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大鼠血浆和脑组织中七氟菊酯的气相色谱/负离子化学电离质谱分析

Gas chromatography/negative chemical ionization mass spectrometry of transfluthrin in rat plasma and brain.

作者信息

Hooshfar Shirin, Mortuza Tanzir B, Rogers Clinton A, Linzey Michael R, Gullick Darren R, Bruckner James V, White Catherine A, Bartlett Michael G

机构信息

Department of Pharmaceutical and Biomedical Sciences, College of Pharmacy, The University of Georgia, Athens, GA, 30602-2352, USA.

出版信息

Rapid Commun Mass Spectrom. 2017 Oct 15;31(19):1573-1581. doi: 10.1002/rcm.7942.

Abstract

RATIONALE

Transfluthrin is a relatively non-toxic rapid-acting synthetic pyrethroid insecticide. It is widely used in household and hygiene products. A sensitive and accurate bioanalytical method is required for quantification of its concentration in plasma and its potential target organ, the brain for studies to assess its health effects and toxicokinetics in mammals.

METHODS

The samples were prepared by liquid-liquid extraction. Gas chromatography mass spectrometry (GC/MS) analysis was performed for the determination of transfluthrin in biological samples with an overall method run time of 15 min. Transfluthrin was quantified using selected-ion monitoring (SIM) in the negative chemical ionization (NCI) mode. Chromatographic separation was achieved using a Zebron® ZB5-MS GC column operating with 1 mL/min constant flow helium. Cis-Permethrin was used as the internal standard.

RESULTS

The method was validated to be precise and accurate within the linear range of 1.0-400.0 ng/mL in plasma and 4.0-400.0 ng/mL in brain homogenate, based on a 100 μL sample volume for both matrices. This method was applied to samples following administration of a 10 mg/kg oral dose to male adult rats. The plasma concentrations were observed to be 11.70 ± 5.69 ng/mL and brain concentrations 12.09 ± 3.15 ng/g when measured 2 h post-dose.

CONCLUSIONS

A rapid GC/NCI-MS method was demonstrated to be sensitive, specific, precise and accurate for the quantification of transfluthrin in rat plasma and brain. The optimized method was successfully used to quantify the rat plasma and brain concentrations of transfluthrin 2 h after the oral dosing of Sprague-Dawley rats.

摘要

原理

四氟甲醚菊酯是一种相对无毒的速效合成拟除虫菊酯类杀虫剂。它广泛用于家用和卫生用品。为了评估其在哺乳动物体内的健康影响和毒代动力学,需要一种灵敏且准确的生物分析方法来定量其在血浆及其潜在靶器官大脑中的浓度。

方法

样品通过液液萃取制备。采用气相色谱 - 质谱联用(GC/MS)分析测定生物样品中的四氟甲醚菊酯,整个方法运行时间为15分钟。四氟甲醚菊酯在负化学电离(NCI)模式下使用选择离子监测(SIM)进行定量。使用Zebron® ZB5-MS气相色谱柱,以1 mL/min的恒定氦气流速实现色谱分离。顺式氯菊酯用作内标。

结果

基于两种基质均为100 μL的样品体积,该方法在血浆中1.0 - 400.0 ng/mL和脑匀浆中4.0 - 400.0 ng/mL的线性范围内被验证为精密且准确。该方法应用于给雄性成年大鼠口服10 mg/kg剂量后的样品。给药后2小时测量时,血浆浓度为11.70 ± 5.69 ng/mL,脑浓度为12.09 ± 3.15 ng/g。

结论

一种快速的GC/NCI-MS方法被证明对定量大鼠血浆和脑中的四氟甲醚菊酯灵敏、特异、精密且准确。该优化方法成功用于定量Sprague-Dawley大鼠口服给药2小时后血浆和脑中四氟甲醚菊酯的浓度。

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