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生物工程功能共聚物。IX. 聚[(马来酸酐-共-己烯-1)-接枝-聚环氧乙烷]

Bioengineering Functional Copolymers. IX. Poly[(maleic anhydride-co-hexene-1)-g-poly(ethylene oxide)].

作者信息

Mazi Hidayet, Kibarer Günay, Emregül Emel, Rzaev Zakir M O

机构信息

Department of Chemistry, Faculty of Science, Hacettepe University, Beytepe, 06532 Ankara, Türkiye.

出版信息

Macromol Biosci. 2006 Apr 12;6(4):311-21. doi: 10.1002/mabi.200500222.

Abstract

Amphiphilic bioengineering copolymers having a combination of hydrophilic/hydrophobic linkages and polyelectrolyte behavior, along with an ability to interact with biomacromolecules, in particular with the invertase enzyme, have been synthesized by (a) complex-radical copolymerization of maleic anhydride (MA, the acceptor) and hexene-1 (H-1, the donor) monomers with benzoyl peroxide as the initiator in 1,4-dioxane at 65 degrees C under high-conversion conditions and (b) subsequent grafting (polyesterification) of synthesized poly(MA-alt-H-1) with alpha-methoxy-omega-hydroxy-poly(ethylene oxide) (PEO). Copolymerizations were also carried out in the steady state, in order to essentially reduce the effect of copolymer composition drift. The values of the monomer reactivity ratios (r(1) and r(2)) determined by using the known terminal models of Fineman-Ross (FR) and Kelen-Tüdös (KT), as well as by nonlinear regression (NLR) analysis, are: r(1) = 0.16 and r(2) = 0.30 (FR), r(1) = 0.14 and r(2) = 0.27 (KT), and r(1) = 0.15 and r(2) = 0.29 (NLR), respectively. All the copolymers and graft copolymers were characterized by FTIR spectroscopy, (1)H{(13)C} NMR spectroscopy, viscometric measurements, and chemical (acid number), thermal (DSC and TGA), and X-ray diffraction analyses. Unlike poly(MA-alt-H-1)s, PEO macrobranched graft copolymers exhibit expressed polyelectrolyte and swelling behavior in diluted and concentrated dioxane solutions, respectively. The copolymer and its PEO hyperbranched derivatives can be used as carriers for enzyme immobilization.

摘要

具有亲水/疏水键组合和聚电解质行为,并能够与生物大分子相互作用,特别是与转化酶相互作用的两亲性生物工程共聚物,是通过以下方法合成的:(a)以过氧化苯甲酰为引发剂,在65℃的1,4 - 二氧六环中,于高转化率条件下,使马来酸酐(MA,受体)和己烯 - 1(H - 1,供体)单体进行络合自由基共聚;(b)随后将合成的聚(MA - alt - H - 1)与α - 甲氧基 - ω - 羟基 - 聚(环氧乙烷)(PEO)进行接枝(聚酯化)。为了基本减少共聚物组成漂移的影响,还在稳态下进行了共聚反应。使用已知的Fineman - Ross(FR)和Kelen - Tüdös(KT)末端模型以及非线性回归(NLR)分析确定的单体反应比(r(1)和r(2))值分别为:r(1) = 0.16和r(2) = 0.30(FR),r(1) = 0.14和r(2) = 0.27(KT),以及r(1) = 0.15和r(2) = 0.29(NLR)。所有共聚物和接枝共聚物均通过傅里叶变换红外光谱(FTIR)、氢质子{碳 - 13}核磁共振光谱((1)H{(13)C} NMR)、粘度测量以及化学(酸值)、热(差示扫描量热法DSC和热重分析法TGA)和X射线衍射分析进行表征。与聚(MA - alt - H - 1)不同,PEO大支链接枝共聚物在稀释的和浓的二氧六环溶液中分别表现出明显的聚电解质和溶胀行为。该共聚物及其PEO超支化衍生物可作为酶固定化的载体。

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