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一种用于测定大豆苷元及其羟基自由基清除能力的新型化学发光体系。

A novel chemiluminescence system for the determination of daidzein and its hydroxyl radical-scavenging capacity.

机构信息

College of Chemistry and Chemical Engineering, Guangxi University, Nanning, People's Republic of China.

出版信息

Luminescence. 2012 Jul-Aug;27(4):256-61. doi: 10.1002/bio.1342. Epub 2011 Aug 31.

Abstract

A novel chemiluminescence (CL) system was established for the determinations of daidzein in pharmaceutical preparations and to assess its ability to scavenge hydroxyl radicals. It was shown that a strong CL signal generated when eosin Y was mixed with Fenton reagent was decreased significantly when daidzein was added to the reaction system due to partial scavenging of the hydroxyl radicals in the solution. The extent of decrease in the CL intensity had a good stoichiometric relationship with the daidzein concentration. Based on this, we developed a new method for the determination of daidzein, using a flow-injection chemiluminescence (FI-CL) technique. Under the optimal conditions, the linear range of daidzein concentration was 8.0 × 10(-8) -3.0 × 10(-6)  mol/L (R = 0.9982), with a detection limit of 9.0 × 10(-9)  mol/L (S:N = 3), and the RSD was 5.8% for 1.0 × 10(-6)  mol/L daidzein (n = 11). This method was successfully used in the determination of daidzein in tablets and for evaluation of the hydroxyl radical-scavenging capacity of daidzein. The possible reaction mechanism of the CL system is discussed.

摘要

建立了一种新的化学发光(CL)体系,用于测定药物制剂中的大豆异黄酮,并评估其清除羟自由基的能力。结果表明,当 Fenton 试剂与曙红 Y 混合时,会产生很强的 CL 信号,但当大豆异黄酮加入反应体系中时,由于溶液中部分清除了羟自由基,CL 信号强度显著降低。CL 强度的降低程度与大豆异黄酮的浓度呈良好的计量关系。基于此,我们采用流动注射化学发光(FI-CL)技术建立了一种测定大豆异黄酮的新方法。在最佳条件下,大豆异黄酮的浓度线性范围为 8.0×10(-8) -3.0×10(-6)  mol/L(R=0.9982),检测限为 9.0×10(-9)  mol/L(S:N=3),1.0×10(-6)  mol/L 大豆异黄酮的相对标准偏差为 5.8%(n=11)。该方法成功用于片剂中大豆异黄酮的测定,并用于评价大豆异黄酮清除羟自由基的能力。讨论了 CL 体系的可能反应机制。

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