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Synthesis of a Polyelectrolyte and Its Applications in Laser Desorption/Ionization

机译:聚电解质的合成及其在激光解吸/电离中的应用

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A novel laser energy-absorbing polymer derivatized from an energy-absorbing molecule has been synthesized. This polymer effectively eliminates the matrix addition step and the use of requisite small organic chemical matrixes from MALDI. The resulting polyelectrolyte-assisted laser desorption/ionization method has been proven to have some exceptional advantages over current MALDI methods. First, the matrix addition step from the LDI analytical process was eliminated. Second, the low molecular weight signal from energy-absorbing molecules was minimized by covalently linking the energy-absorbing molecules to the backbone of the polymer and other ionization-enhancing pendant groups on the backbone. Finally, the mass resolution of LDI was enhanced by minimizing chemical background noise throughout the spectrum. Polymeric linkage of energy-absorbing molecules aligns them with each other in an ordered structure, similar to MALDI matrix crystallization. Using the designed polymer film, laser desorption/ionization for proteins and peptides were successfully performed without the addition of any matrix. Analytical results for the synthesized monomer and polymers will be also presented.
机译:合成了一种由能量吸收分子衍生的新型激光能量吸收聚合物。这种聚合物有效地消除了基质添加步骤,并消除了MALDI中必需的小型有机化学基质的使用。事实证明,与目前的MALDI方法相比,所得的聚电解质辅助激光解吸/电离方法具有一些特殊的优势。首先,消除了LDI分析过程中的基质添加步骤。第二,通过将能量吸收分子共价连接到聚合物的骨架和骨架上其他增强电离的侧基,将能量吸收分子的低分子量信号最小化。最后,通过使整个光谱中的化学背景噪声最小化,可以提高LDI的质量分辨率。类似于MALDI基质结晶,能量吸收分子的聚合物键使它们彼此排列成有序结构。使用设计的聚合物薄膜,无需添加任何基质即可成功进行蛋白质和多肽的激光解吸/电离。还将给出合成的单体和聚合物的分析结果。

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