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首页> 外文期刊>Cell Biology and Toxicology >Assessing the structure-activity relationships of fluorotelomer unsaturated acids and aldehydes with glutathione Reactivity of glutathione with fluorotelomer unsaturated acids and aldehydes
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Assessing the structure-activity relationships of fluorotelomer unsaturated acids and aldehydes with glutathione Reactivity of glutathione with fluorotelomer unsaturated acids and aldehydes

机译:评估氟调聚物不饱和酸和醛与谷胱甘肽的结构活性关系谷胱甘肽与氟调聚物不饱和酸和醛的反应活性

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Fluorotelomer alcohols (FTOHs) have been shown to degrade via abiotic and biotic mechanisms to perfluorocarboxylates (PFCAs) which are environmentally persistent and bioaccumulate in humans and wildlife depending on their chain length. Fluorotelomer unsaturated aldehydes (FTUALs) and acids (FTUCAs) are intermediate metabolites that form from the degradation of FTOHs. Their potential for toxicity is not yet defined and may be more significant compared to PFCAs. Past studies have shown that these intermediates form adducts with glutathione (GSH). The purpose of this study was to further assess the reactivity of these intermediate compounds. In vitro experiments were carried out in an aqueous buffer system (pH 7.4) where FTUCAs and FTUALs of varying chain lengths were reacted with GSH. To quantify the reactivity of FTUCAs and FTUALs, unreacted free GSH was derivatized with 5,5'-dithiobis(2-nitrobenzoic acid), its absorbance measured at 412 nm, and the percentage of unconjugated free GSH evaluated over time. EC50 values were obtained for the reactions of GSH with acrolein and methyl methacrylate to assess the accuracy of the method, as well as for acrylic acid, FTUCAs, and FTUALs. The results of this study indicated that alpha,beta-unsaturated aldehydes are comparatively the most reactive and reaction with GSH may be influenced by the length of the fluorinated tail. This is the first study to examine the relationship of FTUCAs and FTUALs with biological nucleophiles by quantifying their intrinsic reactivity.
机译:氟调聚物醇(FTOH)已通过非生物和生物机制降解为全氟羧酸盐(PFCA),全氟羧酸盐在环境中会持久存在,并根据链长在人类和野生生物中生物富集。含氟调聚物的不饱和醛(FTUAL)和酸(FTUCAs)是由FTOH降解形成的中间代谢产物。它们的毒性潜力尚未确定,与PFCA相比可能更重要。过去的研究表明,这些中间体与谷胱甘肽(GSH)形成加合物。这项研究的目的是进一步评估这些中间体化合物的反应性。在水性缓冲液系统(pH 7.4)中进行体外实验,在该系统中,链长不同的FTUCA和FTUAL与GSH反应。为了量化FTUCA和FTUAL的反应性,未反应的游离GSH用5,5'-二硫代双(2-硝基苯甲酸)衍生化,在412 nm处测量吸光度,并评估随时间变化的未结合游离GSH的百分比。 GSH与丙烯醛和甲基丙烯酸甲酯的反应获得EC50值,以评估该方法的准确性,以及丙烯酸,FTUCA和FTUAL的EC50值。这项研究的结果表明,α,β-不饱和醛的反应性相对最高,与GSH的反应可能受氟化尾巴长度的影响。这是第一个通过定量FTUCA和FTUAL与生物亲核试剂的内在反应性来研究它们之间关系的研究。

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