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Bridging the Gap between Molecular and Elemental Mass Spectrometry: Higher Energy Collisional Dissociation (HCD) Revealing Elemental Information

机译:缩小分子质谱和元素质谱之间的差距:高能碰撞解离(HCD)显示元素信息

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Molecular mass spectrometry has been applied to simultaneously obtain molecular and elemental information from metal-containing species. Energy tuning of the higher-energy collision dissociation (HCD) fragmentation cell allows the controlled production of typical peptide fragments or elemental reporter ions informing about the metallic content of the analyzed species. Different instrumental configurations and fragmentation techniques have been tested, and the efficiency extracting the elemental information has been compared. HCD fragmentation operating at very high energy led to the best results. Platinum, lanthanides, and iodine reporter ions from peptides interacting with cisplatin, peptides labeled with lanthanides-MeCAT-IA, and iodinated peptides, respectively, were obtained. The possibility to produce abundant molecular and elemental ions in the same analysis simplifies the correlation between both signals and open pathways in metallomics studies enabling the specific tracking of metal-containing species. The proposed approach has been successfully applied to in solution standards and complex samples. Moreover, interesting preliminary MALDI-imaging experiments have been performed showing similar metal distribution compared to laser ablation (LA)-ICPMS.
机译:分子质谱已应用于从含金属的物种中同时获得分子和元素信息。通过对高能碰撞解离(HCD)裂解池的能量调节,可控制产生典型的肽片段或元素报告离子,从而告知所分析物种的金属含量。测试了不同的仪器配置和碎片化技术,并比较了提取元素信息的效率。以非常高的能量运行的HCD碎片导致了最佳结果。从与顺铂相互作用的肽,分别用镧系元素-MeCAT-IA标记的肽和碘化的肽中获得了铂,镧系元素和碘报告离子。在同一分析中产生大量分子离子和元素离子的可能性简化了金属组学研究中信号和开放路径之间的相关性,从而可以对含金属的物种进行特定的跟踪。所提出的方法已成功应用于解决方案标准和复杂样本中。此外,已经进行了有趣的初步MALDI成像实验,显示出与激光烧蚀(LA)-ICPMS相似的金属分布。

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