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High-Resolution Differential Ion Mobility Separations Using Helium-Rich Gases

机译:使用富含氦气的气体进行高分辨率差分离子迁移分离

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摘要

Analyses of complex mixtures and characterization of ions increasingly involve gas-phase separations by ion mobility spectrometry (IMS) and particularly differential or field asymmetric waveform IMS (FAIMS) based on the difference of ion mobility in strong and weak electric fields. The key advantage of FAIMS is substantial orthogonality to mass spectrometry (MS), which makes FAIMS/MS hybrid a powerful analytical platform of broad utility. However, the potential of FAIMS has been constrained by limited resolution. Here, we report that the use of gas mixtures comprising up to 75percent He dramatically increases the FAIMS separation capability, with the resolving power for peptides and peak capacity for protein digests reaching and exceeding 100. The resolution gains extend to small molecules, where previously unresolved isomers can now be separated. These performance levels open major new applications of FAIMS in proteomic and other biomolecular analyses.
机译:复杂混合物的分析和离子表征越来越涉及通过离子迁移谱(IMS)进行气相分离,尤其是基于强电场和弱电场中离子迁移率差异的差分或场不对称波形IMS(FAIMS)。 FAIMS的主要优点是与质谱(MS)的正交性强,这使FAIMS / MS混合成为广泛应用的强大分析平台。但是,FAIMS的潜力受到分辨率限制的限制。在这里,我们报告说,使用高达75%的He的气体混合物可显着提高FAIMS分离能力,对肽的分辨能力和对蛋白质消化物的峰容量达到和超过100。分离度的提高扩展到以前尚未解决的小分子现在可以分离异构体。这些性能水平开启了FAIMS在蛋白质组学和其他生物分子分析中的重大新应用。

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