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Molecularly Imprinted Polymer-Chemiluminescence Sensor Detect Phentolamine in Urine Sample

机译:分子印迹聚合物 - 化学发光传感器检测尿液样品中的植物

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Using methacrylic acid (MAA) as monomer, ethylene glycol dimethacrylate (EGDMA) as cross-linker and phentolamine as template molecule, we synthesized phentolamine–molecularly imprinted polymers (MIP). Using phentolamine–MIP as molecule recognizates, based on the oxidation reaction between KMnO4 and phenolamine in acidic, we set up a flow-injection chemiluminescence (FI-CL) sensor for phentolamine determination. The sensor was fabricated by packing the MIP particles into a V-shape flow cell. Phentolamine could be selectively on-line adsorbed by the MIPs and then sensed by the oxidation reaction between KMnO4 and phenolamine in acidic.The CL intensity was linear to phentolamine concentration in the range from 2.0 ×10?8 to 6.0 ×10?6 g mL?1 and the limit of detection (L.O.D.) was 6.0 ×10?9 g mL?1 (3σ) with the relative standard deviation (R.S.D.) less than 5% (n=11). The sensor showed high selectivity, improved sensitivity and excellent stability and reversibility compared with the CL method without using MIPs. The lifetime of the sensor was investigated and MIPs could be reused for more than 200 times. Using the method to determine phentolamine in human urine, the recoveries of phentolamine is 100.0% to 104.0%, the result is pretty good.
机译:使用甲基丙烯酸(MAA)作为单体,乙二醇二甲基丙烯酸酯(EGDMA)作为交联剂和芬兰菜作为模板分子,我们合成芬兰胺分子印迹聚合物(MIP)。根据酸性氧化反应的基于KMNO4和酚胺之间的氧化反应,使用Phentolamine-MIP,我们设立了用于植物测定的流动注射化学发光(FI-CL)传感器。通过将MIP颗粒填充到V形流动单元中来制造传感器。芬芳胺可以通过MIPS选择性地在线上吸附,然后通过KMnO4和酸性酚胺之间的氧化反应感测。CL强度为植物浓度为2.0×10?8至6.0×10?6g ml ?1和检测极限(LOD)为6.0×10?9g ml?1(3σ),相对标准偏差(RSD)小于5%(n = 11)。与CL法相比,传感器显示出高的选择性,改善灵敏度和优异的稳定性和可逆性,而不使用MIPS。调查传感器的寿命,并且可以重用MIPS超过200次。使用该方法测定人类尿液中的浮碱,植物的回收率为100.0%至104.0%,结果相当不错。

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