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SENSOR FOR AMYLOID DETECTION BASED ON ZNO NANOFLOWER PLATFORM

机译:基于ZNO纳米平台的淀粉样液检测传感器

摘要

Zinc oxide (ZnO) is a semiconductor metal oxide nanoparticle with inherent optical properties. Among the different zinc oxide nanostructures, nanoflowers have greater surface area. Utilizing this property a reagentless biosensor has been developed for the detection of beta amyloids, a hallmark of neurodegenerative diseases like Alzheimer"s disease, Creutzfeldt-Jakob Syndrome, insulin dependent type II diabetes etc. The poor fluorescence quantum yield and photobleaching effect of Thioflavin T (ThT) upon binding to the model insulin amyloid beta sheets in solution can be overcome by the present engineered biosensor where ThT acts as a target as well as a reporter to detect amyloids adsorbed on a solid template based on ZnO nanoflower. ThT was adsorbed on ZnO NFs grown over nano-silver thin film coated glass slide. The in vivo imaging system was used to detect and quantify the fluorescence intensity generated from the substrates upon binding with insulin amyloid. ZnO NFs have the waveguiding property which increases the local field intensity caused by a resonance between the guided fundamental mode and evanescent field associated with high- order modes. This resonance phenomenon reinforces the excitation of the fluorophores in close proximity of the NFs thereby exhibiting enhanced fluorescence like Fabry Pero"t Resonator (FPR). Considering the engineering and sensitivity, the reported nanobiosensor developed on ZnO nanoflower can be treated as faster and cost effective amyloid sensor.
机译:氧化锌(ZnO)是具有固有光学特性的半导体金属氧化物纳米粒子。在不同的氧化锌纳米结构中,纳米花具有更大的表面积。利用这种特性,已经开发出了一种无试剂的生物传感器,用于检测β淀粉样蛋白,这是神经退行性疾病(如阿尔茨海默氏病,克雅氏综合征,胰岛素依赖性II型糖尿病等)的标志。 (ThT)与溶液中的模型胰岛素淀粉样蛋白β片结合后,可以通过本工程生物传感器克服,在该传感器中,ThT既是靶标,又是报道分子,用于检测吸附在基于ZnO纳米花的固体模板上的淀粉样蛋白。 ZnO NFs在纳米银薄膜涂覆的载玻片上生长,体内成像系统用于检测和定量与胰岛素淀粉样蛋白结合后从底物产生的荧光强度,ZnO NFs具有导波特性,可增加引起的局部场强通过引导的基本模式和与高阶模式相关的e逝场之间的共振来实现。共振现象加强了在NFs附近的荧光团的激发,从而表现出增强的荧光,如法布里-珀罗共振器(FPR)。考虑到工程和灵敏度,可以将报道的在ZnO纳米花上开发的纳米生物传感器视为速度更快且具有成本效益的淀粉样蛋白传感器。

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