首页> 外文期刊>Environmental toxicology and chemistry >USE OF AN MFO-DIRECTED TOXICITY IDENTIFICATION EVALUATION TO ISOLATE AND CHARACTERIZE BIOACTIVE IMPURITIES FROM A LAMPRICIDE FORMULATION
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USE OF AN MFO-DIRECTED TOXICITY IDENTIFICATION EVALUATION TO ISOLATE AND CHARACTERIZE BIOACTIVE IMPURITIES FROM A LAMPRICIDE FORMULATION

机译:使用MFO定向的毒性鉴定评估来分离和鉴定来自杀虫剂配方的生物活性杂质

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摘要

Recently, a field formulation of the lampricide containing 3-trifluoromethyl-4-nitrophenol (TFM) was identified as a potent inducer of mixed-function oxygenase (MFO) detoxification enzymes in fish. It was further shown that induction was not associated with primary formulation ingredients. Using a toxicity identification evaluation (TIE) approach based on rainbow trout hepatic MFO activity, the TFM field formulation was investigated to isolate the compound(s) responsible for induction. Solid phase extraction and reverse-phase high-pressure liquid chromatography (HPLC) isolated activity in two distinct fractions, which were profiled by gas chromatography-high-resolution mass spectrometry. The major constituents in both fractions were confirmed by synthesis as nitro-, trifluoromethyl-, and/or chloro-substituted diphenyl ethers. However, fish exposures to the pure compounds failed to cause MFO induction. After further fractionations by HPLC, induction was determined in three new subfractions. Confident identification of a chloro-nitro-trifluoromethyl-substituted dibenzo-p-dioxin has been made in two of these fractions. Although the specific chemicals responsible for induction have not been confirmed, a suite of impurities including chloro-, and/or nitro-, and/or trifluoromethyl-substituted phenols, diphenyl ethers, and dibenzo-p-dioxins have been identified in the formulation. It is likely that these materials originate during industrial synthesis of TFM. These findings suggest that additional structurally related impurities are also present in this formulation.
机译:最近,一种含有3-三氟甲基-4-硝基苯酚(TFM)的杀光剂的田间制剂被确定为鱼类中多功能混合加氧酶(MFO)解毒酶的有效诱导剂。进一步表明诱导与初级配方成分无关。使用基于虹鳟鱼肝MFO活性的毒性鉴定评估(TIE)方法,研究了TFM田间制剂以分离引起诱导的化合物。固相萃取和反相高压液相色谱(HPLC)在两个不同的馏分中分离出活性,并通过气相色谱-高分辨率质谱法对其进行了分析。通过合成证实了两个馏分中的主要成分为硝基,三氟甲基和/或氯取代的二苯醚。但是,鱼暴露于纯化合物未能引起MFO诱导。在通过HPLC进一步分级分离之后,在三个新的亚级分中确定诱导。在这些馏分中的两个馏分中,可靠地确定了氯-硝基-三氟甲基取代的二苯并-对-二恶英。尽管尚未确认引起诱导的具体化学物质,但已在配方中鉴定出一系列杂质,包括氯和/或硝基和/或三氟甲基取代的苯酚,二苯醚和二苯并-对二恶英。这些材料很可能是在TFM的工业合成过程中产生的。这些发现表明该制剂中还存在其他与结构相关的杂质。

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