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Altered biologic activities of commercial polychlorinated biphenyl mixtures after microbial reductive dechlorination.

机译:微生物还原脱氯后商业多氯联苯混合物的生物活性发生变化。

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摘要

The reductive dechlorination of polychlorinated biphenyls (PCBs) by anaerobic bacteria has recently been established as an important environmental fate of these compounds. This process removes chlorines directly from the biphenyl ring with replacement by hydrogen, resulting in a product mixture in which the average number of chlorines per biphenyl is reduced. In this study, dechlorination of commercial PCB mixtures (Aroclors 1242 and 1254) by microorganisms eluted from PCB-contaminated sediments of the River Raisin (Michigan) and Silver Lake (Massachusetts) caused a depletion in the proportion of highly chlorinated PCB congeners and an accumulation of lesser-chlorinated congeners. Dechlorination occurred primarily at the meta and, to a much lesser extent, para positions of biphenyl. The concentrations of the coplanar congeners including 3,3',4,4',5-pentachlorobiphenyl, the most potent dioxinlike congener, were significantly lowered by reductive dechlorination. Microbial reductive dechlorination of commercial PCB mixtures caused a substantial reduction in biologic activities in several instances. It significantly lowered or eliminated the inhibitory effects of Aroclors on fertilization of mouse gametes in vitro. Similarly, the dechlorinated product mixtures had substantially lower ethoxyresorufin-O-deethylase induction potencies and showed less ability to induce activating protein 1 transcription factor activity as compared to the unaltered Aroclors. In other assays the same dechlorinated product mixtures demonstrated biologic activities similar to the nondechlorinated Aroclors, including the ability of PCB mixtures to stimulate insulin secretion and cause neutrophil activation. The data presented here establish that the biologic activities of commercial PCB mixtures are altered by microbial reductive dechlorination and that an assessment of their toxic potential requires an array of tests that include the different mechanisms associated with PCBs.
机译:最近已确定厌氧细菌对多氯联苯(PCB)进行还原性脱氯是这些化合物的重要环境命运。该方法通过用氢置换直接从联苯环除去氯,得到产物混合物,其中每个联苯的氯平均数目减少。在这项研究中,商用多氯联苯混合物(Aroclors 1242和1254)被从Raisin(密歇根州)河和Silver Lake(马萨诸塞州)的PCB污染的沉积物中洗脱的微生物进行脱氯,导致高度氯化的PCB同类物的比例减少并积累了氯化程度较低的同类产品。脱氯主要发生在联苯的间位,在较小程度上发生在联苯的对位。通过还原脱氯,包括3,3',4,4',5-五氯联苯(最有效的二恶英样同类物)的共面同类物的浓度显着降低。商用多氯联苯混合物的微生物还原脱氯在许多情况下导致生物活性大大降低。它显着降低或消除了Aroclors对小鼠配子体外受精的抑制作用。类似地,与未改变的Aroclors相比,该脱氯产物混合物具有较低的乙氧基间苯二酚-O-脱乙基酶诱导能力,并且显示出较少的诱导活化蛋白1转录因子活性的能力。在其他测定中,相同的脱氯产物混合物显示出与非脱氯Aroclors相似的生物活性,包括PCB混合物刺激胰岛素分泌并引起中性粒细胞活化的能力。此处提供的数据表明,商用多氯联苯混合物的生物活性会因微生物的还原性脱氯作用而改变,并且对其毒性潜力的评估需要一系列测试,其中包括与多氯联苯相关的不同机理。

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