首页> 外文期刊>Analytica chimica acta >NEGATIVE ION LIQUID SECONDARY ION MASS SPECTROMETRY AND TANDEM MASS SPECTROMETRIC ANALYSIS OF THE MOLECULAR SPECIES OF AMINOPHOSPHOLIPIDS AS 9-FLUORENYLMETHYLOXYCARBONYL DERIVATIVES
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NEGATIVE ION LIQUID SECONDARY ION MASS SPECTROMETRY AND TANDEM MASS SPECTROMETRIC ANALYSIS OF THE MOLECULAR SPECIES OF AMINOPHOSPHOLIPIDS AS 9-FLUORENYLMETHYLOXYCARBONYL DERIVATIVES

机译:负离子液体二次离子质谱法和串联质谱法分析9种氟代戊基羰基羰基衍生物的氨基酸序列

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An approach has been developed for the analysis of aminophospholipids as 9-fluorenylmethyloxycarbonyl (Fmoc)-derivatized molecular species. Negative ion liquid secondary ion mass spectrometry of the derivatives of glycerophosphatidylethanolamine, glycerophosphatidylserine and their lyse analogous yields abundant [M-H](-) ions and informative fragment ions ([R(2)COO](-) and [R(1)COO](-) as well as [M-polar head-R(2)COOH](-), [M-polar head-R(2)CO-H](-), [M-Fmoc-polar head-R(2)COOH](-) and [M-Fmoc-polar head-R(2)CO-H](-)) for identifying the fatty acid chains. Conventional and collisionally induced dissociation mass spectra of the derivatized species exhibit fragmentation modes identical to those of their underivatized molecules, however, the ion patterns of both underivatized and derivatized glycerophosphatidylserine (GPS) are different from those of the relative glycerophosphatidylethanolamine (GPE) species, mainly in the intensity ratio of [R(2)COO](-) and [R(1)COO](-) carboxylate ions and abundances of [M-polar head-R(2)COOH](-) and [M-polar head-R(2)CO-H](-) as well as [M-Fmoc-polar head-R(2)COOH](-) and [M-Fmoc-polar head-R(2)CO-H](-) anions. The lower limit for producing a useful conventional and tandem mass spectrum of the derivatized aminophospholipid species is around 2 and 30 ng, respectively. The usefulness of this method has been demonstrated in the analysis of the molecular species of GPE and GPS from rat kidney. The approach will be ultilized in investigation on the metabolism of natural aminophospholipids. [References: 27]
机译:已经开发出一种方法来分析作为9-芴基甲氧羰基(Fmoc)衍生的分子种类的氨基磷脂。甘油磷脂酰乙醇胺,甘油磷脂酰丝氨酸衍生物及其裂解物的负离子液体二次离子质谱法可产生大量的[MH](-)离子和信息片段离子([R(2)COO](-)和[R(1)COO] (-)以及[M极性头R(2)COOH](-),[M极性头R(2)CO-H](-),[M-Fmoc极性头R( 2)COOH](-)和[M-Fmoc-极性头-R(2)CO-H](-)),用于鉴定脂肪酸链。衍生化的物质的常规和碰撞诱导的解离质谱显示的碎片化模式与其未衍生化分子的碎片化模式相同,但是,衍生化和衍生化的甘油磷脂酰丝氨酸(GPS)的离子谱不同于相对的甘油磷脂酰乙醇胺(GPE)的[R(2)COO](-)和[R(1)COO](-)羧酸根离子的强度比以及[M-极性头-R(2)COOH](-)和[M-极性头-R(2)CO-H](-)以及[M-Fmoc极性头-R(2)COOH](-)和[M-Fmoc极性头-R(2)CO-H ](-)阴离子。产生衍生的氨基磷脂种类的有用的常规质谱图和串联质谱图的下限分别约为2和30 ng。该方法的有效性已在分析大鼠肾脏中GPE和GPS的分子种类中得到证明。该方法将用于研究天然氨基磷脂的代谢。 [参考:27]

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