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首页> 外文期刊>Journal of mass spectrometry: JMS >Sodiation-based in-source collision for profiling of pyranocoumarins in Radix Peucedani (Qianhu): utility of sodium adducts' stability with in-source collision
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Sodiation-based in-source collision for profiling of pyranocoumarins in Radix Peucedani (Qianhu): utility of sodium adducts' stability with in-source collision

机译:基于钠化的源内碰撞用于 Radix Peucedani (Qianhu) 中吡喃香豆素的分析:钠加合物稳定性与源内碰撞的效用

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摘要

Full scan mode of liquid chromatography-mass spectrometry equipped with an electrospray ionization source offers a chance on global detection of complicated components; however, the scan mode carries significant challenges in rapidly capturing information of analysts. Sodiation-based in-source collision was proposed here, as a technique for rapid detecting untargeted analytes in full scan analysis, whichwas based on the stability of sodium adducts and the nonselectivity of in-source collision. Then the technique was applied to profile of angular-type pyranocoumarins (APs) in Radix Peucedani, with full scan analysis performed at two specific in-source collision energy: a high energy 50 V that is tolerated by the sodium adducts of APs, and a low energy 10 V, at which abundant adducts were offered. The spectra list of two average mass spectra was exported, and stable ions were selected based on the intensity ratio of standards at the two collision energy. Then 27 plausible M+Na(+) m/z values of APs were acquired after filtering the fragmention and isotope ions and validating with M+NH4(+). Eighty-two APs finally were tentatively identified based on their accurate spectral data of MSn, fragmentation rules, and elution order regardless of their absolute configuration, which included 25 reported APs from Peucedanum praeruptorum Dunn. The technique provided a novel application of sodium adduct in qualitative analysis. And it was valuable for rapidly capturing information of analytes in full scan analysis, not only for APs but also for other compounds that could form sodium adducts. Copyright (C) 2017 John Wiley Sons, Ltd.
机译:配备电喷雾电离源的液相色谱-质谱全扫描模式为复杂组分的全局检测提供了机会;然而,扫描模式在快速捕获分析师信息方面存在重大挑战。本文提出了基于钠加合物的稳定性和源内碰撞的非选择性,提出了基于钠加合物的稳定性和源内碰撞的非选择性,作为在全扫描分析中快速检测非靶向分析物的技术。然后,将该技术应用于Radix Peucedani中角型吡喃香豆素(APs)的剖面图,并在两种特定的源内碰撞能量下进行全扫描分析:APs的钠加合物耐受的高能量50 V和低能量10 V,在低能量下提供了丰富的加合物。导出两种平均质谱的光谱表,根据标准品在两种碰撞能量下的强度比选择稳定的离子。然后,在过滤碎裂和同位素离子并用[M+NH4](+)验证后,获得了27个合理的APs[M+Na](+)m/z值。最终根据MSn的准确光谱数据、碎裂规则和洗脱顺序初步鉴定了82个AP,无论其绝对构型如何,其中包括25个来自Peucedanum praeruptorum Dunn的报道AP。该技术为钠加合物在定性分析中提供了新的应用。它对于在全扫描分析中快速捕获分析物信息很有价值,不仅对于APs,而且对于其他可能形成钠加合物的化合物。版权所有 (C) 2017 John Wiley & Sons, Ltd.

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