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评估母体化合物经口服暴露后,在怀孕和非怀孕大鼠体内某些 C6 型多氟化合物(6:2 氟代壬醇)代谢物的毒代动力学。

Evaluating the toxicokinetics of some metabolites of a C6 polyfluorinated compound, 6:2 fluorotelomer alcohol in pregnant and nonpregnant rats after oral exposure to the parent compound.

机构信息

FDA/CFSAN/OFAS/DFCN, 5001 Campus Drive, HFS 275, College Park, MD, 20740, USA.

FDA/CFSAN/OFAS/DFCN, 5001 Campus Drive, HFS 275, College Park, MD, 20740, USA.

出版信息

Food Chem Toxicol. 2024 Jan;183:114333. doi: 10.1016/j.fct.2023.114333. Epub 2023 Dec 5.

DOI:10.1016/j.fct.2023.114333
PMID:38061571
Abstract

The 6:2 fluorotelomer alcohol (6:2 FTOH) is a common impurity in per- and polyfluoroalkyl substances (PFASs) used in many applications. Our previous toxicokinetic (TK) evaluation of 6:2 FTOH calculated times to steady state (tss) of one of its metabolites, 5:3 fluorotelomer carboxylic acid (5:3A), in the plasma and tissues of up to a year after oral exposure to rats. Our current work further elucidated the TK of 5:3A and other metabolites of 6:2 FTOH in pregnant and nonpregnant rats after repeated oral exposure and examined the role of renal transporters in the biopersistence of 5:3A. The tss values for 5:3A in serum and tissues of adult nonpregnant animals ranged from 150 days to over a year. 4:3 fluorotelomer carboxylic acid (4:3A) was an additional potentially-biopersistent metabolite. 5:3A was the major metabolite of 6:2 FTOH in serum of pregnant dams and fetuses at each time interval. 5:3A was not a substrate for renal transporters in a human kidney cell line in vitro, indicating that renal reuptake of 5:3A is unlikely contribute to its biopersistence. Further research is needed to identify the underlying processes and evaluate the impact of these 6:2 FTOH metabolites on human health.

摘要

6:2 氟调聚物醇(6:2 FTOH)是许多应用中使用的全氟和多氟烷基物质(PFASs)的常见杂质。我们之前对 6:2 FTOH 的毒代动力学(TK)评估计算了其一种代谢物 5:3 氟调聚物羧酸(5:3A)在口服暴露于大鼠后长达一年的血浆和组织中的稳定状态(tss)时间。我们目前的工作进一步阐明了经口重复暴露于怀孕和非怀孕大鼠后 5:3A 和 6:2 FTOH 其他代谢物的 TK,并研究了肾脏转运蛋白在 5:3A 的生物持久性中的作用。成年非怀孕动物血清和组织中 5:3A 的 tss 值范围从 150 天到一年以上。4:3 氟调聚物羧酸(4:3A)是另一种潜在的生物持久性代谢物。5:3A 是每个时间间隔母体和胎儿血清中 6:2 FTOH 的主要代谢物。5:3A 不是人肾细胞系中肾脏转运蛋白的底物,表明肾脏对 5:3A 的再摄取不太可能导致其生物持久性。需要进一步研究以确定潜在的过程,并评估这些 6:2 FTOH 代谢物对人类健康的影响。

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