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Fast Surface Acoustic Wave-Matrix-Assisted Laser Desorption Ionization Mass Spectrometry of Cell Response from Islets of Langerhans

机译:朗格汉斯岛细胞反应的快速表面声波矩阵辅助激光解吸电离质谱

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A desire for higher speed and performance in molecular profiling analysis at a reduced cost is driving a trend in miniaturization and simplification of procedures. Here we report the use of a surface acoustic wave (SAW) atomizer for fast sample handling in matrix-assisted laser desorption ionization mass spectrometry (MALDI MS) peptide and protein profiling of Islets of Langerhans, for future type 2 diabetes (T2D) studies. Here the SAW atomizer was used for ultrasound (acoustic) extraction of insulin and other peptide hormones released from freshly prepared islets, stimulated directly on a membrane. A high energy propagating SAW atomizes the membrane-bound liquid into approximately 2 μm diameter droplets, rich in cell-released molecules. Besides acting as a sample carrier, the membrane provides a purification step by entrapping cell clusters and other impurities within its fibers. A new SAW-based sample-matrix deposition method for MALDI MS was developed and characterized by a strong insulin signal, and a limit of detection (LOD) lower than 100 amol was achieved Our results support previous work reporting the SAW atomizer as a fast and inexpensive tool for ultrasound, membrane-based sample extraction. When interfaced with MALDI MS, the SAW atomizer constitutes a valuable tool for rapid cell studies. Other biomedical applications of SAW-MALDI MS are currently being developed, aiming at fast profiling of biofluids. The membrane sampling is a simplistic and noninvasive collection method of limited volume biofluids such as the gingival fluid and the tearfilm.
机译:对以降低的成本进行分子谱分析的更高速度和更高性能的需求推动了程序的小型化和简化的趋势。在这里,我们报告了使用表面声波(SAW)雾化器在Langerhans胰岛的基质辅助激光解吸电离质谱(MALDI MS)肽和蛋白质谱分析中进行快速样品处理,以用于将来的2型糖尿病(T2D)研究。在这里,SAW雾化器用于超声(声学)提取从新鲜制备的胰岛释放的胰岛素和其他肽激素,直接在膜上刺激。高能传播的声表面波将膜结合的液体雾化成直径约2μm的液滴,富含细胞释放的分子。除了充当样品载体之外,该膜还通过将细胞团簇和其他杂质截留在其纤维中来提供纯化步骤。开发了一种新的基于SAW的MALDI MS样品基质沉积方法,该方法具有较强的胰岛素信号,并实现了低于100 amol的检测限(LOD)。用于超声,基于膜的样品提取的廉价工具。当与MALDI MS结合使用时,SAW雾化器便成为快速细胞研究的宝贵工具。 SAW-MALDI MS的其他生物医学应用目前正在开发中,旨在快速分析生物流体。膜采样是有限体积的生物流体(如牙龈液和泪膜)的一种简单且无创的采集方法。

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