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首页> 外文期刊>Analytical chemistry >Gas-Phase Ion/Ion Reactions Involving Tris-Phenanthroline Alkaline Earth Metal Complexes as Charge Inversion Reagents for the Identification of Fatty Acids
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Gas-Phase Ion/Ion Reactions Involving Tris-Phenanthroline Alkaline Earth Metal Complexes as Charge Inversion Reagents for the Identification of Fatty Acids

机译:涉及Tris-Phenhalline碱土金属配合物作为脂肪酸鉴定的电荷转化试剂的气相离子反应

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摘要

Fatty acids (FA) play vital biological roles as energy sources, signaling molecules and key building blocks of complex lipids in cell membranes. Modifications to FA structure and composition are associated with the onset and progression of a number of chronic diseases. Consequently, the sensitive detection and unambiguous structure elucidation of FA is integral to the advancement of biomedical sciences. Recent advances in FA analysis have taken advantage of wet chemical derivatization to enhance detection and drive unique fragmentation in tandem mass spectrometry protocols. Here, we significantly further this approach through demonstrating gas-phase charge inversion of singly deprotonated FA ions, [M - H](-) , using doubly charged tris-phenanthroline alkaline earth metal complexes, [Cat(Phen)(3)](2+) (Cat = Mg2+, Ca2+, Sr2+, or Ba2+). Metal cationized FA, [M - H + Cat](+) are obtained after the gas-phase ion/ion reaction. Low-energy collision-induced dissociation (CID) of the [M - H + Ca](+) cations facilitates double bond localization for a variety of monounsaturated and polyunsaturated FAs. Ultimately, detailed characterization presented unambiguous distinction among FA double bond positional isomers, such as n-3 and n-6 isomers. The method was successfully used to identify the FA profile of corn oil, including double bond localization for unsaturated FAs present.
机译:脂肪酸(FA)将重要的生物角色发挥为能源,信号传导分子和细胞膜复合脂质的关键构建块。对FA结构和组成的修改与许多慢性疾病的发作和进展相关。因此,FA的敏感性检测和明确结构阐明是生物医学科学进步的一体化。 FA分析的最新进展已利用湿化学品衍生化以增强串联质谱方案中的检测和驱动独特的碎片。在这里,我们通过说明单独的前质子化的FAIONS,[M-H]( - ),使用双电荷的Tris-菲咯啉碱土金属络合物,[猫(phen)(3)]( 2+)(CAT = MG2 +,CA2 +,SR2 +或BA2 +)。金属阳离子化Fa,[M - H +猫](+)在气相离子/离子反应后获得。 [M - H + Ca](+)阳离子的低能量碰撞诱导的解离(CID)促进各种单一饱和和多不饱和Fas的双键定位。最终,详细表征在FA双粘合定位异构体中呈现明确的区别,例如N-3和N-6异构体。该方法成功地用于鉴定玉米油的FA型材,包括存在的不饱和Fas的双键定位。

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