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Unexpected transformation of dissolved phenols to toxic dicarbonyls by hydroxyl radicals and UV light

机译:羟基和紫外光意外将溶解的酚转化为有毒的二羰基

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摘要

Water treatment systems frequently use strong oxidants or UV light to degrade chemicals that pose human health risks. Unfortunately, these treatments can result in the unintended transformation of organic contaminants into toxic products. We report an unexpected reaction through which exposure of phenolic compounds to hydroxyl radicals (•OH) or UV light results in the formation of toxic α,β-unsaturated enedials and oxoenals. We show that these transformation products damage proteins by reacting with lysine and cysteine moieties. We demonstrate that phenolic compounds react with •OH produced by the increasingly popular UV/hydrogen peroxide (H2O2) water treatment process or UV light to form toxic enedials and oxoenals. In addition to raising concerns about potential health risks of oxidative water treatment, our findings suggest the potential for formation of these toxic compounds in sunlit surface waters, atmospheric water, and living cells. For the latter, our findings may be particularly relevant to efforts to understand cellular damage caused by in vivo production of reactive oxygen species. In particular, we demonstrate that exposure of the amino acid tyrosine to •OH yields an electrophilic enedial product that undergoes cross-linking reaction with both lysine and cysteine residues.
机译:水处理系统经常使用强氧化剂或紫外线来降解会危害人类健康的化学物质。不幸的是,这些处理会导致有机污染物意外转化为有毒产品。我们报告了一个意外的反应,酚类化合物通过暴露于羟基自由基(•OH)或紫外线下会导致有毒的α,β-不饱和烯键和氧代醛的形成。我们表明,这些转化产物通过与赖氨酸和半胱氨酸部分反应来破坏蛋白质。我们证明,酚类化合物与越来越流行的UV /过氧化氢(H2O2)水处理过程或UV光产生的•OH发生反应,形成有毒的乙醛酸和乙二醛。除了引起人们对氧化水处理潜在的健康风险的担忧外,我们的发现还表明在阳光照射的地表水,大气水和活细胞中可能会形成这些有毒化合物。对于后者,我们的发现可能与了解由体内活性氧物质产生引起的细胞损伤的努力特别相关。特别是,我们证明了氨基酸酪氨酸暴露于•OH会产生亲电子乙醛产物,该产物经历与赖氨酸和半胱氨酸残基的交联反应。

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