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Silk proteins for biomedical applications: Bioengineering perspectives

机译:用于生物医学的丝蛋白:生物工程学的观点

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摘要

Biomaterials of either natural or synthetic origin are used to fabricate implantable devices, as carriers for bioactive molecules or as substrates to facilitate tissue regeneration. For the design of medical devices it is fundamental to use materials characterized by non-immunogenicity, biocompatibility, slow and/or controllable biodegradability, non-toxicity, and structural integrity. The success of biomaterial-derived biodevices tends to be based on the biomimetic architecture of the materials. Recently, proteins from natural precursors that are essentially structural and functional polymers, have gained popularity as biomaterials. The silks produced by silkworms or spiders are of particular interest as versatile protein polymers. These form the basis for diverse biomedical applications that exploit their unique biochemical nature, biocompatibility and high mechanical strength. This review discusses and summarizes the latest advances in the engineering of silk-based biomaterials, focusing specifically on the fabrication of diverse bio-mimetic structures such as films, hydrogels, scaffolds, nanofibers and nanoparticles; their functionalization and potential for biomedical applications.
机译:天然或合成来源的生物材料都可用于制造可植入设备,作为生物活性分子的载体或促进组织再生的基质。对于医疗器械的设计,最基本的是使用具有非免疫原性,生物相容性,缓慢和/或可控制的生物降解性,无毒性和结构完整性的材料。生物材料衍生的生物装置的成功往往基于材料的仿生结构。近来,来自天然前体的蛋白质本质上是结构和功能聚合物,已经作为生物材料得到普及。由蚕或蜘蛛生产的丝作为多功能蛋白质聚合物特别受关注。这些构成了利用其独特的生化性质,生物相容性和高机械强度的各种生物医学应用的基础。这篇综述讨论并总结了基于丝绸的生物材料工程学的最新进展,特别着重于各种仿生结构的制造,例如薄膜,水凝胶,支架,纳米纤维和纳米颗粒。它们的功能化和生物医学应用的潜力。

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