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Ice recrystallisation inhibition by polyols: comparison of molecular and macromolecular inhibitors and role of hydrophobic units

机译:多元醇对冰的重结晶抑制作用:分子抑制剂和大分子抑制剂的比较以及疏水单元的作用

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摘要

The ability of polyols to act as ice recrystallisation inhibitors (IRI), inspired by antifreeze (glyco)proteins are studied. Poly(vinyl alcohol), PVA, a known IRI active polymer was compared to a panel of mono and polysaccharides, with the aim of elucidating why some polyols are active and others show no activity. When corrected for total hydroxyl concentration all the carbohydrate-based polyols displayed near identical activity with no significant influence of molecular weight. Conversely, PVA was several orders of magnitude more active and its activity displays significant dependence on molecular-weight implying that its mechanism of action is not identical to that of carbohydrates. In a second step, the role of hydrophobicity was studied and it is observed that monosaccharide IRI activity is enhanced by alkylation. Dye-quenching assays demonstrated that PVA is able to present a hydrophobic surface without self-aggregation. Therefore, the ability to present a hydrophobic domain is hypothesised to be essential to obtain high IRI activity, which has many biotechnological applications.
机译:研究了由防冻(糖)蛋白激发的多元醇充当冰重结晶抑制剂(IRI)的能力。将聚乙烯醇(PVA),一种已知的IRI活性聚合物与一组单糖和多糖进行了比较,目的是阐明为什么某些多元醇具有活性,而另一些则没有活性。当校正总羟基浓度时,所有基于碳水化合物的多元醇显示出几乎相同的活性,而对分子量没有显着影响。相反,PVA的活性高几个数量级,其活性显示出对分子量的显着依赖性,这表明其作用机理与碳水化合物不同。在第二步骤中,研究了疏水性的作用,并且观察到单糖IRI活性通过烷基化而增强。染料猝灭分析表明,PVA能够呈现疏水性表面而不会自聚集。因此,假设存在疏水结构域的能力对于获得高IRI活性是必不可少的,IRI活性具有许多生物技术应用。

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