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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Fluorescence IgG immunosensor based on a micro flow cell containing controlled pore glass as immobilisation support
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Fluorescence IgG immunosensor based on a micro flow cell containing controlled pore glass as immobilisation support

机译:基于微流动池的荧光IgG免疫传感器,其中包含可控孔玻璃作为固定支持物

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摘要

Biosensor miniaturisation often requires the construction of micro volume cells using micro-machining techniques. In this work, a micro flow cell made of a transparent polymer [poly(methyl methacrylate)] developed for using with a fluorescence immunoglobulin G (IgG) immunosensor is described. The micro flow cell provides space to enclose a small amount of controlled pore glass (CPG), a transparent support that can host and covalently bind the biomolecules. The immobilisation of IgG on CPG permits the development of an optical immunosensor for the detection of fluorescein isothiocyanate (FITC)-labelled anti-IgG. In this immunosensor the excitation light is provided by an argon ion laser and guided by an optical fibre to the flow cell, where the fluorescence signal is filtered by a long-pass barrier filter (OG515) and then detected by a close positioned photodiode. This signal was found to be proportional to the amount of anti-IgG-FITC bound to the immobilised IgG during a direct immunochemical reaction. Characterisation of the CPG as an optical medium and immobilisation support was performed. CPG produces intense light scattering and good permeability to fluids, and also a typical immobilisation rate for IgG of about 90% of the initial amount of antibody, The described immunosensor shows a detection limit for anti-IgG-FITC of 6.3 nM and a sensitivity of 9.5 μV nM~(-1). This immunoptode developed with a micro flow cell has been shown to be a suitable system for the detection of immunoglobulins.
机译:生物传感器的小型化通常需要使用微加工技术来构建微体积单元。在这项工作中,描述了由透明聚合物[聚(甲基丙烯酸甲酯)]制成的微流通池,该透明流通池开发用于荧光免疫球蛋白G(IgG)免疫传感器。微流通池提供了空间,可封闭少量的受控孔玻璃(CPG),这是一种可以容纳并共价结合生物分子的透明支撑物。 IgG在CPG上的固定化允许开发一种光学免疫传感器,用于检测异硫氰酸荧光素(FITC)标记的抗IgG。在这种免疫传感器中,激发光由氩离子激光器提供,并由光纤引导至流通池,在流通池中,荧光信号由长通屏障滤光器(OG515)过滤,然后由位置紧密的光电二极管检测。发现该信号与在直接免疫化学反应过程中与固定的IgG结合的抗IgG-FITC的量成比例。对CPG作为光学介质和固定载体进行了表征。 CPG产生强烈的光散射和对液体的良好渗透性,并且IgG的典型固定率约为抗体初始量的90%。所述免疫传感器的抗IgG-FITC检测限为6.3 nM,灵敏度为9.5μVnM〜(-1)。已经证明用微流动池开发的这种免疫印迹是检测免疫球蛋白的合适系统。

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