Honda Nobuo, Lindberg Ulrika, Andersson Per, Hoffmann Stephan, Takei Hiroyuki
Methodology Research Group, Research & Development Division, Fujirebio, Inc., Tokyo, Japan.
Clin Chem. 2005 Oct;51(10):1955-61. doi: 10.1373/clinchem.2005.053348. Epub 2005 Aug 4.
We explored the potential of a microfluidic device based on centrifugal force as an immunoassay platform by examining the imprecision of assays carried out with 200 nL of sample.
Biotinylated antibodies against alpha-fetoprotein (AFP), interleukin-6 (IL-6), and carcinoembryonic antigen [(CEA); 0.1 g/L each in 15 mmol/L phosphate-buffered saline (PBS) containing 0.1 mL/L Tween 20] were attached to a microcolumn packed with streptavidin-coated particles. A 200-nL sample was then allowed to pass through the microcolumn for 240 s, followed by Alexa 647-labeled detection antibody (7.5 mg/L in 15 mmol/L PBS containing 10 g/L bovine serum albumin). The flow rate was controlled by altering the rotational speed. Up to 104 sandwich type immunoassays were completed within 50 min.
For AFP, IL-6, and CEA the detection limits were, respectively, 0.15, 1.25, and 1.31 pmol/L. Inter- and intraassay imprecisions (CVs) were <10% and <20%, respectively, for analyte concentrations >5 pmol/L. The CEA antibody had the lowest affinity according to fluorescence image analysis of the microcolumn region. The result was confirmed in a comparative study using BIAcore 3000.
Day-to-day (total) imprecision (CV) of immunoassays on the compact disc-shaped device are <20%. Analysis of fluorescence images allows rapid ranking of antibodies according to their affinities.
我们通过检测使用200 nL样品进行的分析的不精密度,探索了基于离心力的微流控装置作为免疫分析平台的潜力。
将抗甲胎蛋白(AFP)、白细胞介素-6(IL-6)和癌胚抗原[(CEA);在含0.1 mL/L吐温20的15 mmol/L磷酸盐缓冲盐水(PBS)中各为0.1 g/L]的生物素化抗体附着到填充有链霉亲和素包被颗粒的微柱上。然后使200 nL样品通过微柱240秒,接着加入Alexa 647标记的检测抗体(在含10 g/L牛血清白蛋白的15 mmol/L PBS中为7.5 mg/L)。通过改变转速来控制流速。在50分钟内可完成多达104次夹心型免疫分析。
对于AFP、IL-6和CEA,检测限分别为0.15、1.25和1.31 pmol/L。对于浓度>5 pmol/L的分析物,批间和批内不精密度(CV)分别<10%和<20%。根据微柱区域的荧光图像分析,CEA抗体的亲和力最低。该结果在使用BIAcore 3000的比较研究中得到证实。
在光盘形装置上进行的免疫分析的日常(总)不精密度(CV)<20%。荧光图像分析可根据抗体亲和力快速对其进行排序。