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Bioinspired Materials for Wound Healing Application: The Potential of Silk Fibroin

机译:Bioinspired用于伤口愈合应用的材料:丝素蛋白的潜力

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摘要

Nature is an incredible source of inspiration for scientific research due to the multiple examples of sophisticated structures and architectures which have evolved for billions of years in different environments. Numerous biomaterials have evolved toward high level functions and performances, which can be exploited for designing novel biomedical devices. Naturally derived biopolymers, in particular, offer a wide range of chances to design appropriate substrates for tissue regeneration and wound healing applications. Wound management still represents a challenging field which requires continuous efforts in scientific research for definition of novel approaches to facilitate and promote wound healing and tissue regeneration, particularly where the conventional therapies fail. Moreover, big concerns associated to the risk of wound infections and antibiotic resistance have stimulated the scientific research toward the definition of products with simultaneous regenerative and antimicrobial properties. Among the bioinspired materials for wound healing, this review focuses attention on a protein derived from the silkworm cocoon, namely silk fibroin, which is characterized by incredible biological features and wound healing capability. As demonstrated by the increasing number of publications, today fibroin has received great attention for providing valuable options for fabrication of biomedical devices and products for tissue engineering. In combination with antimicrobial agents, particularly with silver nanoparticles, fibroin also allows the development of products with improved wound healing and antibacterial properties. This review aims at providing the reader with a comprehensive analysis of the most recent findings on silk fibroin, presenting studies and results demonstrating its effective role in wound healing and its great potential for wound healing applications.
机译:自然是一种令人难以置信的灵感来源,因为在不同环境中已经发展的复杂结构和架构的多个例子,这是一种令人难以置信的灵感来源。许多生物材料已经发展到高水平的功能和性能,这可以利用设计新的生物医学装置。特别地,天然衍生的生物聚合物提供了广泛的机会,可以设计用于组织再生和伤口愈合应用的合适底物。伤口管理仍然是一个具有挑战性的领域,这需要对科学研究的持续努力,对新型方法的定义,以促进和促进伤口愈合和组织再生,特别是在常规治疗失败的地方。此外,与伤口感染风险和抗生素抗性有关的大问题刺激了同时再生和抗微生物性能的对产品定义的科学研究。在伤口愈合的生物透露材料中,本综述重点关注源自蚕茧,即丝素蛋白的蛋白质,其特征在于令人难以置信的生物特征和伤口愈合能力。如越来越多的出版物所证明,今天弗林素已得到很大的关注,为制造生物医学设备和组织工程产品的制造有价值的选择。与抗微生物剂组合,特别是用银纳米颗粒,纤维素还允许开发具有改善的伤口愈合和抗菌性质的产品。该审查旨在为读者提供全面分析丝素素最近发现的最新发现,提出研究和结果证明其在伤口愈合中的有效作用及其伤口愈合应用的巨大潜力。

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