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利用红外微光谱法研究了一些洛沙坦盐与人角质层蛋白的相互作用及其对洛沙坦经皮渗透的影响。

IR microspectroscopic investigation of the interaction of some losartan salts with human stratum corneum protein and its effect on losartan transdermal permeation.

机构信息

Faculty of pharmacy, Philadelphia University, Amman, Jordan.

School of pharmacy, University of Jordan, Amman, Jordan.

出版信息

PLoS One. 2023 Jun 15;18(6):e0287267. doi: 10.1371/journal.pone.0287267. eCollection 2023.

Abstract

The interaction of pharmacologically active drugs with SC biochemical components is underestimated in pharmaceutical research. The aim of this research was to illustrate that some drugs intended for transdermal delivery could interact with the protein component of SC. Such interactions could be in favor of or opposition to their percutaneous absorption. IR microspectroscopy was used to delineate possible interaction of SC keratin with three losartan salts LOS-K, LOS-DEA and LOS-AML salts in addition to AML-BES salt. The results of PCA, combined with comparisons of average second derivative spectra of SC samples treated with these salts and the control SC, showed that LOS-DEA did not interact with SC, thus providing base line permeation of losartan. AML-BES, LOS-AML and LOS-K salts modified the conformational structure of keratin. The disorganization effect on the α-helical structure and induced formation of parallel β-sheets and random coils were in the order of AML-BES˃LOS-AML˃LOS-K. The order of the impact of treatments which resulted in increased formation of β-turns was AML-BES˃LOS-AML. The formation of antiparallel β-sheets was manifested by LOS-AML. Thus, the overall effect of these salts on the SC protein was AML-BES˃LOS-AML˃LOS-K. The impact of LOS-K was associated with improved permeation whereas the impact of LOS-AML was associated with hindered permeation of both losartan and amlodipine. There is a possibility that losartan and amlodipine when present in combination inside SC, their binding to the protein is enhanced leading to being retained within SC.

摘要

在药物研究中,人们低估了具有药理活性的药物与皮肤生化成分的相互作用。本研究旨在阐明一些用于经皮给药的药物可能与皮肤角质层的蛋白质成分相互作用。这种相互作用可能有利于或不利于它们的经皮吸收。红外微光谱用于描绘皮肤角质层与三种氯沙坦盐(LOS-K、LOS-DEA 和 LOS-AML 盐)以及 AML-BES 盐相互作用的可能性。PCA 的结果,再加上对用这些盐和对照皮肤角质层处理的 SC 样本的平均二阶导数光谱的比较,表明 LOS-DEA 与 SC 不相互作用,从而提供了氯沙坦的基础渗透。AML-BES、LOS-AML 和 LOS-K 盐改变了角蛋白的构象结构。对α-螺旋结构的去组织化效应以及诱导形成平行β-折叠和无规卷曲的顺序为 AML-BES˃LOS-AML˃LOS-K。导致β-转角形成增加的处理的影响顺序为 AML-BES˃LOS-AML。反平行β-折叠的形成由 LOS-AML 表现出来。因此,这些盐对皮肤角质层蛋白的整体影响为 AML-BES˃LOS-AML˃LOS-K。LOS-K 的影响与渗透改善有关,而 LOS-AML 的影响与氯沙坦和氨氯地平的渗透受阻有关。有可能当氯沙坦和氨氯地平同时存在于皮肤角质层内时,它们与蛋白质的结合增强,从而被保留在皮肤角质层内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ae1/10270334/d6b5bed90d7b/pone.0287267.g001.jpg

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