Co-culture of human alveolar epithelial (hAELVi) and macrophage (THP-1) cell lines.

ALTEX Pub Date : 2018-01-01 Epub Date: 2017-11-23 DOI:10.14573/altex.1607191
Stephanie Kletting, Sarah Barthold, Urska Repnik, Gareth Griffiths, Brigitta Loretz, Nicole Schneider-Daum, Cristiane de Souza Carvalho-Wodarz, Claus-Michael Lehr
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引用次数: 60

Abstract

The air-blood barrier is mainly composed of alveolar epithelial cells and macrophages. Whereas the epithelium acts as a diffusional barrier, macrophages represent an immunological barrier, in particular for larger molecules and nanoparticles. This paper describes a new co-culture of human cell lines representing both cell types. Acquiring, culturing and maintaining primary alveolar epithelial cells presents significant logistical and technical difficulties. The recently established human alveolar epithelial lentivirus immortalized cell line, hAELVi, when grown on permeable filters, form monolayers with high functional and morphological resemblance to alveolar type I cells. To model alveolar macrophages, the human cell line THP-1 was seeded on pre-formed hAELVi monolayers. The co-culture was characterized regarding cellular morphology, viability and barrier function. Macrophages were homogenously distributed on the epithelium and could be kept in co-culture for up to 7 days. Transmission electron microscopy showed loose contact between THP-1 and hAELVi cells. When grown at air liquid interface, both cells were covered with extracellular matrix-like structure, which was absent in THP-1 mono culture. In co-culture with macrophages, hAELVi cells displayed similar, sometimes even higher, trans-epithelial electrical resistance than in mono-cultures. When exposed to silver and starch NPs, hAELVi mono-cultures were more tolerant to the particles than THP-1 mono-cultures. The viability in the co-culture was similar to that of hAELVi monocultures. Transport studies with sodium fluorescein in presence/absence of EDTA proved that the co culture acts as functional diffusion barrier. These data demonstrate that hAELVi-/THP-1 co-cultures represent a promising model for safety and permeability studies of inhaled chemicals, drugs and nanoparticles.

人肺泡上皮(hAELVi)和巨噬细胞(THP-1)细胞系的共培养。
气血屏障主要由肺泡上皮细胞和巨噬细胞组成。上皮细胞作为扩散屏障,巨噬细胞代表免疫屏障,特别是对于大分子和纳米颗粒。本文描述了一种新的代表两种细胞类型的人类细胞系共培养。获得、培养和维持原代肺泡上皮细胞存在重大的后勤和技术困难。最近建立的人肺泡上皮慢病毒永活细胞系hAELVi,当在可渗透过滤器上生长时,形成具有高功能和形态相似性的单层肺泡I型细胞。为了模拟肺泡巨噬细胞,将人细胞系THP-1播种在预先形成的hAELVi单层上。共培养对细胞形态、活力和屏障功能进行了表征。巨噬细胞均匀分布于上皮上,共培养可达7天。透射电镜显示THP-1与hAELVi细胞之间接触松散。在气液界面培养时,两种细胞均被细胞外基质样结构所覆盖,这在THP-1单培养中是不存在的。在与巨噬细胞共培养时,hAELVi细胞表现出与单独培养相似,有时甚至更高的跨上皮电阻。当暴露于银和淀粉NPs时,hAELVi单培养比THP-1单培养对颗粒的耐受性更强。共培养的活力与hAELVi单培养相似。在EDTA存在或不存在的情况下,荧光素钠的转运研究证明,共培养物起到功能性扩散屏障的作用。这些数据表明,hAELVi-/THP-1共培养为吸入化学物质、药物和纳米颗粒的安全性和渗透性研究提供了一个有前景的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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