首页> 美国卫生研究院文献>Scientific Reports >Bicontinuous Interfacially Jammed Emulsion Gels (bijels) as Media for Enabling Enzymatic Reactive Separation of a Highly Water Insoluble Substrate
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Bicontinuous Interfacially Jammed Emulsion Gels (bijels) as Media for Enabling Enzymatic Reactive Separation of a Highly Water Insoluble Substrate

机译:双连续界面堵塞的乳液凝胶(bijels)作为使高水不溶性底物发生酶促反应分离的介质

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摘要

Although enzymes are efficient catalysts capable of converting various substrates into desired products with high specificity under mild conditions, their effectiveness as catalysts is substantially reduced when substrates are poorly water-soluble. In this study, to expedite the enzymatic conversion of a hydrophobic substrate, we use a bicontinuous interfacially jammed emulsion gel (bijel) which provides large interfacial area between two immiscible liquids: oil and water. Using lipase-catalyzed hydrolysis of tributyrin as a model reaction in a batch mode, we show that bijels can be used as media to enable enzymatic reaction. The bijel system gives a four-fold increase in the initial reaction rate in comparison to a stirred biphasic medium. Our results demonstrate that bijels are powerful biphasic reaction media to accelerate enzymatic reactions with various hydrophobic reagents. This work also demonstrates that bijels can potentially be used as reaction media to enable continuous reactive separations.
机译:尽管酶是有效的催化剂,能够在温和条件下以高特异性将各种底物转化为所需的产物,但是当底物水溶性差时,其作为催化剂的有效性会大大降低。在这项研究中,为了加快疏水性底物的酶促转化,我们使用了一种双连续界面堵塞的乳液凝胶(bijel),该凝胶在两种不混溶的液体(油和水)之间提供了较大的界面面积。使用脂肪酶催化的三丁酸甘油酯的水解作为分批模式的模型反应,我们表明bijels可以用作启用酶促反应的介质。与搅拌的双相介质相比,bijel系统使初始反应速率提高了四倍。我们的结果表明,胆汁是强大的双相反应介质,可加速与各种疏水试剂的酶促反应。这项工作还证明,胆可以潜在地用作反应介质以实现连续的反应分离。

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