Institute of Nanobiotechnology, School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China.
Biosens Bioelectron. 2011 Dec 15;30(1):145-50. doi: 10.1016/j.bios.2011.09.002. Epub 2011 Sep 16.
Rapid, quantitative detection of tumor markers with high sensitivity and specificity is critical to clinical diagnosis and treatment of cancer. We describe here a novel portable fluorescent biosensor that integrates quantum dot (QD) with an immunochromatography test strip (ICTS) and a home-made test strip reader for detection of tumor markers in human serum. Alpha fetoprotein (AFP), which is valuable for diagnosis of primary hepatic carcinoma, is used as a model tumor marker to demonstrate the performance of the proposed immunosensor. The principle of this sensor is on the basis of a sandwich immunoreaction that was performed on an ICTS. The fluorescence intensity of captured QD labels on the test line and control line served as signals was determined by the home-made test strip reader. The strong luminescence and robust photostability of QDs combined with the promising advantages of an ICTS and sensitive detection with the test strip reader result in good performance. Under optimal conditions, this biosensor is capable of detecting as low as 1 ng/mL AFP standard analyte in 10 min with only 50 μL sample volume. Furthermore, 1000 clinical human serum samples were tested by both the QD-based ICTS and a commercial electrochemiluminescence immunoassay AFP kit simultaneously to estimate the sensitivity, specificity and concordance of the assays. Results showed high consistency except for 24 false positive cases (false positive rate 3.92%) and 17 false negative cases (false negative rate 4.38%); the error rate was 4.10% in all. This demonstrates that the QD-based ICTS is capable of rapid, sensitive, and quantitative detection of AFP and shows a great promise for point-of-care testing of other tumor markers.
快速、定量地检测肿瘤标志物,具有高灵敏度和特异性,对癌症的临床诊断和治疗至关重要。我们在这里描述了一种新颖的便携式荧光生物传感器,它将量子点 (QD) 与免疫层析测试条 (ICTS) 和自制的测试条读取器集成在一起,用于检测人血清中的肿瘤标志物。甲胎蛋白 (AFP) 是原发性肝癌诊断的重要标志物,被用作模型肿瘤标志物来演示所提出的免疫传感器的性能。该传感器的原理是基于在 ICTS 上进行的三明治免疫反应。通过自制的测试条读取器确定测试线和控制线捕获的 QD 标记的荧光强度作为信号。QD 的强发光和稳健的光稳定性与 ICTS 的有前途的优势以及测试条读取器的敏感检测相结合,产生了良好的性能。在最佳条件下,该生物传感器能够在 10 分钟内检测到低至 1ng/mL 的 AFP 标准分析物,只需 50μL 样品体积。此外,同时使用基于 QD 的 ICTS 和商业电化学发光免疫分析 AFP 试剂盒测试了 1000 份临床人血清样本,以评估这些测定方法的灵敏度、特异性和一致性。结果表明,除了 24 例假阳性病例(假阳性率 3.92%)和 17 例假阴性病例(假阴性率 4.38%)外,结果高度一致;总误差率为 4.10%。这表明基于 QD 的 ICTS 能够快速、灵敏、定量地检测 AFP,并有望用于即时检测其他肿瘤标志物。