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Detection of Ammonia-Oxidizing Bacteria (AOB) Using a Porous Silicon Optical Biosensor Based on a Multilayered Double Bragg Mirror Structure

机译:基于多层双布拉格镜结构的多孔硅光学生物传感器检测氨氧化细菌(AOB)

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摘要

We successfully demonstrate a porous silicon (PS) double Bragg mirror by electrochemical etching at room temperature as a deoxyribonucleic acid (DNA) label-free biosensor for detecting ammonia-oxidizing bacteria (AOB). Compared to various other one-dimension photonic crystal configurations of PS, the double Bragg mirror structure is quite easy to prepare and exhibits interesting optical properties. The width of high reflectivity stop band of the PS double Bragg mirror is about 761 nm with a sharp and deep resonance peak at 1328 nm in the reflectance spectrum, which gives a high sensitivity and distinguishability for sensing performance. The detection sensitivity of such a double Bragg mirror structure is illustrated through the investigation of AOB DNA hybridization in the PS pores. The redshifts of the reflectance spectra show a good linear relationship with both complete complementary and partial complementary DNA. The lowest detection limit for complete complementary DNA is 27.1 nM and the detection limit of the biosensor for partial complementary DNA is 35.0 nM, which provides the feasibility and effectiveness for the detection of AOB in a real environment. The PS double Bragg mirror structure is attractive for widespread biosensing applications and provides great potential for the development of optical applications.
机译:我们在室温下通过电化学蚀刻成功地证明了多孔硅(PS)双Bragg镜是用于检测氨氧化细菌(AOB)的无脱氧核糖核酸(DNA)标签的生物传感器。与PS的其他各种一维光子晶体配置相比,双布拉格镜结构非常易于制备,并显示出令人感兴趣的光学特性。 PS双布拉格反射镜的高反射率阻带宽度约为761 nm,在反射光谱中的1328 nm处具有尖锐而深的共振峰,这为传感性能提供了高灵敏度和可分辨性。通过研究PS孔中AOB DNA杂交说明了这种双Bragg镜结构的检测灵敏度。反射光谱的红移与完全互补和部分互补DNA都显示出良好的线性关系。完整互补DNA的最低检测限为27.1 nM,部分互补DNA的生物传感器的检测限为35.0 nM,这为在真实环境中检测AOB提供了可行性和有效性。 PS双布拉格镜结构对于广泛的生物传感应用具有吸引力,并为光学应用的开发提供了巨大的潜力。

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