Yuan Jipei, Guo Weiwei, Wang Erkang
State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Graduate School of the Chinese Acadamy of Sciences, Changchun, Jilin, China.
Anal Chem. 2008 Feb 15;80(4):1141-5. doi: 10.1021/ac0713048.
In this paper, we attempt to construct a simple and sensitive detection method for both phenolic compounds and hydrogen peroxide, with the successful combination of the unique property of quantum dots and the specificity of enzymatic reactions. In the presence of H2O2 and horseradish peroxidase, phenolic compounds can quench quantum dots' photoluminescence efficiently, and the extent of quenching is severalfold to more than 100-fold increase. Quinone intermediates produced from the enzymatic catalyzed oxidation of phenolic compounds were believed to play the main role in the photoluminescence quenching. Using a quantum dots-enzyme system, the detection limits for phenolic compounds and hydrogen peroxide were detected to be approximately 10(-7) mol L(-1). The coupling of efficient quenching of quantum dot photoluminescence by quinone and the effective enzymatic reactions make this a simple and sensitive method for phenolic compound detection and great potential in the development of H2O2 biosensors for various analytes.
在本文中,我们尝试利用量子点的独特性质与酶促反应的特异性成功结合,构建一种针对酚类化合物和过氧化氢的简单且灵敏的检测方法。在过氧化氢和辣根过氧化物酶存在的情况下,酚类化合物能够有效地猝灭量子点的光致发光,且猝灭程度会增加几倍至100多倍。据信,酚类化合物酶促催化氧化产生的醌中间体在光致发光猝灭中起主要作用。利用量子点 - 酶系统,检测到酚类化合物和过氧化氢的检测限约为10⁻⁷ mol L⁻¹。醌对量子点光致发光的有效猝灭与有效的酶促反应相结合,使其成为一种用于酚类化合物检测的简单且灵敏的方法,并且在开发用于各种分析物的过氧化氢生物传感器方面具有巨大潜力。