Liu Zhi-Hong, Shao Mei, Cai Ru-Xiu, Shen Ping
Department of Chemistry, Wuhan University, Wuhan 430072, China.
J Colloid Interface Sci. 2006 Feb 1;294(1):122-8. doi: 10.1016/j.jcis.2005.06.090. Epub 2005 Aug 3.
Using water/AOT/n-octane reversed micelle as the medium, the optical signal of the reactive intermediate of laccase-catalyzed oxidation of o-phenylenediamine, which was indetectable in aqueous solutions, was successfully captured. Thus online kinetic studies of the intermediate were accomplished. Two-way kinetic spectral data were acquired with stopped-flow technique. By resolving the data with global analysis software, both the kinetic curves and the absorption spectra of the components involved in the reaction process were simultaneously obtained. The whole reaction in the reversed micelle was proved to be composed of two successive steps, an enzymatic generation of the intermediate and a following nonenzymatic decay of the intermediate. A consecutive first-order kinetic model of the whole reaction was confirmed. The influences of microenvironmental factors of the medium (such as the pH value of the water pool and the water/AOT ratio) on the detection of the intermediate were also investigated.
以水/AOT/正辛烷反胶束为介质,成功捕获了漆酶催化邻苯二胺氧化反应中间体在水溶液中无法检测到的光学信号,从而完成了该中间体的在线动力学研究。采用停流技术获取了双向动力学光谱数据。通过使用全局分析软件解析数据,同时得到了反应过程中各组分的动力学曲线和吸收光谱。结果表明,反胶束中的整个反应由两个连续步骤组成,即中间体的酶促生成和随后中间体的非酶促衰变。证实了整个反应的连续一级动力学模型。还研究了介质微环境因素(如水相池的pH值和水/AOT比)对中间体检测的影响。