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Controlling protein-silicone interactions by the modification of silicone elastomers with poly(ethylene oxide).

机译:通过用聚环氧乙烷改性有机硅弹性体来控制蛋白质-有机硅相互作用。

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摘要

Despite their special and unique properties, the inherent hydrophobicity of silicone elastomers compromises their use in certain biological applications because interactions with local biology, such as proteins, can be detrimental. It is possible, however, to modify these interactions by tuning the elastomer hydrophobicity through controlling its composition using additives such as poly(ethylene oxide)(PEO), a hydrophilic, protein compatible polymer.; Enzyme entrapment in silicone elastomers serves as a convenient model to study protein silicone interactions because enzyme viability, which is affected by the entrapping matrix composition, serves as an indicator of the rubber biocompatibility. Two enzymes of different nature, lipase C. rugosa and alpha-chymotrypsin were entrapped in silicone rubber, and their activities in the presence and the absence of PEO were examined.; The interaction between the enzymes and the elastomer were found to be dependent on both the nature of the enzyme and the rubber composition. It was found that the interaction between lipase C. rugosa, a lipophilic enzyme, and the entrapping matrix benefits from the hydrophobic nature of the silicone rubber, and leads to active bio-catalytic materials. By contrast, alpha-chymotrypsin was affected negatively by the hydrophobicity of the silicone, and only become stable within the elastomer when PEO was also incorporated within the rubber formulation.; The effects of various factors, including the concentration and chain length of PEO, the enzyme concentration, and the cross-linker concentration on alpha-chymotrypsin activity were studied, following a chemometric approach. Results indicated that the specific activity can be maximized by incorporating a relatively high content of short chain, functional PEO. The enzyme concentration was found to adversely affect the specific activity, while the effect of the crosslinker TEOS was found to be insignificant when PEO was present in the elastomer; however, it did affect the activity positively in the case of simple elastomers.; These results show that it is extremely important to design an elastomer matrix to fit the requirements of a specific protein. With an appropriate balance of hydrophobic and hydrophilic constituents, bioactive silicone elastomers containing either lipophilic (lipase) or hydrophilic (chymotrypsin) enzymes can be prepared.
机译:尽管有机硅弹性体具有特殊和独特的性能,但其固有的疏水性却损害了它们在某些生物学应用中的使用,因为与蛋白质等局部生物学的相互作用可能有害。但是,可以通过使用诸如聚环氧乙烷(PEO)(一种亲水性,蛋白质相容性聚合物)之类的添加剂控制弹性体的组成来调节弹性体的疏水性,从而改变这些相互作用。有机硅弹性体中的酶截留是研究蛋白质有机硅相互作用的便捷模型,因为受截留的基质组成影响的酶活力是橡胶生物相容性的指标。将两种性质不同的酶,即脂肪酶C.rugosa和α-胰凝乳蛋白酶包埋在硅橡胶中,并检查了它们在有无PEO的情况下的活性。发现酶和弹性体之间的相互作用取决于酶和橡胶组合物的性质。已经发现,脂肪酶C.rugosa,亲脂性酶和截留基质之间的相互作用得益于硅橡胶的疏水性,并导致活性的生物催化材料。相反,α-胰凝乳蛋白酶受到硅氧烷的疏水性的负面影响,只有当PEO也掺入橡胶配方中时,α-胰凝乳蛋白酶才在弹性体中变得稳定。采用化学计量学方法研究了各种因素,包括PEO的浓度和链长,酶的浓度以及交联剂的浓度对α-胰凝乳蛋白酶活性的影响。结果表明,通过掺入较高含量的短链功能性PEO,可以使比活最大化。发现酶浓度对比活性有不利影响,而当弹性体中存在PEO时,交联剂TEOS的作用微不足道。但是,对于简单的弹性体,它确实对活性有积极影响。这些结果表明,设计适合特定蛋白质要求的弹性体基质非常重要。通过疏水和亲水成分的适当平衡,可以制备含有亲脂性(脂肪酶)或亲水性(胰凝乳蛋白酶)酶的生物活性有机硅弹性体。

著录项

  • 作者

    Ragheb, Amro M.;

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

  • 入库时间 2022-08-17 11:42:13

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