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Real-Time Monitoring of Urinary Encrustation Using a Quartz Crystal Microbalance

机译:使用石英晶体微稳定的泌尿结壳的实时监测

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Encrustation,on the surface of urological devices such as ureteral stents leads to their blockage. However, limited tools are available for fast and real-time monitoring and modeling of the encrustation process. In this work, we have developed a model for in vitro study of encrustation and coupled it to an online monitoring QCM technique. The QCM biosensor is precoated with a polymer that is representative of the surface of a ureteral stent and subsequently coated with urease to facilitate crystallization of calcium and magnesium phosphate. The changes in deposition of crystals on the polymer surface are monitored quantitatively using a quartz crystal microbalance (QCM) biosensor. The QCM sensor is capable of dynamic, label-free detection and has a very high sensitivity. Experimental data generated using this model shows that pretreatment of the sensor surface with urease significantly induces early stage encrustation as compared to the untreated sensor surface, which emulates the real encrustation process. This encrustation study model has a high utility in screening studies for materials used in urological devices.
机译:在尿液支架等泌尿外理设备表面上的结壳导致它们的堵塞。但是,有限的工具可用于快速和实时监控和建模联属过程。在这项工作中,我们开发了一种用于覆盖的体外研究的模型,并将其耦合到在线监测QCM技术。将QCM生物传感器精确地用一种聚合物,其代表输尿管支架的表面,随后用脲酶涂覆以促进钙和磷酸镁的结晶。使用石英晶体微稳定(QCM)生物传感器定量地监测聚合物表面上晶体沉积的变化。 QCM传感器能够动态,无标签检测,灵敏度非常高。使用该模型产生的实验数据表明,与未处理的传感器表面相比,传感器表面的预处理与释放的传感器表面相比,释放的早期结壳,其仿真了真实的镶嵌表面。该结壳研究模型在泌尿科中使用的材料筛选研究中具有高效用。

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