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Biosensing based on light absorption of nanoscaled gold and silver particles

机译:基于纳米金和银颗粒光吸收的生物传感

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The absorption spectrum of noble metal spherical nanoparticles is known to be strongly influenced by the dielectric constant of the surrounding material, and as such, these particles are well suited for biosensing applications. To perform biosensing using nanoparticles on a substrate, the metal particles are covalently attached onto quartz using an organic adhesion layer of mercaptosilanes. The particles in solution are characterized by UV-vis spectroscopy and transmission electron microscopy, while those attached to the quartz are characterized with UV-vis spectroscopy and atomic force microscopy. Antibodies are attached to the metal nanoparticles, and the antigen recognition is monitored via the change of light absorption when this binding event occurs. Not only is the absorbance originating from plasmon resonances of the particles influenced by the dielectric properties of molecules attached to the nanospheres but also the interband absorption of the particles changes, which will be demonstrated in this report. A light absorption change is detected when a molecular recognition occurs between the bioreceptor molecules attached to the nanoparticle and a biomolecular counterpart. This change in absorption can be very large when adhered molecules are at resonance (interband transitions). In addition, the presented type of biosensing can be a cost-effective and easy to use alternative to conventional biosensing techniques. [References: 18]
机译:已知贵金属球形纳米颗粒的吸收光谱会受到周围材料介电常数的强烈影响,因此,这些颗粒非常适合生物传感应用。为了使用衬底上的纳米颗粒进行生物传感,使用巯基硅烷的有机粘附层将金属颗粒共价连接到石英上。溶液中的颗粒通过紫外可见光谱和透射电子显微镜表征,而附着在石英上的那些颗粒则通过紫外可见光谱和原子力显微镜表征。抗体附着在金属纳米颗粒上,并在发生这种结合事件时通过光吸收的变化来监控抗原识别。不仅是由于粒子的等离振子共振引起的吸光度受附着于纳米球的分子的介电特性的影响,而且粒子的带间吸收也发生了变化,这将在本报告中得到证明。当附着于纳米颗粒的生物受体分子与生物分子对应物之间发生分子识别时,检测到光吸收变化。当粘附的分子处于共振(带间跃迁)时,吸收的这种变化可能非常大。另外,所提出的生物传感类型可以是传统生物传感技术的一种经济有效且易于使用的替代方法。 [参考:18]

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