School of Environment and Natural Resources, Renmin University of China, Beijing, 100874, China.
State Key Laboratory of NBC Protection for Civilian, Academy of Military Sciences PLA China, Beijing, 102205, China.
Mikrochim Acta. 2020 Jul 11;187(8):439. doi: 10.1007/s00604-020-04424-2.
A reusable optofluidic point-of-care testing platform (OPOCT) was successfully constructed through integrating evanescent wave fluorescence technology into an all-fiber-based optofluidic system. The compact design of the OPOCT allows it to be portable and suitable for on-site sensitive determination of biomarkers in serum without complicated and costly procedures. The sensitivity of 90.9 pM for antibody determination is observed thanks to the high transmission efficiency of excitation light and fluorescence in the OPOCT. The affinity constant between cholylglycine (CG) and anti-CG antibody was quantified using this platform based on the proposed theory. Using the lyophilized fluorescence-labeled specific antibody and reusable fiber optic biosensor, the OPOCT is applied to the one-step sensitive determination of CG in serum, which eliminates the dearth associated with liquid reagent handling, disposable biosensors, and user intervention. A limit of detection of 0.025 μg/mL for CG is obtained, which is far more than adequate for meeting diagnostic requirements. The matrix effect of serum samples on the evanescent wave-based optofluidic biosensor can be effectively reduced by simple dilution of serum samples. The performance of the OPOCT also compared favorably with that of a commercial turbidimetric inhibition immunoassay through analyzing multiple serum samples. This platform is ready to expand to measure any other biomarker by using its specific antibody. The simplicity, sensitivity, cost-effectiveness, and robustness of the OPOCT enable the early diagnosis of disease and making a timely clinical decision. Graphical abstract .
通过将倏逝波荧光技术集成到全光纤型光流控系统中,成功构建了一种可重复使用的即时检测型光流控测试平台(OPOCT)。OPOCT 的紧凑设计使其能够便携,适用于现场对血清中的生物标志物进行灵敏检测,无需复杂且昂贵的程序。由于 OPOCT 中激发光和荧光的传输效率高,因此可以观察到针对抗体测定的 90.9 pM 的灵敏度。基于所提出的理论,使用该平台定量了甘氨胆酸(CG)与抗 CG 抗体之间的亲和常数。使用冻干的荧光标记特异性抗体和可重复使用的光纤生物传感器,OPOCT 可用于一步法灵敏测定血清中的 CG,消除了与液体试剂处理、一次性生物传感器和用户干预相关的不足。CG 的检测限为 0.025 μg/mL,远远超过诊断要求。通过简单稀释血清样本,可有效降低血清样本对基于倏逝波的光流控生物传感器的基质效应。通过分析多个血清样本,OPOCT 的性能也优于商业比浊抑制免疫测定法。通过使用其特异性抗体,该平台可以扩展到测量任何其他生物标志物。OPOCT 的简单性、灵敏度、成本效益和稳健性使其能够实现疾病的早期诊断和及时的临床决策。