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通过液相色谱-串联质谱法对源自气管支气管上皮细胞(Calu-3和BEAS2-B)、细支气管肺泡细胞(NCI-H292和NCI-H441)以及II型肺泡样细胞(A549)的永生化人肺细胞系进行药物转运蛋白定量分析。

Drug Transporter Protein Quantification of Immortalized Human Lung Cell Lines Derived from Tracheobronchial Epithelial Cells (Calu-3 and BEAS2-B), Bronchiolar-Alveolar Cells (NCI-H292 and NCI-H441), and Alveolar Type II-like Cells (A549) by Liquid Chromatography-Tandem Mass Spectrometry.

作者信息

Sakamoto Atsushi, Matsumaru Takehisa, Yamamura Norio, Suzuki Shinobu, Uchida Yasuo, Tachikawa Masanori, Terasaki Tetsuya

机构信息

Nippon Boehringer Ingelheim, Pharmacokinetics and Nonclinical Safety, Kobe, Hyogo, 650-0047, Japan.

Division of Membrane Transport and Drug Targeting, Graduate School of Pharmaceutical Sciences, Tohoku University, Aoba-ku, Sendai, 980-8578, Japan.

出版信息

J Pharm Sci. 2015 Sep;104(9):3029-38. doi: 10.1002/jps.24381. Epub 2015 Feb 17.

Abstract

Understanding the mechanisms of drug transport in the human lung is an important issue in pulmonary drug discovery and development. For this purpose, there is an increasing interest in immortalized lung cell lines as alternatives to primary cultured lung cells. We recently reported the protein expression in human lung tissues and pulmonary epithelial cells in primary culture, (Sakamoto A, Matsumaru T, Yamamura N, Uchida Y, Tachikawa M, Ohtsuki S, Terasaki T. 2013. J Pharm Sci 102(9):3395-3406) whereas comprehensive quantification of protein expressions in immortalized lung cell lines is sparse. Therefore, the aim of the present study was to clarify the drug transporter protein expression of five commercially available immortalized lung cell lines derived from tracheobronchial cells (Calu-3 and BEAS2-B), bronchiolar-alveolar cells (NCI-H292 and NCI-H441), and alveolar type II cells (A549), by liquid chromatography-tandem mass spectrometry-based approaches. Among transporters detected, breast cancer-resistance protein in Calu-3, NCI-H292, NCI-H441, and A549 and OCTN2 in BEAS2-B showed the highest protein expression. Compared with data from our previous study,(Sakamoto A, Matsumaru T, Yamamura N, Uchida Y, Tachikawa M, Ohtsuki S, Terasaki T. 2013. J Pharm Sci 102(9):3395-3406) NCI-H441 was the most similar with primary lung cells from all regions in terms of protein expression of organic cation/carnitine transporter 1 (OCTN1). In conclusion, the protein expression profiles of transporters in five immortalized lung cell lines were determined, and these findings may contribute to a better understanding of drug transport in immortalized lung cell lines.

摘要

了解药物在人肺中的转运机制是肺部药物研发中的一个重要问题。为此,作为原代培养肺细胞的替代物,永生化肺细胞系越来越受到关注。我们最近报道了人肺组织和原代培养肺上皮细胞中的蛋白质表达情况(坂本A,松丸T,山村N,内田Y,立川M,大月S,寺崎T。2013年。《药物科学杂志》102(9):3395 - 3406),而对永生化肺细胞系中蛋白质表达的全面定量研究较少。因此,本研究的目的是通过基于液相色谱 - 串联质谱的方法,阐明五种市售的源自气管支气管细胞(Calu - 3和BEAS2 - B)、细支气管肺泡细胞(NCI - H292和NCI - H441)以及II型肺泡细胞(A549)的永生化肺细胞系中的药物转运蛋白表达情况。在所检测的转运蛋白中,Calu - 3、NCI - H292、NCI - H441和A549中的乳腺癌耐药蛋白以及BEAS2 - B中的OCTN2显示出最高的蛋白质表达。与我们之前的研究数据(坂本A,松丸T,山村N,内田Y,立川M,大月S,寺崎T。2013年。《药物科学杂志》102(9):3395 - 3406)相比,就有机阳离子/肉碱转运体1(OCTN1)的蛋白质表达而言,NCI - H441与所有区域的原代肺细胞最为相似。总之,确定了五种永生化肺细胞系中转运蛋白的蛋白质表达谱,这些发现可能有助于更好地理解永生化肺细胞系中的药物转运。

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