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Application of stable isotope dimethyl labeling for MRM based absolute antigen quantification of influenza vaccine

机译:稳定同位素二甲基标记在流感疫苗的MRM绝对抗原定量的应用

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Determining the precursor/product ion pair and optimal collision energy are the critical steps for developing a multiple reaction monitoring (MRM) assay using triple quadruple mass spectrometer for protein quantitation. In this study, a platform consisting of stable isotope dimethyl labeling coupled with triple-quadruple mass spectrometer was used to quantify the protein components of the influenza vaccines. Dimethyl labeling of both the peptide N-termini and the e-amino group of lysine residues was achieved by reductive amination using formaldehyde and sodium cyanoborohydrate. Dimethylated peptides are known to exhibit dominant a1 ions under gas phase fragmentation in a mass spectrometer. These a1 ions can be predicted from the peptide N-terminal amino acids, and their signals do not vary significantly across a wide range of collision energies, which facilitates the determination of MRM transition settings for multiple protein targets. The intrinsic a1 ions provide sensitivity for acquiring MRM peaks that is superior to that of the typical b/y ions used for native peptides, and they also provided good linearity (R-2 = 0.99) at the detected concentration range for each peptide. These features allow for the simultaneous quantification of hemagglutinin and neuraminidase in vaccines derived from either embryo eggs or cell cultivation. Moreover, the low abundant ovalbumin residue originated from the manufacturing process can also be determined. The results demonstrate that the stable isotope dimethyl labeling coupled with MRM Mass spectrometry screening of a1 ions (i.e., SIDa-MS) can be used as a high-throughput platform for multiple protein quantification of vaccine products.
机译:确定前体/产物离子对和最佳碰撞能量是使用Triple四重质谱仪进行蛋白质定量的三重四重质谱仪开发多反应监测(MRM)测定的关键步骤。在该研究中,使用由稳定同位素二甲基标记的平台与三重谱谱仪偶联,用于量化流感疫苗的蛋白质组分。通过使用甲醛和氰基硼水合物还原胺化实现肽N-末端和赖氨酸残基的E-氨基的二甲基标记。已知二甲基化肽在质谱仪中在气相碎片下表现出显性A1离子。这些A1离子可以从肽N-末端氨基酸预测,并且它们的信号在各种碰撞能量上不会显着变化,这有利于多种蛋白质靶标的MRM转变设置。本征A1离子提供了用于获取优于用于天然肽的MRM峰的灵敏度,并且在检测到的每种肽的浓度范围内也提供了良好的线性度(R-2> = 0.99) 。这些特征允许在衍生自胚胎卵或细胞培养的疫苗中同时定量血凝素和神经氨酸酶。此外,还可以确定源自制造过程的低丰富的卵形残留物。结果表明,稳定同位素二甲基标记与MRM质谱筛选A1离子(即SIDA-MS)可用作多蛋白质疫苗产品的高通量平台。

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