首页> 外文会议>Joint annual meeting of the International Society of Exposure Science and the International Society for Environmental Epidemiology >Toxicological Research to Assess Bioaccessibility and Biological Effects of Recycled Tire Crumb Rubber Using In Vitro and In Vivo Testing Approaches
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Toxicological Research to Assess Bioaccessibility and Biological Effects of Recycled Tire Crumb Rubber Using In Vitro and In Vivo Testing Approaches

机译:毒理学研究,评估在体外和体内检测方法中使用循环轮胎Crumb橡胶的生物可接受性和生物学作用

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The National Toxicology Program conducted in vitro and 14-day in vivo studies of tire crumb rubber (TCR) to enhance understanding of potential health impacts of exposure to chemicals released from TCR, and to evaluate (1) utility of different experimental models for characterizing toxicity, (2) routes of exposure that may result in systemic exposure, and (3) bioaccessibility of TCR constituents. Multiple lots of fresh recycled TCR were received from California EPA and combined into one test lot for use in these studies. The lot was characterized using microscopy, elemental composition, metal analysis, as well as liquid (LC-MS) or gas chromatography coupled with mass spectrometry. In vitro studies were conducted with human-derived skin, lung, small intestinal and liver cell lines using TCR-conditioned media (TCR-CM). TCR was incubated in cell type-specific culture media for different durations and temperatures followed by sterile filtering to generate TCR-CM for cell exposures. Cytotoxicity was observed with all cell lines, except liver, which was dependent upon concentration as well as the duration and temperature of media conditioning with TCR. Conversely, TCR incubated in PBS or artificial lung fluid was not cytotoxic. Untargeted LC-MS was used to characterize the chemical composition of TCR-CM. In vivo 14-day studies in female B6C3F1/N mice were conducted by administering size-fractionated TCR by oral gavage, dosed-feed or by housing on TCR mixed-bedding. Traditional measures of toxicology testing were evaluated and showed no toxicologically relevant changes by the routes tested. Using a LC-MS metabolomics analysis approach, urine and plasma were evaluated for evidence of exposure. Principle component analysis of untargeted data was unable to differentiate treated and control groups, likely due to low exposure levels and high interanimal variability. Compounds potentially originating from TCR were tentatively identified in urine and plasma from gavage animals.
机译:在体外进行的国家毒理学计划和14天的轮胎Crumb橡胶(TCR)研究,增强了对来自TCR释放的化学物质的潜在健康影响,并评估(1)不同实验模型的特征毒性的效用(2)暴露途径可能导致系统性暴露,(3)TCR成分的生物可接受性。从加州EPA接收多次新鲜再循环的TCR,并将其组合成一个测试批次用于这些研究。该批次以显微镜,元素组成,金属分析以及液体(LC-MS)或与质谱法偶联的气相色谱法表征。使用TCR条件培养基(TCR-CM)与人源性皮肤,肺,小肠和肝细胞系进行体外研究。在细胞类型特异性培养基中温育TCR以进行不同的持续时间和温度,然后是无菌过滤,以产生细胞曝光的TCR-CM。除肝脏外,用所有细胞系观察细胞毒性,肝脏依赖于浓度以及具有TCR的介质调理的持续时间和温度。相反,在PBS或人工肺液中孵育的TCR不是细胞毒性。未确定的LC-MS用于表征TCR-CM的化学成分。在体内雌性B6C3F1 / N小鼠中的第14天的研究通过口服饲养,饲料或壳体在TCR混合床上用品上施用尺寸分级的TCR进行。评估了传统的毒理学测试措施,并通过测试的路线没有显示出毒理学相关的变化。使用LC-MS代谢组学分析方法,评估尿液和血浆进行暴露的证据。原理成分分析未确定数据无法区分治疗和对照组,可能由于低曝光水平和高间白变异性而可能。潜在于TCR的化合物暂时鉴定在来自饲养动物的尿液和血浆中。

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