材料科学
检出限
纤维
频谱分析仪
光电子学
光流学
激光器
自由光谱范围
光纤
光子学
肌钙蛋白I
光学
波长
纳米技术
微流控
化学
精神科
物理
色谱法
复合材料
心肌梗塞
心理学
作者
Panpan Niu,Junfeng Jiang,Kun Liu,Shuang Wang,Jianying Jing,Tianhua Xu,Tong Wang,Yize Liu,Tiegen Liu
标识
DOI:10.1016/j.bios.2022.114238
摘要
Cardiac troponin I (cTnI) plays an important role in emergency diagnosis of cardiovascular diseases, which exists predominately in the form of cardiac troponin I-C (cTnI-C) complex. We proposed a fiber-integrated optofluidic chip immunosensor with time-delay-dispersion based microwave photonic analyzer (MPA) for cTnI-C detection. The whispering gallery mode (WGM) fiber probe was fabricated by embedding a polydopamine functionalized hollow glass microsphere (HGMS) into the etched capillary-fiber structure, and the WGMs could be excited through the efficient coupling between the thin-wall capillary and the HGMS. The reflective WGM optofluidic chip functioned as a wavelength tuner to construct fiber ring laser cavity, whose laser output wavelength was cTnI-C concentration-dependent. The tiny wavelength variation of sensing laser was converted into a radio-frequency (RF) response, which was retrieved by measuring the change of RF-domain free spectrum range (FSR) in time-delay-dispersion based MPA, and the quantitative detection of cTnI-C complex can be achieved with high resolution. Experimental results show that this immunosensor had a limit of detection (LOD) of 0.59 ng/mL, and a detection resolution of 1.2 fg/mL. The relative resolving power was 102-104-fold higher than that of others optical fiber cTnI biosensors. The proposed fiber-integrated optofluidic chip provides an innovative lab-on-chip diagnostic tool for myocardial damage.
科研通智能强力驱动
Strongly Powered by AbleSci AI