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高频相移测量极大地提高了 QCM 免疫传感器的灵敏度。

High-frequency phase shift measurement greatly enhances the sensitivity of QCM immunosensors.

机构信息

Instituto Interuniversitario de Investigación en Bioingeniería y Tecnología Orientada al Ser Humano (I3BH), Universitat Politècnica de València, Camino de Vera s/n, Edificio 8B-N, 46022 Valencia, Spain; Advanced Wave Sensors S.L. Valencia, Spain.

Advanced Wave Sensors S.L. Valencia, Spain; Grupo de Fenómenos Ondulatorios (GFO), Universitat Politècnica de València, Camino de Vera s/n, Edificio 7F, 46022 Valencia, Spain.

出版信息

Biosens Bioelectron. 2015 Mar 15;65:1-8. doi: 10.1016/j.bios.2014.10.001. Epub 2014 Oct 5.

Abstract

In spite of being widely used for in liquid biosensing applications, sensitivity improvement of conventional (5-20MHz) quartz crystal microbalance (QCM) sensors remains an unsolved challenging task. With the help of a new electronic characterization approach based on phase change measurements at a constant fixed frequency, a highly sensitive and versatile high fundamental frequency (HFF) QCM immunosensor has successfully been developed and tested for its use in pesticide (carbaryl and thiabendazole) analysis. The analytical performance of several immunosensors was compared in competitive immunoassays taking carbaryl insecticide as the model analyte. The highest sensitivity was exhibited by the 100MHz HFF-QCM carbaryl immunosensor. When results were compared with those reported for 9MHz QCM, analytical parameters clearly showed an improvement of one order of magnitude for sensitivity (estimated as the I50 value) and two orders of magnitude for the limit of detection (LOD): 30μgl(-1) vs 0.66μgL(-1)I50 value and 11μgL(-1) vs 0.14μgL(-1) LOD, for 9 and 100MHz, respectively. For the fungicide thiabendazole, I50 value was roughly the same as that previously reported for SPR under the same biochemical conditions, whereas LOD improved by a factor of 2. The analytical performance achieved by high frequency QCM immunosensors surpassed those of conventional QCM and SPR, closely approaching the most sensitive ELISAs. The developed 100MHz QCM immunosensor strongly improves sensitivity in biosensing, and therefore can be considered as a very promising new analytical tool for in liquid applications where highly sensitive detection is required.

摘要

尽管传统(5-20MHz)石英晶体微天平(QCM)传感器在液体生物传感应用中得到了广泛应用,但提高其灵敏度仍然是一个未解决的挑战性任务。借助一种新的基于恒频相位变化测量的电子特性分析方法,成功开发并测试了一种高基频(HFF)QCM 免疫传感器,用于农药(carbaryl 和 thiabendazole)分析。在以 carbaryl 杀虫剂为模型分析物的竞争性免疫测定中,比较了几种免疫传感器的分析性能。100MHz HFF-QCM carbaryl 免疫传感器表现出最高的灵敏度。当将结果与 9MHz QCM 的报道结果进行比较时,分析参数清楚地显示出灵敏度提高了一个数量级(估计为 I50 值),检测限(LOD)提高了两个数量级:30μgl(-1) vs 0.66μgL(-1)I50 值和 11μgL(-1) vs 0.14μgL(-1) LOD,分别为 9MHz 和 100MHz。对于杀菌剂 thiabendazole,I50 值大致与在相同生化条件下 SPR 报道的值相同,而 LOD 提高了 2 倍。高频 QCM 免疫传感器的分析性能超过了传统 QCM 和 SPR,接近最灵敏的 ELISA。开发的 100MHz QCM 免疫传感器在生物传感中大大提高了灵敏度,因此可以被认为是一种非常有前途的新型分析工具,适用于需要高灵敏度检测的液体应用。

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