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Direct detection of peptides and proteins on a microfluidic platform with MALDI mass spectrometry

机译:使用MALDI质谱仪在微流控平台上直接检测肽和蛋白质

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The ability to detect and quantify proteins of individual cells in high throughput is of enormous biological and clinical relevance. Most methods currently in use either require the measurement of large cell populations or are limited to the investigation of few cells at a time. In this report, we present the combination of a polydimethylsiloxane-based microfluidic device to a matrix-assisted laser desorption ionization time-of-flight mass spectrometer (MALDI-TOF-MS) that allows the detection of as few as 300 molecules at the peptide level and ∼106 to 107 molecules at the protein level. Moreover, we performed an immunoassay with subsequent MALDI-TOF-MS to capture and detect insulin immobilized on a surface (∼0.05 mm2) in this device with a detection limit of 106 insulin molecules. This microfluidic-based approach therefore begins to approach the sample handling and sensitivity requirements for MS-based single-cell analysis of proteins and peptides and holds the potential for easy parallelization of immunoassays and other highly sensitive protein analyses.
机译:高通量检测和定量单个细胞蛋白质的能力具有巨大的生物学和临床意义。当前使用的大多数方法要么需要测量大量细胞,要么仅限于一次只研究少量细胞。在本报告中,我们介绍了基于聚二甲基硅氧烷的微流控设备与基质辅助激光解吸电离飞行时间质谱仪(MALDI-TOF-MS)的组合,该技术可检测到肽中仅有300个分子蛋白质水平的蛋白质水平约为10 6 至10 7 分子。此外,我们使用随后的MALDI-TOF-MS进行了免疫分析,以捕获和检测此设备中固定在表面(〜0.05 mm 2 )上的胰岛素,检测限为10 6 胰岛素分子。因此,这种基于微流体的方法开始满足蛋白质和肽基基于MS的单细胞分析的样品处理和灵敏度要求,并具有使免疫测定和其他高灵敏度蛋白质分析易于并行化的潜力。

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