基于表面等离子体光光谱学的生物测试中的原子分子灵敏度
Fang Yu1, Björn Persson, Stefan Löfås
1Max-Planck-Institute for Polymer Research, Ackermannweg 10, D-55128 Mainz, Germany.
Journal of the American Chemical Society
|July 22, 2004
概括
这项研究展示了一种使用德克斯矩阵的新方法,以显著减少表面等离子体光谱学中的光损失. 这一进步使得高度敏感的抗体超追踪检测成为可能,改善了生物传感应用的检测极限.
科学领域:
- 生物物理学的生物物理.
- 分析化学 分析化学
- 生物化学 生物化学
背景情况:
- 金属诱导的光损失和光产量的距离依赖性使超声波检测复杂化.
- 表面等离子体光光谱 (SPFS) 需要优化条件来进行敏感的检测.
- 德克斯特兰矩阵在生物传感中用于固定和信号增强.
研究的目的:
- 为了减少金属诱导的光损失和SPFS的距离依赖,使用右矩阵.
- 为了优化SPFS的检测极限 (LOD).
- 为了证明直接免疫测试的超声波检测能力.
主要方法:
- 在CM5传感器芯片上使用了carboxymethyl dextran矩阵,用于对小鼠IgG的共价固定.
- 使用Alexa-Fluor 647作为二级抗体的光标签.
- 通过使用表面等离子体光光谱学进行了时间解析的超追踪检测.
主要成果:
- 显著减少金属诱导的光损失和光产量的复杂距离依赖.
- 为子抗老鼠抗体达到500aM (10^-18 M) 的检测极限.
- 证明约有10个分子的结合率mm^-2 min^-1.
结论:
- 德克斯矩阵有效地减轻了SPFS中的光火.
- 开发的模型系统能够对抗体进行高度敏感的超追踪检测.
- 这种方法提高了SPFS的LOD评估,适用于直接免疫试验的开发.
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