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基于金纳米颗粒的免疫层析分析:纳米颗粒粒径的影响。

A gold nanoparticle-based immunochromatographic assay: the influence of nanoparticulate size.

机构信息

Key Laboratory of Magnetic Materials and Devices and Division of Functional Materials and Nanodevices, Ningbo Institute of Materials Technology & Engineering (NIMTE), Chinese Academy of Sciences, Ningbo, 315201, China.

出版信息

Analyst. 2012 Mar 7;137(5):1174-81. doi: 10.1039/c2an15844b. Epub 2011 Dec 22.

Abstract

Four different sized gold nanoparticles (14 nm, 16 nm, 35 nm and 38 nm) were prepared to conjugate an antibody for a gold nanoparticle-based immunochromatographic assay which has many applications in both basic research and clinical diagnosis. This study focuses on the conjugation efficiency of the antibody with different sized gold nanoparticles. The effect of factors such as pH value and concentration of antibody has been quantificationally discussed using spectra methods after adding 1 wt% NaCl which induced gold nanoparticle aggregation. It was found that different sized gold nanoparticles had different conjugation efficiencies under different pH values and concentrations of antibody. Among the four sized gold nanoparticles, the 16 nm gold nanoparticles have the minimum requirement for antibody concentrations to avoid aggregation comparing to other sized gold nanoparticles but are less sensitive for detecting the real sample compared to the 38 nm gold nanoparticles. Consequently, different sized gold nanoparticles should be labeled with antibody under optimal pH value and optimal concentrations of antibody. It will be helpful for the application of antibody-labeled gold nanoparticles in the fields of clinic diagnosis, environmental analysis and so on in future.

摘要

制备了四种不同尺寸的金纳米粒子(14nm、16nm、35nm 和 38nm),用于结合抗体,以进行基于金纳米粒子的免疫层析分析,这种分析在基础研究和临床诊断中有许多应用。本研究重点讨论了不同尺寸的金纳米粒子与抗体的结合效率。通过添加 1wt%NaCl 诱导金纳米粒子聚集后的光谱方法,定量讨论了 pH 值和抗体浓度等因素的影响。结果发现,不同尺寸的金纳米粒子在不同 pH 值和抗体浓度下具有不同的结合效率。在这四种尺寸的金纳米粒子中,16nm 金纳米粒子在避免聚集方面对抗体浓度的要求最低,与其他尺寸的金纳米粒子相比,但与 38nm 金纳米粒子相比,对检测实际样品的灵敏度较低。因此,在最佳 pH 值和最佳抗体浓度下,应标记不同尺寸的金纳米粒子。这将有助于抗体标记的金纳米粒子在临床诊断、环境分析等领域的应用。

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