Surface Plasmon Florescence Spectroscopy Based Biosensor for Cholera Toxin Detection

A. Bozdogan, Sebnem Seherler, Tugba Arzu Ozal Ildeniz, I. Anac, F. N. Kok
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引用次数: 1

Abstract

Diseases and epidemics caused by pathogens in drinking water supplies not only cause deaths but also lead to an important economic and labor loss. Rapid and easy detection of these pathogens on water sources will help us to prevent the diseases associated with them. In this study, the aim is to achieve the detection of low amount of toxins by amplification of the signal by surface plasmon fluorescence spectroscopy (SPFS) and to minimize the need for sample preparation. Cholera toxin B (ChB), a truncated form of cholera toxin, was chosen as the model toxin. Capture antibody that will assure specific binding of the toxin was immobilized to the sensor surface by different methods and measurement conditions were optimized.
基于表面等离子体荧光光谱的霍乱毒素检测生物传感器
饮用水供应中的病原体引起的疾病和流行病不仅造成死亡,而且还造成重大的经济和劳动力损失。在水源上快速简便地检测这些病原体将有助于我们预防与之相关的疾病。在本研究中,目的是通过表面等离子体荧光光谱(SPFS)放大信号来实现对少量毒素的检测,并最大限度地减少对样品制备的需求。霍乱毒素B (ChB)是霍乱毒素的一种截断形式,被选择作为模型毒素。通过不同的方法将确保毒素特异性结合的捕获抗体固定在传感器表面,并优化了测量条件。
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