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Transgenic and Diet-Enhanced Silk Production for Reinforced Biomaterials: A Metamaterial Perspective.
Annual Review of Biomedical Engineering ( IF 9.7 ) Pub Date : 2020-06-05 , DOI: 10.1146/annurev-bioeng-082719-032747
Jung Woo Leem 1 , Malcolm J Fraser 2, 3 , Young L Kim 1, 4
Affiliation  

Silk fibers, which are protein-based biopolymers produced by spiders and silkworms, are fascinating biomaterials that have been extensively studied for numerous biomedical applications. Silk fibers often have remarkable physical and biological properties that typical synthetic materials do not exhibit. These attributes have prompted a wide variety of silk research, including genetic engineering, biotechnological synthesis, and bioinspired fiber spinning, to produce silk proteins on a large scale and to further enhance their properties. In this review, we describe the basic properties of spider silk and silkworm silk and the important production methods for silk proteins. We discuss recent advances in reinforced silk using silkworm transgenesis and functional additive diets with a focus on biomedical applications. We also explain that reinforced silk has an analogy with metamaterials such that user-designed atypical responses can be engineered beyond what naturally occurring materials offer. These insights into reinforced silk can guide better engineering of superior synthetic biomaterials and lead to discoveries of unexplored biological and medical applications of silk.

中文翻译:


用于强化生物材料的转基因和饮食增强丝绸生产:超材料视角。

丝纤维是由蜘蛛和蚕产生的基于蛋白质的生物聚合物,是引人入胜的生物材料,已被广泛研究用于众多生物医学应用。丝纤维通常具有典型合成材料不具备的显着物理和生物特性。这些特性促进了各种各样的丝绸研究,包括基因工程、生物技术合成和仿生纤维纺纱,以大规模生产丝蛋白并进一步增强其特性。在这篇综述中,我们描述了蜘蛛丝和蚕丝的基本特性以及丝蛋白的重要生产方法。我们讨论了使用蚕转基因和功能性添加剂饮食增强丝的最新进展,重点是生物医学应用。我们还解释了增强丝绸与超材料的类比,这样用户设计的非典型响应可以被设计成超出天然材料所能提供的。这些对增强丝的见解可以指导更好地设计优质合成生物材料,并导致发现丝的未开发的生物和医学应用。

更新日期:2020-06-05
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