首页> 外文期刊>Chirality: The pharmacological, biological, and chemical consequences of molecular asymmetry >Enantioselective determination of triazole fungice tetraconazole by chiral high-performance liquid chromatography and its application to pharmacokinetic study in cucumber, muskmelon, and soils
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Enantioselective determination of triazole fungice tetraconazole by chiral high-performance liquid chromatography and its application to pharmacokinetic study in cucumber, muskmelon, and soils

机译:手性高效液相色谱对映体法测定三唑真菌四康唑及其在黄瓜,香瓜和土壤中的药代动力学研究

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摘要

A simple chiral high-performance liquid chromatography method with diode array detector was developed and validated for stereoselective determination of tetraconazole enantiomers in cucumber, muskmelon, and soils. Good separation was achieved at 20°C using cellulose tris-(4-methylbenzoate) as chiral stationary phase, a mixture of n-hexane and ethanol (90:10) as mobile phase at a flow rate of 0.8 ml/min. The assay method was linear over a range of concentrations (0.5-50 μg/ml) and the mean recoveries in all samples were more than 85% for the two enantiomers. The limits of detection for both enantiomers in plant and soil samples were 0.06 and 0.12 μg/g, respectively. Then, the proposed method was successfully applied to the study of enantioselective degradation of rac-tetraconazole in cucumber, muskmelon, and soils. The results showed that the degradation of two enantiomers of tetraconazole followed first-order kinetics and significantly stereoselective behavior was observed in cucumber, muskmelon, and Beijing soil. The preferential absorption and degradation of (-)-S-tetraconzole resulted in an enrichment of the (+)-R-tetraconazole residue in plant samples, whereas the (+)-R-tetraconazole showed a faster degradation in Beijing soil and the stereoselectivity might be caused by microorganisms. No stereoselective degradation was observed in Heilongjiang soil.
机译:开发了一种简单的具有二极管阵列检测器的手性高效液相色谱方法,该方法已用于立体选择性测定黄瓜,香瓜和土壤中的四康唑对映体。使用纤维素三-(4-甲基苯甲酸)酯作为手性固定相,正己烷和乙醇的混合物(90:10)作为流动相,流速为0.8 ml / min,在20°C时实现了良好的分离。该测定方法在一定浓度范围(0.5-50μg/ ml)内呈线性,并且两种对映体的平均回收率均超过85%。植物和土壤样品中两种对映体的检出限分别为0.06和0.12μg/ g。然后,该方法成功地用于研究rac-tetraconazole在黄瓜,甜瓜和土壤中的对映选择性降解。结果表明,在黄瓜,甜瓜和北京土壤中,四康唑的两种对映体的降解遵循一级动力学,并且具有明显的立体选择性。 (-)-S-四康唑的优先吸收和降解导致植物样品中(+)-R-四康唑残基的富集,而(+)-R-四康唑在北京土壤中的降解更快,且具有立体选择性可能是由微生物引起的。在黑龙江土壤中未观察到立体选择性降解。

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