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首页> 外文期刊>BioNanoscience >Green Synthesis of Gold Nanoparticles from Syzygium aromaticum Extract and Its Use in Enhancing the Response of a Colorimetric Urea Biosensor
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Green Synthesis of Gold Nanoparticles from Syzygium aromaticum Extract and Its Use in Enhancing the Response of a Colorimetric Urea Biosensor

机译:芳香酵母提取物金纳米颗粒的绿色合成及其在增强尿素比色传感器响应中的应用

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Nanotechnology has attracted immense interest in developing nanomaterial-based biosensors. This surge is attributed to the characteristic features of nanomaterials which involve its size and large surface to volume ratio. Nanomaterials like nanoparticles, carbon nanotubes and quantum dots are used widely in developing the biosensing system particularly for the analysis of food samples. The chemical synthesis of nanoparticles has certain limitations, thus prompting us to adopt green synthesis which offers nontoxic and eco-friendly procedures. In the present study, gold nanoparticles were synthesised using Syzygium aromaticum extract in which the main constituent eugenol acts as a reducing agent. Gold nanoparticles were characterised by UV-vis spectroscopy, transmission electron microscopy, dynamic light scattering and Fourier transformed infrared spectroscopy. They exhibited polygonal and triangular shapes with size range from 4 to 150 nm. Further, they were functionalised with a 3-5-nm thick layer of cysteine to increase the stability of enzyme for the development of biosensor. In our investigation, we observed that gold nanoparticles were able to enhance the response of the urea biosensor by up to 60 % owing to increased surface area of matrix and improved stability of the enzyme. To ensure milk safety, we developed a colorimetric biosensor for determining urea in milk. The developed biosensor is a simple, disposable and economical detection system, the response of which is more distinctive at lower urea concentrations with a reliability of 94.6 %.
机译:纳米技术在开发基于纳米材料的生物传感器方面引起了极大的兴趣。这种激增归因于纳米材料的特征,包括纳米材料的尺寸和大的表面体积比。诸如纳米颗粒,碳纳米管和量子点之类的纳米材料被广泛用于开发生物传感系统,特别是用于食品样品的分析。纳米粒子的化学合成具有一定的局限性,因此促使我们采用绿色合成,该合成提供了无毒且环保的程序。在本研究中,金纳米颗粒是使用芳香丁香提取物合成的,其中丁香酚的主要成分是还原剂。通过紫外可见光谱,透射电子显微镜,动态光散射和傅立叶变换红外光谱对金纳米颗粒进行了表征。它们表现出大小范围为4至150 nm的多边形和三角形。此外,它们用3-5-nm厚的半胱氨酸层进行功能化,以增加酶的稳定性,以开发生物传感器。在我们的研究中,我们观察到金纳米颗粒由于基质表面积增加和酶的稳定性提高,能够将尿素生物传感器的响应提高多达60%。为了确保牛奶安全,我们开发了比色生物传感器来测定牛奶中的尿素。研发的生物传感器是一种简单,一次性且经济的检测系统,在尿素浓度较低时,其响应更具特色,可靠性为94.6%。

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