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使用基质辅助激光解吸/电离、轴向飞行时间质谱和 TPX3CAM 对高质量蛋白质和亚稳片段进行时间分辨成像。

Time-Resolved Imaging of High Mass Proteins and Metastable Fragments Using Matrix-Assisted Laser Desorption/Ionization, Axial Time-of-Flight Mass Spectrometry, and TPX3CAM.

机构信息

Maastricht MultiModal Molecular Imaging (M4i) Institute, Division of Imaging Mass Spectrometry (IMS), Maastricht University, 6229 ER Maastricht, The Netherlands.

Amsterdam Scientific Instruments (ASI), Science Park 106, 1098 XG Amsterdam, The Netherlands.

出版信息

Anal Chem. 2023 Jan 17;95(2):1470-1479. doi: 10.1021/acs.analchem.2c04480. Epub 2022 Dec 27.

Abstract

The Timepix (TPX) is a position- and time-sensitive pixelated charge detector that can be coupled with time-of-flight mass spectrometry (TOF MS) in combination with microchannel plates (MCPs) for the spatially and temporally resolved detection of biomolecules. Earlier generation TPX detectors used in previous studies were limited by a moderate time resolution (at best 10 ns) and single-stop detection for each pixel that hampered the detection of ions with high mass-to-charge (/) values at high pixel occupancies. In this study, we have coupled an MCP-phosphor screen-TPX3CAM detection assembly that contains a silicon-coated TPX3 chip to a matrix-assisted laser desorption/ionization (MALDI)-axial TOF MS. A time resolution of 1.5625 ns, per-pixel multihit functionality, simultaneous measurement of TOF and time-over-threshold (TOT) values, and kHz readout rates of the TPX3 extended the / detection range of the TPX detector family. The detection of singly charged intact Immunoglobulin M ions of / value approaching 1 × 10 Da has been demonstrated. We also discuss the utilization of additional information on impact coordinates and TOT provided by the TPX3 compared to conventional MS detectors for the enhancement of the quality of the mass spectrum in terms of signal-to-noise (S/N) ratio. We show how the reduced dead time and event-based readout in TPX3 compared to the TPX improves the sensitivity of high / detection in both low and high mass measurements (/ range: 757-970,000 Da). We further exploit the imaging capabilities of the TPX3 detector for the spatial and temporal separation of neutral fragments generated by metastable decay at different locations along the field-free flight region by simultaneous application of deflection and retarding fields.

摘要

Timepix (TPX) 是一种位置和时间敏感的像素化电荷探测器,可与飞行时间质谱 (TOF MS) 结合使用,并与微通道板 (MCP) 结合使用,用于对生物分子进行空间和时间分辨检测。以前研究中使用的早期一代 TPX 探测器受到中等时间分辨率(最好为 10 ns)和每个像素的单次检测的限制,这阻碍了对高质荷比(/)值的离子的检测在高像素占有率下。在这项研究中,我们将 MCP-荧光屏-TPX3CAM 检测组件与基质辅助激光解吸/电离 (MALDI)-轴向 TOF MS 耦合在一起,该组件包含涂有硅的 TPX3 芯片。1.5625 ns 的时间分辨率、每个像素的多次命中功能、TOF 和时间超过阈值 (TOT) 值的同时测量以及 TPX3 的 kHz 读出速率扩展了 TPX 探测器家族的/检测范围。已经证明可以检测接近 1×10 Da 的单价完整免疫球蛋白 M 离子。我们还讨论了与传统 MS 探测器相比,TPX3 提供的关于撞击坐标和 TOT 的附加信息如何用于提高质量谱的质量,从而提高信噪比 (S/N) 比。我们展示了与 TPX 相比,TPX3 中减少的死时间和基于事件的读出如何提高低和高质量测量中高/检测的灵敏度(/范围:757-970,000 Da)。我们进一步利用 TPX3 探测器的成像功能,通过同时应用偏转和减速场,在无场飞行区的不同位置对亚稳态衰变产生的中性碎片进行时空分离。

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