首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >A high-resolution scanning microprobe matrix-assisted laser desorption/ionization ion source for imaging analysis on an ion trap/Fourier transform ion cyclotron resonance mass spectrometer
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A high-resolution scanning microprobe matrix-assisted laser desorption/ionization ion source for imaging analysis on an ion trap/Fourier transform ion cyclotron resonance mass spectrometer

机译:高分辨率扫描微探针基质辅助激光解吸/电离离子源,用于离子阱/傅立叶变换离子回旋共振质谱仪上的成像分析

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A new scanning microprobe matrix-assisted laser desorption/ionization (SMALDI) ion source for high spatial resolution has been developed for linear ion trap and Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR-MS). The source is fully compatible with commercial ion trap flanges (such as the LTQ series, Thermo Fisher Scientific). The source is designed for atmospheric pressure (AP) operation but is also suitable for mid-pressure operation. The AP mode is especially useful for investigating volatile compounds. The source can be interchanged with other ion sources within a minute when operated in the AP mode. Combining high-lateral resolution MALDI imaging with high mass resolution and high mass accuracy mass spectrometry, available in the FT-ICR mode, provides a new quality of analytical information, e.g. from biological samples. First results obtained with the new ion source demonstrate a maximum lateral resolution of 0.6 by 0.5 mu m. Depending on the limit of detection of the chosen mass analyzer, however, the size of the focus had to be enlarged to a diameter of up to 8 mu m in the FT-ICR mode, in order to create enough ions for detection. Mass spectra acquired for analytical imaging were obtained from single laser pulses per pixel in all the experiments. This mode allows us to investigate biological thin sections with desorption focus diameters in the micrometer range, known to cause complete evaporation of material under the laser focus with a very limited number of laser pulses. As a first example, peptide samples deposited in microstructures were investigated with the new setup. A high quality and validity of the acquired images were obtained in the ion trap mode due to the low limit of detection. High mass resolution and accuracy but poorer image quality were obtained in the ICR mode due to the lower detection sensitivity of the ICR detector. Copyright (C) 2008 John Wiley & Sons, Ltd.
机译:已开发出一种用于空间分辨率高的新型扫描微探针基质辅助激光解吸/电离(SMALDI)离子源,用于线性离子阱和傅立叶变换离子回旋共振质谱(FT-ICR-MS)。该离子源与商业离子阱法兰(例如LTQ系列,Thermo Fisher Scientific)完全兼容。该气源设计用于大气压(AP)操作,但也适用于中压操作。 AP模式对于研究挥发性化合物特别有用。在AP模式下操作时,该离子源可在一分钟之内与其他离子源互换。将FT-ICR模式下可用的高边分辨率MALDI成像与高质量分辨率和高精度质谱相结合,可提供新质量的分析信息,例如从生物样品。用新离子源获得的最初结果表明最大横向分辨率为0.6 x 0.5微米。但是,根据所选质量分析仪的检测极限,在FT-ICR模式下,必须将焦点的尺寸扩大到最大8μm的直径,以便产生足够的离子进行检测。在所有实验中,从每个像素单个激光脉冲获得用于分析成像的质谱图。这种模式使我们能够研究具有解吸焦点直径在微米范围内的生物薄片,已知该薄片会在非常有限的激光脉冲数量下导致激光焦点下的材料完全蒸发。作为第一个例子,用新装置研究了沉积在微结构中的肽样品。由于检测限低,因此在离子阱模式下可获得高质量和高效率的采集图像。由于ICR检测器的检测灵敏度较低,因此在ICR模式下可获得较高的质量分辨率和精度,但图像质量较差。版权所有(C)2008 John Wiley&Sons,Ltd.

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