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Ultra-Low Dispersity Poly(vinyl alcohol) Reveals Significant Dispersity Effects on Ice Recrystallization Inhibition Activity

机译:超低分散聚乙烯醇显示出对冰重结晶抑制活性的显着分散作用

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摘要

Polymer mimics of antifreeze proteins are emerging as an exciting class of macromolecular cryoprotectants for the storage of donor cells and tissue. Poly(vinyl alcohol), PVA, is the most potent polymeric ice growth inhibitor known, but its mode of action and the impact of valency (DP) are not fully understood. Herein, tandem RAFT polymerization and column chromatography are used to isolate oligomers with dispersities <1.01 to enable the effect of molecular weight distribution, as well as length, to be probed. It is found that polymers with equal number average molecular weight, but lower dispersity, have significantly less activity, which can lead to false positives when identifying structure-property relationships. The minimum chain length for PVA’s unique activity, compared to other non-active poly-ols was identified. These results will guide the design of more active inhibitors, better cryopreservatives and a deeper understanding of synthetic and biological antifreeze macromolecules.
机译:防冻蛋白的聚合物模拟物正在成为一类激动人心的大分子冷冻保护剂,用于储存供体细胞和组织。聚乙烯醇(PVA)是已知最有效的聚合物冰生长抑制剂,但其作用方式和化合价(DP)的影响尚不完全清楚。在此,串联RAFT聚合和柱色谱法用于分离分散度<1.01的低聚物,从而能够探测分子量分布以及长度的影响。发现数均分子量相同但分散度较低的聚合物的活性明显降低,这在识别结构-性质关系时可能导致假阳性。确定了与其他非活性多元醇相比,PVA独特活性的最小链长。这些结果将指导设计更具活性的抑制剂,更好的冷冻保存剂,并加深对合成和生物抗冻大分子的了解。

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