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Protein Chips Compatible with MALDI Mass Spectrometry Prepared by Ambient Ion Landing

机译:与环境离子登陆制备的MALDI质谱兼容的蛋白质芯片

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We present a technology that allows the preparation of matrix-assisted laser desorption/ionization (MALDI)-compatible protein chips by ambient ion landing of proteins and successive utilization of the resulting protein chips for the development of bioanalytical assays. These assays are based on the interaction between the immobilized protein and the sampled analyte directly on the protein chip and subsequent in situ analysis by MALDI mass spectrometry. The electrosprayed proteins are immobilized on dry metal and metal oxide surfaces, which are nonreactive under normal conditions. The ion landing of electrosprayed protein molecules is performed under atmospheric pressure by an automated ion landing apparatus that can manufacture protein chips with a predefined array of sample positions or any other geometry of choice. The protein chips prepared by this technique are fully compatible with MALDI ionization because the metal-based substrates are conductive and durable enough to be used directly as MALDI plates. Compared to other materials, the nonreactive surfaces show minimal nonspecific interactions with chemical species in the investigated sample and are thus an ideal substrate for selective protein chips. Three types of protein chips were used in this report to demonstrate the bioanalytical applications of ambient ion landing. The protein chips with immobilized proteolytic enzymes showed the usefulness for fast in situ peptide MALDI sequencing; the lectin-based protein chips showed the ability to enrich glycopeptides from complex mixtures with subsequent MALDI analysis, and the protein chips with immobilized antibodies were used for a novel immunoMALDI workflow that allowed the enrichment of antigens from the serum followed by highly specific MALDI detection.
机译:我们介绍了一种技术,该技术可以通过环境离子对蛋白质的着陆以及随后利用所得蛋白质芯片进行生物分析测定的开发来制备与基质辅助的激光解吸/电离(MALDI)兼容的蛋白质芯片。这些测定基于直接在蛋白质芯片上固定的蛋白质和采样的分析物之间的相互作用,以及随后通过MALDI质谱进行的原位分析。电喷雾的蛋白质被固定在干燥的金属和金属氧化物表面上,这些表面在正常条件下不会发生反应。电喷雾蛋白分子的离子着陆是在大气压下通过自动离子着陆装置执行的,该装置可以制造具有预定位置的样品位置阵列或任何其他选择的几何形状的蛋白质芯片。通过这种技术制备的蛋白质芯片与MALDI电离完全兼容,因为基于金属的基质具有足够的导电性和耐用性,可以直接用作MALDI板。与其他材料相比,非反应性表面与被研究样品中的化学物质之间的非特异性相互作用极小,因此是选择性蛋白质芯片的理想底物。本报告使用了三种类型的蛋白质芯片来证明环境离子着陆的生物分析应用。固定有蛋白水解酶的蛋白质芯片显示了用于快速原位肽MALDI测序的有用性。基于凝集素的蛋白质芯片显示了从复杂混合物中富集糖肽的能力,并随后进行了MALDI分析,并且将具有固定抗体的蛋白质芯片用于新型免疫MALDI工作流程,该流程可从血清中富集抗原,然后进行高度特异性的MALDI检测。

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