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Enzymatic modification of natural and synthetic polymers using lipases and proteases.

机译:使用脂肪酶和蛋白酶对天然和合成聚合物进行酶促修饰。

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摘要

Enzymatic modification of natural/synthetic polymers [starch nanoparticles, poly (n-alkyl acrylates) and poly(vinyl formamide)] was studied. Enzymes used for catalysis were lipases and proteases.; Starch nanoparticles (40nm diameter) were incorporated into AOT-coated reverse micelles. Reactions performed with the acylating agents vinyl stearate, ϵ-caprolactone and maleic anhydride in toluene in presence of Novozyme-435 at 40°C for 36h gave products with degrees of substitution of 0.8, 0.6 and 0.4 respectively. DEPT-135 NMR spectra revealed that the modification occurred regioselectively at the C-6 position of the glucose units. Infrared microspectroscopy showed that the surfactant coated starch nanoparticles diffuse into pores of Novozyme-435 beads, coming in close proximity with CALB to promote modification. The modified products retained nanoscale dimensions.; Catalysis of amide bond formation between a low molar mass amine and ester side groups of poly(n-alkyl acrylates)[poly(ethyl acrylate), poly(methyl acrylate) and poly(butyl acrylate)] was also examined. The nucleophiles were mono and diamines. Among the poly(n-alkyl acrylates) and the lipases studied, poly(ethyl acrylate) was the preferred substrate and Novozyme-435 the most active lipase. Poly(ethyl acrylate) in 80% by-volume toluene was reacted with 1 equivalent per repeat unit of hexyl amine at 70°C in presence of Novozyme-435. The product contained 10.6 mol% amide groups. Attempts to increase the amidation beyond 10–11 mol% by increasing the reaction time or use of fresh enzyme were unsuccessful, showing that poly(ethylacrylate-co-10mol%hexylacrylamide) is a poor substrate for further acylation. When chiral amines ([R,S]-α-methyl benzylamine, [R,S]-β-methyl phenyl amine) were used as nucleophiles, Novozyme-435 enantioselectively catalyzed amidation of poly(ethyl acrylate).; Poly(vinyl formamide), P(VfAm) by acid or base-catalyzed hydrolysis leads to poly(vinylamine), P(VAm), and corresponding copolymers. As an alternative to chemical hydrolysis a mild and selective enzymatic method was discovered. Fifteen proteases were evaluated for this transformation. Of these, PROT 7 was the most active. Within 24h PROT 7 gave products with 44% hydrolysis. Further hydrolysis was not observed by extending the reaction time because poly(vinylformamide-co-40%vinylamine) is a poor substrate for further hydrolysis. The sequence distribution of copolymers formed by chemical hydrolysis and enzymatic hydrolysis was compared. Chemical hydrolysis gave random copolymer. In contrast, PROT 7 gave block-like arrangement of VAm units.
机译:研究了天然/合成聚合物[淀粉纳米粒子,聚(丙烯酸正烷基酯)和聚(乙烯基甲酰胺)]的酶促改性。用于催化的酶是脂肪酶和蛋白酶。将淀粉纳米颗粒(直径40nm)掺入AOT涂层的反胶束中。在Novozyme-435存在下,在40℃下用酰化剂硬脂酸乙烯酯,ε-己内酯和马来酸酐在甲苯中进行的反应36小时,得到的取代度分别为0.8、0.6和0.4。 DEPT-135 NMR光谱显示该修饰在葡萄糖单元的C-6位置区域选择性地发生。红外光谱表明,表面活性剂涂覆的淀粉纳米颗粒扩散到Novozyme-435珠的孔中,与CALB紧密靠近,以促进修饰。改性产物保留了纳米级尺寸。还检查了低摩尔质量胺与聚(丙烯酸正烷基酯)[聚(丙烯酸乙酯),聚(丙烯酸甲酯)和聚(丙烯酸丁酯)]的酯侧基之间形成酰胺键的催化作用。亲核试剂是单胺和二胺。在所研究的聚(丙烯酸正烷基酯)和脂肪酶中,聚(丙烯酸乙酯)是优选的底物,而Novozyme-435是活性最高的脂肪酶。在Novozyme-435的存在下,将70%(体积)甲苯中的聚(丙烯酸乙酯)与1个当量/重复单元的己胺在70℃下反应。产物含有10.6mol%酰胺基。尝试通过增加反应时间或使用新鲜酶将酰胺化率提高到10-11 mol%以上是失败的,这表明聚(丙烯酸乙酯-co-10mol%己基丙烯酰胺)是进一步酰化的不良底物。当手性胺([R,S]-α-甲基苄基胺,[R,S]-β-甲基苯基胺)用作亲核试剂时,Novozyme-435对映体选择性催化了聚(丙烯酸乙酯)的酰胺化。聚(乙烯基甲酰胺),P(VfAm)通过酸或碱催化的水解生成聚(乙烯基胺),P(VAm)和相应的共聚物。作为化学水解的替代方法,发现了一种温和的选择性酶促方法。评价了十五种蛋白酶的这种转化。其中,PROT 7是最活跃的。在24小时内,PROT 7得到的产品水解度为44%。通过延长反应时间未观察到进一步水解,因为聚(乙烯基甲酰胺-co-40%乙烯基胺)是进一步水解的不良底物。比较了化学水解和酶水解形成的共聚物的序列分布。化学水解得到无规共聚物。相反,PROT 7给出了VAm单元的块状排列。

著录项

  • 作者

    Chakraborty, Soma.;

  • 作者单位

    Polytechnic University.;

  • 授予单位 Polytechnic University.;
  • 学科 Engineering Materials Science.; Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;高分子化学(高聚物);
  • 关键词

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