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氢键作用驱动的黏附凝聚体。

Adhesive Coacervates Driven by Hydrogen-Bonding Interaction.

机构信息

Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta, T6G 1H9, Canada.

The Fifth Affiliated Hospital, Guangzhou Medical University, Guangzhou, Guangdong, 510700, China.

出版信息

Small. 2020 Oct;16(43):e2004132. doi: 10.1002/smll.202004132. Epub 2020 Oct 2.

Abstract

Coacervation plays a critical role in numerous biological activities such as constructing biological tissues and achieving robust wet adhesion of marine sessile organisms, which conventionally occurs when oppositely charged polyelectrolytes are mixed in aqueous solutions driven by electrostatic attraction. Here, a novel type of adhesive coacervate is reported, driven by hydrogen-bonding interactions, readily formed by mixing silicotungstic acid and nonionic polyethylene glycol in water, providing a new approach for developing coacervates from nonionic systems. The as-prepared coacervate is easily paintable underwater, show strong wet adhesion to diverse substrates, and has been successfully applied as a hemostatic agent to treat organ injuries without displaying hemolytic activity, while with inherent antimicrobial properties thus avoiding inflammations and infections due to microorganism accumulation. This work demonstrates that coacervation can occur in salt-free environments via non-electrostatic interactions, providing a new platform for engineering multifunctional coacervate materials as tissue glues, wound dressings and membrane-free cell systems.

摘要

凝聚作用在许多生物活动中起着关键作用,例如构建生物组织和实现海洋固着生物的强大湿黏附,这通常发生在带相反电荷的聚电解质在水溶液中混合时,由静电吸引驱动。在这里,报道了一种新型的凝聚物,由氢键相互作用驱动,通过在水中混合硅钨酸和非离子聚乙二醇很容易形成,为从非离子体系开发凝聚物提供了一种新方法。所制备的凝聚物在水下可轻松涂漆,对各种基底具有很强的湿黏附性,并已成功用作止血剂来治疗器官损伤,而不会显示溶血活性,同时具有内在的抗菌性能,从而避免因微生物积累引起的炎症和感染。这项工作表明,凝聚作用可以在无盐环境中通过非静电相互作用发生,为工程多功能凝聚材料提供了一个新的平台,如组织胶、伤口敷料和无膜细胞系统。

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