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首页> 外文期刊>Analytical chemistry >Displacement-type Quartz Crystal Microbalance Immunosensing Platform for Ultrasensitive Monitoring of Small Molecular Toxins
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Displacement-type Quartz Crystal Microbalance Immunosensing Platform for Ultrasensitive Monitoring of Small Molecular Toxins

机译:位移型石英晶体微天平免疫传感平台,用于小分子毒素的超灵敏监测

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摘要

A novel displacement-type quartz crystal microbalance (QCM) immunosensing strategy, based on glucose and its analogue dextran for concanavalin A (ConA) binding sites, was designed for ultrasensitive monitoring of small molecular biotoxins (brevetoxin B, PbTx-2, used as a model) with signal amplification on a graphene-functionalized sensing interface. To construct such a QCM immunosensing platform, phenoxy-functionalized dextran (DexP) was initially assembled onto the surface of graphene-coated QCM probe via the π-stacking interaction, and ConA-labeled monoclonal mouse anti-PbTx-2 capture antibody was then immobilized on the DexP-modified probe by dextran-ConA binding. Gold nanoparticle heavily functionalized with glucoamylase and bovine serum albumin-PbTx-2 (PbTx-2-BSA) conjugate was employed as the trace tag. A competitive-type immunoassay format was adopted for the online monitoring of PbTx-2 between anti-PbTx-2 antibody immobilized on the QCM probe and PbTx-2-BSA labeled on the gold nanoparticle. Accompanying the gold nanoparticle, the carried glucoamylase could hydrolyze amylopectin in glucose. The produced glucose competed with dextran for ConA and displaced the ConA-streptavidin-anti-PbTx-2 complex from the QCM probe, resulting in the frequency change. Under optimal conditions, the frequency of the QCM immunosensor was indirectly proportional to the concentration of target PbTx-2 in the sample and exhibited a dynamic range from 1.0 pg·mL~(-1) to 10 ng·mL~(-1) with a detection limit (LOD) of 0.6 pg·mL~(-1) at the 3S_(blank) level. Intra- and interassay coefficients of variation were below 7.5% and 9.5%, respectively. In addition, the methodology was evaluated for analysis of PbTx-2 in 15 spiked seafood samples and showed good accordance between results obtained by the displacement-type QCM immunosensor and a commercialized enzyme-linked immunosorbent assay (ELISA) method.
机译:设计了一种基于葡萄糖及其类似葡聚糖的伴刀豆球蛋白A(ConA)结合位点的新型位移型石英晶体微天平(QCM)免疫传感策略,用于超灵敏监测小分子生物毒素(短毒素B,PbTx-2,用作模型),并在石墨烯功能化的感应界面上进行信号放大。为了构建这样的QCM免疫传感平台,首先通过π堆积相互作用将苯氧基官能化的右旋糖酐(DexP)组装到涂有石墨烯的QCM探针表面,然后固定ConA标记的单克隆小鼠抗PbTx-2捕获抗体通过葡聚糖-ConA结合在DexP修饰的探针上。金纳米粒子与葡萄糖淀粉酶和牛血清白蛋白-PbTx-2(PbTx-2-BSA)缀合物高度功能化被用作痕量标签。在线型监测中固定在QCM探针上的抗PbTx-2抗体和金纳米颗粒上标记的PbTx-2-BSA之间采用了竞争性免疫测定形式,以在线监测PbTx-2。伴随着金纳米颗粒,所携带的葡糖淀粉酶可以水解葡萄糖中的支链淀粉。产生的葡萄糖与葡聚糖竞争ConA,并从QCM探针置换了ConA-链霉亲和素-抗PbTx-2复合物,导致频率变化。在最佳条件下,QCM免疫传感器的频率与样品中目标PbTx-2的浓度成正比,并且动态范围为1.0 pg·mL〜(-1)至10 ng·mL〜(-1),在3S_(空白)水平下的检测限(LOD)为0.6 pg·mL〜(-1)。批内和批间变异系数分别低于7.5%和9.5%。此外,对该方法进行了评估,以分析15个加标海鲜样品中的PbTx-2,结果表明,通过置换型QCM免疫传感器和商业化的酶联免疫吸附法(ELISA)获得的结果之间具有良好的一致性。

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