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Assembly of Gold Nanorods on HSA Amyloid Fibrils to Develop a Conductive Nanoscaffold for Potential Biomedical and Biosensing Applications

机译:在HSA淀粉样蛋白原纤维上组装金纳米棒以开发用于潜在生物医学和生物传感应用的导电纳米支架

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摘要

Today, Gold Nanorods have promised variety of applications in conjugation with biomolecules of interest. Discovery of functional amyloids has also been highlighted with possible use in designing high performance materials. To exploit dual properties of both Nano and Bio counterparts in new functional materials, this effort has focused on synthesis of a potential hybrid system of Gold nanorods (GNRs) and HSA amyloid fibrils to develop a conductive nanoscaffold. UV-Vis spectroscopy, Thioflavin T (ThT) assay, Far-UV Circular Dichroism (CD) spectropolarimetry, fluorescence and Transmission Electron microscopy were used to characterize formation of the nanostructures and amyloid fibrils. Surface plasmon resonance of GNRs was also monitored upon interaction with HSA amyloid fibrils, showing that the plasmonic component of the hybrid system has maintained its characteristic rod morphology without any perturbations. Analysis of Nyquist plots for the hybrid nanoscaffold showed that the electronic behavior of the hybrid system has been enhanced due to the presence of the assembled GNRs. Results of this investigation highlight the possibility of fabricating hybrid nano-bioscaffolds as promising candidates in versatile biomedical and biosensing applications.
机译:如今,金纳米棒已承诺与感兴趣的生物分子结合用于多种用途。功能性淀粉样蛋白的发现也已被强调可用于设计高性能材料。为了在新功能材料中利用纳米和生物对应物的双重特性,这项工作集中于合成金纳米棒(GNR)和HSA淀粉样原纤维的潜在杂化体系,以开发导电纳米支架。紫外-可见光谱,硫黄素T(ThT)分析,远紫外圆二色谱(CD)光谱极化,荧光和透射电子显微镜用于表征纳米结构和淀粉样原纤维的形成。在与HSA淀粉样蛋白原纤维相互作用时,还监测了GNR的表面等离振子共振,表明杂化系统的等离激元组分保持了其特征杆的形态,没有任何扰动。混合纳米支架的奈奎斯特图分析表明,由于存在组装好的GNR,混合系统的电子性能得到了增强。这项研究的结果突显了制造杂化纳米生物支架作为在多功能生物医学和生物传感应用中有希望的候选者的可能性。

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