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Effective antibodies immobilization and functionalized nanoparticles in a quartz-crystal microbalance-based immunosensor for the detection of parathion.

机译:基于石英晶体微量天平的免疫传感器中的有效抗体固定和功能化纳米颗粒用于检测对硫磷。

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摘要

BACKGROUND:\udBiosensor-based detection provides a rapid and low-cost alternative to conventional analytical methods for revealing the presence of the contaminants in water as well as solid matrices. Although important to be detected, small analytes (few hundreds of Daltons) are an issue in biosensing since the signal they induce in the transducer, and specifically in a Quartz-Crystal Microbalance, is undetectable. A pesticide like parathion (M = 292 Da) is a typical example of contaminant for which a signal amplification procedure is desirable.\ud\udMETHODS/FINDINGS:\udThe ballasting of the analyte by gold nanoparticles has been already applied to heavy target as proteins or bacteria to improve the limit of detection. In this paper, we extend the application of such a method to small analytes by showing that once the working surface of a Quartz-Crystal Microbalance (QCM) has been properly functionalized, a limit of detection lower than 1 ppb is reached for parathion. The effective surface functionalization is achieved by immobilizing antibodies upright oriented on the QCM gold surface by a simple photochemical technique (Photonic Immobilization Technique, PIT) based on the UV irradiation of the antibodies, whereas a simple protocol provided by the manufacturer is applied to functionalize the gold nanoparticles. Thus, in a non-competitive approach, the small analyte is made detectable by weighing it down through a "sandwich protocol" with a second antibody tethered to heavy gold nanoparticles. The immunosensor has been proved to be effective against the parathion while showing no cross reaction when a mixture of compounds very similar to parathion is analyzed.\ud\udCONCLUSION/SIGNIFICANCE:\udThe immunosensor described in this paper can be easily applied to any small molecule for which polyclonal antibodies are available since both the functionalization procedure of the QCM probe surface and gold nanoparticle can be applied to any IgG, thereby making our device of general application in terms of target analyte.
机译:背景:基于生物传感器的检测为传统分析方法提供了一种快速且低成本的替代方法,用于揭示水中以及固体基质中污染物的存在。尽管要被检测到很重要,但是在生物传感中,小的分析物(几百道尔顿)是一个问题,因为它们在换能器中,尤其是在石英晶体微量天平中诱导的信号是不可检测的。农药如对硫磷(M = 292 Da)是需要信号放大程序的典型污染物示例。\ ud \ ud方法/发现:\ ud金纳米颗粒对分析物的压载已作为蛋白质应用于重靶。或细菌以提高检测限。在本文中,我们证明了一旦将石英晶体微天平(QCM)的工作表面适当地功能化后,对硫磷的检出限将低于1 ppb,从而将这种方法的应用扩展到小型分析物。有效表面功能化是通过基于抗体紫外线照射的简单光化学技术(Photonic Immobilization Technology,PIT)通过将抗体垂直定向固定在QCM金表面上而实现的,而制造商提供的简单协议可用于对抗体进行功能化金纳米粒子。因此,在非竞争性方法中,通过将“小分子分析物”通过“夹心方案”进行称重,并用拴在重金纳米颗粒上的第二抗体进行称重,从而可检测出小分子分析物。已证明该免疫传感器可有效对抗对硫磷,同时在分析与对硫磷非常相似的化合物混合物时也不会显示交叉反应。由于QCM探针表面的功能化程序和金纳米颗粒都可以应用于任何IgG,因此可以使用多克隆抗体,从而使我们的设备在靶标分析物方面具有普遍用途。

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