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The effect of chlorination degree and substitution pattern on the interactions of polychlorinated biphenyls with model bacterial membranes

机译:氯化度和替代模式对多氯联苯与模型细菌膜相互作用的影响

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摘要

Polychlorinated biphenyls (PCB) are persistent organic pollutants that due to their chemical resistivity and inflammability found multiple applications. In spite of the global ban for PCB production, due to their long half-lives periods, PCB accumulate in the soils, so effective bioremediation of the polluted lands is of crucial importance. Some of the 209 PCB congeners exhibit increased toxicity to soil bacteria and their presence impoverish the soil decomposer community and slows down the degradation of environmental pollutants in the soils. The exact mechanism of PCB antimicrobial activity is unknown, but it is strictly related with the membrane activity of PCB. Therefore, to shed light on these interactions we applied Langmuir monolayers formed by selected phospholipids as model bacterial membranes. In our studies we tested 5 PCB congeners differing in the degree of chlorination and the distribution of the chlorine substituents around the biphenyl frame. Special attention was paid to tetra-substituted PCB because of their increased presence in the environment and disubstituted PCB being their degradation products. To characterize the model membranes as Langmuir mono layers, we used surface pressure measurements, Brewster angle microscopy and Grazing Incidence X-ray Diffraction. It turned out that among the tetra-substituted PCB the ortho-substituted non-dioxin like compound was much more membrane destructive than the flat dioxin-like congener. On the contrary, among the di-substituted PCB the flat para-substituted 2,2'-dichlorobiphenyl turned out to exhibit high membrane activity.
机译:多氯联苯(PCB)是持续的有机污染物,由于它们的化学电阻率和易燃性发现了多种应用。尽管对PCB生产的全球禁令,由于其长期半衰期,PCB积聚在土壤中,因此污染土地的有效生物修复是至关重要的。其中一些209个PCB Congeners对土壤细菌的毒性增加,其存在冒着土壤分解群落,减缓了土壤中环境污染物的降解。 PCB抗菌活性的确切机制是未知的,但它与PCB的膜活性严格相关。因此,在这些相互作用上阐明我们施加由选定的磷脂作为模型细菌膜形成的Langmuir单层。在我们的研究中,我们在氯化程度下测试了5个PCB同一型,以及联苯框架周围的氯取代基的分布。由于其在环境中增加和二取代的PCB是其降解产物,因此特别注意Tetra取代的PCB。为了表征模型膜作为Langmuir Mono层,我们使用表面压力测量,布鲁斯特角显微镜和放牧入射X射线衍射。结果证明,在Tetra取代的PCB中,邻替代的非二氧辛像化合物一样多于扁平二氧素状的Congener的膜破坏。相反,在二取代的PCB中,扁平对β取代的2,2'-二氯双苯基结果表现出高膜活性。

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