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Protein-Based Fiber Materials in Medicine: A Review

机译:医学中基于蛋白质的纤维材料的评论

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摘要

Fibrous materials have garnered much interest in the field of biomedical engineering due to their high surface-area-to-volume ratio, porosity, and tunability. Specifically, in the field of tissue engineering, fiber meshes have been used to create biomimetic nanostructures that allow for cell attachment, migration, and proliferation, to promote tissue regeneration and wound healing, as well as controllable drug delivery. In addition to the properties of conventional, synthetic polymer fibers, fibers made from natural polymers, such as proteins, can exhibit enhanced biocompatibility, bioactivity, and biodegradability. Of these proteins, keratin, collagen, silk, elastin, zein, and soy are some the most common used in fiber fabrication. The specific capabilities of these materials have been shown to vary based on their physical properties, as well as their fabrication method. To date, such fabrication methods include electrospinning, wet/dry jet spinning, dry spinning, centrifugal spinning, solution blowing, self-assembly, phase separation, and drawing. This review serves to provide a basic knowledge of these commonly utilized proteins and methods, as well as the fabricated fibers’ applications in biomedical research.
机译:纤维材料因其高的表面积/体积比,孔隙率和可调性而在生物医学工程领域引起了极大的兴趣。具体地,在组织工程领域中,已经使用纤维网来创建仿生纳米结构,其允许细胞附着,迁移和增殖,以促进组织再生和伤口愈合以及可控的药物递送。除了常规的合成聚合物纤维的特性外,由天然聚合物(例如蛋白质)制成的纤维还可表现出增强的生物相容性,生物活性和生物降解性。在这些蛋白质中,角蛋白,胶原蛋白,丝绸,弹性蛋白,玉米蛋白和大豆是纤维制造中最常用的蛋白质。这些材料的特定功能已显示出根据其物理性质及其制造方法而变化。迄今为止,这种制造方法包括静电纺丝,湿/干喷射纺丝,干纺,离心纺丝,溶液吹塑,自组装,相分离和拉伸。这篇综述旨在提供这些常用蛋白质和方法的基本知识,以及人造纤维在生物医学研究中的应用。

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