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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Design and fabrication of a highly sensitive and naked-eye distinguishable colorimetric biosensor for chloramphenicol detection by using ELISA on nanofibrous membranes
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Design and fabrication of a highly sensitive and naked-eye distinguishable colorimetric biosensor for chloramphenicol detection by using ELISA on nanofibrous membranes

机译:用ELISA在纳米纤维上使用ELISA对氯霉素检测高敏感和裸眼可区分的比色活体传感器的设计和制造

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摘要

Enzyme-linked immunoassay (ELISA) is highly specific and selective towards target molecules and is convenient for on-site detection. However, in many cases, lack of high sensitivity makes it hard to reveal a significant colorimetric signal for detecting a trace amount of target molecules. Thus, analytical instruments are required for detection, which limits the application of ELISA for on-site detection. In the present study, a highly sensitive and naked-eyed detectable colorimetric biosensor for chloramphenicol (CAP) was prepared by incorporating ELISA onto surfaces of microporous and nanofibrous membranes. The high specific surface areas of the nanofibers significantly increased the number of antibodies covalently linked onto the fiber surfaces and binding capacity of the sensor with antigens present in a sample. With such an integration, the sensitivity of the ELISA sensor was dramatically increased, and a trace number of targets could reveal a naked-eye detectable color. The immunoassay sensor exhibited a significant naked-eye distinguishable color to chloramphenicol (CAP) at 0.3 ng/mL. The successful design and fabrication of the nanofibrous membrane immunoassay sensor provide new paths towards the development of on-site inspection sensors without the assistance from any instrument.
机译:酶联免疫测定(ELISA)是高度特异性的和选择性的在实现目标分子和便于现场检测。然而,在许多情况下,缺乏高灵敏度的使得它很难露出显著比色信号,用于检测目标分子的微量。因此,需要用于检测,这限制了ELISA的用于现场检测应用程序的分析仪器。在本研究中,对于氯霉素一个高度敏感和裸眼检测到的比色生物传感器(CAP)中的溶液通过将ELISA到微孔和纳米纤维膜的表面上制备。纳米纤维的高比表面积的增加显著抗体的数目共价连接到纤维的表面和存在于样品中的抗原与所述传感器的结合能力。利用这样的集成,ELISA传感器的灵敏度被显着增加,并且目标的跟踪号码可以揭示裸眼检测的颜色。免疫测定传感器在0.3纳克/毫升表现出显著肉眼可区分的颜色对氯霉素(CAP)。成功的设计和纳米纤维膜免疫传感器提供对现场检查传感器的发展新途径,而不从任何仪器的协助制作。

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