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将人角膜上皮细胞模型作为角膜通透性评估替代物的特性研究:代谢与转运

Characterization of human corneal epithelial cell model as a surrogate for corneal permeability assessment: metabolism and transport.

作者信息

Xiang Cathie D, Batugo Minerva, Gale David C, Zhang Tao, Ye Jingjing, Li Chunze, Zhou Sue, Wu Ellen Y, Zhang Eric Y

机构信息

Pfizer Global Research and Development, La Jolla, California, USA.

出版信息

Drug Metab Dispos. 2009 May;37(5):992-8. doi: 10.1124/dmd.108.026286. Epub 2009 Feb 12.

Abstract

The recently introduced Clonetics human corneal epithelium (cHCE) cell line is considered a promising in vitro permeability model, replacing excised animal cornea to predict corneal permeability of topically administered compounds. The purpose of this study was to further characterize cHCE as a corneal permeability model from both drug metabolism and transport aspects. First, good correlation was found in the permeability values (P(app)) obtained from cHCE and rabbit corneas for various ophthalmic drugs and permeability markers. Second, a previously established real-time quantitative polymerase chain reaction method was used to profile mRNA expression of drug-metabolizing enzymes (major cytochromes P450 and UDP glucuronosyltransferase 1A1) and transporters in cHCE in comparison with human cornea. Findings indicated that 1) the mRNA expression of most metabolizing enzymes tested was lower in cHCE than in excised human cornea, 2) the mRNA expression of efflux transporters [multidrug resistant-associated protein (MRP) 1, MRP2, MRP3, and breast cancer resistance protein], peptide transporters (PEPT1 and PEPT2), and organic cation transporters (OCTN1, OCTN2, OCT1, and OCT3) could be detected in cHCE as in human cornea. However, multidrug resistance (MDR) 1 and organic anion transporting polypeptide 2B1 was not detected in cHCE; 3) cHCE was demonstrated to possess both esterase and ketone reductase activities known to be present in human cornea; and 4) transport studies using probe substrates suggested that both active efflux and uptake transport may be limited in cHCE. As the first detailed report to delineate drug metabolism and transport characteristics of cHCE, this work shed light on the usefulness and potential limitations of cHCE in predicting the corneal permeability of ophthalmic drugs, including ester prodrugs, and transporter substrates.

摘要

最近引入的Clonetics人角膜上皮(cHCE)细胞系被认为是一种很有前景的体外通透性模型,可替代切除的动物角膜来预测局部给药化合物的角膜通透性。本研究的目的是从药物代谢和转运方面进一步表征cHCE作为角膜通透性模型的特性。首先,发现从cHCE和兔角膜获得的各种眼科药物和通透性标志物的通透性值(P(app))具有良好的相关性。其次,使用先前建立的实时定量聚合酶链反应方法,与人类角膜相比,分析cHCE中药物代谢酶(主要细胞色素P450和尿苷二磷酸葡萄糖醛酸基转移酶1A1)和转运蛋白的mRNA表达。研究结果表明:1)在cHCE中,大多数测试的代谢酶的mRNA表达低于切除的人类角膜;2)在cHCE中可以检测到与人类角膜中一样的外排转运蛋白[多药耐药相关蛋白(MRP)1、MRP2、MRP3和乳腺癌耐药蛋白]、肽转运蛋白(PEPT1和PEPT2)以及有机阳离子转运蛋白(OCTN1、OCTN2、OCT1和OCT3)的mRNA表达。然而,在cHCE中未检测到多药耐药(MDR)1和有机阴离子转运多肽2B1;3)已证明cHCE具有人类角膜中已知存在的酯酶和酮还原酶活性;4)使用探针底物的转运研究表明,cHCE中的主动外排和摄取转运可能都受到限制。作为描述cHCE药物代谢和转运特性的第一份详细报告,这项工作揭示了cHCE在预测眼科药物(包括酯前药和转运蛋白底物)角膜通透性方面的实用性和潜在局限性。

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