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Electrospun sol-gel fibers for fluorescence-based sensing

机译:电纺溶胶凝胶纤维,用于基于荧光的传感

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Fluorescence based biosensors have the ability to provide reliable pathogen detection. However, the performance could be improved by enhancing the effective surface area of the biosensor. We report on a new nanofibrous fluorescence-based biosensor, whereas a sol-gel platform mesh was constructed by utilizing electrospinning techniques. Furthermore, incorporating cetyltrimethylammonium bromide (CTAB) and conducting pore-forming techniques resulted in a high surface area material suitable for biosensor immobilization. The biosensor was designed to detect Helicobacter hepaticus bacterium by sandwiching the pathogen between two antibodies, one labeled with Alexa Fluor 546 fluorescent dye and the other with 20nm Au nanoparticles. In the presence of pathogen, the close proximity of Au nanoparticles quenched the Alexa Fluor fluorescence, suggesting that the electrospun fiber platforms are suitable for sensing H. Hepaticus. Additionally, sol-gel fibers used as biosensor platform have the added benefit of increased immobilization, as fluorescence intensity from immobilized biosensors is 8.5×10~6 cps higher on fibers than on a flat, non-porous substrate.
机译:基于荧光的生物传感器具有提供可靠的病原体检测的能力。但是,可以通过增加生物传感器的有效表面积来改善性能。我们报告了一个新的基于纳米纤维荧光的生物传感器,而溶胶凝胶平台网格是利用电纺技术构建的。此外,结合十六烷基三甲基溴化铵(CTAB)并进行成孔技术导致了适合生物传感器固定化的高表面积材料。通过将病原体夹在两种抗体之间来设计生物传感器,以将肝病菌夹在中间,一种用Alexa Fluor 546荧光染料标记,另一种用20nm Au纳米颗粒标记。在存在病原体的情况下,Au纳米颗粒的紧密靠近使Alexa Fluor荧光猝灭,这表明电纺纤维平台适合于感测H. Hepaticus。此外,用作生物传感器平台的溶胶-凝胶纤维还具有增加固定化的好处,因为固定化生物传感器的荧光强度在纤维上比在平面无孔基材上高8.5×10〜6 cps。

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