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A New Dynamic in Mass Spectral Imaging of Single Biological Cells

机译:单个生物细胞质谱成像的新动态

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Time-of-flight secondary ion mass spectrometry (TOF-SIMS) has unique capabilities in the area of high-resolution mass spectrometric imaging of biological samples. The technique offers parallel detection of native and non-native molecules at physiological concentrations with potentially submicrometer spatial resolution. Recent advances in SIMS technology have been focused on generating new ion sources that can in turn be used to eject more intact molecular and biological characteristic species from a sample. The introduction of polyatomic ion beams, particularly C_(60), for TOF-SIMS analysis has created a whole new application of molecular depth profiling and 3D molecular imaging. However, such analyses, particularly at high lateral resolution, are severely hampered by the accompanying mass spectrometry associated with current TOF-SIMS instruments. Hence, we have developed an instrument that overcomes many of the drawbacks of current TOF-SIMS spectrometers by removing the need to pulse the primary ion beam. The instrument samples the secondary ions using a buncher that feeds into a specially designed time-of-flight analyzer. We have validated this new instrumental concept by analyzing a number of biological samples generating 2D and 3D images showing molecular localization on a subcellular scale, over a practical time frame, while maintaining high mass resolution. We also demonstrate large area mapping and the MS/MS capability of the instrument.
机译:飞行时间二次离子质谱仪(TOF-SIMS)在生物样品的高分辨率质谱成像领域具有独特的功能。该技术可在生理浓度下以潜在的亚微米空间分辨率并行检测天然和非天然分子。 SIMS技术的最新进展集中在生成新的离子源上,这些离子源又可以用于从样品中喷射出更多完整的分子和生物学特征物种。用于TOF-SIMS分析的多原子离子束(特别是C_(60))的引入创造了分子深度轮廓分析和3D分子成像的全新应用。然而,这种分析,特别是在高横向分辨率下,被与当前的TOF-SIMS仪器相关的伴随质谱法严重地阻碍了。因此,我们开发了一种仪器,该仪器通过消除对初级离子束产生脉冲的需要,克服了当前TOF-SIMS光谱仪的许多缺点。该仪器使用一台集束器对二次离子进行采样,该集束器被送入专门设计的飞行时间分析仪中。我们已经通过分析许多生物样品来验证这个新的仪器概念,这些样品产生2D和3D图像,显示在实际时间内在亚细胞范围内的分子定位,同时保持了较高的质量分辨率。我们还将演示仪器的大面积映射和MS / MS功能。

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