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使用体外转运研究比较各种细胞系和三维黏液纤毛组织模型系统以评估药物渗透性,从而预测大鼠鼻腔药物吸收情况

Comparison of Various Cell Lines and Three-Dimensional Mucociliary Tissue Model Systems to Estimate Drug Permeability Using an In Vitro Transport Study to Predict Nasal Drug Absorption in Rats.

作者信息

Furubayashi Tomoyuki, Inoue Daisuke, Nishiyama Noriko, Tanaka Akiko, Yutani Reiko, Kimura Shunsuke, Katsumi Hidemasa, Yamamoto Akira, Sakane Toshiyasu

机构信息

Department of Pharmaceutical Technology, Kobe Pharmaceutical University, 4-19-1 Motoyamakitamachi, Higashinada-ku, Kobe 658-8558, Japan.

School of Pharmacy, Shujitsu University, 1-6-1 Nishigawara, Naka-ku, Okayama 703-8516, Japan.

出版信息

Pharmaceutics. 2020 Jan 17;12(1):79. doi: 10.3390/pharmaceutics12010079.

Abstract

Recently, various types of cultured cells have been used to research the mechanisms of transport and metabolism of drugs. Although many studies using cultured cell systems have been published, a comparison of different cultured cell systems has never been reported. In this study, Caco-2, Calu-3, Madin-Darby canine kidney (MDCK), EpiAirway and MucilAir were used as popular in vitro cell culture systems, and the permeability of model compounds across these cell systems was evaluated to compare barrier characteristics and to clarify their usefulness as an estimation system for nasal drug absorption in rats. MDCK unexpectedly showed the best correlation ( = 0.949) with the fractional absorption () in rats. Secondly, a high correlation was observed in Calu-3 ( = 0.898). Also, Caco-2 ( = 0.787) and MucilAir ( = 0.750) showed a relatively good correlation with . The correlation between and permeability to EpiAirway was the poorest ( = 0.550). Because EpiAirway forms leakier tight junctions than other cell culture systems, the paracellular permeability was likely overestimated with this system. On the other hand, because MDCK formed such tight cellular junctions that compounds of paracellular model were less likely permeated, the paracellular permeability could be underestimated. Calu-3, Caco-2 and MucilAir form suitable cellular junctions and barriers, indicating that those cell systems enable the precise estimation of nasal drug absorption.

摘要

最近,各种类型的培养细胞已被用于研究药物的转运和代谢机制。尽管已经发表了许多使用培养细胞系统的研究,但从未有过不同培养细胞系统之间的比较报道。在本研究中,使用Caco-2、Calu-3、马-达犬肾(MDCK)、EpiAirway和MucilAir作为常用的体外细胞培养系统,评估模型化合物在这些细胞系统中的渗透性,以比较屏障特性,并阐明它们作为大鼠鼻腔药物吸收估计系统的实用性。出乎意料的是,MDCK与大鼠的分数吸收()显示出最佳相关性(= 0.949)。其次,在Calu-3中观察到高度相关性(= 0.898)。此外,Caco-2(= 0.787)和MucilAir(= 0.750)与也显示出相对较好的相关性。与EpiAirway的渗透性之间的相关性最差(= 0.550)。因为EpiAirway形成的紧密连接比其他细胞培养系统更易渗漏,所以该系统可能高估了细胞旁通透性。另一方面,因为MDCK形成了如此紧密的细胞连接,以至于细胞旁模型化合物不太可能渗透,所以细胞旁通透性可能被低估。Calu-3、Caco-2和MucilAir形成了合适的细胞连接和屏障,表明这些细胞系统能够精确估计鼻腔药物吸收。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e355/7023391/27c9b330d9e7/pharmaceutics-12-00079-g001.jpg

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