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通过分层离子暴露从虫颚衍生的生物聚合物获得可编程机械性能。

Programmable Mechanical Properties from a Worm Jaw-Derived Biopolymer through Hierarchical Ion Exposure.

机构信息

Materials and Manufacturing Directorate, Air Force Research Laboratory , Wright-Patterson Air Force Base , Ohio 45433 , United States.

Department of Physics , Illinois Institute of Technology , Chicago , Illinois 60616 , United States.

出版信息

ACS Appl Mater Interfaces. 2018 Sep 26;10(38):31928-31937. doi: 10.1021/acsami.8b10107. Epub 2018 Sep 13.

DOI:10.1021/acsami.8b10107
PMID:30165014
Abstract

Mechanisms of biomaterial sclerotization in natural systems promise new insights into how the mechanical properties of engineered materials may be dynamically modulated. One such example involves the proteinaceous jaw of the marine sandworm, Nereis virens. Previously, the mechanical properties of the N. virens jaw were shown to be modulated by Zn binding, a property that was proposed to be enabled by the presence of the histidine-rich jaw protein, Nvjp-1. Here we demonstrate the creation of Nvjp-1-based hydrogels and show that progressive sclerotization of these hydrogels can be accomplished with hierarchical exposure to metal cations and anions. Divalent Zn cations are capable of reversibly sclerotizing the hydrogels through the formation of coordinate cross-links, an effect that is shown to be remarkably specific for Zn. Additionally, the degree of Zn-induced sclerotization is strongly influenced by the identity of the anion present in the hydrogel. Thus, the viscoelastic properties of Nvjp-1 hydrogels can be modulated through programmed, hierarchical exposure to specific cations and anions present in the sclerotizing salts. These observations have resulted in new hydrogel capabilities, such as the creation of anion-controlled shape-memory polymers, and will add to the number of control parameters that can be used to tune the properties of functional hydrogels in a dynamic manner.

摘要

天然系统中生物材料矿化的机制有望为工程材料的机械性能如何能够动态调节提供新的见解。一个这样的例子涉及到海洋沙蚕的蛋白质颚,Nereis virens。以前,N. virens 颚的机械性能被证明可以通过 Zn 结合来调节,这种特性被认为是由富含组氨酸的颚蛋白 Nvjp-1 的存在所实现的。在这里,我们展示了基于 Nvjp-1 的水凝胶的创建,并表明这些水凝胶可以通过分层暴露于金属阳离子和阴离子来实现渐进矿化。二价 Zn 阳离子能够通过形成配位交联可逆地矿化水凝胶,这种效应对于 Zn 来说非常特异。此外,Zn 诱导矿化的程度强烈受到水凝胶中存在的阴离子的影响。因此,Nvjp-1 水凝胶的粘弹性可以通过程序化、分层暴露于矿化盐中存在的特定阳离子和阴离子来调节。这些观察结果导致了新的水凝胶功能,例如创建阴离子控制的形状记忆聚合物,并将增加可以用于动态调节功能水凝胶性能的控制参数的数量。

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