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表达紧密连接的人肺泡上皮细胞用于模拟气血屏障。

Human alveolar epithelial cells expressing tight junctions to model the air-blood barrier.

作者信息

Kuehn Anna, Kletting Stephanie, de Souza Carvalho-Wodarz Cristiane, Repnik Urska, Griffiths Gareth, Fischer Ulrike, Meese Eckart, Huwer Hanno, Wirth Dagmar, May Tobias, Schneider-Daum Nicole, Lehr Claus-Michael

机构信息

Drug Delivery (DDEL), Helmholtz-Institute for Pharmaceutical Research Saarland (HIPS), Saarbrücken, Germany.

Department of Biosciences, University of Oslo, Oslo, Norway.

出版信息

ALTEX. 2016;33(3):251-60. doi: 10.14573/altex.1511131. Epub 2016 Mar 17.

Abstract

This paper describes a new human alveolar epithelial cell line (hAELVi - human Alveolar Epithelial Lentivirus immortalized) with type I-like characteristics and functional tight junctions, suitable to model the air-blood barrier of the peripheral lung. Primary human alveolar epithelial cells were immortalized by a novel regimen, grown as monolayers on permeable filter supports and characterized morphologically, biochemically and biophysically. hAELVi cells maintain the capacity to form tight intercellular junctions, with high trans-epithelial electrical resistance (> 1000 Ω*cm²). The cells could be kept in culture over several days, up to passage 75, under liquid-liquid as well as air-liquid conditions. Ultrastructural analysis and real time PCR revealed type I-like cell properties, such as the presence of caveolae, expression of caveolin-1, and absence of surfactant protein C. Accounting for the barrier properties, inter-digitations sealed with tight junctions and desmosomes were also observed. Low permeability of the hydrophilic marker sodium fluorescein confirmed the suitability of hAELVi cells for in vitro transport studies across the alveolar epithelium. These results suggest that hAELVi cells reflect the essential features of the air-blood barrier, as needed for an alternative to animal testing to study absorption and toxicity of inhaled drugs, chemicals and nanomaterials.

摘要

本文描述了一种具有I型样特征和功能性紧密连接的新型人肺泡上皮细胞系(hAELVi - 人肺泡上皮慢病毒永生化细胞系),适用于模拟外周肺的气血屏障。原代人肺泡上皮细胞通过一种新方法实现永生化,在可渗透滤膜支架上以单层形式生长,并进行了形态学、生物化学和生物物理学特征分析。hAELVi细胞保持形成紧密细胞间连接的能力,具有高跨上皮电阻(>1000 Ω*cm²)。这些细胞在液 - 液以及气 - 液条件下可在培养中维持数天,直至第75代。超微结构分析和实时PCR揭示了I型样细胞特性,如存在小窝、小窝蛋白 - 1的表达以及表面活性蛋白C的缺失。考虑到屏障特性,还观察到通过紧密连接和桥粒密封的指状交叉。亲水性标记物荧光素钠的低渗透性证实了hAELVi细胞适用于跨肺泡上皮的体外转运研究。这些结果表明,hAELVi细胞反映了气血屏障的基本特征,可作为替代动物试验来研究吸入药物、化学物质和纳米材料的吸收及毒性的一种选择。

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