Jiangsu Engineering Laboratory of Smart Carbon-Rich Materials and Device, School of Chemistry and Chemical Engineering, Southeast University, Nanjing 211189, China.
Department of Chemistry, Liaocheng University, Liaocheng, Shandong 252059, China.
Biosens Bioelectron. 2019 Feb 1;126:767-772. doi: 10.1016/j.bios.2018.11.044. Epub 2018 Dec 6.
An immunosensing biochip for simultaneous detection of three biomarkers related to acute myocardial infarction (AMI) was developed based on anionic soybean peroxidase (SBP) functionalized nanoprobe and chemiluminescent imaging. The nanoprobes (Ab2-SiO-SBP) were fabricated by co-immobilization of SBP and one of the detection polyclonal antibodies, anti-cardiac troponin I antigen (anti-cTnI), anti-creatine kinase-MB (anti-CK-MB) and anti-myoglobin (anti-Myo), on the silica nanoparticle surface. The detection sensitivity was enhanced since the large surface area of silica carriers increased the loading of SBP for per sandwiched immunoreaction. The immunosensing biochip designed as 3 × 8 wells array was constructed by simultaneously immobilizing three capture monoclonal antibodies on the same one microtiter well with 2 × 3 active spots. In the presence of target protein, the nanoprobes will be attached onto the spots with high specificity through the sandwiched immunoreactions, which triggered the chemiluminescence (CL) signals on each sensing site of the microtiter plates and allowed to CL imaging of three biomarkers in one well at the same time. Therefore, the proposed biochip was a promising convenient strategy for simultaneous detection of cTnI, CK-MB and Myo, which showed potential application for multianalyte determination in clinical diagnostics.
基于阴离子大豆过氧化物酶(SBP)功能化纳米探针和化学发光成像,开发了一种用于同时检测与急性心肌梗死(AMI)相关的三种生物标志物的免疫传感生物芯片。纳米探针(Ab2-SiO-SBP)通过将 SBP 和三种检测多克隆抗体之一,抗心肌肌钙蛋白 I 抗原(抗-cTnI)、抗肌酸激酶同工酶-MB(抗-CK-MB)和抗肌红蛋白(抗-Myo)共同固定在硅纳米颗粒表面而制备。由于载体的大表面积增加了每个夹心免疫反应中 SBP 的负载量,因此检测灵敏度得到了提高。设计为 3×8 孔阵列的免疫传感生物芯片通过将三种捕获单克隆抗体同时固定在同一微孔中 2×3 的活性点上构建而成。在存在靶蛋白的情况下,纳米探针将通过夹心免疫反应特异性地附着在斑点上,从而在微孔板的每个传感点上触发化学发光(CL)信号,并允许在同一孔中同时对三种生物标志物进行 CL 成像。因此,该生物芯片是一种用于同时检测 cTnI、CK-MB 和 Myo 的有前途的便捷策略,有望用于临床诊断中的多分析物测定。