Tsai H Y, Hsu C F, Chiu I W, Fuh C Bor
Department of Applied Chemistry, Chung Shan Medical University, Taichung, Taiwan.
Anal Chem. 2007 Nov 1;79(21):8416-9. doi: 10.1021/ac071262n. Epub 2007 Sep 29.
We report a detection method for C-reactive protein (CRP) based on competitive immunoassay using magnetic nanoparticles under magnetic fields. Functional magnetic nanoparticles were prepared and conjugated with anti-CRP for immunoassay. Magnetic nanoparticles labeled with anti-CRP were flowed through a separation channel to form depositions for selective capture of CRP under magnetic fields. Free CRP and a fixed number of CRP-labeled particles were used to compete for a limited number of anti-CRP binding sites on the magnetic nanoparticles. The deposited percentages of CRP-labeled particles at various concentrations of free CRP were determined and used as a reference plot. The determination of CRP in the unknown sample was deduced from the reference plot using the deposited percentages. The running time was less than 10 min. The CRP concentration of serum sample was linearly over the range of 1.2-310 microg/mL for deposited percentages of CRP-labeled particles. The detection limit of this method was 0.12 microg/mL which was approximately 8-fold lower than the typical clinical cutoff concentration (1 microug/mL). This method can provide a fast, simple, and sensitive way for protein detection based on competitive immunoassay using magnetic nanoparticles under magnetic fields.
我们报道了一种基于磁场下磁性纳米颗粒竞争免疫分析的C反应蛋白(CRP)检测方法。制备了功能化磁性纳米颗粒,并将其与抗CRP偶联用于免疫分析。标记有抗CRP的磁性纳米颗粒流经分离通道,在磁场作用下形成沉积物以选择性捕获CRP。游离CRP和固定数量的CRP标记颗粒用于竞争磁性纳米颗粒上有限数量的抗CRP结合位点。测定了不同浓度游离CRP下CRP标记颗粒的沉积百分比,并用作参考曲线。从未知样品的沉积百分比参考曲线推导出CRP的测定结果。运行时间小于10分钟。对于CRP标记颗粒的沉积百分比,血清样品中CRP浓度在1.2 - 310微克/毫升范围内呈线性。该方法的检测限为0.12微克/毫升,比典型临床临界浓度(1微克/毫升)低约8倍。该方法可为基于磁场下磁性纳米颗粒竞争免疫分析的蛋白质检测提供一种快速、简单且灵敏的方法。