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首页> 外文期刊>ELECTROPHORESIS >Improved peak capacity for CE separations of enzyme inhibitors with activity-based detection using magnetic bead microreactors
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Improved peak capacity for CE separations of enzyme inhibitors with activity-based detection using magnetic bead microreactors

机译:通过使用磁珠微反应器进行基于活性的检测,提高了酶抑制剂CE分离的峰容量

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A technique for separating and detecting enzyme inhibitors was developed using CE with an enzyme microreactor. The on-column enzyme microreactor was constructed using NdFeB magnet(s) to immobilize alkaline phosphatase-coated superparamagnetic beads (2.8 μm diameter) inside a capillary before the detection window. Enzyme inhibition assays were performed by injecting a plug of inhibitor into a capillary filled with the substrate, AttoPhos. Product generated in the enzyme microreactor was detected by LIF. Inhibitor zones electrophoresed through the capillary, passed through the enzyme microreactor, and were observed as negative peaks due to decreased product formation. The goal of this study was to improve peak capacities for inhibitor separations relative to previous studies, which combined continuous engagement electrophoretically mediated microanalysis and transient engagement electrophoretically mediated microanalysis to study enzyme inhibition. The effects of electric field strength, bead injection time and inhibitor concentrations on peak capacity and peak width were investigated. Peak capacities were increased to ≥20 under optimal conditions of electric field strength and bead injection time for inhibition assays with arsenate and theophylline. Five reversible inhibitors of alkaline phosphatase (theophylline, vanadate, arsenate, L-tryptophan and tungstate) were separated and detected to demonstrate the ability of this technique to analyze complex inhibitor mixtures.
机译:使用带有酶微反应器的CE开发了一种分离和检测酶抑制剂的技术。使用NdFeB磁体构建柱上酶​​微反应器,以在检测窗口之前固定毛细管内的碱性磷酸酶涂层超顺磁珠(直径2.8μm)。通过将抑制剂塞注入充满基质AttoPhos的毛细管中来进行酶抑制测定。通过LIF检测在酶微反应器中产生的产物。通过毛细管电泳,通过酶微反应器的抑制剂区域,由于产物形成减少而被观察为负峰。相对于以前的研究,本研究的目的是提高抑制剂分离的峰容量,该研究结合了电泳法介导的连续接合和电泳介导的微量分析来研究酶抑制作用。研究了电场强度,磁珠注入时间和抑制剂浓度对峰容量和峰宽的影响。在最佳的电场强度和磁珠注入时间的条件下,将峰容量提高到≥20,用于砷酸和茶碱的抑制试验。分离并检测了五种碱性磷酸酶的可逆抑制剂(茶碱,钒酸盐,砷酸盐,L-色氨酸和钨酸盐),以证明该技术具有分析复杂抑制剂混合物的能力。

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