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Effects of graphene oxide nanomaterial exposures on the marine bivalve, Crassostrea virginica

机译:石墨烯氧化物纳米国外曝光对海洋双枝,鲫鱼的影响

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Since its discovery in 2004, graphene has been used in a wide variety of fields including biomedicine, electronics, filtration materials, and surface coatings. The rapidly expanding consumer market for graphene family nanomaterials (GFNs), such as graphene oxide (GO), raises concern regarding their environmental toxicity. The aim of this study was to evaluate the effects of GO exposures in a marine filter-feeding bivalve (Crassostrea virginica) using sublethal biomarker approaches that can contribute to the development of an adverse outcome pathway (AOP). A 14-day study was conducted to identify tissue-specific molecular markers of GO toxicity using a static renewal design. Elevated lipid peroxidation and changes in glutathione-s-transferase (GST) activities were observed in gills and digestive gland tissues of the GO-exposed oysters. These cellular changes were noted for 2.5 and 5 mg/L GO exposures in seawater. Based on our results, reactive oxygen species (ROS)-induced oxidative damage is identified as a key event in the proposed AOP. Additionally, detoxification enzymes, such as GST, are thought to be involved in stress signaling leading to adverse effects on cellular health. This study is a part of our two-tier approach towards the identification of short- and long-term effects of GO exposures. This work, together with our previous 72 h exposure, represents the application of biomarker-based investigations in the process of AOP development for graphene family nanomaterials.
机译:自2004年发现以来,石墨烯已被用于各种领域,包括生物医学,电子,过滤材料和表面涂层。石墨烯家族纳米材料(GFNS)的迅速扩大的消费市场,例如石墨烯氧化物(GO),对其环境毒性提高了令人担忧。本研究的目的是使用可能导致不良结果途径(AOP)的发展的亚麻植物生物标志物方法来评估去曝光喂养双抗体(Crassostrea Virginica)的疗效。进行了14天的研究以鉴定使用静态更新设计来鉴定Go毒性的组织特异性分子标记。在暴露的牡蛎的鳃和消化腺组织中观察到肝脏过氧化和谷胱甘肽-S-转移酶(GST)活性的升高。在海水中曝光了这些细胞变化。基于我们的结果,反应性氧物质(ROS)引起的氧化损伤被确定为拟议AOP中的关键事件。另外,认为诸如GST的解毒酶被认为参与应力信号传导,导致对细胞健康的不利影响。本研究是我们双层方法的一部分,识别出曝光的短期和长期影响。这项工作与我们之前的72小时暴露一起,代表了基于生物标志物的调查在石墨烯家族纳米材料的AOP开发过程中的应用。

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