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Development of Methodology Based on the Formation Process of Gold Nanoshells for Detecting Hydrogen Peroxide Scavenging Activity

机译:基于金纳米壳形成过程的过氧化氢清除活性检测方法学的发展

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In the present work, we have developed a novel nano-composite-based method for estimating antioxidant activity. The assay implements a new enzyme-free optical nanoprobe for assessing hydrogen peroxide (H_(2)O_(2)) scavenging activity based on the formation process of gold nanoshells (GNSs). H_(2)O_(2) could enlarge the gold nano-particles (GNPs) on the surface of GNSs precursor nanocomposites (SiO_(2)/GNPs), and the preadsorbed GNPs served as nucleation sites for Au deposition. As the concentration of H_(2)O_(2) increases, more GNPs on the SiO_(2) cores are enlarged until continuous GNSs are formed. During the growth procedure, the spectra changes correlate well with H_(2)O_(2) concentrations which indicate that this nanocomposite is a good nanoprobe for detecting H_(2)O_(2). H_(2)O_(2) scavenging activities of several antioxidants were determined by restraining the H_(2)O_(2)-mediated formation of GNSs from SiO_(2)/GNPs, and the changes of the corresponding plasmon absorption bands correlated well with H_(2)O_(2) scavenging activity of antioxidants. The spectra were monitored by a UV-vis-near-infrared (NIR) spectrophotometer, and the wavelength changes were adopted as detection signal. The results obtained expressed the difference of H_(2)O_(2) scavenging activity between various tested compounds, and the relationship between function and structure of antioxidants was also discussed in this article. The new method based on the formation process of GNSs is simple, rapid, and sensitive and, additionally, can be used in visual analysis to a certian extent for antioxidant functional evaluation.
机译:在目前的工作中,我们已经开发出一种新的基于纳米复合材料的抗氧化剂活性估计方法。该测定法实施了一种新的无酶光学纳米探针,用于根据金纳米壳(GNS)的形成过程评估过氧化氢(H_(2)O_(2))的清除活性。 H_(2)O_(2)可以扩大GNSs前体纳米复合材料(SiO_(2)/ GNPs)表面上的金纳米粒子(GNPs),并且预吸附的GNPs充当Au沉积的成核位点。随着H_(2)O_(2)的浓度增加,SiO_(2)核上的更多GNP增大,直到形成连续的GNS。在生长过程中,光谱变化与H_(2)O_(2)浓度相关性很好,表明该纳米复合材料是检测H_(2)O_(2)的良好纳米探针。通过抑制H_(2)O_(2)介导的SiO_(2)/ GNPs形成的GNS来确定几种抗氧化剂的H_(2)O_(2)清除活性,并且相应的等离激元吸收带的变化具有很好的相关性具有H_(2)O_(2)清除抗氧化剂的活性。用紫外可见近红外(NIR)分光光度计监测光谱,并采用波长变化作为检测信号。获得的结果表明了各种测试化合物之间清除H_(2)O_(2)活性的差异,并且本文还讨论了抗氧化剂的功能与结构之间的关系。基于GNSs形成过程的新方法简单,快速,灵敏,此外还可以用于视觉分析,以达到一定程度的抗氧化剂功能评估。

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