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斑马鱼的运动反应揭示了细颗粒物提取物的刺激性作用以及 TRPA1 的作用。

Zebrafish Locomotor Responses Reveal Irritant Effects of Fine Particulate Matter Extracts and a Role for TRPA1.

机构信息

Oak Ridge Institute for Science and Education, Oak Ridge, Tennessee 37830.

Integrated Systems Toxicology Division.

出版信息

Toxicol Sci. 2018 Feb 1;161(2):290-299. doi: 10.1093/toxsci/kfx217.

Abstract

Exposure to fine particulate matter (PM) air pollution causes adverse cardiopulmonary outcomes. Yet, the limited capacity to readily identify contributing PM sources and associated PM constituents in any given ambient air shed impedes risk assessment efforts. The health effects of PM have been attributed in part to its capacity to elicit irritant responses. A variety of chemicals trigger irritant behavior responses in zebrafish that can be easily measured. The purposes of this study were to examine the utility of zebrafish locomotor responses in the toxicity assessment of fine PM and its chemical fractions and uncover mechanisms of action. Locomotor responses were recorded in 6-day-old zebrafish exposed for 60 min in the dark at 26 °C to the extractable organic matter of a compressor-generated diesel exhaust PM (C-DEP) and 4 of its fractions (F1-F4) containing varying chemical classes of increasing polarity. The role of the transient receptor potential (TRP) cation channel TRPA1, a chemical sensor in mammals and zebrafish, in locomotor responses to C-DEP, was also examined. Acrolein, an environmental irritant and known activator of TRPA1, and all extracts induced concentration-dependent locomotor responses whose potencies ranked as follows: polar F3 > weakly polar F2 > C-DEP > highly polar F4 > nonpolar F1, indicating that polar and weakly polar fractions that included nitro- and oxy-polyaromatic hydrocarbons (PAHs), drove C-DEP responses. Irritant potencies in fish positively correlated with mutagenic potencies of the same extracts in strains of Salmonella sensitive to nitro- and oxy-PAHs, further implicating these chemical classes in the zebrafish responses to C-DEP. Pharmacologic inhibition of TRPA1 blocked locomotor responses to acrolein and the extracts. Taken together, these data indicate that the zebrafish locomotor assay may help expedite toxicity screening of fine PM sources, identify causal chemical classes, and uncover plausible biological mechanisms.

摘要

细颗粒物(PM)空气污染暴露会导致不良的心肺后果。然而,在任何给定的环境空气中,很难轻易识别出造成影响的 PM 来源及其相关 PM 成分,这阻碍了风险评估工作。PM 的健康影响部分归因于其引发刺激性反应的能力。各种化学物质都会在斑马鱼身上引发刺激性行为反应,这些反应很容易测量。本研究的目的是检验斑马鱼运动反应在细 PM 及其化学组分毒性评估中的效用,并揭示作用机制。在 26°C 的黑暗中,6 天大的斑马鱼在 60 分钟内暴露于压缩机产生的柴油机排气 PM(C-DEP)的可萃取有机物及其 4 种不同化学类别的化学组分(F1-F4)中,记录运动反应。还研究了瞬时受体电位(TRP)阳离子通道 TRPA1 在斑马鱼对 C-DEP 运动反应中的作用,TRPA1 是哺乳动物和斑马鱼中的化学感受器。丙烯醛,一种环境刺激性物质和已知的 TRPA1 激活剂,以及所有提取物都引起了浓度依赖性的运动反应,其效力如下:极性 F3>弱极性 F2>C-DEP>高极性 F4>非极性 F1,表明包括硝基和氧基多环芳烃(PAHs)在内的极性和弱极性组分驱动了 C-DEP 反应。鱼类的刺激性效力与同一提取物在对硝基和氧基 PAHs 敏感的沙门氏菌菌株中的致突变效力呈正相关,这进一步表明这些化学类别的存在与斑马鱼对 C-DEP 的反应有关。TRPA1 的药理学抑制作用阻断了丙烯醛和提取物的运动反应。综上所述,这些数据表明,斑马鱼运动试验可能有助于加快细 PM 源的毒性筛选,识别出因果化学类,并揭示可能的生物学机制。

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