Dahlin Andreas B, Tegenfeldt Jonas O, Höök Fredrik
Division of Solid State Physics, Lund University, Lund, Sweden.
Anal Chem. 2006 Jul 1;78(13):4416-23. doi: 10.1021/ac0601967.
The colorimetric variations induced upon changes in interfacial refractive index of nanoscale noble metal structures exhibiting localized surface plasmon resonance (LSPR) provides a convenient means of label-free, affinity-based detection of biomolecular recognition reactions. However, despite being similar in nature to conventional SPR, LSPR has so far suffered from significantly lower data quality in terms of its signal-to-noise ratio (S/N) in typical biomolecular recognition analysis. In this work, generic data analysis algorithms and a simple experimental setup that provide a S/N upon protein binding that is comparable to that of state-of-the art SPR systems are presented. Specifically, it is demonstrated how temporal variations (rate approximately 0.5 Hz) in parameters proportional to the resonance peak position can be recorded simultaneously, yielding a peak position precision of <5 x 10(-4) nm and an extinction noise level of <5 x 10(-6) absorbance units (Abs). This, in turn, is shown to provide a S/N of approximately 2000 (equivalent to a detection limit of <0.1 ng/cm(2)) for typical protein binding reactions. Furthermore, the importance of utilizing changes in both peak position and magnitude is highlighted by comparing different LSPR active noble metal architectures that respond differently to bulk and interfacial refractive index changes.
展现局域表面等离子体共振(LSPR)的纳米级贵金属结构的界面折射率变化所引起的比色变化,为基于亲和力的无标记生物分子识别反应检测提供了一种便捷方法。然而,尽管LSPR在本质上与传统表面等离子体共振(SPR)相似,但在典型的生物分子识别分析中,就其信噪比(S/N)而言,LSPR的数据质量至今仍显著较低。在这项工作中,我们提出了通用数据分析算法和一种简单的实验装置,该装置在蛋白质结合时提供的信噪比与最先进的SPR系统相当。具体而言,展示了如何同时记录与共振峰位置成比例的参数的时间变化(速率约为0.5 Hz),从而获得<5×10⁻⁴ nm的峰位置精度和<5×10⁻⁶吸光度单位(Abs)的消光噪声水平。这反过来又表明,对于典型的蛋白质结合反应,其信噪比约为2000(相当于检测限<0.1 ng/cm²)。此外,通过比较对本体和界面折射率变化有不同响应的不同LSPR活性贵金属结构,突出了利用峰位置和幅度变化的重要性。