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Gold patterned biochips for on-chip immuno-MALDI-TOF MS: SPR imaging coupled multi-protein MS analysis

机译:用于芯片上免疫MALDI-TOF MS的金图案生物芯片:SPR成像耦合多蛋白MS分析

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Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) analysis of immuno-captured target protein efficiently complements conventional immunoassays by offering rich molecular information such as protein isoforms or modifications. Direct immobilization of antibodies on MALDI solid support enables both target enrichment and MS analysis on the same plate, allowing simplified and potentially multiplexing protein MS analysis. Reliable on-chip immuno-MALDI-TOF MS for multiple biomarkers requires successful adaptation of antibody array biochips, which also must accommodate consistent reaction conditions on antibody arrays during immuno-capture and MS analysis. Here we developed a facile fabrication process of versatile antibody array biochips for reliable on-chip MALDI-TOF-MS analysis of multiple immuno-captured proteins. Hydrophilic gold arrays surrounded by super-hydrophobic surfaces were formed on a gold patterned biochip via spontaneous chemical or protein layer deposition. From antibody immobilization to MALDI matrix treatment, this hydrophilic/phobic pattern allowed highly consistent surface reactions on each gold spot. Various antibodies were immobilized on these gold spots both by covalent coupling or protein G binding. Four different protein markers were successfully analyzed on the present immuno-MALDI biochip from complex protein mixtures including serum samples. Tryptic digests of captured PSA protein were also effectively detected by on-chip MALDI-TOF-MS. Moreover, the present MALDI biochip can be directly applied to the SPR imaging system, by which antibody and subsequent antigen immobilization were successfully monitored.
机译:免疫捕获的靶蛋白的基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)分析通过提供丰富的分子信息(例如蛋白同工型或修饰),有效地补充了常规免疫测定方法。将抗体直接固定在MALDI固体支持物上,可在同一平板上进行靶标富集和MS分析,从而简化并可能进行多重蛋白MS分析。可靠的用于多种生物标记物的片上免疫MALDI-TOF MS需要成功适应抗体阵列生物芯片,在免疫捕获和MS分析期间,抗体阵列生物芯片也必须适应抗体阵列上的一致反应条件。在这里,我们开发了一种多功能抗体阵列生物芯片的简便制造工艺,可对多种免疫捕获蛋白进行可靠的芯片上MALDI-TOF-MS分析。通过自发化学或蛋白质层沉积,在金图案化生物芯片上形成被超疏水表面包围的亲水金阵列。从抗体固定到MALDI基质处理,这种亲水/疏水模式可在每个金点上实现高度一致的表面反应。通过共价偶联或蛋白G结合将各种抗体固定在这些金点上。在当前的免疫MALDI生物芯片上,从包括血清样品在内的复杂蛋白质混合物中成功分析了四种不同的蛋白质标记。芯片上的MALDI-TOF-MS还可以有效地检测捕获的PSA蛋白的胰蛋白酶消化。而且,本发明的MALDI生物芯片可以直接应用于SPR成像系统,通过该系统成功地监测了抗体和随后的抗原固定。

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