首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >A semi-automated multi-endpoint reactive oxygen species activity analyzer (SAMERA) for measuring the oxidative potential of ambient PM2.5 aqueous extracts
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A semi-automated multi-endpoint reactive oxygen species activity analyzer (SAMERA) for measuring the oxidative potential of ambient PM2.5 aqueous extracts

机译:半自动多端点反应性氧物种活性分析仪(Samera),用于测量环境PM2.5含水提取物的氧化潜力

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摘要

Many acellular assays have been developed for assessing the oxidative potential (OP) of ambient PM2.5, yet no consensus has been reached on the most appropriate method. Most of these methods are highly time- and labor-intensive, making it difficult to analyze a large sample-set. Here, we have developed a semi-automated multi-endpoint ROS-activity analyzer (SAMERA) for measuring the five most commonly used endpoints of OP: consumption rate of dithiothreitol (OPDTT), ascorbic acid (OPAA-SLF) and glutathione (OPGSH-SLF), and the generation rate of center dot OH in DTT (OPOH-DTT) and in surrogate lung fluid (OPOH-SLF). A high analytical precision (coefficient of variation = 5-8% for all endpoints using positive controls such as Cu(II), Fe(II), phenanthrenequinone (PQ) and 5-hydroxy-1,4-naphthoquinone (5-H-1,4-NQ), and 8-13% using PM2.5 samples) was obtained for SAMERA. The results generated from SAMERA were in good agreement with those obtained from the manual operation using both positive controls (slope = 0.95-1.15 for automated vs. manual, R-2 = 0.99) and ambient samples (slope = 0.89-1.09, R-2 = 0.86-0.97). SAMERA takes 3 h to analyze one sample for all these OP endpoints, which is a substantial improvement over the manual analysis protocol. SAMERA was employed to analyze a subset (N = 44) of ambient PM2.5 samples collected from the Midwest US. Elevated OP activities in the week of Independence Day (3-5 July, 2018) were observed for most endpoints measured by SAMERA at all the sites. Preliminary results demonstrate the stability and capability of SAMERA for providing a comprehensive OP dataset, which can be integrated into the epidemiological models in future studies. Copyright (c) 2019 American Association for Aerosol Research
机译:已经开发了许多无细胞测定来评估环境PM2.5的氧化潜力(OP),但最合适的方法没有达成共识。这些方法中的大多数是高度的 - 劳动密集型,使得难以分析一个大型样品集。在这里,我们开发了一种半自动多端点ROS-Activity分析仪(Samera),用于测量OP的五个最常用的终点:二硫代噻唑醇(OPDTT),抗坏血酸(OPAA-SLF)和谷胱甘肽的消耗率(OPGSH- SLF),以及中央点OH在DTT(OPOH-DTT)和替代肺液(OPOH-SLF)中的产生率。使用阳性对照(II),Fe(II),菲醌(PQ)和5-羟基-1,4-萘醌(5-H- 1,4-NQ)和8-13%的使用PM2.5样品用于制浆。 Samera产生的结果与使用阳性对照(Slope = 0.95-1.15的手动操作获得的结果吻合,R-2 = 0.99)和环境样品(斜率= 0.89-1.09,R- 2 = 0.86-0.97)。 Samera需要3小时来分析所有这些OP端点的一个样本,这是对手动分析协议的实质性改进。使用Samera分析从美国中西部地区收集的环境PM2.5样本的子集(n = 44)。为大多数终点开始,观察到独立日一周(2018年7月3日至5日)的op op活动。初步结果展示了Samera提供全面的申请数据集的稳定性和能力,可以在未来的研究中集成到流行病学模型中。版权所有(c)2019美国气溶胶研究协会

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