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首页> 外文期刊>Analytical Letters >Interactions of Gold Nanoparticles and Lysozyme by Fluorescence Quenching Method
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Interactions of Gold Nanoparticles and Lysozyme by Fluorescence Quenching Method

机译:荧光猝灭法研究金纳米颗粒与溶菌酶的相互作用

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The fluorescence quenching technique was applied to study the interactions between lysozyme and Gold nanoparticles (GNPs). GNPs were synthesized by microwave assisted heating under reflux, using trisodium citrate as the reducing agent. The UV-visible spectra and TEM image were used to characterize the GNPs. The GNPs had a maximum absorption peak at 520 nm, with an average diameter of 13.3 nm. The fluorescence quenching mechanism was studied by Stern-Volmer equation. It was proved that the fluorescence quenching of lysozyme by GNPs was mainly a result of the formation of a lysozyme-GNP complex. Experimental results indicated that the combination reactions of GNPs and lysozyme were static quenching processes. It can be expected that the fluorescence quenching technique could provide a promising tool to study the interactions of GNPs and proteins. The binding constants, the number of binding sites at different temperatures and corresponding thermodynamic parameters ΔG, ΔH, and ΔS were also calculated.
机译:荧光猝灭技术用于研究溶菌酶和金纳米颗粒(GNP)之间的相互作用。使用柠檬酸三钠作为还原剂,通过微波辅助加热回流加热合成GNP。紫外可见光谱和TEM图像用于表征GNP。 GNP在520nm处具有最大吸收峰,平均直径为13.3nm。用Stern-Volmer方程研究了荧光猝灭机理。事实证明,GNP对溶菌酶的荧光猝灭主要是由于溶菌酶-GNP复合物的形成。实验结果表明,GNP与溶菌酶的联合反应是静态猝灭过程。可以预期,荧光猝灭技术可以为研究GNP与蛋白质的相互作用提供有前途的工具。还计算了结合常数,在不同温度下的结合位点数以及相应的热力学参数ΔG,ΔH和ΔS。

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