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Iron Complex Facilitated Copper Redox Cycling for Nitric Oxide Generation as Nontoxic Nitrifying Biofilm Inhibitor

机译:铁配合物促进一氧化氮生成作为无毒硝化生物膜抑制剂的铜氧化还原循环。

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In this study, we developed poly(vinyl chloride) (PVC)-solvent tasted mixed metal copper and iron complexes capable of catalytic generation of the antibiofilm nitric oxide (NO) from endogenous nitrite. In the absence of additional reducing agent, we demonstrated that the presence of iron complex facilitates a redox cycling, converting the copper(II) complex to active copper(I) species, which catalyzes the generation of NO from nitrite. Assessed by protein assay and surface coverage analyses, the presence of the mixed metal complexes in systems containing water industry-relevant nitrite producing nitrifying biofilms was shown to result in a "nontoxic mode" of biofilm suppression, while confining the bacterial growth to the free-floating planktonic phase. Addition of an NO scavenger into the mixed metal system eliminated the antibiofilm effects, therefore validating first, the capability of the mixed metal complexes to catalytically generate NO from the endogenously produced nitrite and second, the antibiofilm effects of the generated NO. The work highlights the development of self-sustained antibiofilm materials that features potential for industrial applications. The novel NO-generating antibiofilm technology diverts from the unfavorable requirement of adding a reducing agent and importantly, the less tendency for development of bacterial resistance.
机译:在这项研究中,我们开发了能够从内源性亚硝酸盐催化生成抗生物膜一氧化氮(NO)的聚氯乙烯(PVC)-溶剂味混合金属铜和铁配合物。在没有其他还原剂的情况下,我们证明了铁络合物的存在会促进氧化还原循环,从而将铜(II)络合物转变为活性铜(I)物种,从而催化亚硝酸盐生成NO。通过蛋白质测定和表面覆盖率分析评估,在含有与水行业相关的产生亚硝酸盐的硝化生物膜的系统中,混合金属配合物的存在可导致生物膜抑制的“无毒模式”,同时将细菌的生长限制在游离态。浮游期。向混合金属系统中添加NO清除剂消除了抗生物膜的作用,因此首先验证了混合金属络合物从内源产生的亚硝酸盐催化生成NO的能力,其次验证了所生成的NO的抗生物膜作用。这项工作着重介绍了具有工业应用潜力的自持式抗生物膜材料的开发。产生NO的新型抗生物膜技术摆脱了添加还原剂的不利要求,而且重要的是,细菌耐药性发展的趋势越来越小。

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