基于南极鱼类抗冻糖蛋白结构的聚乙烯醇冰核改性研究

M. Bleszynski
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引用次数: 1

摘要

人们研究了各种替代化合物来防止结冰,其中一种包括聚乙烯醇(PVA),它已显示出很好的防冻效果。然而,确定用于防冰应用的PVA的最佳结构和配方仍然是一个挑战。在我们之前使用分子动力学模拟来评估羟基分离距离对冰核的影响的基础上,本研究基于在南极鱼类中发现的抗冻糖蛋白(AFGPs)的结构对PVA进行了修饰,并将其作为一种潜在的抗冻化合物进行了研究。制备了四种不同水解程度的PVA样品,并随后检测了它们对冰结晶的影响。结果表明,水解度分别为76%和66%的改性PVA样品对冰结晶均有影响,平均可使冰结晶延迟约20 min,甚至部分样品完全不发生冰结晶。同时,其他水解度为100%和34%的样品对冰结晶均无影响,缩短了冰结晶时间,并表现出促进冰成核的作用。
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The Modification of Polyvinyl Alcohol for Ice Nucleation Based upon the Structures of Antifreeze Glycoproteins Found in Antarctic Fish
Various alternative compounds have been investigated to prevent icing, one of which includes poly(vinyl) alcohol (PVA), which has shown promising anti-freeze effects. However, determining the optimal structures and formulations of PVA for anti-icing applications has remained a challenge. Building upon our previous work, which used molecular dynamics simulations to assess the effects of hydroxyl group separation distance on ice nucleation, in this work, PVA was modified based upon the structures of antifreeze glycoproteins (AFGPs) found in Antarctic fish, and examined as a potential antifreeze compound. Four different PVA samples with different degrees of hydrolysis were fabricated and subsequently examined for their effects on ice crystallization. The results showed that the modified PVA samples with degrees of hydrolysis of 76% and 66% had an effect on ice crystallization, delaying ice crystallization by an average of approximately 20 min, and even preventing ice crystallization altogether in a small portion of the sample. Meanwhile, other samples with degrees of hydrolysis of 100% and 34% either showed no effect on ice crystallization, shortened the ice crystallization time, and appeared to promote ice nucleation.
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