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通过表面等离子体共振显微镜实时进行空间分辨吸附/解吸测量的定量方法。

Quantitative methods for spatially resolved adsorption/desorption measurements in real time by surface plasmon resonance microscopy.

作者信息

Shumaker-Parry Jennifer S, Campbell Charles T

机构信息

Department of Chemistry, University of Washington, Seattle, WA 98195-1700, USA.

出版信息

Anal Chem. 2004 Feb 15;76(4):907-17. doi: 10.1021/ac034962a.

Abstract

A simple method for converting local reflectivity changes measured in surface plasmon resonance (SPR) microscopy to effective adlayer thicknesses and absolute surface coverages of adsorbed species is presented. For a range of high-contrast angles near the SPR resonance where the local metal surface's reflectivity changes linearly with angle, the change in reflectivity at fixed angle is proportional to the change in effective refractive index (eta(eff)) near the surface. This change in eta(eff) can be converted to absolute adsorbate coverage using methods developed for quantitative SPR spectroscopy. A measurement of the change in reflectivity due to changes in refractive index of bulk solutions, i.e., percent reflectivity change per refractive index unit (RIU), is the only calibration required. Application of this method is demonstrated for protein adsorption onto protein/DNA arrays on gold from aqueous solution using an SPR microscope operating at 633 nm. A detection limit of 0.072% change in absolute reflectivity is found for simultaneous measurements of all 200 microm x 200 microm areas within the 24-mm(2) light beam with 1-s time averaging. This corresponds to a change in effective refractive index of 1.8 x 10(-5) and a detection limit for protein adsorption of 1.2 ng/cm(2) (approximately 0.5 pg in a 200-microm spot). The linear dynamic range is Deltaeta(eff) = approximately 0.011 RIU or approximately 720 ng/cm(2) of adsorbed protein. Using a nearby spot as a reference channel, one can correct for instrumental drift and changes in refractive index of the solutions in the flow cell.

摘要

本文提出了一种简单方法,可将表面等离子体共振(SPR)显微镜测量的局部反射率变化转换为吸附物质的有效吸附层厚度和绝对表面覆盖率。对于SPR共振附近一系列高对比度角度,此时局部金属表面反射率随角度线性变化,固定角度下的反射率变化与表面附近有效折射率(ηeff)的变化成正比。利用为定量SPR光谱学开发的方法,可将ηeff的这种变化转换为绝对吸附质覆盖率。唯一需要校准的是测量由于本体溶液折射率变化引起的反射率变化,即每折射率单位(RIU)的反射率变化百分比。使用工作在633 nm的SPR显微镜,证明了该方法在蛋白质从水溶液吸附到金上的蛋白质/DNA阵列中的应用。对于在24 mm²光束内同时测量所有200 µm×200 µm区域,采用1秒时间平均,发现绝对反射率变化的检测限为0.072%。这对应于有效折射率变化1.8×10⁻⁵,蛋白质吸附的检测限为1.2 ng/cm²(在200 µm光斑中约为0.5 pg)。线性动态范围为Δηeff≈0.011 RIU或约720 ng/cm²的吸附蛋白质。使用附近的光斑作为参考通道,可以校正仪器漂移和流通池中溶液折射率的变化。

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