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A New Player in Environmentally Induced Oxidative Stress: Polychlorinated Biphenyl Congener 33′-Dichlorobiphenyl (PCB11)

机译:环境诱导的氧化应激的新参与者:多氯联苯同源物33-二氯联苯(PCB11)

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摘要

Recent analysis of air samples from Chicago and Lake Michigan areas observed a ubiquitous airborne polychlorinated biphenyl (PCB) congener, 3,3′-dichlorobiphenyl (PCB11). Our analysis of serum samples also revealed the existence of hydroxylated metabolites of PCB11 in human blood. Because PCBs and PCB metabolites have been suggested to induce oxidative stress, this study sought to determine whether environmental exposure to PCB11 and its 4-hydroxyl metabolite could induce alterations in steady-state levels of reactive oxygen species (ROS) and cytotoxicity in immortalized human prostate epithelial cells (RWPE-1). This study also examines if antioxidants could protect the cells from PCB11-induced cytotoxicity. Exponentially growing RWPE-1 cells were exposed to PCB11 and its metabolite, 3,3′-dichlorobiphenyl-4-ol (4-OH-PCB11), as well as an airborne PCB mixture resembling the Chicago ambient air congener profile, every day for 5 days. Results showed that 4-OH-PCB11 could significantly induce cell growth suppression and decrease the viability and plating efficiency of RWPE-1 cells. 4-OH-PCB11 also significantly increased steady-state levels of intracellular superoxide, O2 •−, as well as hydroperoxides. Finally, treatment with the combination of polyethylene glycol–conjugated CuZn superoxide dismutase and catalase added 1h after 4-OH-PCB11 exposures, significantly protected RWPE-1 cells from PCB toxicity. The results strongly support the hypothesis that exposure to a hydroxylated metabolite of PCB11 can inhibit cell proliferation and cause cytotoxicity by increasing steady-state levels of ROS. Furthermore, antioxidant treatments following PCBs exposure could significantly mitigate the PCB-induced cytotoxicity in exponentially growing human prostate epithelial cells.
机译:最近对来自芝加哥和密歇根湖地区的空气样品进行的分析发现,空气中普遍存在一种空气中的多氯联苯(PCB)同源物3,3'-二氯联苯(PCB11)。我们对血清样品的分析还揭示了人血中PCB11的羟基化代谢产物的存在。由于已建议使用PCBs和PCB代谢产物诱导氧化应激,因此本研究试图确定暴露于PCB11及其4-羟基代谢产物的环境是否可以诱导永生化人类前列腺中稳态的活性氧水平(ROS)和细胞毒性的改变。上皮细胞(RWPE-1)。这项研究还研究了抗氧化剂是否可以保护细胞免受PCB11诱导的细胞毒性作用。指数增长的RWPE-1细胞每天要暴露于PCB11及其代谢产物3,3'-二氯联苯-4-醇(4-OH-PCB11)以及类似于芝加哥环境空气同类物的机载PCB混合物中5天。结果表明,4-OH-PCB11可以显着诱导细胞生长抑制并降低RWPE-1细胞的活力和铺板效率。 4-OH-PCB11还显着增加了细胞内超氧化物,O2 •-以及氢过氧化物的稳态水平。最后,在暴露于4-OH-PCB11后1小时,加入了结合有聚乙二醇的CuZn超氧化物歧化酶和过氧化氢酶的组合处理,可显着保护RWPE-1细胞免受PCB毒性。该结果有力地支持了以下假设:PCB11的羟基化代谢产物可通过增加ROS的稳态水平来抑制细胞增殖并引起细胞毒性。此外,多氯联苯接触后的抗氧化剂治疗可以显着减轻多氯联苯对指数增长的人前列腺上皮细胞的细胞毒性。

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