecules that interact with the constituents of skin’s outermost and rate limiting layer stratum corneum (SC), and increase its permeability. Designing and testing of new CPEs is a resource intensive task, thus limiting the rate of discovery of new CPEs. In-silico screening of CPEs in a rigorous skin model could speed up the design of CPEs. In this study, we performed coarse grained (CG) molecule dynamics (MD) simulations of a multilayer skin lipid matrix in the presence of CPEs. The CPEs are chosen from different chemical functionalities including fatty acids, esters, and alcohols. A multi-layer in-silico skin model was developed. The CG parameters of permeation enhancers were also developed. Interactions of CPEs with SC lipids was studied in silico at three different CPE concentrations namely, 1% w/v, 3% w/v and 5% w/v. The partitioning and diffusion coefficients of CPEs in the SC lipids were found to be highly size- and structure-dependent and these dependencies are explained in terms of structural properties such as radial distribution function, area per lipid and order parameter. Finally, experimentally reported effects of CPEs on skin from the literature are compared with the simulation results. The trends obtained using simulations are in good agreement with the experimental measurements. The studies presented here validate the utility of in-silico models for designing, screening and testing of novel and effective CPEs.
机译:突破皮肤屏障对于为药物,皮肤病学和美学应用提供活性药物成分(API)至关重要。化学渗透促进剂(CPE)是与皮肤最外层和限速层角质层(SC)的成分相互作用并增加其渗透性的分子。新CPE的设计和测试是一项资源密集型任务,因此限制了新CPE的发现速度。在严格的皮肤模型中对CPE进行电子筛选可以加快CPE的设计。在这项研究中,我们对存在CPE的多层皮肤脂质基质进行了粗糙(CG)分子动力学(MD)模拟。 CPE选自不同的化学官能团,包括脂肪酸,酯和醇。开发了多层硅胶皮肤模型。还开发了渗透促进剂的CG参数。在计算机上研究了三种不同CPE浓度(1%w / v,3%w / v和5%w / v)下CPE与SC脂质的相互作用。发现CPE在SC脂质中的分配和扩散系数高度依赖于大小和结构,这些依赖性可通过结构特性(例如径向分布函数,每个脂质的面积和有序参数)进行解释。最后,将文献中实验报道的CPE对皮肤的影响与模拟结果进行了比较。使用模拟获得的趋势与实验测量结果非常吻合。本文介绍的研究证实了计算机模拟模型在设计,筛选和测试新型有效CPE方面的实用性。

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