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The importance of simulated lung fluid (SLF) extractions for a more relevant evaluation of the oxidative potential of particulate matter

机译:模拟肺液(SLF)提取对于颗粒物氧化电位的更相关评估的重要性

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摘要

Particulate matter (PM) induces oxidative stress in vivo, leading to adverse health effects. Oxidative potential (OP) of PM is increasingly studied as a relevant metric for health impact (instead of PM mass concentration) as much of the ambient particle mass do not contribute to PM toxicity. Several assays have been developed to quantify PM oxidative potential and a widely used one is the acellular dithiothreitol (DTT) assay. However in such assays, particles are usually extracted with methanol or Milli-Q water which is unrepresentative of physiological conditions. For this purpose, OPDTT measurements after simulated lung fluids (SLF) extraction, in order to look at the impact of simulated lung fluid constituents, were compared to Milli-Q water extraction measurements. Our major finding is a significant decrease of the OPDTT when the artificial lysosomal fluid (ALF) solution was used. Indeed, ligand compounds are present in the SLF solutions and some induce a decrease of the OP when compared to water extraction. Our results suggest that the effect of ligands and complexation in lining fluids towards PM contaminants probably has been underestimated and should be investigated further.
机译:颗粒物(PM)会在体内诱导氧化应激,导致不良的健康影响。越来越多地研究了PM的氧化电位(OP),作为对健康产生影响的相关指标(而不是PM质量浓度),因为许多环境颗粒质量不会导致PM毒性。已经开发了几种测定法来量化PM的氧化电位,并且广泛使用的一种方法是脱细胞二硫苏糖醇(DTT)测定法。然而,在这种测定中,通常用甲醇或Milli-Q水提取颗粒,这不代表生理条件。为此,为了观察模拟肺液成分的影响,将模拟肺液(SLF)提取后的OPDTT测量与Milli-Q水提取测量进行了比较。我们的主要发现是使用人工溶酶体液(ALF)溶液时OPDTT显着降低。实际上,SLF溶液中存在配体化合物,与水提取相比,某些配体化合物会导致OP降低。我们的结果表明,衬里流体对PM污染物的配体和络合作用可能被低估了,应进一步研究。

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