Biosensor based on microstructured optical fiber Bragg grating for DNA detection

Reem M. I. Alzubaidi, Anwaar A. Al-Dergazly, A. Candiani, A. Cucinotta, E. Di Fina, S. Selleri
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引用次数: 2

Abstract

The numerical analysis and the experimental characterization of a novel bio-sensing approach based on a functionalized Penta microstructured optical fiber with a Bragg grating (Penta BG-MOF) for specific DNA target sequences detection have been demonstrated. The inner surface of the fiber has been functionalized using PNA probes, OligoNucleotides mimic that are well suited for specific DNA target sequences detection. The measurements of fluorescence have proved the successful hybridization. After the hybridization has occurred, oligonucleotide functionalized TiO2 Nano Particles (TiO2NPs) were infiltrated and used to form a sandwich-like system to achieve signal amplification. The numerical analysis is essential to evaluate physical parameters of the functionalized fiber: the refractive index and the thickness of the layer. The calculated shift of the reflected high order mode Bragg grating has a good agreement with the experimental result.
基于微结构光纤光栅的DNA检测生物传感器
本文研究了一种基于功能化的带布拉格光栅的Penta微结构光纤(Penta BG-MOF)的新型生物传感方法,并对其进行了数值分析和实验表征。纤维的内表面已被功能化使用PNA探针,寡核苷酸模拟,非常适合特定的DNA靶序列检测。荧光测量证实了杂交的成功。杂交发生后,将寡核苷酸功能化的TiO2纳米粒子(TiO2NPs)浸润,形成三明治状体系,实现信号放大。数值分析是评价功能化光纤的物理参数:折射率和层厚的必要条件。计算得到的反射高阶模布拉格光栅位移与实验结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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