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Proton Transfer Reactions for the Gas-Phase Separation, Concentration, and Identification of Cardiolipins

机译:用于气相分离,浓度和心脏脂素鉴定的质子转移反应

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Cardiolipin (CL) analysis demands high specificity, due to the extensive diversity of CL structures, and high sensitivity, due to their low relative abundance within the lipidome. While electrospray ionization mass spectrometry (ESI-MS) is the most widely used technology in lipidomics, the potential for multiple charging presents unique challenges for CL identification and quantification. Depending on the conditions, ESI-MS of lipid extracts in negative ion mode can give rise to cardiolipins ionized as both singly and doubly deprotonated anions. This signal degeneracy diminishes the signal-to-noise ratio, while in addition (for direct infusion), the dianion population falls within a m/z range already heavily congested with monoanions from more abundant glycerophospholipid subclasses. Herein, we describe a direct infusion strategy for CL profiling from total lipid extracts utilizing gas-phase proton-transfer ion/ion reactions. In this approach, lipid extracts are ionized by negative ion ESI generating both singly deprotonated phospholipids and doubly deprotonated CL anions. Charge reduction of the negative ion population by ion/ion reactions leads to an enhancement in singly deprotonated [CL - H](-) species via proton transfer to the corresponding [CL - 2H](2=) dianions. To concentrate the [CL - H](-) anion signal, multiple iterations of ion accumulation and proton-transfer ion/ion reaction can be performed prior to subsequent interrogation. Mass selection and collisional activation of the enriched population of [CL H](-) anions facilitates the assignment of individual fatty acyl substituents and phosphatidic acid moieties. Demonstrated advantages of this new approach derive from the improved performance in complex mixture analysis affording detailed characterization of low abundant CLs directly from a total biological extract.
机译:由于脂质体内的低相对丰度,Cardiolipin(Cl)分析需要高度的Cl结构的多样性和高敏感性。虽然电喷雾电离质谱(ESI-MS)是最广泛使用的脂族技术,但多种充电的可能性对于CL识别和量化具有独特的挑战。取决于条件,负离子模式中的脂质提取物的ESI-MS可以引起作为单独和双质子化阴离子的Canciolipins电离。该信号退化减少了信噪比,而另外输注(用于直接输注),Dianion群体落入M / Z范围内,该范围落入大量拥挤的甘油磷脂亚类的单甘油磷脂亚类。在此,我们描述了利用气相质子转移离子/离子反应的总脂质提取物的CL分析的直接输注策略。在这种方法中,脂质提取物通过负离子ESI电离,产生单独去质子化的磷脂和双质助催化的CL阴离子。通过离子/离子反应的负离子群的电荷降低导致通过质子转移到相应的[Cl-2H](2 =)探剂中单独审驳的[Cl-H]( - )物种的增强。为了集中[Cl-H]( - )阴离子信号,可以在随后的询问之前进行离子积聚和质子转移离子/离子反应的多次迭代。 [Cl H]( - )阴离子的富集群体的质量选择和碰撞活化有助于分配单个脂肪酰基取代基和磷脂酸部分。展示了这种新方法的优点来自复合混合物中的改善性能,其具有直接来自总生物提取物的低丰收Cls的详细表征。

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