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首页> 外文期刊>Biochemical Engineering Journal >Flavonoid esters synthesis using novel biocatalytic systems - CAL B immobilized onto LifeTech (TM) ECR supports
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Flavonoid esters synthesis using novel biocatalytic systems - CAL B immobilized onto LifeTech (TM) ECR supports

机译:黄酮类化合物用新型生物催化系统合成 - Cal B固定在寿命(TM)ECR支撑件上

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摘要

In order to enhance productivity and cost-effectiveness of current lipase-catalyzed processes of flavonoid esters synthesis, different LifeTech (TM) ECR carriers varying in functional groups, polarity and porosity were hereby screened as immobilization supports for free lipase B from Candida antarctica. The most prospective ones were examined in esterification of three flavonoid glycoside representatives - phloridzin, naringin and esculin using different acyl donors. Highly active preparations were obtained by using hydrophobic C18 (ECR 8806M), epoxy/butyl (ECR 8285F) and primary amino (ECR 8409F) functionalized resins. Interestingly, lipase immobilized via hydrophobic interactions and covalent bonds exhibited high catalytic activity in esterification reactions using oleic acid as well as natural oils as acyl donors, yielding more than 70 % and 50 % conversion degree, respectively. On the other hand, lipase immobilized onto amino-support by electrostatic interactions, which demonstrated the highest hydrolytic activity, showed poor efficiency in ester syntheses. Operational stability study proved exceptionally high potential of lipases immobilized on epoxy-support or hydrophobic support for reproducible and cost-effective industrial application, since 90 % of initial activity was preserved after six consecutive reaction cycles of oleyl ester synthesis, while within following nine reuses, only moderate activity loss occurred. Moreover, besides very good esterifying activity, lipase immobilized via hydrophobic interactions showed outstanding operational stability during ten reuses in reaction of phloridzin transesterification with coconut oil.
机译:为了提高当前脂肪酶催化的黄酮酯合成方法的生产率和成本效益,特此筛选在官能团中,极性和孔隙率不同的不同寿命(TM)ECR载体,作为来自Candida南极的游离脂肪酶B的固定载体。使用不同的酰基供体,在三种类黄酮糖苷代表 - phloridzin,柚皮蛋白和脓叶中进行了最前瞻性的酯化。通过使用疏水性C18(ECR 8806M),环氧/丁基(ECR 8285F)和伯氨基(ECR 8409F)官能化树脂来获得高活性制剂。有趣的是,通过疏水相互作用固定的脂肪酶和共价键在酯化反应中使用油酸以及天然油作为酰基供体表现出高催化活性,分别产生超过70%和50%的转化度。另一方面,通过静电相互作用固定在氨基载体上的脂肪酶,该静电相互作用显示出最高水解活性,在酯合成中表现出较差的效率。操作稳定性研究证明了固定在环氧载体或疏水载体上固定的脂肪酶的高潜力,以便可再现和成本效益的工业应用,因为在大黄酯合成的六个连续反应循环后保留了90%的初始活性,而在九次九卷中,只发生了中度活动损失。此外,除了非常好的酯化活性之外,通过疏水相互作用固定的脂肪酶在十分之一的重复速度期间,氟辛酯化与椰子油反应期间的脂肪酶显示出优异的运算稳定性。

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