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Single-protein nanomechanical mass spectrometry in real time

机译:实时单蛋白质纳米力学质谱

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摘要

Nanoelectromechanical systems (NEMS) resonators can detect mass with exceptional sensitivity. Previously, mass spectra from several hundred adsorption events were assembled in NEMS-based mass spectrometry using statistical analysis. Here, we report the first realization of single-molecule NEMS-based mass spectrometry in real time. As each molecule in the sample adsorbs on the resonator, its mass and position of adsorption are determined by continuously tracking two driven vibrational modes of the device. We demonstrate the potential of multimode NEMS-based mass spectrometry by analysing IgM antibody complexes in real time. NEMS-based mass spectrometry is a unique and promising new form of mass spectrometry: it can resolve neutral species, provide a resolving power that increases markedly for very large masses, and allow the acquisition of spectra, molecule-by-molecule, in real time.
机译:纳米机电系统(NEMS)谐振器可以异常灵敏地检测质量。以前,使用统计分析方法在基于NEMS的质谱法中收集了数百个吸附事件的质谱图。在此,我们报告了基于NEMS的单分子实时质谱的首次实现。当样品中的每个分子吸附在谐振器上时,其质量和吸附位置是通过连续跟踪设备的两个驱动振动模式来确定的。我们通过实时分析IgM抗体复合物证明了基于多模NEMS的质谱技术的潜力。基于NEMS的质谱是一种独特且有前途的质谱新形式:它可以解析中性物质,提供非常大的质量时显着提高的分辨能力,并允许逐分子实时采集光谱。

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