Hubei Key Laboratory of Regional Development and Environmental Response, Faculty of Resources and Environmental Science, Hubei University, Wuhan 430062, China.
Department of Occupational and Environmental Health, The University of Iowa, Iowa City, Iowa 52242, United States.
Environ Sci Technol. 2022 Sep 6;56(17):12460-12472. doi: 10.1021/acs.est.2c03687. Epub 2022 Aug 22.
Lower chlorinated polychlorinated biphenyls (LC-PCBs) and their metabolites make up a class of environmental pollutants implicated in a range of adverse outcomes in humans; however, the metabolism of LC-PCBs in human models has received little attention. Here we characterize the metabolism of PCB 2 (3-chlorobiphenyl), an environmentally relevant LC-PCB congener, in HepG2 cells with prediction and nontarget high-resolution mass spectrometry. Twenty PCB 2 metabolites belonging to 13 metabolite classes, including five dechlorinated metabolite classes, were identified in the cell culture media from HepG2 cells exposed for 24 h to 10 μM or 3.6 nM PCB 2. The PCB 2 metabolite profiles differed from the monochlorinated metabolite profiles identified in samples from an earlier study with PCB 11 (3,3'-dichlorobiphenyl) under identical experimental conditions. A dechlorinated dihydroxylated metabolite was also detected in human liver microsomal incubations with monohydroxylated PCB 2 metabolites but not PCB 2. These findings demonstrate that the metabolism of LC-PCBs in human-relevant models involves the formation of dechlorination products. In addition, untargeted metabolomic analyses revealed an altered bile acid biosynthesis in HepG2 cells. Our results indicate the need to study the disposition and toxicity of complex PCB 2 metabolites, including novel dechlorinated metabolites, in human-relevant models.
低氯代多氯联苯(LC-PCBs)及其代谢物构成了一类环境污染物,与人类一系列不良后果有关;然而,人类模型中 LC-PCBs 的代谢过程却很少受到关注。在这里,我们使用预测和非靶向高分辨率质谱技术,研究了环境相关 LC-PCB 同系物 PCB 2(3-氯联苯)在 HepG2 细胞中的代谢情况。在 HepG2 细胞中暴露于 10 μM 或 3.6 nM PCB 2 24 小时后,在细胞培养介质中鉴定出属于 13 种代谢物类别的 20 种 PCB 2 代谢物,包括 5 种脱氯代谢物类。与在相同实验条件下用 PCB 11(3,3'-二氯联苯)进行的早期研究中鉴定出的单氯代代谢物相比,PCB 2 的代谢物谱有所不同。在人肝微粒体孵育中也检测到一种脱氯二羟基代谢物,但其没有 PCB 2 的单羟基化代谢物。这些发现表明,在人类相关模型中,LC-PCBs 的代谢涉及脱氯产物的形成。此外,非靶向代谢组学分析显示 HepG2 细胞中胆汁酸生物合成发生改变。我们的研究结果表明,需要在人类相关模型中研究复杂的 PCB 2 代谢物(包括新型脱氯代谢物)的处置和毒性。