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采用在线固相萃取-超高效液相色谱-串联质谱法测定沉积物中草铵膦、草甘膦及其代谢物

[Determination of glufosinate, glyphosate and their metabolites in sediment by ultra-high performance liquid chromatography-tandem mass spectrometry with pass-through solid-phase extraction].

作者信息

Yang Xiao, Xie Zhong-Gui, Li Xiao-Ling, Suo Wen-Wen, Chen Xiang-Yi, Wan Yi-Wen

机构信息

Hunan Fisheries Science Institute, Changsha 410153, China.

Fishery Products Quality Testing Center, Ministry of Agriculture and Rural Affairs, Changsha 410153, China.

出版信息

Se Pu. 2025 Feb;43(2):155-163. doi: 10.3724/SP.J.1123.2024.03008.

Abstract

Glufosinate (GLUF) and glyphosate (GLY) are nonselective phosphorus-containing amino acid herbicides that are widely used in agricultural gardens and noncultivated areas. These herbicides give rise to a number of key metabolites, with 3-methyl phosphinicopropionic acid (MPPA), -acetyl glufosinate (-acetyl GLUF), aminomethyl phosphonic acid (AMPA), -acetyl aminomethyl phosphonic acid (-acetyl AMPA), -acetyl glyphosate (-acetyl GLY), -methyl glyphosate (-methyl GLY) as the major metabolites obtained from GLUF and GLY. Extensive use of these herbicides may lead to their increased presence in the environment, especially aquatic ecosystems. An increasing number of research studies into the toxicities of GLUF, GLY, and their metabolites have shown that these herbicides are potentially toxic to aquatic biota. GLUF and GLY, as well as their metabolites, are extremely polar and water-soluble, and they lack chromogenic and fluorescent groups; therefore, their concentrations are difficult to determine using conventional methods. Most analytical methods used to date have largely depended on derivatization procedures, leading to overall determination processes that are tedious and time-consuming. Therefore, establishing a quick and sensitive method that does not require derivatives for determining GLUF, GLY, and their metabolites in water environments, including surface water, sediments, and aquatic organisms, is an important endeavor. In this study, a new approach was developed based on pass-through solid-phase extraction coupled with ultra-high performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS) to determine GLUF, GLY, and their metabolites, including MPPA, -acetyl GLUF, AMPA, -acetyl AMPA, -acetyl GLY, and -methyl GLY, in sediments. Samples were extracted with 4% (v/v) ammonia water and purified using PRiME HLB pass-through solid-phase extraction columns. The extracts were filtered through a polyethersulfone microfiltration membrane and analyzed by UHPLC-MS/MS. Compounds were separated on a Metrosep A Supp 5 column (150 mm×4.0 mm, 5 μm) using gradient elution with water and 200 mmol/L ammonium hydrogen carbonate solution containing 0.05% (v/v) ammonia water as the mobile phases. Analytes were detected using MS/MS with a negative electrospray ionization (ESI) source in the multiple reaction monitoring (MRM) mode. A matrix-matched external-standard approach was used for quantitative analysis. GLUF, GLY, and their metabolites were detected within 15 min with good peak shapes and high responses. Calibration curves were linear in the range of 2.0-200 μg/L, with correlation coefficients exceeding 0.995. This method delivered limits of detection (LODs) and limits of quantification (LOQs) of 5 μg/kg and 20 μg/kg, respectively, for GLUF, MPPA, -acetyl-GLUF, -acetyl AMPA, -acetyl GLY, and -methyl GLY, and 10 μg/kg and 30 μg/kg, for GLY and AMPA, respectively. Average spiked recoveries at three levels (LOQ, 5LOQ, 10LOQ) in sediment with low organic matter content were in the range of 78.5%-107%, and the relative standard deviations (RSDs) were in the range of 1.32%-14.7% (=6). Average spiked recoveries of 76.4%-113% were determined for three levels (LOQ, 5LOQ, and 10LOQ) in sediments with high organic matter contents, with RSDs of 2.60%-11.2% (=6). The developed method was used to analyze GLUF, GLY, and their metabolites in ponds, lakes, reservoirs, and river sediments. No target compounds were detected in any sediment sample obtained from a lake, reservoir, or river; however, GLY and AMPA were detected in one pond-sediment sample at levels of 31.7 and 52.3 μg/kg, respectively. The developed approach is simple, fast, and green; moreover, it offers advantages, including high accuracies, high sensitivities, and good reproducibilities. Accordingly, the developed method is suitable for determining GLUF, GLY, and their metabolites in sediments and can provide technical support for studying residue characteristics and environmental behavior in sediments.

