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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Amphiphilic polymer conetworks with defined nanostructure and tailored swelling behavior for exploring the activation of an entrapped lipase in organic solvents
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Amphiphilic polymer conetworks with defined nanostructure and tailored swelling behavior for exploring the activation of an entrapped lipase in organic solvents

机译:具有定义的纳米结构和量身定制的溶胀行为的两亲聚合物共网络,用于探索有机溶剂中包裹的脂肪酶的活化

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摘要

Amphiphilic polymer conetworks (APCNs) are nanomaterials that greatly activate entrapped enzymes in organic solvents. We have designed two novel APCNs with similar nanostructure, but different swelling behavior in toluene and n-heptane to explore the true origin of enzyme activation. They were realized by copolymerization of telechelic methacrylamide terminated poly(2-methyl oxazoline) (PMOx) with butyl acrylate (BuAc) and 2-ethylhexyl acrylate (EhAc), respectively. While the first APCN swells in toluene but not in n-heptane, the latter swells in both solvents. Lipase Cal B entrapped in the conetworks is most active at a composition that contains some 50 wt% PMOx in all cases. Further, the maximal activation of Cal B with respect to the suspended powder is some 20-fold independent on the solvent as long as the APCN is swellable. (C) 2015 Elsevier Ltd. All rights reserved.
机译:两亲性聚合物共网络(APCN)是纳米材料,可大大激活有机溶剂中截留的酶。我们设计了两种具有相似纳米结构,但在甲苯和正庚烷中具有不同溶胀行为的新型APCN,以探索酶激活的真正起源。它们分别通过远螯甲基丙烯酸酰胺封端的聚(2-甲基恶唑啉)(PMOx)与丙烯酸丁酯(BuAc)和丙烯酸2-乙基己酯(EhAc)的共聚来实现。虽然第一个APCN在甲苯中溶胀,但在正庚烷中溶胀,但后者在两种溶剂中溶胀。在所有情况下,包裹在共网络中的脂肪酶Cal B在包含约50 wt%PMOx的组合物中最为活跃。此外,只要APCN可溶胀,相对于悬浮粉末,Cal B的最大活化度约为溶剂的20倍。 (C)2015 Elsevier Ltd.保留所有权利。

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