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合成抗冻剂在催化冰核形成中的作用。

Role of synthetic antifreeze agents in catalyzing ice nucleation.

作者信息

Weng Lindong, Swei Anisa, Toner Mehmet

机构信息

The Center for Engineering in Medicine and BioMEMS Resource Center, Massachusetts General Hospital, Harvard Medical School, Charlestown, MA, 02129, United States; Department of Surgery, Massachusetts General Hospital, Harvard Medical School, Boston, MA, 02114, United States.

The Center for Engineering in Medicine and BioMEMS Resource Center, Massachusetts General Hospital, Harvard Medical School, Charlestown, MA, 02129, United States; Department of Surgery, Massachusetts General Hospital, Harvard Medical School, Boston, MA, 02114, United States; Shriners Hospital for Children, Boston, MA, 02114, United States.

出版信息

Cryobiology. 2018 Oct;84:91-94. doi: 10.1016/j.cryobiol.2018.08.010. Epub 2018 Aug 22.

Abstract

Nature endows antifreeze (glyco)proteins (AF(G)Ps) with the excellent capability of inhibiting ice crystal growth. Recent years have also witnessed the emergence of many potent AF(G)P mimics such as poly (vinyl alcohol) (PVA). As researchers are revealing the molecular mechanisms of inhibiting ice crystal growth by AF(G)Ps and their synthetic substitutes, there remains no agreement about their effect on ice nucleation. In this study, we report the observation of ice nucleation catalyzed by PVA of different polymerization degrees using a freeze-on-a-chip platform which allows the monitoring of freezing and melting events over hundreds of monodisperse, picoliter-sized aqueous droplets. Aqueous droplets made of 1 mg/ml PVA solution exhibit a median freezing temperature of around -36 °C, two degrees higher than the observed homogeneous nucleation temperature of water. The findings in our study bring useful insights into the different roles of synthetic antifreeze agents in controlling ice formation.

摘要

大自然赋予抗冻(糖)蛋白(AF(G)Ps)卓越的抑制冰晶生长能力。近年来,也出现了许多强效的AF(G)P模拟物,如聚乙烯醇(PVA)。随着研究人员揭示AF(G)Ps及其合成替代物抑制冰晶生长的分子机制,关于它们对冰核形成的影响仍未达成共识。在本研究中,我们报告了使用芯片上冷冻平台观察不同聚合度的PVA催化冰核形成的情况,该平台能够监测数百个单分散、皮升大小的水滴的冻结和融化事件。由1毫克/毫升PVA溶液制成的水滴的中位冻结温度约为-36°C,比观察到的水的均匀成核温度高两度。我们研究中的发现为合成抗冻剂在控制冰形成中的不同作用带来了有益的见解。

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