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首页> 外文期刊>Analytical chemistry >High-Resolution Peptide Mapping Separations with MS-Friendly Mobile Phases and Charge-Surface-Modified C18
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High-Resolution Peptide Mapping Separations with MS-Friendly Mobile Phases and Charge-Surface-Modified C18

机译:MS友好型流动相和电荷表面修饰的C18的高分辨率肽图分离

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摘要

Ionic analytes, such as peptides, can be challenging to separate by reverse-phase chromatography with optimal efficiency. They tend, for instance, to exhibit poor peak shapes, particularly when eluted with mobile phases preferred for electrospray ionization mass spectrometry. We demonstrate that a novel charged-surface C18 stationary phase alleviates some of the challenges associated with reverse-phase peptide separations. This column chemistry, known as CSH (charged-surface hybrid) C18, improves upon an already robust organosilica hybrid stationary phase, BEH (ethylene-bridged hybrid) C18. Based on separations of a nine-peptide standard, CSH C18 was found to exhibit improved loadability, greater peak capacities, and unique selectivity compared to BEH C18. Its performance was also seen to be significantly less dependent on TFA-ion pairing, making it ideal for MS applications where high sensitivity is desired. These performance advantages were evaluated through application to peptide mapping, wherein CSH C18 was found to aid the development of a high-resolution, high-sensitivity LC-UV-MS peptide mapping method for the therapeutic antibody, trastuzumab. From these results, the use of a C18 stationary phase with a charged surface, such as CSH C18, holds significant promise for facilitating challenging peptide analyses.
机译:离子分析物(例如肽)可能难以通过反相色谱法以最佳效率进行分离。例如,它们倾向于表现出较差的峰形,尤其是在用电喷雾电离质谱法优选的流动相洗脱时。我们证明一种新型的带电荷表面C18固定相减轻了与反相肽分离相关的一些挑战。这种称为CSH(带电表面杂化)C18的色谱柱化学方法对已经坚固的有机硅杂化固定相BEH(乙烯桥杂化)C18进行了改进。基于九肽标准品的分离,发现CSH C18与BEH C18相比具有更好的负载能力,更大的峰容量和独特的选择性。还发现它的性能对TFA离子配对的依赖性大大降低,使其非常适合需要高灵敏度的MS应用。通过应用到肽图分析中评估了这些性能优势,其中发现CSH C18有助于开发用于治疗性抗体曲妥珠单抗的高分辨率,高灵敏度LC-UV-MS肽图绘制方法。根据这些结果,使用带电荷表面的C18固定相(例如CSH C18)具有极大的希望,可以促进具有挑战性的肽分析。

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