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首页> 外文期刊>Chirality: The pharmacological, biological, and chemical consequences of molecular asymmetry >Studies of enantiomeric degradation of the triazole fungicide hexaconazole in tomato, cucumber, and field soil by chiral liquid chromatography-tandem mass spectrometry
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Studies of enantiomeric degradation of the triazole fungicide hexaconazole in tomato, cucumber, and field soil by chiral liquid chromatography-tandem mass spectrometry

机译:手性液相色谱-串联质谱法研究番茄,黄瓜和田间土壤中三唑类杀菌剂六康唑的对映体降解

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摘要

Chiral pesticide enantiomers often show different bioactivity and toxicity; however, this property is usually ignored when evaluating their environmental and public health risks. Hexaconazole is a chiral fungicide used on a variety of crops for the control of many fungal diseases. This use provides opportunities for the pollution of food and soil. In this study, a sensitive and convenient chiral liquid chromatography coupled with tandem mass spectrometry (LC-MS/MS) method was developed and validated for measuring hexaconazole enantiomers in tomato, cucumber, and soil. Separation was by a reversed-phase Chiralcel OD-RH column, under isocratic conditions using a mixture of acetonitrile-2 mM ammonium acetate in water (60/40, v/v) as the mobile phase at a flow rate of 0.4 mL/min. Parameters including the matrix effect, linearity, precision, accuracy and stability were undertaken. Then the proposed method was successfully applied to investigate the possible enantioselective degradation of rac-hexaconazole in plants (tomato and cucumber) and soil under field conditions. The degradation of the two enantiomers of hexaconazole proved to be enantioselective and dependent on the media: The (+)-enantiomer showed a faster degradation in plants, while the (-)-enantiomer dissipated faster than the (+)-form in field soil, resulting in relative enrichment of the opposite enantiomer. The results of this work demonstrate that both the environmental media and environmental conditions influenced the direction and rate of enantioselective degradation of hexaconazole. Chirality 25:160-169, 2013.
机译:手性农药对映体通常表现出不同的生物活性和毒性。但是,在评估其环境和公共健康风险时,通常会忽略此属性。己康唑是一种手性杀菌剂,可用于多种作物,以控制许多真菌疾病。这种用途提供了污染食物和土壤的机会。在这项研究中,开发了灵敏且方便的手性液相色谱-串联质谱(LC-MS / MS)方法,并验证了该方法可用于测定番茄,黄瓜和土壤中的六康唑对映体。通过反相Chiralcel OD-RH色谱柱,在等度条件下,使用乙腈-2 mM醋酸铵在水(60/40,v / v)中的混合物作为流动相,流速为0.4 mL / min 。进行了包括基质效应,线性,精度,准确性和稳定性在内的参数。然后,将所提出的方法成功地用于研究田间条件下植物(番茄和黄瓜)和土壤中外消旋六康唑可能的对映选择性降解。己康唑的两种对映异构体的降解被证明是对映选择性的,并取决于介质:(+)-对映异构体在植物中的降解速度更快,而(-)-对映异构体的消散速度快于田间土壤中的(+)-形式。 ,导致相对的对映体相对富集。这项工作的结果表明,环境介质和环境条件都影响了六康唑的对映选择性降解的方向和速率。手性25:160-169,2013。

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