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用于测试透皮给药的芯片上皮肤技术——起点与最新进展

Skin-on-a-Chip Technology for Testing Transdermal Drug Delivery-Starting Points and Recent Developments.

作者信息

Varga-Medveczky Zsófia, Kocsis Dorottya, Naszlady Márton Bese, Fónagy Katalin, Erdő Franciska

机构信息

Faculty of Information Technology and Bionics, Pázmány Péter Catholic University, Práter u. 50a, H-1083 Budapest, Hungary.

出版信息

Pharmaceutics. 2021 Nov 3;13(11):1852. doi: 10.3390/pharmaceutics13111852.

Abstract

During the last decades, several technologies were developed for testing drug delivery through the dermal barrier. Investigation of drug penetration across the skin can be important in topical pharmaceutical formulations and also in cosmeto-science. The state-of- the-art in the field of skin diffusion measurements, different devices, and diffusion platforms used, are summarized in the introductory part of this review. Then the methodologies applied at Pázmány Péter Catholic University are shown in detail. The main testing platforms (Franz diffusion cells, skin-on-a-chip devices) and the major scientific projects (P-glycoprotein interaction in the skin; new skin equivalents for diffusion purposes) are also presented in one section. The main achievements of our research are briefly summarized: (1) new skin-on-a-chip microfluidic devices were validated as tools for drug penetration studies for the skin; (2) P-glycoprotein transport has an absorptive orientation in the skin; (3) skin samples cannot be used for transporter interaction studies after freezing and thawing; (4) penetration of hydrophilic model drugs is lower in aged than in young skin; (5) mechanical sensitization is needed for excised rodent and pig skins for drug absorption measurements. Our validated skin-on-a-chip platform is available for other research groups to use for testing and for utilizing it for different purposes.

摘要

在过去几十年里,人们开发了多种技术来测试药物透过皮肤屏障的情况。研究药物经皮渗透在局部药物制剂以及美容科学领域都可能具有重要意义。本综述的引言部分总结了皮肤扩散测量领域的最新技术水平、所使用的不同设备以及扩散平台。然后详细介绍了帕兹马尼·彼得天主教大学所应用的方法。其中一个部分还介绍了主要的测试平台(弗兰兹扩散池、芯片皮肤装置)以及主要的科研项目(皮肤中P-糖蛋白的相互作用;用于扩散目的的新型皮肤等效物)。我们研究的主要成果简要概括如下:(1)新型芯片皮肤微流控装置被验证为用于皮肤药物渗透研究的工具;(2)P-糖蛋白转运在皮肤中具有吸收性取向;(3)皮肤样本在冻融后不能用于转运体相互作用研究;(4)亲水性模型药物在老年皮肤中的渗透率低于年轻皮肤;(5)对于切除的啮齿动物和猪皮肤进行药物吸收测量时需要进行机械致敏。我们经过验证的芯片皮肤平台可供其他研究团队用于测试并用于不同目的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/449c/8619496/88acc9565152/pharmaceutics-13-01852-g001.jpg

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