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Characterization of the Metabolic Responses Elicited via Exposure to Crude and Dispersed Oil Dissolved Components.

机译:通过暴露于原油和分散的油溶性成分而引起的代谢反应的特征。

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摘要

A crude oil spill along coastal California, particularly when spawning and developing fish are present, could potentially cause adverse population impacts. Currently, resource managers and oil spill responders require information on the relative toxicity of dispersed and un-dispersed oil, and their sublethal effects in wildlife, in order to make informed decisions regarding the use of chemical dispersants during spill events. Investigation of the damage hydrocarbons pose towards marine organisms is becoming more involved, particularly through the use of metabolomics, which has the potential to examine metabolic responses of organisms exposed to environmental and anthropogenic stressors.;The toxic effects of the water-accommodated fraction (WAF) and the chemically-enhanced WAF (CEWAF, with Corexit 9500) of Prudhoe Bay Crude Oil (PBCO) on adult and embryonic topsmelt (Atherinops affinis) and pre-smolt Chinook salmon (Oncorhynchus tshawytscha) was examined using NMR-based metabolomics. Based on resultant LC50 values, determined for both treatments, toxicity to both topsmelt and salmon decreased (i.e. less toxic) when Corexit 9500 dispersant was applied. However, NMR profiles and metabolic responses, for both fish species, were similar for both WAF and CEWAF, thus suggesting the fish were accumulating similar dissolved hydrocarbons at near similar concentrations.;To confirm this hypothesis, semi-permeable membrane devices (SPMDs), which specifically accumulate dissolved compounds from water, were used. SPMDs exposed to either WAF or CEWAF accumulated two- and three-ringed PAHs at concentrations differing by as little as 3-fold; however oil loadings differed by 8-fold. Thus it appears that similar hydrocarbon concentrations are eliciting the observed similar metabolic responses. Since SPMDs specifically target dissolved components, the variation among the previously measured LC 50 values is possibly due to the combined analysis of dissolved and particulate oil (as they are difficult to separate).;Overall, NMR-based metabolomics was successful in assessing the sublethal effects of petroleum hydrocarbons on topsmelt and salmon. More importantly, the metabolomics approach has led to confirmation that dissolved (bioavailable) hydrocarbon concentrations, those likely responsible for the toxic actions, are similar in both WAF and CEWAF.
机译:加利福尼亚沿海的原油泄漏,特别是当有产卵和发育中的鱼类时,可能会对人口造成不利影响。当前,资源管理者和漏油响应者需要有关分散和未分散的油的相对毒性及其在野生生物中的亚致死作用的信息,以便就泄漏事件期间使用化学分散剂做出明智的决定。碳氢化合物对海洋生物造成的损害的研究变得越来越广泛,特别是通过使用代谢组学,这种代谢组学有可能检查暴露于环境和人为应激源的生物的代谢反应。-水分吸收部分(WAF)的毒性作用)和使用基于NMR的代谢组学研究了成年和胚胎上清液(Atherinops affinis)和预熏制的奇努克鲑(Oncorhynchus tshawytscha)上的Prudhoe Bay原油(PBCO)的化学增强WAF(CEWAF,配Corexit 9500)。根据对两种处理均得出的LC50值,使用Corexit 9500分散剂时,对顶部熔炼和鲑鱼的毒性均降低(即毒性较低)。但是,两种鱼类的NMR谱图和代谢反应在WAF和CEWAF方面都相似,因此表明鱼类在相似浓度下积累了相似的溶解碳氢化合物。为了证实这一假设,半渗透膜装置(SPMD)使用了专门从水中累积溶解的化合物的溶液。暴露于WAF或CEWAF的SPMD累积的二环和三环PAH的浓度相差仅3倍;但是,油的装载量相差8倍。因此,似乎相似的烃浓度正在引发观察到的相似的代谢反应。由于SPMD专门针对溶解的组分,因此先前测得的LC 50值之间的差异可能是由于溶解和颗粒油的组合分析(因为它们难以分离)。总体而言,基于NMR的代谢组学成功地评估了亚致死性石油烃对顶部熔炼和鲑鱼的影响。更重要的是,代谢组学方法已证实WAF和CEWAF中溶解的(生物可利用的)碳氢化合物浓度(可能是造成毒性作用的原因)相似。

著录项

  • 作者

    Van Scoy, April Renee.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Environmental health.;Toxicology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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