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TransFEr: a new device to measure the transfer of volatile and hydrophobic organic chemicals across an in vitro intestinal fish cell barrier

机译:转移:一种新的装置,用于测量在体外肠道鱼缸屏障中的挥发性和疏水性有机化学品的转移

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摘要

Transfer of compounds across cellular barriers is a critical step of compound uptake into organisms. Using in vitro barrier systems to evaluate such transfer is attractive because of the higher throughput and reduced resource needs compared to animal studies. Thus far, however, studying the transfer of hydrophobic and volatile compounds was hampered by the unavailability of in vitro exposure systems that allow for stable and predictable chemical exposure concentrations. To overcome this limitation, we constructed a novel exposure chamber, TransFEr, and tested it with an in vitro epithelial barrier model using the rainbow trout (Oncorhynchus mykiss) intestinal cell line, RTgutGC. Key features of the chamber are its closed design and rotatable silicon segments, which can serve for chemical dosing and sampling. Using the fragrance damascone beta (log K-OW: 3.7, log HLC: -3.9) as a pilot chemical, we were able to demonstrate that our exposure chamber provides for stable chemical exposure concentrations and full mass balance. The RTgutGC epithelium served as barrier for damascone beta transfer, which we attribute to chemical retention and biotransformation in the intestinal cells. Nevertheless, substantial transfer of the chemical across the epithelium occurred. When a chemical sink, i.e. a silicon segment, was included in the basolateral chamber to mimic blood constituents binding in vivo, transfer was about three-fold enhanced. We suggest that the presented methodology can help to obtain insights into chemical uptake mechanisms via the intestinal or other epithelia of fish and other animals for hydrophobic and volatile chemicals.
机译:跨细胞屏障转移化合物是复合成生物的关键步骤。使用体外屏障系统来评估这种转移是由于较高的产量和降低资源需求而具有吸引力,与动物研究相比,需求降低。然而,到目前为止,通过在体外暴露系统的不可用的情况下,研究疏水性和挥发性化合物的转移阻碍了允许稳定和可预测的化学曝光浓度。为了克服这种限制,我们通过使用虹鳟(Oncorynchus mykiss)肠道细胞系列RTGutGC,通过一种新颖的暴露室,转移和用体外上皮屏障模型进行测试。腔室的主要特征是其封闭的设计和可旋转的硅段,可用于化学剂量和取样。使用香水大巴(Rog K-OW:3.7,Log HLC:-3.9)作为飞行员化学品,我们能够证明我们的曝光室提供稳定的化学曝光浓度和全质量平衡。 RTGUTGC上皮作为大巴霉素β转移的屏障,我们归因于肠细胞中的化学保留和生物转化。尽管如此,在上皮上的显着转移了化学物质。当化学水槽中,即硅段中包含在基底间室中以模仿体内结合的血液成分时,增强的转移约为三倍。我们建议提出的方法可以通过肠道或其他动物的肠道或其他动物进行疏水和挥发性化学品,帮助提出的方法有助于获得化学吸收机制的洞察。

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  • 来源
    《Analytical methods》 |2018年第36期|共10页
  • 作者单位

    Eawag Swiss Fed Inst Aquat Sci &

    Technol Uberlandstr 133 CH-8600 Dubendorf Switzerland;

    Firmenich Int SA Corp R&

    D Div Analyt Innovat Route Jeunes 1 CH-1211 Geneva 8 Switzerland;

    Firmenich Int SA Corp R&

    D Div Analyt Innovat Route Jeunes 1 CH-1211 Geneva 8 Switzerland;

    Firmenich Int SA Corp R&

    D Div Analyt Innovat Route Jeunes 1 CH-1211 Geneva 8 Switzerland;

    Firmenich Belgium SA B-1348 Louvain Belgium;

    Eawag Swiss Fed Inst Aquat Sci &

    Technol Uberlandstr 133 CH-8600 Dubendorf Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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