摘要

草铵膦(GLUF)和草甘膦(GLY)是广泛用于农业园区和非耕地的非选择性含磷氨基酸类除草剂。这些除草剂会产生多种关键代谢物,其中3-甲基膦酰基丙酸(MPPA)、-乙酰基草铵膦(-乙酰基GLUF)、氨基甲基膦酸(AMPA)、-乙酰基氨基甲基膦酸(-乙酰基AMPA)、-乙酰基草甘膦(-乙酰基GLY)、-甲基草甘膦(-甲基GLY)是从草铵膦和草甘膦中获得的主要代谢物。这些除草剂的大量使用可能导致其在环境中,尤其是水生生态系统中的含量增加。越来越多关于草铵膦、草甘膦及其代谢物毒性的研究表明,这些除草剂对水生生物具有潜在毒性。草铵膦和草甘膦及其代谢物具有极强的极性和水溶性,且缺乏发色团和荧光基团;因此,使用传统方法很难测定它们的浓度。迄今为止使用的大多数分析方法在很大程度上依赖于衍生化程序,导致整个测定过程繁琐且耗时。因此,建立一种快速、灵敏且无需衍生化的方法来测定水环境(包括地表水、沉积物和水生生物)中的草铵膦、草甘膦及其代谢物是一项重要工作。在本研究中,开发了一种基于在线固相萃取结合超高效液相色谱-串联质谱(UHPLC-MS/MS)的新方法,用于测定沉积物中的草铵膦、草甘膦及其代谢物,包括MPPA、-乙酰基GLUF、AMPA、-乙酰基AMPA、-乙酰基GLY和-甲基GLY。样品用4%(v/v)氨水萃取,并用PRiME HLB在线固相萃取柱纯化。萃取液通过聚醚砜微滤膜过滤,然后用UHPLC-MS/MS进行分析。化合物在Metrosep A Supp 5柱(150 mm×4.0 mm,5 μm)上分离,以水和含0.05%(v/v)氨水的200 mmol/L碳酸氢铵溶液作为流动相进行梯度洗脱。采用负电喷雾电离(ESI)源在多反应监测(MRM)模式下通过MS/MS检测分析物。采用基质匹配外标法进行定量分析。草铵膦、草甘膦及其代谢物在15分钟内被检测到,峰形良好,响应值高。校准曲线在2.0 - 200 μg/L范围内呈线性,相关系数超过0.995。该方法对草铵膦、MPPA、-乙酰基-草铵膦、-乙酰基AMPA、-乙酰基GLY和-甲基GLY的检测限(LOD)和定量限(LOQ)分别为5 μg/kg和20 μg/kg,对草甘膦和AMPA的检测限和定量限分别为10 μg/kg和30 μg/kg。在低有机质含量沉积物中三个加标水平(LOQ、5LOQ、10LOQ)的平均加标回收率在78.5% - 107%范围内,相对标准偏差(RSD)在1.32% - 14.7%范围内(n = 6)。在高有机质含量沉积物中三个加标水平(LOQ、5LOQ和10LOQ)的平均加标回收率为76.4% - 113%,RSD为2.60% - 11.2%(n = 6)。所开发的方法用于分析池塘、湖泊、水库和河流沉积物中的草铵膦、草甘膦及其代谢物。在从湖泊、水库或河流采集的任何沉积物样品中均未检测到目标化合物;然而,在一个池塘沉积物样品中检测到草甘膦和AMPA,含量分别为31.7和52.3 μg/kg。所开发的方法简单、快速且环保;此外,它具有高精度、高灵敏度和良好重现性等优点。因此,所开发的方法适用于测定沉积物中的草铵膦、草甘膦及其代谢物,并可为研究沉积物中的残留特征和环境行为提供技术支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/823b/11758234/a5c30ae6f9ce/img_1.jpg

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