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Exposure to runoff from coal-tar-sealed pavement induces genotoxicity and impairment of DNA repair capacity in the RTL-W1 fish liver cell line

机译:RTL-W1鱼肝细胞系中暴露于煤焦油密封路面的径流会引起遗传毒性和DNA修复能力的损害

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Coal-tar-based (CTB) sealcoat, frequently applied to parking lots and driveways in North America, contains elevated concentrations of polycyclic aromatic hydrocarbons (PAHs) and related compounds. The RTL-W1 fish liver cell line was used to investigate two endpoints (genotoxicity and DNA-repair-capacity impairment) associated with exposure to runoff from asphalt pavement with CTB sealcoat or with an asphalt-based sealcoat hypothesized to contain about 7% CTB sealcoat (AS-blend). Genotoxic potential was assessed by the Formamido pyrimidine glycosylase (Fpg)-modified comet assay for 1:10 and 1:100 dilutions of runoff samples collected from 5 h to 36 d following sealcoat application. DNA-repair capacity was assessed by the base excision repair comet assay for 1:10 dilution of samples collected 26 h and 36 d following application. Both assays were run with and without co-exposure to ultraviolet-A radiation (UVA). With co-exposure to UVA, genotoxic effects were significant for both dilutions of CTB runoff for three of four sample times, and for some samples of AS-blend runoff. Base excision repair was significantly impaired for CTB runoff both with and without UVA exposure, and for AS-blend runoff only in the absence of UVA This study is the first to investigate the effects of exposure to the complex mixture of chemicals in coal tar on DNA repair capacity. The results indicate that co-exposure to runoff from CT-sealcoated pavement and UVA as much as a month after sealcoat application has the potential to cause genotoxicity and impair DNA repair capacity.
机译:煤焦油基(CTB)密封涂料通常在北美的停车场和车道上使用,其中含有较高浓度的多环芳烃(PAH)和相关化合物。使用RTL-W1鱼肝细胞系研究了两个终点(遗传毒性和DNA修复能力受损),这些终点与使用CTB密封涂料或假设包含约7%CTB密封涂料的沥青基密封涂料暴露于沥青路面的径流有关(AS混合)。通过甲酰胺嘧啶糖基化酶(Fpg)修饰的彗星试验评估了在密封涂层施涂后5 h至36 d收集的径流样品的1:10和1:100稀释液的遗传毒性潜力。通过碱基切除修复彗星试验评估DNA修复能力,以评估应用后26 h和36 d收集的样品的1:10稀释度。两种测定均在有和没有共同暴露于紫外线A辐射(UVA)的情况下进行。在同时暴露于UVA的情况下,对于CTB径流的稀释液(四个样本时间中的三个)和AS混合径流的某些样本,其遗传毒性作用均很显着。不论是否有UVA暴露,CTB径流的基础切除修复都显着受损,只有在没有UVA的情况下,AS混合径流才基本受损。这项研究是首次研究暴露于煤焦油中复杂的化学混合物对DNA的影响维修能力。结果表明,在涂完密封涂料后一个月内,CT密封的路面和UVA共同暴露于径流中有可能引起遗传毒性并损害DNA修复能力。

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