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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Atmospheric pressure chemical ionisation liquid chromatography/mass spectrometry of type II chlorophyll-a transformation products: Diagnostic fragmentation patterns
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Atmospheric pressure chemical ionisation liquid chromatography/mass spectrometry of type II chlorophyll-a transformation products: Diagnostic fragmentation patterns

机译:II型叶绿素-a转化产物的大气压化学电离液相色谱/质谱:诊断性片段化模式

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Atmospheric pressure chemical ionisation liquid chromatography/multistage mass spectrometry (APCI LC/MSn) is an ideal tool for the analysis of complex mixtures of natural compounds produced in the aquatic environment. In contrast to extensive reports of open chain (type II) chlorophyll (chl) transformation products (also known as chl catabolites) in terrestrial plants, there have been no reports relating to aquatic equivalents. This study examines the fragmentation pathways of type II chl transformation products from APCI LC/MSn analysis in order to determine whether it is a suitable analytical method for detecting and distinguishing among such compounds if they are present in samples from the aquatic environment. An extract from the medium of a laboratory culture of the alga Chlorella protothecoides was analysed and found to contain a number of structurally similar compounds assigned as being either red chlorophyll catabolites (RCCs) or fluorescent chlorophyll catabolites (FCCs). The five structures examined were found to exhibit one of three distinct fragmentation patterns, a result that highlights the potential of APCI LC/MSn for distinguishing among different type II chl transformation products. (C) 2010 Elsevier Ltd. All rights reserved.
机译:大气压化学电离液相色谱/多级质谱(APCI LC / MSn)是用于分析在水生环境中产生的天然化合物的复杂混合物的理想工具。与陆生植物中开放链(II型)叶绿素(chl)转化产物(也称为chl分解代谢物)的大量报道相反,没有关于水生等同物的报道。这项研究检查了APCI LC / MSn分析得出的II型chl转化产物的裂解途径,以确定它是否是检测和区分此类化合物的合适分析方法(如果这些化合物存在于水生环境的样品中)。分析了原藻小球藻实验室培养液的提取物,发现其中含有许多结构相似的化合物,它们被指定为红色叶绿素分解代谢物(RCC)或荧光叶绿素分解代谢物(FCC)。发现所检查的五个结构表现出三种不同的片段化模式之一,这一结果突出了APCI LC / MSn区分不同II型chl转化产物的潜力。 (C)2010 Elsevier Ltd.保留所有权利。

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