Pohl Christine, Hermanns M Iris, Uboldi Chiara, Bock Michaela, Fuchs Sabine, Dei-Anang Jasmin, Mayer Eckhard, Kehe Kai, Kummer Wolfgang, Kirkpatrick Charles James
Institute of Pathologie, Johannes Gutenberg University Mainz, Germany.
Eur J Pharm Biopharm. 2009 Jun;72(2):339-49. doi: 10.1016/j.ejpb.2008.07.012. Epub 2008 Jul 27.
Airway epithelial cells provide a barrier to the translocation of inhaled materials. Tight (TJ) and adherens junctions (AJ) play a key role in maintaining barrier functions, and are responsible for the selective transport of various substances through the paracellular pathway. In this study we compared a bronchial cell line (16HBE14o-) and primary bronchial cells (HBEC), both cocultivated with the fibroblast cell line Wi-38, with respect to their structural differentiation and their reaction to cytokine stimulation. HBEC formed a pseudostratified epithelial layer and expressed TJ and AJ proteins after 2 weeks in coculture. Mucus-producing and ciliated cells were found within 24 days. Additionally, a beating activity of the ciliated HBEC (14-19Hz) could be detected. 16HBE14o- in coculture showed a multilayered growth without differentiation to a pseudostratified airway epithelium. Simultaneous exposure to TNF-alpha- and IFN-gamma-induced significant changes in barrier function and paracellular permeability in the cocultures of HBEC/Wi-38 but not in the 16HBE14o-/Wi-38. In summary, HBEC in coculture mimic the structure of native polarized bronchial epithelium showing basal, mucus-producing and ciliated cells. Our system provides an opportunity to examine the factors that influence barrier and mucociliary function of bronchial epithelium within a time frame of 3 weeks up to 3 months in an in vivo-like differentiated model.
气道上皮细胞对吸入物质的转运起到屏障作用。紧密连接(TJ)和黏附连接(AJ)在维持屏障功能中起关键作用,并负责各种物质通过细胞旁途径的选择性运输。在本研究中,我们比较了与成纤维细胞系Wi-38共培养的支气管细胞系(16HBE14o-)和原代支气管细胞(HBEC)在结构分化以及对细胞因子刺激反应方面的差异。共培养2周后,HBEC形成了假复层上皮层并表达TJ和AJ蛋白。在24天内发现了产生黏液的细胞和纤毛细胞。此外,还能检测到纤毛HBEC的摆动活性(14 - 19Hz)。共培养的16HBE14o-呈现多层生长,未分化为假复层气道上皮。同时暴露于TNF-α和IFN-γ会导致HBEC/Wi-38共培养物中屏障功能和细胞旁通透性发生显著变化,但在16HBE14o-/Wi-38共培养物中未出现这种情况。总之,共培养的HBEC模拟了天然极化支气管上皮的结构,显示出基底细胞、产生黏液的细胞和纤毛细胞。我们的系统提供了一个机会,可在长达3个月的3周时间范围内,在类似体内分化的模型中研究影响支气管上皮屏障和黏液纤毛功能的因素。