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A Review of Structure Construction of Silk Fibroin Biomaterials from Single Structures to Multi-Level Structures

机译:丝素蛋白生物材料结构从单一结构到多层结构的综述

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摘要

The biological performance of artificial biomaterials is closely related to their structure characteristics. Cell adhesion, migration, proliferation, and differentiation are all strongly affected by the different scale structures of biomaterials. Silk fibroin (SF), extracted mainly from silkworms, has become a popular biomaterial due to its excellent biocompatibility, exceptional mechanical properties, tunable degradation, ease of processing, and sufficient supply. As a material with excellent processability, SF can be processed into various forms with different structures, including particulate, fiber, film, and three-dimensional (3D) porous scaffolds. This review discusses and summarizes the various constructions of SF-based materials, from single structures to multi-level structures, and their applications. In combination with single structures, new techniques for creating special multi-level structures of SF-based materials, such as micropatterning and 3D-printing, are also briefly addressed.
机译:人造生物材料的生物学性能与其结构特征密切相关。细胞粘附,迁移,增殖和分化都受到生物材料不同尺度结构的强烈影响。丝素蛋白(SF)主要从家蚕中提取,由于其出色的生物相容性,出色的机械性能,可调节的降解性,易于加工和充足的供应,已成为一种流行的生物材料。作为一种具有出色加工性能的材料,SF可以加工成具有不同结构的各种形式,包括颗粒,纤维,薄膜和三维(3D)多孔支架。这篇综述讨论并总结了基于SF的材料的各种构造,从单一结构到多层结构及其应用。结合单一结构,还简要介绍了用于创建基于SF的材料的特殊多层结构的新技术,例如微图案和3D打印。

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