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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Optimal collision energy is an eligible molecular descriptor to boost structural annotation: An application for chlorogenic acid derivatives-focused chemical profiling
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Optimal collision energy is an eligible molecular descriptor to boost structural annotation: An application for chlorogenic acid derivatives-focused chemical profiling

机译:最佳碰撞能量是符合条件的分子描述符,以提高结构注释:施用绿原酸衍生物的聚焦化学分析

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摘要

Tandem mass spectrometry (MS/MS), in particular high-resolution MS/MS, is able to provide element compositions and substructures for the detected signals. However, it is still challenging to configure the whole structures via linking those substructures. Efforts were devoted here to propose and validate optimal collision energy (OCE) to be an auxiliary structural clue to mass-to-charge ratios (m/z), and online energy-resolved MS was developed to yield OCEs. Chlorogenic acid derivatives (CADs) were utilized as the proof-of-concept because diverse isomers usually initiated by the different linkage manners between the quinic acid/shikimic acid and cinnamoyl substituents(s), i.e. caffeoyl group, coumaroyl group, etc. Liquid chromatography-hybrid ion trap-time of flight MS (LC-IT-TOF-MS) was implemented to capture CADs in two well-known herbal medicines namely Lonicerae japonicae Flos and Inulae Flos. Afterwards, hybrid triple quadrupole-linear ion trap MS (Qtrap-MS) was deployed to acquire OCEs for the primary fragmentation pathways of all detected CADs through online energy-resolved MS. On the other side, structural calculations were conducted to figure out the relationships between OCEs and bond properties. Isomeric differences occurred for OCEs, and LC elution program as well as ionization parameters could not affect OCEs. Twenty-four and thirty-one CADs were hunted and putatively identified by LC-IT-TOF-MS in Lonicerae japonicae Flos and Inulae Flos, respectively, and the structural annotation was advanced by applying the OCE-bond property relationships. To verify the structures, CADs-of-interest were purified from Lonicerae japonicae Flos using an automated fraction collector and definitely identified with NMR spectroscopy. Exact consistence occurred for the structural identification of mono-caffeoylquinic acid isomers between LC-MS/MS and NMR analyses. Consequently, OCE is an inherent physicochemical parameter of a given compound and is an eligible structural descriptor to offset the ability of LC-MS/MS towards the chemical profiling of complex matrices. (C) 2019 Elsevier B.V. All rights reserved.
机译:串联质谱(MS / MS),特别是高分辨率MS / MS,能够为检测到的信号提供元件组合物和子结构。但是,通过链接这些子结构来配置整个结构仍然具有挑战性。这里致力于提出并验证最佳碰撞能量(OCE)作为辅助结构线索的最佳碰撞能量(M / Z),并且开发出在线能量分辨的MS以产生OCE。绿原酸衍生物(CAD)用作概念的证据,因为通常由醋酸/籽酸和肉桂酰基取代基之间的不同连杆方式引发的各种异构体,即Caffeoyl基团,香豆酰基等。液相色谱法-Hybrid离子捕获时间的飞行时间MS(LC-IT-TOF-MS)被实施以捕获两种公知的草药中的CAD,即Loniceraeaponicae Flos和Inulae Flos。然后,部署混合三重四极轴 - 线性离子阱MS(Qtrap-MS)以通过在线能量分辨的MS获取所有检测到的CAD的主要碎片途径的OCES。在另一边,进行结构计算以弄清楚oces和粘合性能之间的关系。 OCES发生异构差异,以及LC洗脱计划以及电离参数不能影响OCE。捕获二十四和三十一体的CAD,并分别通过LC-IT-TOF-MS捕获并鉴定在丙顿日本葡萄球菌和内部FLOS中,通过应用OCE-BOLD属性关系来推进结构注释。为了验证结构,使用自动馏分收集器从Lonicerae japonicae flos纯化CAD-令人兴趣的效果,并用NMR光谱鉴定出来。对于LC-MS / MS和NMR分析之间的单咖啡酰基酸异构体的结构鉴定发生确切的一致性。因此,OCE是给定化合物的固有物理化学参数,并且是符合条件的结构描述符,以抵消LC-MS / MS朝向复合基质的化学分析的能力。 (c)2019 Elsevier B.v.保留所有权利。

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