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Nanoparticles Amplified QCM Sensor for Enzyme Activity Evaluation

机译:纳米粒子扩增了酶活性评价的QCM传感器

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This investigation introduces a new very simple and efficient approach for QCM sensor response amplification, developed for hydrolases activity determination. For this purpose, the QCM crystal surface was modified with nanoparticles loaded enzyme substrate. During the enzymatic substrate degradation, the heavier nanoparticles were also released from the sensitive layer together with the substrate degradation products. Nanoparticles removal resulted in QCM signal amplification due to the higher nanoparticles specific mass compared with the specific mass of the substrate. The suggested concept was successfully applied for creating of simple biosensing platforms for trypsin and lipase activity determination in real time using respectively SiO_2 nanoparticles loaded olive oil and Ag nanoparticles loaded gelatin as enzyme substrates. Up to 10 times amplification of the QCM signal was reached applying the proposed approach compared with the common one.
机译:该研究介绍了用于水解活性测定的QCM传感器响应放大的一种新的简单和有效的方法。为此目的,用纳米颗粒加载的酶底物改性QCM晶体表面。在酶底物降解期间,较重的纳米颗粒也与敏感层一起与底物降解产物一起释放。除纳米颗粒特异性质量较高的基材相比,纳米颗粒导致QCM信号放大引起的QCM信号放大。建议的概念以实时SiO_2纳米颗粒的橄榄油和Ag纳米颗粒在酶底物中实时使用分别使用SiO_2纳米颗粒的胰蛋白酶和脂肪酶活性测定来创建简单的生物传感平台。与共同的相比,达到了QCM信号的扩增最多10倍的QCM信号的放大。

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