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首页> 外文期刊>Journal of mass spectrometry: JMS >Z-sinapinic acid: the change of the stereochemistry of cinnamic acids as rational synthesis of a new matrix for carbohydrate MALDI-MS analysis
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Z-sinapinic acid: the change of the stereochemistry of cinnamic acids as rational synthesis of a new matrix for carbohydrate MALDI-MS analysis

机译:Z-sinapinic酸:肉桂酸的立体化学变化,作为碳水化合物MALDI-MS分析新基质的合理合成

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摘要

Successful application of matrix-assisted laser desorption/ionization (MALDI) MS started with the introduction of efficient matrices such as cinnamic acid derivatives (i.e. 3,5-dimethoxy-4-hydroxycinnamic acid, SA; α-cyano-4-hydroxycinnamic acid). Since the empirical founding of these matrices, other commercial available cinnamic acids with different nature and location of substituents at benzene ring were attempted. Rational design and synthesis of new cinnamic acids have been recently described too. Because the presence of a rigid double bond in its molecule structure, cinnamic acids can exist as two different geometric isomers, the E-form and Z-form. Commercial available cinnamic acids currently used as matrices are the geometric isomers trans or E (E-cinnamic and trans-cinnamic acids). As a new rational design of MALDI matrices, Z-cinnamic acids were synthesized, and their properties asmatrices were studied. Their performance was compared with that of the corresponding E-isomer and classical crystalline matrices (3,5-dihydroxybenzoic acid; norharmane) in the analysis of neutral/sulfated carbohydrates. Herein, we demonstrate the outstanding performance for Z-SA. Sulfated oligosaccharides were detected in negative ion mode, and the dissociation of sulfate groups was almost suppressed. Additionally, to better understand the quite different performance of each geometric isomer as matrix, the physical and morphological properties as well as the photochemical stability in solid state were studied. The influence of the E/Z photoisomerization of thematrix duringMALDI was evaluated. Finally,molecular modeling(density functional theory study) of the optimized geometry and stereochemistry of E-cinnamic and Z-cinnamic acids revealed some factors governing the analyte-matrix interaction.
机译:基质辅助激光解吸/电离(MALDI)MS的成功应用始于引入高效基质,例如肉桂酸衍生物(即3,5-二甲氧基-4-羟基肉桂酸,SA;α-氰基-4-羟基肉桂酸) 。由于这些基质的经验建立,尝试了具有不同性质和取代基在苯环上的位置的其他市售肉桂酸。最近也描述了新肉桂酸的合理设计和合成。由于肉桂酸在其分子结构中存在,因此肉桂酸可以两种不同的几何异构体形式存在,即E型和Z型。当前用作基质的市售肉桂酸是反式或E的几何异构体(E-肉桂酸和反式肉桂酸)。作为MALDI矩阵的一种新的合理设计,合成了Z-肉桂酸,并研究了其性质矩阵。在中性/硫酸化碳水化合物的分析中,将它们的性能与相应的E-异构体和经典的结晶基质(3,5-二羟基苯甲酸;正壬烷)进行了比较。在这里,我们展示了Z-SA的出色性能。在负离子模式下检测到硫酸化的低聚糖,几乎抑制了硫酸根的解离。另外,为了更好地理解每种几何异构体作为基质的不同性能,研究了固体的物理和形态特性以及光化学稳定性。评价了基质在MALDI期间E / Z光异构化的影响。最后,对E-肉桂酸和Z-肉桂酸的最佳几何构型和立体化学进行分子建模(密度泛函理论研究),揭示了控制分析物与基质相互作用的一些因素。

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