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高强度收敛水凝胶:使用蛋白质作为构建块的物理交联多网络。

High Strength Astringent Hydrogels Using Protein as the Building Block for Physically Cross-linked Multi-Network.

机构信息

State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics , Chinese Academy of Sciences , Lanzhou 730000 , China.

College of Materilas Science and Opto-Electonic Technology , University of Chinese Academy of Sciences , Beijing 100049 , China.

出版信息

ACS Appl Mater Interfaces. 2018 Mar 7;10(9):7593-7601. doi: 10.1021/acsami.7b04290. Epub 2017 Sep 11.

DOI:10.1021/acsami.7b04290
PMID:28891633
Abstract

Integrating proteins into a hydrogel network enables its good bioactivity as an ECM environment in biorelative applications. Although extensive studies on preparing protein hydrogels have been carried out, the reported systems commonly present very low mechanical strength and weak water-rentention capacity. Learning from the astringent mouthfeel, we report here a protein engineered multinetwork physical hydrogel as TA-PVA/BSA. In a typical case, the BSA protein-integrated poly(vinyl alcohol) (PVA) solution is treated by the freeze-thaw method and forms the first hydrogel network, and tannic acid (TA) then cross-links with BSA proteins and PVA chains to form the secondary hydrogel network based on the noncovalent interaction (hydrogen bond and hydrophobic interaction). The as-prepared TA-PVA/BSA composite hydrogel is a pure physically cross-linking network and possesses ultrahigh tensile strength up to ∼9.5 MPa but is adjustable, relying on the concentration of TA and BSA. Moreover, its mechanical strength is further improved by prestretching induced anisotropy of mechanical performance. Because of its controllable and layered structure as skin, the composite hydrogel presents good water-retention capacity compared to traditional high strength hydrogels. This work demonstrates a novel method to design high mechanical strength but layered physical cross-linking hydrogels and enables us to realize their biorelative applications.

摘要

将蛋白质整合到水凝胶网络中可以使其在生物相关应用中作为 ECM 环境具有良好的生物活性。尽管已经进行了广泛的蛋白质水凝胶制备研究,但报道的系统通常表现出非常低的机械强度和弱的保水能力。受收敛口感的启发,我们在这里报告了一种蛋白质工程多网络物理水凝胶 TA-PVA/BSA。在典型情况下,将 BSA 蛋白质整合的聚乙烯醇(PVA)溶液通过冻融法处理,形成第一个水凝胶网络,然后单宁酸(TA)通过非共价相互作用(氢键和疏水相互作用)与 BSA 蛋白质和 PVA 链交联形成二级水凝胶网络。所制备的 TA-PVA/BSA 复合水凝胶是一种纯物理交联网络,具有高达约 9.5 MPa 的超高拉伸强度,但可通过 TA 和 BSA 的浓度进行调节。此外,通过预拉伸诱导机械性能的各向异性,进一步提高了其机械强度。由于其作为皮肤的可控和分层结构,与传统高强度水凝胶相比,复合水凝胶具有良好的保水能力。这项工作展示了一种设计具有高机械强度但分层物理交联水凝胶的新方法,并使我们能够实现它们的生物相关应用。

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