Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China; University of Chinese Academy of Sciences, Beijing 100049, China.
Dongguan Bosh Biotechnologies, LTD, Guangdong 523808, China.
Biosens Bioelectron. 2019 Jan 1;123:204-210. doi: 10.1016/j.bios.2018.08.060. Epub 2018 Aug 25.
Tumor markers play an important role in the early diagnosis and therapeutic effect monitoring of tumors. Combined detection of multiple tumor markers is a realistic way of improving the sensitivity and specificity of cancer diagnosis. To achieve this, we studied and designed a giant magneto resistance (GMR) multi-biomarker immunoassay biosensor that can simultaneously detect twelve kinds of tumor markers by integrating a GMR sensor chip, a microfluidic device, a magnetic nano-beads label, and a double antibody sandwich immunoassay method. As a proof of concept, the proposed immunosensor was utilized to detect 12 tumor markers (AFP, CEA, CYFRA21-1, NSE, SCC, PG I, PG II, CA19-9, total PSA, free PSA, free-β-hCG, Tg) and to screen patients with lung cancer, liver cancer, digestive tract cancer, prostatic cancer, etc. The immunosensor showed excellent sensitivity, accuracy, precision and stability. Designed as a POCT device, the immunosensor also allows for portability, able to perform rapid detection wherever necessary. As a multi-analyte assay, it provides significant advantages over single-analyte tests in terms of cost per test, labor and convenience. The system's ability to simultaneously measure the concentration of multiple markers in serum samples with excellent sensitivity and accuracy allows the immunosensor to be used for early tumor diagnosis.
肿瘤标志物在肿瘤的早期诊断和疗效监测中起着重要作用。联合检测多种肿瘤标志物是提高癌症诊断灵敏度和特异性的现实途径。为此,我们研究并设计了一种巨磁电阻(GMR)多标志物免疫分析生物传感器,该传感器通过整合 GMR 传感器芯片、微流控装置、磁性纳米珠标记物以及双抗体夹心免疫分析方法,能够同时检测 12 种肿瘤标志物。作为概念验证,我们利用该免疫传感器检测了 12 种肿瘤标志物(AFP、CEA、CYFRA21-1、NSE、SCC、PG I、PG II、CA19-9、总 PSA、游离 PSA、游离-β-hCG 和 Tg),并对肺癌、肝癌、消化道癌、前列腺癌等患者进行了筛查。该免疫传感器表现出了优异的灵敏度、准确性、精密度和稳定性。作为一种 POCT 设备,该免疫传感器还具有便携性,能够在需要的任何地方进行快速检测。作为一种多分析物检测方法,与单分析物检测相比,它在每个检测的成本、劳动力和便利性方面具有显著优势。该系统能够以优异的灵敏度和准确性同时测量血清样本中多种标记物的浓度,这使得免疫传感器能够用于早期肿瘤诊断。