首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Development of instrumentation to allow the detection of microorganisms using light scattering in combination with surface plasmon resonance
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Development of instrumentation to allow the detection of microorganisms using light scattering in combination with surface plasmon resonance

机译:开发仪器以允许使用光散射结合表面等离振子共振来检测微生物

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摘要

This paper describes work carried out to develop a biosensor which allows two separate detection principles to operate simultaneously at the same surface. A prototype device was constructed that provided Kretschmann-configuration surface plasmon resonance (SPR) measurement of refractive index (RI) changes using an 820 nm LED light source, whilst a 635 nm diode laser was used to produce light scattering signals from bacterial spores. Both effects occurred at a gold-coated surface. The RI changes were measured conventionally from the side of the gold layer nearer to the light sources. The scattered light was imaged from the opposite face which was in contact with the aqueous sample. Specific detection of bacterial spores through the light scattering mode using antibody capture was investigated. The flow dynamics and interactions with the surface of individual spores were observed. A comparison with SPR for detection using the same antibody/antigen pair was made. Spore suspensions that were readily detectable by light scattering at 10(7) ml(-1) did not provide significant responses by SPR. The potential for future developments is discussed. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 9]
机译:本文介绍了为开发生物传感器而开展的工作,该传感器允许两种不同的检测原理在同一表面上同时运行。构建了一个原型设备,该设备使用820 nm LED光源提供Kretschmann配置的表面等离子体激元共振(SPR)测量折射率(RI)的变化,同时使用635 nm二极管激光器产生细菌孢子的光散射信号。两种效果均发生在镀金表面。 RI变化通常是从金层靠近光源的一侧测量的。从与含水样品接触的相反面成像散射光。研究了使用抗体捕获通过光散射模式对细菌孢子的特异性检测。观察到流动动力学以及与单个孢子表面的相互作用。进行了与SPR的比较,以使用相同的抗体/抗原对进行检测。孢子悬浮液很容易通过10(7)ml(-1)处的光散射检测到,但SPR不能提供明显的响应。讨论了未来发展的潜力。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:9]

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