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从成人肠道干细胞分化而来的人小肠上皮细胞作为预测人类口服药物吸收的新系统。

Human small intestinal epithelial cells differentiated from adult intestinal stem cells as a novel system for predicting oral drug absorption in humans.

作者信息

Takenaka Toru, Harada Naomoto, Kuze Jiro, Chiba Masato, Iwao Takahiro, Matsunaga Tamihide

机构信息

Discovery Drug Metabolism and Pharmacokinetics, Pharmacokinetics Research Laboratories (T.T., J.K., M.C.), and Evaluation Research Laboratory (N.H.), Tsukuba Research Center, Taiho Pharmaceutical Co. Ltd., Tsukuba, Ibaraki, Japan; and Department of Clinical Pharmacy, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, Japan (T.I., T.M.).

出版信息

Drug Metab Dispos. 2014 Nov;42(11):1947-54. doi: 10.1124/dmd.114.059493. Epub 2014 Sep 8.

Abstract

Adult intestinal stem cells (ISCs) possess both a long-term proliferation ability and differentiation capability into enterocytes. As a novel in vitro system for the evaluation of drug absorption, we characterized a human small intestinal epithelial cell (HIEC) monolayer that differentiated from adult ISCs. Continuous proliferation/differentiation from ISCs consistently conferred the capability of maturation of enterocytes to HIECs over 25 passages. The morphologically matured HIEC monolayer consisted of polarized columnar epithelia with dense microvilli, tight junctions, and desmosomes 8 days after seeding onto culture inserts. Transepithelial electrical resistance across the monolayer was 9-fold lower in HIECs (98.9 Ω × cm(2)) than in Caco-2 cells (900 Ω × cm(2)), which indicated that the looseness of the tight junctions in the HIEC monolayer was similar to that in the human small intestine (approximately 40 Ω × cm(2)). No significant differences were observed in the overall gene expression patterns of the major drug-metabolizing enzymes and transporters between the HIEC and Caco-2 cell monolayers. Furthermore, the functions of P-glycoprotein and breast cancer resistance protein in the HIEC monolayer were confirmed by the vectorial transport of marker substrates and their disappearance in the presence of specific inhibitors. The apparent drug permeability values of paracellularly transported compounds (fluorescein isothiocyanate-dextran 4000, atenolol, and terbutaline) and nucleoside transporter substrates (didanosine, ribavirin, and doxifluridine) in the HIEC monolayer were markedly higher than those of Caco-2 cells, whereas transcellularly transported drugs (pindolol and midazolam) were equally well permeated. In conclusion, the HIEC monolayer can serve as a novel and superior alternative to the conventional Caco-2 cell monolayer for predicting oral absorption in humans.

摘要

成体肠干细胞(ISC)具有长期增殖能力以及分化为肠上皮细胞的能力。作为一种用于评估药物吸收的新型体外系统,我们对源自成体ISC的人小肠上皮细胞(HIEC)单层进行了表征。ISC持续的增殖/分化在超过25代的时间里持续赋予HIEC成熟肠上皮细胞的能力。接种到培养插入物上8天后,形态学上成熟的HIEC单层由具有密集微绒毛、紧密连接和桥粒的极化柱状上皮组成。HIEC单层的跨上皮电阻(98.9Ω×cm²)比Caco-2细胞(900Ω×cm²)低9倍,这表明HIEC单层中紧密连接的松散程度与人小肠中的相似(约40Ω×cm²)。在HIEC和Caco-2细胞单层之间,主要药物代谢酶和转运蛋白的总体基因表达模式未观察到显著差异。此外,通过标记底物的向量转运及其在特异性抑制剂存在下的消失,证实了HIEC单层中P-糖蛋白和乳腺癌耐药蛋白的功能。HIEC单层中细胞旁转运化合物(异硫氰酸荧光素-葡聚糖4000、阿替洛尔和特布他林)和核苷转运蛋白底物(去羟肌苷、利巴韦林和多西氟尿苷)的表观药物渗透率值明显高于Caco-2细胞,而细胞间转运药物(吲哚洛尔和咪达唑仑)的渗透情况相同。总之,HIEC单层可作为一种新型且优于传统Caco-2细胞单层的模型,用于预测人体口服吸收情况。

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