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评估防晒霜中活性成分的体外代谢和转运相关的药物相互作用。

Evaluation of In Vitro Metabolism- and Transporter-Based Drug Interactions with Sunscreen Active Ingredients.

机构信息

Division of Applied Regulatory Science, Center for Drug Evaluation and Research, Food and Drug Administration, 10903 New Hampshire Ave., Silver Spring, MD, 20993-0002, USA.

Bristol Myers Squibb, Princeton, NJ, USA.

出版信息

Pharm Res. 2024 Aug;41(8):1613-1620. doi: 10.1007/s11095-024-03746-7. Epub 2024 Jul 24.

Abstract

PURPOSE

The aim of this study was to examine the ability of sunscreen active ingredients to inhibit in vitro drug metabolism via cytochrome P450 (CYP) enzymes and drug uptake transporters.

METHODS

Metabolism assays with human liver microsomes were conducted for CYP2C9, CYP2D6 and CYP3A4 using probe substrates warfarin, bufuralol and midazolam, respectively. Uptake transporter assays with transfected cell lines were conducted for OAT3, OCT2 and OATP1B1 with probe substrates estrone-3-sulfate, metformin and rosuvastatin, respectively. Six sunscreen active ingredients, avobenzone, enzacamene, oxybenzone, octinoxate, trolamine, and homosalate, were evaluated up to their aqueous solubility limits in the assays.

RESULTS

None of the sunscreen active ingredients inhibited CYP2D6 or CYP3A4 activities in the microsomes at concentration ranges up to tenfold higher than their known clinical total plasma levels. Only enzacamene, oxybenzone and trolamine were found to be inhibitory to CYP2C9 activity with IC values of 14.76, 22.46 and 154.7 µM, respectively. Avobenzone, enzacamene, homosalate and octinoxate were not inhibitory to the uptake transporters at the evaluated concentrations. Oxybenzone was inhibitory to OAT3 and OCT2 with IC values of 39.93 and 42.77 µM, respectively. Trolamine also inhibited uptake in OAT3 and OCT2 transfected cells with IC values of 448.1 and 1376 μM, respectively.

CONCLUSIONS

Although enzacamene, oxybenzone and trolamine inhibited CYP2C9 and the renal transporters OAT3 and OCT2 in vitro, their IC values exceeded total plasma levels found in clinical studies. Therefore, it is unlikely that these sunscreen active ingredients in sunscreen products will inhibit the metabolism or transport of co-administered drugs in consumers.

摘要

目的

本研究旨在考察防晒霜中活性成分通过细胞色素 P450(CYP)酶和药物摄取转运体抑制体外药物代谢的能力。

方法

使用人肝微粒体进行 CYP2C9、CYP2D6 和 CYP3A4 的代谢测定,分别使用华法林、布夫洛尔和咪达唑仑作为探针底物。使用转染细胞系进行 OAT3、OCT2 和 OATP1B1 的摄取转运测定,分别使用雌酮-3-硫酸盐、二甲双胍和瑞舒伐他汀作为探针底物。在测定中,评估了六种防晒霜活性成分(阿伏苯宗、恩杂烷、氧苯酮、奥克立林、三乙醇胺和胡莫柳酯),直至其水溶解度极限。

结果

在浓度高达其已知临床总血浆水平十倍的范围内,没有一种防晒霜活性成分抑制微粒体中的 CYP2D6 或 CYP3A4 活性。仅恩杂烷、氧苯酮和三乙醇胺被发现对 CYP2C9 活性具有抑制作用,IC 值分别为 14.76、22.46 和 154.7 μM。在评估浓度下,阿伏苯宗、恩杂烷、胡莫柳酯和奥克立林对摄取转运体没有抑制作用。氧苯酮对 OAT3 和 OCT2 的抑制作用,IC 值分别为 39.93 和 42.77 μM。三乙醇胺也抑制了 OAT3 和 OCT2 转染细胞的摄取,IC 值分别为 448.1 和 1376 μM。

结论

尽管恩杂烷、氧苯酮和三乙醇胺在体外抑制了 CYP2C9 和肾脏转运体 OAT3 和 OCT2,但它们的 IC 值超过了临床研究中发现的总血浆水平。因此,防晒产品中的这些防晒霜活性成分不太可能抑制消费者同时使用的药物的代谢或转运。

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