Wildlife and Landscape Science Directorate, Science and Technology Branch, Environment Canada, National Wildlife Research Centre, Carleton University, Ottawa, ON, Canada.
Comp Biochem Physiol C Toxicol Pharmacol. 2009 Jul;150(1):91-100. doi: 10.1016/j.cbpc.2009.03.004. Epub 2009 Mar 19.
The in vitro metabolism of a polychlorinated biphenyl (PCB) mixture was examined using hepatic microsomes of dietary-exposed Greenland sledge dogs (Canis familiaris) to an organohalogen-rich diet (Greenland minke whale blubber: EXP cohort) or a control diet (pork fat: CON cohort). The associations between in vitro PCB metabolism, activity of oxidative hepatic microsomal cytochrome P450 (CYP) isoenzymes and concentrations of PCBs and hydroxylated metabolites were investigated. The CON dogs exhibited a 2.3-fold higher depletion percentage for the PCB congeners having at least two pairs of vicinal meta-para Cl-unsubstituted carbons (PCB-18 and -33) relative to the EXP dogs. This depletion discrepancy suggests that there exist substrates in liver of the organohalogen-contaminated EXP dogs that can competitively bind and/or interfere with the active sites of CYP isoenzymes, leading to a lower metabolic efficiency for these PCBs. Testosterone (T) hydroxylase activity, determined via the formation of 6beta-OH-T, 16alpha-OH-T, 16beta-OH-T and androstenedione, was strongly correlated with the depletion percentages of PCB-18 and -33 in both cohorts. Based on documented hepatic microsomal CYP isoenzyme substrate specificities in canines, present associations suggest that primarily CYP2B/2C and CYP3A were inducible in sledge dogs and responsible for the in vitro metabolism of PCB-18 and -33.
采用富含有机卤素的饮食(格陵兰小须鲸的鲸脂:EXP 组)或对照饮食(猪肉脂肪:CON 组)饲养的格陵兰雪橇犬(Canis familiaris)的肝微粒体,研究了多氯联苯(PCB)混合物的体外代谢。研究了体外 PCB 代谢、氧化肝微粒体细胞色素 P450(CYP)同工酶的活性与 PCB 和羟基代谢物浓度之间的关系。与 EXP 犬相比,CON 犬对至少具有两对邻位-对位 Cl 未取代碳的 PCB 同系物(PCB-18 和 -33)的消耗百分比高 2.3 倍。这种耗竭差异表明,有机卤素污染的 EXP 犬肝脏中存在能与 CYP 同工酶的活性部位竞争结合和/或干扰的底物,从而导致这些 PCB 的代谢效率降低。通过形成 6β-OH-T、16α-OH-T、16β-OH-T 和雄烯二酮来测定的睾酮(T)羟化酶活性与两个队列中 PCB-18 和 -33 的耗竭百分比呈强相关。基于犬类肝微粒体细胞色素 P450 同工酶的文献报道的底物特异性,目前的关联表明,CYP2B/2C 和 CYP3A 主要在雪橇犬中诱导,并负责 PCB-18 和 -33 的体外代谢。