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Time-Resolved Single-Cell Assay for Measuring Intracellular Reactive Oxygen Species upon Exposure to Ambient Particulate Matter

机译:在暴露于环境颗粒物质时测量细胞内反应性氧物质的时间分辨单细胞测定

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摘要

Health risks associated with exposure to ambient particulate matter (PM) are a major concern around the world. Adverse PM health effects have been proposed to be linked to oxidative stress through the generation of reactive oxygen species (ROS). In vitro cellular assays can provide insights into components or characteristics of PM that best account for its toxicity at a cellular level. However, most current assays report cell population averages and are mostly time endpoint measurements and thus provide no temporal information. This poses limitations on our understanding of PM health effects. In this study, we developed a microfluidic assay that can measure cellular ROS responses at the single-cell level and evaluate temporal dynamic behavior of single cells. We first established a protocol that enables culturing cells in our microfluidic platform and that can provide reproducible ROS readouts. We further examined the heterogeneous ROS responses of cell populations and tracked the dynamics of individual cellular responses upon exposure to different concentrations of PM extracts. Our results show that in an alveolar macrophage cell line, cellular ROS responses are highly heterogeneous. ROS responses from different cells can vary over an order of magnitude, and large coefficients of variation at each timepoint measurement indicate a high variability. The dynamic behavior of single-cell responses is strongly dependent on PM concentrations. Our work serves as a proof-of-principle demonstration of the capability of our microfluidic technology to study time-resolved single-cell responses upon PM exposure. We envision applying this high-resolution, high-content assay to investigate a wide array of single-cell responses (beyond ROS) upon exposure to different types of PM in the future.
机译:与环境暴露于环境颗粒物质(PM)相关的健康风险是世界各地的主要问题。已经提出了通过产生反应性氧(ROS)与氧化胁迫有关的不利PM健康效果。体外细胞测定可以提供对PM的组分或特征的见解,该组分或特征最能在细胞水平下毒性占毒性。然而,大多数当前测定报告细胞群体平均值并且主要是时间终点测量,因此不提供时间信息。这造成了对我们对PM健康效果的理解的限制。在这项研究中,我们开发了一种微流体测定,可以测量单细胞水平的细胞ROS反应,并评估单细胞的时间动态行为。我们首先建立了一种能够在我们的微流体平台中培养细胞的方案,并且可以提供可重复的ROS读数。我们进一步研究了细胞群的异质ROS反应,并在暴露于不同浓度的PM提取物时跟踪单个细胞反应的动态。我们的结果表明,在肺泡巨噬细胞系中,细胞ROS反应是高度异质的。来自不同细胞的ROS响应可以在幅度上变化,并且每个时间点测量的大量变化系数表示高可变性。单细胞应答的动态行为强烈依赖于PM浓度。我们的工作是我们对PM暴露时研究时间分辨单细胞应答的方法的原则上的原则上证明。我们设想应用这种高分辨率,高含量的测定,在暴露于未来的不同类型的PM时调查各种单细胞响应(超越ROS)。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第20期|13121-13130|共10页
  • 作者单位

    School of Chemical & Biomolecular Engineering Georgia Institute of Technology Atlanta Georgia 30332 United States;

    School of Chemical & Biomolecular Engineering Georgia Institute of Technology Atlanta Georgia 30332 United States;

    School of Chemical & Biomolecular Engineering School of Earth & Atmospheric Science and School of Civil &Environmental Engineering Georgia Institute of Technology Atlanta Georgia 30332 United States;

    School of Chemical & Biomolecular Engineering Georgia Institute of Technology Atlanta Georgia 30332 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:37:05

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