首页> 外文期刊>Biotechnology Progress >The Role of Microemulsions in Lipase-Catalyzed Hydrolysis Reactions
【24h】

The Role of Microemulsions in Lipase-Catalyzed Hydrolysis Reactions

机译:微乳在脂肪酶催化水解反应中的作用

获取原文
获取原文并翻译 | 示例
           

摘要

The kinetics of the p-nitrophenyl butyrate hydrolysis reaction, catalyzed by Candida rugosa lipase in the water-in-oil microemulsion cetyltrimethylammonium bromidelwaterlpen-tanollhexane, was investigated. The results described in the present manuscript reveal two peculiar characteristics of the reaction: (i) the initial rate of hydrolysis is very fast and (ii) by decreasing the water content of the microemulsion, the reaction rate approaches the typical behavior of reactions performed in aqueous solution. In particular, for microemulsion systems with a high water content, the end points of the reactions are dictated by the shape stability of the microemulsion. For these systems, our methodological approach shows that the process follows a second-order kinetics equation, indicative of the dual role played by water, which is involved both as a component of the microemulsion, i.e., relevant for the microemulsion stability and as a reagent of the hydrolysis reaction. In contrast, for microemulsions containing a small amount of water, after the hydrolysis reaction the system seems to fall in the no existence range of the microemulsion. Accordingly, the kinetics results are more complex: in the initial stage, the reaction follows a zero-order kinetics equation, while for longer reaction times a first-order kinetics equation fits the experimental data, as would be expected for an enzymatic reaction in a homogeneous system.
机译:研究了由假丝酵母脂肪酶在油包水微乳液十六烷基三甲基铵溴化水-戊烷-己内酯中催化的对硝基苯基丁酸酯水解反应的动力学。本手稿中描述的结果揭示了该反应的两个特殊特征:(i)初始水解速率非常快;(ii)通过降低微乳状液的水含量,该反应速率接近于在水溶液。特别地,对于具有高水含量的微乳液体系,反应的终点由微乳液的形状稳定性决定。对于这些系统,我们的方法论方法表明该过程遵循一个二级动力学方程,表明水起着双重作用,水既是微乳液的组成部分,也与微乳液的稳定性和试剂有关。水解反应。相反,对于包含少量水的微乳液,在水解反应之后,体系似乎落入微乳液的不存在范围内。因此,动力学结果更加复杂:在初始阶段,反应遵循零级动力学方程,而对于更长的反应时间,一级动力学方程式拟合实验数据,这在酶促反应中是可以预期的。均质系统。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号