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靶向组学分析和代谢酶活性测定表明,在重组人呼吸道上皮细胞的长期培养中,关键的黏液纤毛特征得以维持。

Targeted omics analyses, and metabolic enzyme activity assays demonstrate maintenance of key mucociliary characteristics in long term cultures of reconstituted human airway epithelia.

作者信息

Baxter Andrew, Thain Simon, Banerjee Anisha, Haswell Linsey, Parmar Aleesha, Phillips Gary, Minet Emmanuel

机构信息

BAT, Group Research and Development, Regents Park Road, Southampton SO15 8TL, UK.

BAT, Group Research and Development Cambridge, Milton Road, Cambridge CB4 0WA, UK.

出版信息

Toxicol In Vitro. 2015 Aug;29(5):864-75. doi: 10.1016/j.tiv.2015.03.004. Epub 2015 Mar 30.

Abstract

3D reconstituted respiratory epithelia have emerged as better in vitro models for toxicological testing compared to cell lines due to the conservation of key morphological features and functions. MucilAir™ is a commercially available human airway epithelia system that can potentially maintain functional attributes for up to a year, however, detailed mucociliary characteristics and xenobiotic metabolism relevant to inhaled pro-toxicant bioactivation is lacking. Here, we assessed in MucilAir™ some key biomarkers that are characteristic of the respiratory epithelia including morphology, function and xenobiotics metabolism. The end points that were measured included targeted proteomics using a panel of 243 airway surface liquid (ASL) proteins, cilia beat frequency (CBF), a qRT-PCR screen of xenobiotic metabolizing enzymes, and CYP2A6/13, CYP1A1/1B1 activity. Comparison of ASL proteomics with human sputum identified key proteins common to both matrices, but present at different levels. Xenobiotic metabolism gene profiling demonstrated strong similarities with the normal human lung and did not reveal any consistent changes when assessed over a 6 month period. Inducibility and activity of CYP1A1/1B1 and activity of CYP2A6/2A13 were present at one month in culture and maintained in one tested MucilAir™ donor for several months. In conclusion, MucilAir™ presented important morphological and metabolic characteristics of a mucociliary epithelium in short and long term culture. MucilAir™ is therefore a potentially useful model to test repeated sub-cytotoxic doses of toxicants.

摘要

与细胞系相比,3D重建呼吸道上皮作为毒理学测试的体外模型表现更优,因为它保留了关键的形态特征和功能。MucilAir™是一种市售的人气道上皮系统,可潜在维持功能属性长达一年,然而,缺乏与吸入前体毒物生物活化相关的详细黏液纤毛特征和外源性物质代谢信息。在此,我们在MucilAir™中评估了一些呼吸道上皮特有的关键生物标志物,包括形态、功能和外源性物质代谢。所测量的终点包括使用一组243种气道表面液体(ASL)蛋白进行靶向蛋白质组学分析、纤毛摆动频率(CBF)、外源性物质代谢酶的qRT-PCR筛选以及CYP2A6/13、CYP1A1/1B1活性。将ASL蛋白质组学与人类痰液进行比较,确定了两种基质共有的关键蛋白,但含量水平不同。外源性物质代谢基因谱分析显示与正常人类肺组织有很强的相似性,并且在6个月的评估期内未发现任何一致的变化。CYP1A1/1B1的诱导性和活性以及CYP2A6/2A13的活性在培养1个月时就已出现,并在一名受试的MucilAir™供体中维持了数月。总之,MucilAir™在短期和长期培养中呈现出黏液纤毛上皮的重要形态和代谢特征。因此,MucilAir™是测试重复亚细胞毒性剂量毒物的潜在有用模型。

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