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纤维素和丝素蛋白的可持续生物材料复合材料的工程:基础与应用。

Engineering of sustainable biomaterial composites from cellulose and silk fibroin: Fundamentals and applications.

机构信息

Institute of Chemistry, The University of São Paulo, Professor Lineu Prestes Av. 748, 05508-000 São Paulo, SP, Brazil.

Fiber Development, Materials and Production, Research Institutes of Sweden (RISE IVF), Box 104, SE-431 22 Mölndal, Sweden.

出版信息

Int J Biol Macromol. 2021 Jan 15;167:687-718. doi: 10.1016/j.ijbiomac.2020.11.151. Epub 2020 Nov 27.

Abstract

This review addresses composites prepared from cellulose (Cel) and silk fibroin (SF) to generate multifunctional, biocompatible, biodegradable materials such as fibers, films and scaffolds for tissue engineering. First, we discuss briefly the molecular structures of Cel and SF. Their structural features explain why certain solvents, e.g., ionic liquids, inorganic electrolyte solutions dissolve both biopolymers. We discuss the mechanisms of Cel dissolution because in many cases they also apply to (much less studied) SF dissolution. Subsequently, we discuss the fabrication and characterization of Cel/SF composite biomaterials. We show how the composition of these materials beneficially affects their mechanical properties, compared to those of the precursor biopolymers. We also show that Cel/SF materials are excellent and versatile candidates for biomedical applications because of the inherent biocompatibility of their components.

摘要

本文综述了由纤维素(Cel)和丝素蛋白(SF)制备的复合材料,以生成多功能、生物相容、可生物降解的材料,如纤维、薄膜和支架,用于组织工程。首先,我们简要讨论了 Cel 和 SF 的分子结构。它们的结构特征解释了为什么某些溶剂,例如离子液体和无机电解质溶液可以溶解这两种生物聚合物。我们讨论了 Cel 溶解的机制,因为在许多情况下,这些机制也适用于(研究较少的)SF 溶解。随后,我们讨论了 Cel/SF 复合生物材料的制备和表征。我们展示了这些材料的组成如何有益地影响它们的机械性能,与它们的前体生物聚合物相比。我们还表明,由于其成分的固有生物相容性,Cel/SF 材料是生物医学应用的优秀和多功能候选材料。

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