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首页> 外文期刊>Journal of mass spectrometry: JMS >Characterization of natural wax esters by MALDI-TOF mass spectrometry
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Characterization of natural wax esters by MALDI-TOF mass spectrometry

机译:MALDI-TOF质谱法表征天然蜡酯

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The applicability of matrix-assisted laser desorption/ionization time of flight mass spectrometry (MALDI-TOF MS) to the analysis of wax esters (WEs) was investigated. A series of metal salts of 2,5-dihydroxybenzoic acid (DHB) was synthesized and tested as possible matrices. Alkali metal (Li, Na, K, Rb, Cs) and transition metal (Cu, Ag) salts were studied. The matrix properties were evaluated, including solubility in organic solvents, threshold laser power that should be applied for successful desorption/ionization of WEs, the nature of the matrix ions and the mass range occupied by them, and the complexity of the isotope clusters for individual metals. Lithium salt of dihydroxybenzoic acid (LiDHB) performed the best and matrices with purified lithium isotopes ((LiDHB)-Li-6 or (LiDHB)-Li-7) were recommended for WEs. Three sample preparation procedures were compared: (1) mixing the sample and matrix in a glass vial and deposition of the mixture on a MALDI plate (Mix), (2) deposition of sample followed by deposition of matrix (Sa/Ma), and (3) deposition of matrix followed by deposition of sample (Ma/Sa). Morphology of the samples was studied by scanning electron microscopy. The best sample preparation technique was Ma/Sa with the optimum sample to matrix molar ratio 1 : 100. Detection limit was in the low picomolar range. The relative response of WEs decreased with their molecular weight, and minor differences between signals of saturated and monounsaturated WEs were observed. MALDI spectra of WEs showed molecular adducts with lithium [M + Li](+). Fragments observed in postsource decay (PSD) spectra were related to the acidic part of WEs [RCOOH + Li](+) and they were used for structure assignment. MALDI with LiDHB was used for several samples of natural origin, including insect and plant WEs. A good agreement with GC/MS data was achieved. Moreover, MALDI allowed higher WEs to be analyzed, up to 64 carbon atoms in Ginkgo biloba leaves extract.
机译:研究了基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)在蜡酯(WEs)分析中的适用性。合成了一系列2,5-二羟基苯甲酸(DHB)的金属盐,并作为可能的基质进行了测试。研究了碱金属(Li,Na,K,Rb,Cs)和过渡金属(Cu,Ag)盐。评估了基体特性,包括在有机溶剂中的溶解度,成功用于WEs解吸/电离的阈值激光功率,基体离子的性质和它们所占据的质量范围,以及各个个体的同位素簇的复杂性金属。二羟基苯甲酸锂盐(LiDHB)表现最好,对于WEs,建议使用纯化的锂同位素基质((LiDHB)-Li-6或(LiDHB)-Li-7)。比较了三种样品制备程序:(1)在玻璃小瓶中混合样品和基质,并将混合物沉积在MALDI板(Mix)上,(2)沉积样品,然后沉积基质(Sa / Ma),以及(3)沉积基质,然后沉积样品(Ma / Sa)。通过扫描电子显微镜研究样品的形态。最佳的样品制备技术是Ma / Sa,最佳的样品与基质摩尔比为1:100。检测限在低皮摩尔范围内。 WEs的相对响应随分子量的增加而降低,并且观察到饱和和单不饱和WEs信号之间的微小差异。 WEs的MALDI光谱显示了与[M + Li](+)锂形成的分子加合物。在后源衰变(PSD)光谱中观察到的碎片与WEs [RCOOH + Li](+)的酸性部分有关,并用于结构分配。带有LiDHB的MALDI用于几种天然来源的样品,包括昆虫和植物WEs。与GC / MS数据达成了良好的一致性。此外,MALDI允许分析更高的WE,银杏叶提取物中的碳原子多达64个。

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