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Five Micron High Resolution MALDI Mass Spectrometry Imaging with Simple, Interchangeable, Multi-Resolution Optical System

机译:五微米高分辨率马尔迪质谱成像简单,可互换多分辨率光学系统

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High-spatial resolution mass spectrometry imaging (MSI) is crucial for the mapping of chemical distributions at the cellular and subcellular level. In this work, we improved our previous laser optical system for matrix-assisted laser desorption ionization (MALDI)-MSI, from similar to 9 mu m practical laser spot size to a practical laser spot size of similar to 4 mu m, thereby allowing for 5 mu m resolution imaging without oversampling. This is accomplished through a combination of spatial filtering, beam expansion, and reduction of the final focal length. Most importantly, the new laser optics system allows for simple modification of the spot size solely through the interchanging of the beam expander component. Using 10x, 5x, and no beam expander, we could routinely change between similar to 4, similar to 7, and similar to 45 mu m laser spot size, in less than 5 min. We applied this multi-resolution MALDI-MSI system to a single maize root tissue section with three different spatial resolutions of 5, 10, and 50 mu m and compared the differences in imaging quality and signal sensitivity. We also demonstrated the difference in depth of focus between the optical systems with 10x and 5x beam expanders.
机译:高空间分辨率质谱成像(MSI)对于在细胞和亚细胞水平下的化学分布的映射至关重要。在这项工作中,我们改进了我们以前的激光光学系统,用于矩阵辅助激光解吸电离(MALDI)-MSI,从类似于90μm的实际激光光斑尺寸,与4μm相似的实际激光光斑尺寸,从而允许5 mu m分辨率成像而没有过采样。这是通过空间滤波,光束膨胀和最终焦距的降低的组合来实现的。最重要的是,新的激光光学系统允许通过串联扩展器分量的互换简单地改变光斑尺寸。使用10x,5x和没有光束扩展器,我们可以在类似于4之间进行常规变化,类似于7,类似于45 mu m的激光光斑尺寸,在不到5分钟内。我们将这种多分辨率MALDI-MSI系统应用于单个玉米根组织部分,其中三个不同的空间分辨率为5,10和50μm,并比较了成像质量和信号灵敏度的差异。我们还展示了具有10x和5倍光束扩展器的光学系统之间的深度深度的差异。

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