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成人毛囊重建人表皮模型中异源生物代谢酶的表征

Characterization of xenobiotic metabolizing enzymes of a reconstructed human epidermal model from adult hair follicles.

作者信息

Bacqueville Daniel, Jacques Carine, Duprat Laure, Jamin Emilien L, Guiraud Beatrice, Perdu Elisabeth, Bessou-Touya Sandrine, Zalko Daniel, Duplan Hélène

机构信息

Pierre Fabre Dermo-cosmétique, Service Pharmacologie Division 2 et Pharmacocinétique Cutané, Département Pharmacologie, Centre R&D Pierre Fabre, 3 avenue Hubert Curien, Toulouse, France.

Pierre Fabre Dermo-cosmétique, Service Pharmacologie Division 2 et Pharmacocinétique Cutané, Département Pharmacologie, Centre R&D Pierre Fabre, 3 avenue Hubert Curien, Toulouse, France.

出版信息

Toxicol Appl Pharmacol. 2017 Aug 15;329:190-201. doi: 10.1016/j.taap.2017.05.040. Epub 2017 Jun 7.

Abstract

In this study, a comprehensive characterization of xenobiotic metabolizing enzymes (XMEs) based on gene expression and enzyme functionality was made in a reconstructed skin epidermal model derived from the outer root sheath (ORS) of hair follicles (ORS-RHE). The ORS-RHE model XME gene profile was consistent with native human skin. Cytochromes P450 (CYPs) consistently reported to be detected in native human skin were also present at the gene level in the ORS-RHE model. The highest Phase I XME gene expression levels were observed for alcohol/aldehyde dehydrogenases and (carboxyl) esterases. The model was responsive to the CYP inducers, 3-methylcholanthrene (3-MC) and β-naphthoflavone (βNF) after topical and systemic applications, evident at the gene and enzyme activity level. Phase II XME levels were generally higher than those of Phase I XMEs, the highest levels were GSTs and transferases, including NAT1. The presence of functional CYPs, UGTs and SULTs was confirmed by incubating the models with 7-ethoxycoumarin, testosterone, benzo(a)pyrene and 3-MC, all of which were rapidly metabolized within 24h after topical application. The extent of metabolism was dependent on saturable and non-saturable metabolism by the XMEs and on the residence time within the model. In conclusion, the ORS-RHE model expresses a number of Phase I and II XMEs, some of which may be induced by AhR ligands. Functional XME activities were also demonstrated using systemic or topical application routes, supporting their use in cutaneous metabolism studies. Such a reproducible model will be of interest when evaluating the cutaneous metabolism and potential toxicity of innovative dermo-cosmetic ingredients.

摘要

在本研究中,基于基因表达和酶功能对来源于毛囊外根鞘(ORS)的重建皮肤表皮模型(ORS-RHE)中的异源生物代谢酶(XMEs)进行了全面表征。ORS-RHE模型的XME基因谱与天然人类皮肤一致。在天然人类皮肤中一直报道可检测到的细胞色素P450(CYPs)在ORS-RHE模型的基因水平上也存在。观察到醇/醛脱氢酶和(羧基)酯酶的I相XME基因表达水平最高。该模型在局部和全身应用后对CYP诱导剂3-甲基胆蒽(3-MC)和β-萘黄酮(βNF)有反应,在基因和酶活性水平上都很明显。II相XME水平通常高于I相XMEs,最高水平是谷胱甘肽S-转移酶(GSTs)和转移酶,包括NAT1。通过用7-乙氧基香豆素、睾酮、苯并(a)芘和3-MC孵育模型,证实了功能性CYPs、尿苷二磷酸葡萄糖醛酸基转移酶(UGTs)和磺基转移酶(SULTs)的存在,所有这些在局部应用后24小时内都被快速代谢。代谢程度取决于XMEs的饱和性和非饱和性代谢以及在模型中的停留时间。总之,ORS-RHE模型表达了多种I相和II相XMEs,其中一些可能被芳烃受体(AhR)配体诱导。还通过全身或局部应用途径证明了功能性XME活性,支持它们在皮肤代谢研究中的应用。当评估创新皮肤化妆品成分的皮肤代谢和潜在毒性时,这样一个可重复的模型将很有意义。

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