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A BLEACHED-KRAFT MILL EFFLUENT FRACTION CAUSING INDUCTION OF A FISH MIXED-FUNCTION OXYGENASE ENZYME

机译:诱导鱼混合功能氧合酶的漂白牛皮纸厂废液成分

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摘要

Pulp mill effluents contain a myriad of chemicals that have the potential to cause deleterious effects on aquatic biota in receiving waters. Some of these chemicals evoke an acute lethal response of exposed biota while others evoke sublethal responses. One such sublethal response is the induction of mixed-function oxygenases (MFO) in fish, specifically the CYP1A1 enzyme ethoxy-resorufin-o-deethylase (EROD). We followed the partitioning of the inducing chemicals in pulp mill effluent fractions by Toxicity Identification Evaluation (TIE), or bioassay-driven chemical analysis. This procedure was eventually modified to a more direct technique involving centrifugation, filtration, cleanup procedures, and C_(18) solid-phase adsorption. The extracts from the fractionation of two pulp mill effluents after secondary treatment were tested for EROD-inducing activity in a 4-d rainbow trout bioassay. The methanol extracts of particulates/colloids showed significant inducing capacity in Mill A effluent but not in Mill B effluent. The C_(18) methanol extracts induced activity from both effluents, with extracts from Mill A causing the greatest response. The particulate/colloidal extract (Mill A) was used as the source material for chemicals which caused EROD induction. The fraction was purified by solid-phase extraction techniques and reverse-phase high-performance liquid chromatography. The majority of the EROD activity was found in the moderately nonpolar region of the chromatogram (K_(ow) = 4.6 to 5.1).
机译:纸浆厂废水中含有多种化学物质,这些化学物质可能会对接收水域的水生生物造成有害影响。这些化学物质中的一些会引起暴露的生物群的急性致命反应,而其他一些会引起亚致死反应。一种这样的亚致死反应是在鱼类中诱导混合功能加氧酶(MFO),特别是CYP1A1酶乙氧基-试卤灵-o-脱乙基酶(EROD)。我们通过毒性鉴定评估(TIE)或生物测定驱动的化学分析,对制浆厂废水中的诱导化学物质进行了划分。该程序最终被修改为更直接的技术,涉及离心,过滤,净化程序和C_(18)固相吸附。在4-d虹鳟鱼生物测定法中,对二级处理后的两种制浆厂废水的分馏物中的提取物进行了EROD诱导活性的测试。颗粒/胶体的甲醇提取物在磨粉机A废水中显示出显着的诱导能力,而在磨粉机B废水中则没有。 C_(18)甲醇提取物从两种废水中均诱导了活性,而磨粉机A的提取物引起了最大的响应。颗粒/胶体提取物(A磨)用作引起EROD诱导的化学物质的原料。通过固相萃取技术和反相高效液相色谱法纯化级分。在色谱图的中等非极性区域(K_(ow)= 4.6至5.1)发现了大多数EROD活性。

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