Zhu Xiyu, Wang Ruoyu, Xia Kaidong, Zhou Xiaohong, Shi Hanchang
State Key Joint Laboratory of ESPC, Research Centre of Environmental and Health Sensing Technology, Center for Sensor Technology of Environment and Health, School of Environment, Tsinghua University 30 Shuangqing Road Beijing 100084 China
National Key Laboratory of Science and Technology on Micro/Nano Fabrication, Institute of Microelectronics, Peking University Beijing 100871 China.
RSC Adv. 2019 Jan 18;9(4):2316-2324. doi: 10.1039/c8ra10125f. eCollection 2019 Jan 14.
Nucleic acid functionalized evanescent wave fiber optic (EWFO) biosensors have attracted much attention due to their remarkable advantages in both device configuration and sensing performance. One critical technique in EWFO biosensor fabrication is its surface modification, which requires (1) minimal nonspecific adsorption and (2) high-quality DNA immobilization to guarantee satisfactory sensing performances. Focusing on these two requirements, a series of optimizations have been conducted in this work to develop reliable DNA-functionalized EWFO probes. Firstly, the surface planeness of EWFO probes were found to be greatly improved by a novel HF/HNO mixture etching solution. Both atomic force microscopy (AFM) and X-ray photoelectron spectroscopy (XPS) were conducted to investigate the morphological structures and surface chemical compositions. Besides, EWFO sensing performances adopting moderate immobilization of irrelevant DNA were investigated for optimization purposes. Furthermore, a split aptamer based sandwich-type EWFO sensor was developed using adenosine (Ade) as the model target (LOD = 25 μM). To the best of our knowledge, this study is the first case to focus on the optimization of etching solution compositions in the fabrication of combination tapered fibers, which provides experimental basis for the understanding of the silica-etching mechanism using HF/HNO mixture solution and may further inspire related researches.
核酸功能化倏逝波光导纤维(EWFO)生物传感器因其在器件结构和传感性能方面的显著优势而备受关注。EWFO生物传感器制造中的一项关键技术是其表面改性,这需要(1)最小的非特异性吸附和(2)高质量的DNA固定,以保证令人满意的传感性能。针对这两个要求,本工作进行了一系列优化,以开发可靠的DNA功能化EWFO探针。首先,发现一种新型的HF/HNO混合蚀刻溶液可大大提高EWFO探针的表面平整度。采用原子力显微镜(AFM)和X射线光电子能谱(XPS)研究了其形态结构和表面化学成分。此外,为了优化目的,研究了采用适度固定无关DNA的EWFO传感性能。此外,以腺苷(Ade)为模型目标(检测限=25μM)开发了一种基于分裂适体的夹心型EWFO传感器。据我们所知,本研究是首次关注组合锥形光纤制造中蚀刻溶液成分优化的案例,为理解HF/HNO混合溶液的二氧化硅蚀刻机理提供了实验依据,并可能进一步启发相关研究。