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An electrochemiluminescence-based fibre optic biosensor for choline flow injection analysis

机译:基于电化学发光的光纤生物传感器,用于胆碱流动注射分析

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摘要

A fibre optic biosensor based on luminol electrochemiluminescence (ECL) integrated in a flow injection analysis (FIA) system was developed for the detection of choline. The electrochemiluminescence of luminol was generated by a glassy carbon electrode polarised at +425 mV vs. a platinum pseudo-reference electrode. Choline oxidase (Chx) was immobilised either covalently on polyamide (ABC type) or on UltraBind preactivated membranes, or by physical entrapment in a photo-cross-linkable poly(vinyl alcohol) polymer (PVA-SbQ) alone or after absorption on a weak anion exchanger, DEAE (diethylaminoethyl) Sepharose. The optimisation of the reaction conditions and physicochemical parameters influencing the FIA biosensor response demonstrated that the choline biosensor exhibited the best performances in a 30 mM veronal buffer containing 30 mM KCl and 1.5 mM MgCl2, at pH 9. The use of a 0.5 ml min(-1) flow rate enabled the measurement of choline by the membrane-based ECL biosensors in 8 or 5 min, with ABC or UltraBind membranes, respectively, whereas the measurement required only 3 min with the DEAE-PVA system. For comparison, the detection of choline was performed with Chx immobilised using the four different supports. The best performances were obtained with the DEAE-PVA-Chx sensing layer, which allowed a detection limit of 10 pmol, whereas with the ABC, the UltraBind and the PVA systems, the detection limits were 300 pmol, 75 pmol and 220 pmol, respectively. The DEAE-based system also exhibited a good operational stability since 160 repeated measurements of 3 nmol of choline could be performed with an RSD of 4.5% whereas the stability under the best conditions was 45 assays with the other supports. [References: 17]
机译:开发了基于流明分析(FIA)系统中集成的鲁米诺电化学发光(ECL)的光纤生物传感器,用于检测胆碱。相对于铂假参比电极,在+425 mV极化的玻璃碳电极产生了鲁米诺的化学发光。胆碱氧化酶(Chx)共价固定在聚酰胺(ABC型)或UltraBind预活化膜上,或通过物理包埋在光可交联的聚乙烯醇聚合物(PVA-SbQ)中或在弱吸收条件下固定阴离子交换剂,DEAE(二乙基氨基乙基)Sepharose。影响FIA生物传感器响应的反应条件和理化参数的优化表明,胆碱生物传感器在含有30 mM KCl和1.5 mM MgCl2的30 mM Veronal缓冲液中,在pH 9下表现出最佳性能。使用0.5 ml min( -1)流速使得分别使用ABC或UltraBind膜的基于膜的ECL生物传感器能够在8分钟或5分钟内测量胆碱,而使用DEAE-PVA系统仅需3分钟即可测量胆碱。为了进行比较,使用固定在四种不同支持物上的Chx进行胆碱的检测。 DEAE-PVA-Chx感应层的最佳检测性能为10 pmol,而ABC,UltraBind和PVA系统的检测极限分别为300 pmol,75 pmol和220 pmol。 。基于DEAE的系统还显示出良好的操作稳定性,因为可以对3 nmol的胆碱进行160次重复测量,相对标准偏差为4.5%,而在最佳条件下的稳定性是使用其他支持物进行的45次测定。 [参考:17]

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