Akdag Zekiye, Ulag Songul, Kalaskar Deepak M, Duta Liviu, Gunduz Oguzhan
Center for Nanotechnology Biomaterials Application and Research (NBUAM), Marmara University, Istanbul 34890, Turkey.
Division of Surgery Interventional Science, University College London, Royal National Orthopaedic Hospital, UCL Institute of Orthopaedic Musculoskeletal Science, Stanmore, London HA7 4LP, UK.
Biomimetics (Basel). 2023 Dec 15;8(8):612. doi: 10.3390/biomimetics8080612.
Silk has been consistently popular throughout human history due to its enigmatic properties. Today, it continues to be widely utilized as a polymer, having first been introduced to the textile industry. Furthermore, the health sector has also integrated silk. The silk fibroin (SF) holds the record for being the most sustainable, functional, biocompatible, and easily produced type among all available SF sources. SF is a biopolymer approved by the FDA due to its high biocompatibility. It is versatile and can be used in various fields, as it is non-toxic and has no allergenic effects. Additionally, it enhances cell adhesion, adaptation, and proliferation. The use of SF has increased due to the rapid advancement in tissue engineering. This review comprises an introduction to SF and an assessment of the relevant literature using various methods and techniques to enhance the tissue engineering of SF-based hydrogels. Consequently, the function of SF in skin tissue engineering, wound repair, bone tissue engineering, cartilage tissue engineering, and drug delivery systems is therefore analysed. The potential future applications of this functional biopolymer for biomedical engineering are also explored.
由于其神秘的特性,丝绸在人类历史上一直广受欢迎。如今,它作为一种聚合物仍被广泛使用,最初它被引入纺织工业。此外,医疗领域也融入了丝绸。丝素蛋白(SF)在所有可用的SF来源中,保持着最可持续、功能性最强、生物相容性最佳且易于生产的记录。SF是一种因其高生物相容性而被美国食品药品监督管理局(FDA)批准的生物聚合物。它用途广泛,可用于各个领域,因为它无毒且无过敏作用。此外,它还能增强细胞黏附、适应性和增殖。由于组织工程的迅速发展,SF的使用有所增加。本综述包括对SF的介绍,以及使用各种方法和技术对相关文献进行评估,以增强基于SF的水凝胶的组织工程。因此,分析了SF在皮肤组织工程、伤口修复、骨组织工程、软骨组织工程和药物递送系统中的作用。还探讨了这种功能性生物聚合物在生物医学工程中的潜在未来应用。