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首页> 外文期刊>Analytical and bioanalytical chemistry >Tissue protein imaging at 1 mu m laser spot diameter for high spatial resolution and high imaging speed using transmission geometry MALDI TOF MS
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Tissue protein imaging at 1 mu m laser spot diameter for high spatial resolution and high imaging speed using transmission geometry MALDI TOF MS

机译:使用透射几何MALDI TOF MS在1 µm激光光斑直径下进行组织蛋白成像,以实现高空间分辨率和高成像速度

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We have achieved protein imaging mass spectrometry capabilities at sub-cellular spatial resolution and at high acquisition speed by integrating a transmission geometry ion source with time of flight mass spectrometry. The transmission geometry principle allowed us to achieve a 1-mu m laser spot diameter on target. A minimal raster step size of the instrument was 2.5 mu m. Use of 2,5-dihydroxyacetophenone robotically sprayed on top of a tissue sample as a matrix together with additional sample preparation steps resulted in single pixel mass spectra from mouse cerebellum tissue sections having more than 20 peaks in a range 3-22 kDa. Mass spectrometry images were acquired in a standard step raster microprobe mode at 5 pixels/s and in a continuous raster mode at 40 pixels/s.
机译:通过将传输几何离子源与飞行时间质谱仪相集成,我们已经在亚细胞空间分辨率和高采集速度下实现了蛋白质成像质谱仪的功能。透射几何原理使我们能够在目标上实现1微米的激光光斑直径。仪器的最小光栅步长为2.5微米。将2,5-二羟基苯乙酮自动喷涂到组织样品的顶部作为基质,再加上其他样品制备步骤,导致小鼠小脑组织切片的单像素质谱在3-22 kDa范围内具有20多个峰。质谱图像以5像素/秒的标准步进光栅微探针模式和40像素/ s的连续光栅模式获取。

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