首页> 外文期刊>Journal of environmental monitoring: JEM >PFOS or PreFOS? Are perfluorooctane sulfonate precursors (PreFOS) important determinants of human and environmental perfluorooctane sulfonate (PFOS) exposure?
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PFOS or PreFOS? Are perfluorooctane sulfonate precursors (PreFOS) important determinants of human and environmental perfluorooctane sulfonate (PFOS) exposure?

机译:PFOS还是PreFOS?全氟辛烷磺酸前体(PreFOS)是人类和环境全氟辛烷磺酸(PFOS)暴露的重要决定因素吗?

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The extent to which perfluorooctanesulfonate precursors (PreFOS) play a role in human or environmental exposure to perfluorooctanesulfonate (PFOS) is not well characterized. The diversity of manufactured PreFOS and its degradation products (e.g. C_8F_(17)SO_2R and C _8F_(17)SO_2NR′R′′, where R is H or F, and R′ and R′′ are various) has made it difficult to track their fate. Temporal trends of PFOS in both humans and wildlife are discrepant, thus it is difficult to predict future exposure, and hypotheses about the role of PreFOS have been raised. Although abiotic degradation of commercially important PreFOS materials requires further research, current data suggest that the yield of PFOS is negligible or minor. On the other hand, in vivo biotransformation of PreFOS yields PFOS as the major metabolite, and >32% yields have been observed. In Canadians, exposure to PreFOS was equivalent or greater than direct PFOS exposure prior to 2002. In most ocean water, PFOS is dominant to PreFOS, but in the oceans east of Greenland there may be more PreFOS than PFOS, consistent with the fact that whales and humans in this region also show evidence of substantial PreFOS exposure. Quantitative assessments of PFOS body-burdens coming from PreFOS are complicated by the fact that PreFOS partitions to the cellular fraction of blood, thus biomonitoring in serum under predicts PreFOS relative to PFOS. Many unknowns exist that prevent accurate modelling, thus analytical methods that can distinguish directly manufactured PFOS, from PFOS that has been biotransformed from PreFOS, should be applied in future human and environmental monitoring. Two new source tracking principles are presented and applied to human serum.
机译:全氟辛烷磺酸盐前体(PreFOS)在人类或环境中暴露于全氟辛烷磺酸盐(PFOS)中的作用程度尚不十分清楚。制成的PreFOS及其降解产物的多样性(例如C_8F_(17)SO_2R和C _8F_(17)SO_2NR'R'',其中R为H或F,且R'和R''不同)使得很难追踪他们的命运。在人类和野生生物中全氟辛烷磺酸的时间趋势是不一致的,因此很难预测未来的暴露程度,并且已经提出了关于预全氟辛烷磺酸作用的假设。尽管商业上重要的PreFOS材料的非生物降解需要进一步研究,但当前数据表明PFOS的产量可忽略不计或微不足道。另一方面,PreFOS的体内生物转化可产生全氟辛烷磺酸作为主要代谢产物,并且已观察到> 32%的产率。在加拿大人中,PreFOS暴露等于或大于2002年之前的全氟辛烷磺酸直接暴露。在大多数海水中,全氟辛烷磺酸占全氟辛烷磺酸的主导地位,但在格陵兰以东的海洋中,全氟辛烷磺酸的摄入量可能比全氟辛烷磺酸要多,这与鲸鱼这一事实相符该区域的人类也显示出大量的PreFOS暴露证据。由于PreFOS分配到血液的细胞部分,因此对PreFOS产生的PFOS负担的定量评估变得复杂,因此在血清中进行生物监测可以预测PreFOS相对于PFOS。存在许多无法准确建模的未知因素,因此可以将直接制造的PFOS与从PreFOS进行生物转化的PFOS区别开来的分析方法,应在未来的人类和环境监测中应用。提出了两种新的源跟踪原理并将其应用于人血清。

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