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Method for detecting surface plasmon resonance with high angular resolution and fast response time

机译:高角分辨率,响应时间快的表面等离子体共振检测方法

摘要

A device and method of detecting surface plasmon resonance for sensing molecules or conformational changes in molecules with high resolution and fast response time is disclosed. Light from a light source (14) is focused through a prism onto a metal thin film (15) on which sample molecules to be detected are adsorbed. The total internal reflection of the laser/incident light is collected with a differential position or intensity sensitive photo-detecting device instead of a single cell or an array of photo-detectors (12) that are widely used in previous works. The ratio of the differential signal to the sum signal of the differential position or intensity sensitive photo-detecting device (12) provides an accurate measurement of the shift in the surface plasmon resonance angle caused by the adsorption of molecules onto the metal films (15) or by conformational changes in the adsorbed molecules. The present invention requires no numerical fitting to determine the resonant angle and the setup is compact and immune to background light. The methods and sensors of this invention can be used in numerous biological, biochemical, and chemical applications such as measuring subtle conformational changes in molecules and electron transfer reactions can be studied.
机译:公开了一种用于检测表面等离子体共振的装置和方法,用于以高分辨率和快速响应时间感测分子或分子中的构象变化。来自光源(14)的光通过棱镜聚焦到金属薄膜(15)上,要检测的样品分子吸附在金属薄膜上。激光/入射光的全内反射是使用差分位置或强度敏感的光检测设备收集的,而不是先前工作中广泛使用的单个单元或光检测器阵列(12)。差分信号与差分位置或强度敏感光电检测设备(12)的总信号之比可准确测量由于分子吸附到金属膜(15)上而引起的表面等离振子共振角的变化或通过吸附分子的构象变化。本发明不需要数值拟合来确定共振角,并且装置紧凑并且不受背景光影响。本发明的方法和传感器可用于许多生物学,生化和化学应用中,例如测量分子中微妙的构象变化和可研究电子转移反应。

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