Niu Panpan, Jiang Junfeng, Liu Kun, Wang Shuang, Wang Tong, Liu Yize, Zhang Xuezhi, Ding Zhenyang, Liu Tiegen
School of Precision Instrument and Opto-electronics Engineering, Tianjin University, Tianjin 300072, China.
Key Laboratory of Opto-electronics Information Technology (Tianjin University), Key Laboratory of Micro Opto-electro Mechanical System Technology (Tianjin University), Ministry of Education, Tianjin 300072, China.
Nanophotonics. 2022 Jun 7;11(14):3351-3364. doi: 10.1515/nanoph-2022-0208. eCollection 2022 Jul.
The early diagnosis of myocardial infarction can significantly improve the survival rate in emergency treatment, which is mainly implemented by the immunoassay for myocardial infarction biomarkers such as cardiac troponins in blood. In this work, a disposable optofluidic microtubule whispering gallery mode (WGM) immunosensor for label-free cardiac troponin I-C (cTnI-C) complex detection has been proposed and demonstrated with active interrogation enhancement. The disposable microtubule is simply fabricated by a silica capillary with pressurized tapering technology for thin-wall, and the cTnI antibodies are immobilized on the inner wall surface of the microtubule through the self-adherent polydopamine substrate. By configuring the two coupling microfibers, the double-fiber-coupled microtubule cavity can serve as a tunable filter for the mutual-coupled polarimetric fiber ring laser (FRL), whose output laser wavelength is determined by the cTnI-C concentration in the optofluidic microtubule with inherent microfluidic channel. Due to the cyclic-cumulative gain of the FRL, the characteristic resonant peak of optical sensing signal is enhanced in the spectral width compression and the optical signal-to-noise ratio improvement, and therefore the optical immunosensor for cTnI-C can be achieved by tracking the output laser wavelength of the FRL conveniently. The dynamic binding and unbinding process of cTnI-C antigen-antibody is illustrated by monitoring the lasing peak wavelength continuously. Our all-fiber immunosensor demonstrated here has the advantages of fast label-free detection, real-time monitor, high sensitivity and disposable sensing element, which can be an innovative detecting tool in early diagnosis of myocardial infarction.
心肌梗死的早期诊断在急诊治疗中可显著提高生存率,这主要通过检测血液中心肌梗死生物标志物(如心肌肌钙蛋白)的免疫分析来实现。在这项工作中,提出并展示了一种用于无标记检测心肌肌钙蛋白I-C(cTnI-C)复合物的一次性光流体微管回音壁模式(WGM)免疫传感器,并采用了主动询问增强技术。该一次性微管通过具有薄壁加压锥形技术的二氧化硅毛细管简单制造而成,cTnI抗体通过自粘附聚多巴胺底物固定在微管的内壁表面。通过配置两根耦合微纤维,双纤维耦合微管腔可作为相互耦合的偏振光纤环形激光器(FRL)的可调谐滤波器,其输出激光波长由具有固有微流体通道的光流体微管中的cTnI-C浓度决定。由于FRL的循环累积增益,光学传感信号的特征共振峰在光谱宽度压缩和光信噪比改善方面得到增强,因此通过方便地跟踪FRL的输出激光波长即可实现用于cTnI-C的光学免疫传感器。通过连续监测激光峰值波长来说明cTnI-C抗原-抗体的动态结合和解离过程。我们在此展示的全光纤免疫传感器具有无标记快速检测、实时监测、高灵敏度和一次性传感元件等优点,可成为心肌梗死早期诊断中的一种创新检测工具。