首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Rate and capacity of hepatic microsomal ring-hydroxylation of phenol to hydroquinone and catechol in rainbow trout (Oncorhynchus mykiss).
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Rate and capacity of hepatic microsomal ring-hydroxylation of phenol to hydroquinone and catechol in rainbow trout (Oncorhynchus mykiss).

机译:虹鳟(Oncorhynchus mykiss)的肝微粒体环羟基化为对苯二酚和邻苯二酚的速率和容量。

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Rainbow trout (Oncorhynchus mykiss) liver microsomes were used to study the rate of ring-hydroxylation of phenol at 11 and 25 degrees C by directly measuring the production of two potentially toxic metabolites, hydroquinone (HQ) and catechol (CAT). An HPLC method with integrated ultraviolet and electrochemical detection was used for metabolite identification and quantification at low (pmol) formation rates found in fish. The Michaelis-Menten saturation kinetics for the production of HQ and CAT over a range of phenol concentrations were determined at trout physiological pH. The apparent Km's for the production of HQ and CAT at 11 degrees C were 14+/-1 and 10+/-1 mM, respectively, with Vmax's of 552+/-71 and 161+/-15 pmol/min per mg protein. The kinetic parameters for HQ and CAT at 25 degrees C were 22+/-1 and 32+/-3 mM (Km) and 1752+/-175 and 940+/-73 pmol/min per mg protein (Vmax), respectively. The calculated increase in metabolic rate per 10 degrees C temperature rise (Q(10)) was 2.28 for HQ and 3.53 for CAT production. These experiments assess the potential for metabolic bioactivation in fish through direct quantification of putative reactive metabolites at the low, but toxicologically significant, chemical concentrations found in aquatic organisms. This work initiates a series of studies to compare activation pathway, rate, and capacity across fish species, providing a basis for development of biologically-based dose response models in diverse species.
机译:虹鳟(Oncorhynchus mykiss)肝微粒体用于通过直接测量两种潜在有毒代谢产物氢醌(HQ)和邻苯二酚(CAT)的产生来研究11和25摄氏度时苯酚的环羟基化速率。结合紫外线和电化学检测的HPLC方法用于鱼类中低(pmol)形成速率下的代谢物鉴定和定量。在鳟鱼的生理pH下确定了在一定范围的苯酚浓度下生成HQ和CAT的Michaelis-Menten饱和动力学。在11摄氏度下产生HQ和CAT的表观Km分别为14 +/- 1和10 +/- 1 mM,每毫克蛋白质的Vmax为552 +/- 71和161 +/- 15 pmol / min 。 25摄氏度下HQ和CAT的动力学参数分别为每毫克蛋白质(Vmax)22 +/- 1和32 +/- 3 mM(Km)和1752 +/- 175和940 +/- 73 pmol / min 。对于HQ,每10摄氏度的温度升高(Q(10))计算的代谢速率增加为2.28,对于CAT生产为3.53。这些实验通过在水生生物中发现的低但具有毒理学意义的化学浓度下,通过直接定量推定的反应性代谢产物来评估鱼类中代谢生物活化的潜力。这项工作启动了一系列研究,比较了鱼类之间的活化途径,速率和能力,为开发不同物种中基于生物学的剂量反应模型提供了基础。

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