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DNA biosensors implemented on PNA-functionalized microstructured optical fibers Bragg gratings

机译:DNA生物传感器在PNA官能化的微结构化光纤布拉格光栅上实现

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A novel DNA sensing platform based on a Peptide Nucleic Acid - functionalized Microstructured Optical Fibers gratings has been demonstrated. The inner surface of different MOFs has been functionalized using PNA probes, OligoNucleotides mimic that are well suited for specific DNA target sequences detection. The hybrid sensing systems were tested for optical DNA detection of targets of relevance in biomedical application, using the cystic fibrosis gene mutation, and food-analysis, using the genomic DNA from genetic modified organism soy flour. After the solutions of DNA molecules has been infiltrated inside the fibers capillaries and hybridization has occurred, oligonucleotide-functionalized gold nanoparticles were infiltrated and used to form a sandwich-like system to achieve signal amplification. Spectral measurements of the reflected signal reveal a clear wavelength shift of the reflected modes when the infiltrated complementary DNA matches with the PNA probes placed on the inner fiber surface. Measurements have also been made using the mismatched DNA solution for the c, containing a single nucleotide polymorphism, showing no significant changes in the reflected spectrum. Several experiments have been carried out demonstrating the reproducibility of the results and the high selectivity of the sensors, showing the simplicity and the potential of this approach.
机译:基于肽核酸的新型DNA感测平台 - 官能化微结构光纤光栅已经得到证明。不同的MOF的内表面已用PNA探针,寡核苷酸模拟物是很好的适合于特定的DNA靶序列的检测官能化。的混合感测系统,用于在生物医学应用相关的靶DNA光学检测进行了测试,使用囊性纤维化基因突变,和食品分析,使用来自遗传修饰的生物体的大豆粉的基因组DNA。 DNA分子的溶液已渗入纤维内部的毛细血管后和已发生杂交,寡核苷酸官能化的金纳米颗粒渗入并用于形成夹层状系统,以实现信号放大。反射信号的光谱测量揭示该反射模式中的一个明确的波长偏移时与所述PNA探针渗入互补DNA匹配放置在内纤维表面上。测量也已使用用于c中的错配的DNA的溶液,含有单核苷酸多态性,示出了在反射光谱中没有显著变化。几个实验已经进行了展示结果的可重复性和传感器的高度选择性,显示了简单性和这种方法的潜力。

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