首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Discovering metabolites of post-harvest fungicides in citrus with liquid chromatography/time-of-flight mass spectrometry and ion trap tandem mass spectrometry
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Discovering metabolites of post-harvest fungicides in citrus with liquid chromatography/time-of-flight mass spectrometry and ion trap tandem mass spectrometry

机译:液相色谱/飞行时间质谱和离子阱串联质谱法在柑橘中发现收获后杀菌剂的代谢产物

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In this study, we benefit from the combination of liquid chromatography (LC)/time-of-flight (TOF) MS accurate mass measurements to generate elemental compositions of ions and LC/ion trap multiple MS (MS") providing complementary structural information, which is useful for the elucidation of unknown organic compounds at trace levels in complex food extracts. We have applied this approach to investigate different citrus fruits extracts, and we have identified two post-harvest fungicides (imazalil and prochloraz), the main degradation product of imazalil ([M + H](+), m/z 257) and a non-previously reported prochloraz degradation product ([M + H]+, m/z 282). The database-mediated identification of the parent compounds was based on the generated elemental composition obtained from accurate mass measurements and additional qualitative information from the high resolution chlorine isotopic clusters of both the protonated molecules (imazalil, [M + H](+) 297.0556, < 0.1 ppm error, 2-Cl; prochloraz, [M + H](+) 376.0381, 1.9 ppm error, 3-Cl) and their characteristic fragments ions (imazalil: m/z 255 and 159; prochloraz: m/z 308 and 266). The correlation between the structural information provided by ion trap MS/MS fragmentation pathways of the parent species and the TOF accurate mass elemental composition data of the degradation products were the key to elucidate the structures of the degradation products of both post-harvest fungicides. Finally, where standards were not available (prochloraz), further confirmation was obtained by synthesizing the proposed degradation product by acid hydrolysis of the parent standard and confirmation by LC/TOF-MS. (c) 2005 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们受益于液相色谱(LC)/飞行时间(TOF)MS精确质量测量的结合,以生成离子的元素组成,并且LC /离子阱多个MS(MS“)提供了互补的结构信息,我们用这种方法研究了不同的柑橘类水果提取物,并确定了两种收获后的杀菌剂(伊马替利和前草胺),这是该食品的主要降解产物。咪唑([M + H](+),m / z 257)和以前未曾报道的前氯唑降解产物([M + H] +,m / z 282)。基于数据库的母体化合物鉴定是基于从精确的质量测量获得的生成的元素组成,以及来自两个质子化分子的高分辨率氯同位素簇的额外定性信息(伊马替利,[M + H](+)297.0556,误差<0.1 ppm,2-Cl;前氯az,[M + H](+)376.0381,1.9 ppm误差,3-Cl)及其特征性碎片离子(依玛西利:m / z 255和159;丙草胺:m / z 308和266)。亲本物种的离子阱MS / MS裂解途径提供的结构信息与降解产物的TOF精确质量元素组成数据之间的相关性是阐明两种收获后杀菌剂降解产物结构的关键。最后,在没有可用标准品(丙氯嗪)的地方,通过母体标准品的酸水解合成拟议的降解产物,并通过LC / TOF-MS进行确认,从而获得进一步的确认。 (c)2005 Elsevier B.V.保留所有权利。

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