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Charge-switch derivatization of fatty acid esters of hydroxy fatty acids via gas-phase ion/ion reactions

机译:通过气相离子反应,羟基脂肪酸脂肪酸酯的电荷切换衍生化

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Branched fatty acid esters of hydroxy fatty acids (FAHFAs) are a recently discovered class of endogenous bioactive lipids with anti-diabetic and anti-inflammatory effects. Identification of FAHFAs is challenging due to both the relatively low abundance of these metabolites in most biological samples and the significant structural diversity arising from the co-occurrence of numerous regioisomers. Ultimately, development of sensitive analytical techniques that enable rapid and unambiguous identification of FAHFAs is integral to understanding their diverse physiological functions in health and disease. While a battery of mass spectrometry (MS) based methods for complex lipid analysis has been developed, FAHFA identification presents specific challenges to conventional approaches. Notably, while the MS2 product ion spectra of [FAHFA - H] anions afford the assignment of fatty acid (FA) and hydroxy fatty acid (HFA) constituents, FAHFA regioisomers are usually indistinguishable by this approach. Here, we report the development of a novel MS-based technique employing charge inversion ion/ion reactions with trisphenanthroline magnesium complex dications, Mg(Phen)(3)(2+), to selectively and efficiently derivatize [FAHFA - H] anions in the gas phase, yielding fixed-charge cations. Subsequent activation of [FAHFA - H + MgPhen(2)](+) cations yield product ions that facilitate the assignment of FA and HFA constituents, pinpoints unsaturation sites within the FA moiety, and elucidates ester linkage regiochemistry. Collectively, the presented approach represents a rapid, entirely gas-phase method for near-complete FAHFA structural elucidation and confident isomer discrimination without the requirement for authentic FAHFA standards. (C) 2020 Elsevier B.V. All rights reserved.
机译:羟基脂肪酸的支链脂肪酸酯(FahFA)是最近发现的具有抗糖尿病和抗炎作用的内源性生物活性脂质。由于大多数生物样品中这些代谢物的相对较低和来自许多重组的共同发生而产生的显着结构多样性,因此鉴定FAHFA是挑战性的。最终,开发敏感的分析技术,使FAHFA能够快速和明确识别是不可或缺的,以了解他们在健康和疾病中的各种生理功能。虽然已经开发了基于质谱(MS)基于质谱(MS)的复杂脂质分析的方法,而FAHFA识别对常规方法具有具体的挑战。值得注意的是,虽然[FahFA ​​ - H]阴离子的MS2产物离子光谱提供脂肪酸(Fa)和羟基脂肪酸(HFA)成分的分配,但FahFA的测定剂通常通过这种方法无法区分。在这里,我们报告了用三苯蒽镁络合物络合物,Mg(Phen)(3)(2+)的电荷反转离子/离子反应的新型MS基技术的发展,以选择性和有效地衍生地衍生[FahFA ​​ - H]阴离子气相,产生固定电荷阳离子。随后的[FahFa - H + Mgphen(2)](+)阳离子的激活产生促进FA和HFA成分的分配的产物离子,针对FA部分内的不饱和位点进行分配,并阐明酯键入序列化学。集体,所提出的方法代表了一种快速,完全的气相方法,用于近乎完全的FAHFA结构阐明和自信的异构体歧视,无需正宗的FAHFA标准。 (c)2020 Elsevier B.V.保留所有权利。

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