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A MIP-based flow-through fluoroimmunosensor as an alternative to immunosensors for the determination of digoxin in serum samples

机译:基于MIP的流通式荧光免疫传感器可替代免疫传感器测定血清样品中的地高辛

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This work reports a comparative study of two automated flow-through fluorosensors for the determination of digoxin in serum samples: an immunosensor with an anti-digoxin polyclonal antibody as the reactive phase permanently immobilised on controlled-pore glass and a sensor with a selective reaction system based on a methacrylic molecularly imprinted polymer (MIP) synthesised by bulk polymerisation. The variables affecting the sensitivity and dynamic range of the sensors (e.g. the carrier and elution solutions, flow rates, pH and reagent concentrations) were optimized, and the binding characteristics of their reactive phases were compared in a competitive fluorescent assay. Digoxin was reproducibly determined by both sensors at the milligram per litre level (detection limit = 1.20 × 10?3 mg L?1 and RSD = 4–7% for the immunosensor; detection limit = 1.7 × 10?5 mg L?1 and RSD = 1–2% for the MIP sensor). No cross-reactivity with digoxin-related compounds was seen for either sensor at a digoxin/interferent ratio of 1:100. The lifetime of the immunosensor was about 50 immunoassays; its shelf life, when unused, is about 3 months. The lifetime of the MIP sensor was over 18 months. Both sensors were used to determine the digoxin concentration of human serum samples with satisfactory results.
机译:这项工作报告了两种用于测定血清样品中地高辛的自动流通式荧光传感器的比较研究:一种将抗地高辛多克隆抗体作为反应相的免疫传感器永久固定在受控孔玻璃上,另一种具有选择性反应系统的传感器基于通过本体聚合合成的甲基丙烯酸分子印迹聚合物(MIP)。优化了影响传感器灵敏度和动态范围的变量(例如载体和洗脱液,流速,pH和试剂浓度),并在竞争性荧光测定法中比较了它们反应相的结合特性。两种传感器都以毫克每升的水平可重复测定地高辛(免疫传感器的检测极限= 1.20×10?3 mg L?1 和RSD = 4–7%;检测极限= 1.7× MIP传感器为10?5 mg L?1 ,RSD = 1-2%。在地高辛/干扰素为1:100的情况下,两种传感器均未发现与地高辛相关化合物的交叉反应。免疫传感器的寿命约为50次免疫测定。如果不使用,其保质期约为3个月。 MIP传感器的使用寿命超过18个月。两种传感器均用于测定人血清样品中地高辛的浓度,结果令人满意。

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