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Creating Anti-icing Surfaces via the Direct Immobilization of Antifreeze Proteins on Aluminum

机译:通过直接将防冻蛋白固定在铝上来创建防冰表面

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摘要

Cryoprotectants such as antifreeze proteins (AFPs) and sugar molecules may provide a solution for icing problems. These anti-icing substances protect cells and tissues from freezing by inhibiting ice formation. In this study, we developed a method for coating an industrial metal material (aluminum, Al) with AFP from the Antarctic marine diatom, Chaetoceros neogracile (Cn-AFP), to prevent or delay ice formation. To coat Al with Cn-AFP, we used an Al-binding peptide (ABP) as a conjugator and fused it with Cn-AFP. The ABP bound well to the Al and did not considerably change the functional properties of AFP. Cn-AFP-coated Al (Cn-AFP-Al) showed a sufficiently low supercooling point. Additional trehalose coating of Cn-AFP-Al considerably delayed AFP denaturation on the Al without affecting its antifreeze activity. This metal surface–coating method using trehalose-fortified AFP can be applied to other metals important in the aircraft and cold storage fields where anti-icing materials are critical.
机译:防冻剂(例如防冻蛋白(AFP)和糖分子)可以为解决结冰问题提供解决方案。这些防冰物质通过抑制冰的形成来保护细胞和组织免于冻结。在这项研究中,我们开发了一种用南极海洋硅藻Chaetoceros neogracile(Cn-AFP)的AFP涂覆工业金属材料(铝,Al)的方法,以防止或延迟冰的形成。为了用Cn-AFP包被Al,我们使用了Al结合肽(ABP)作为偶联剂,并将其与Cn-AFP融合。 ABP与Al很好地结合,并且没有显着改变AFP的功能特性。涂覆有Cn-AFP的Al(Cn-AFP-Al)具有足够低的过冷点。 Cn-AFP-Al的额外海藻糖涂层大大延迟了Al上的AFP变性,而不会影响其抗冻活性。这种使用海藻糖增强的AFP进行金属表面涂覆的方法可以应用于对飞机和冷藏领域至关重要的其他金属,在这些领域中,防冰材料至关重要。

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