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丝生物材料在创伤愈合和皮肤再生治疗中的应用:从实验室到临床。

Silk biomaterials in wound healing and skin regeneration therapeutics: From bench to bedside.

机构信息

Biomaterial and Tissue Engineering Laboratory, Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.

Biomaterial and Tissue Engineering Laboratory, Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India; Centre for Nanotechnology, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.

出版信息

Acta Biomater. 2020 Feb;103:24-51. doi: 10.1016/j.actbio.2019.11.050. Epub 2019 Dec 2.

Abstract

Silk biomaterials are known for biomedical and tissue engineering applications including drug delivery and implantable devices owing to their biocompatible and a wide range of ideal physico-chemical properties. Herein, we present a critical overview of the progress of silk-based matrices in skin regeneration therapeutics with an emphasis on recent innovations and scientific findings. Beginning with a brief description of numerous varieties of silks, the review summarizes our current understanding of the biological properties of silk that help in the wound healing process. Various silk varieties such as silkworm silk fibroin, silk sericin, native spider silk and recombinant silk materials have been explored for cutaneous wound healing applications from the past few decades. With an aim to harness the regenerative properties of silk, numerous strategies have been applied to develop functional bioactive wound dressings and viable bio-artificial skin grafts in recent times. The review examines multiple inherent properties of silk that aid in the critical events of the healing process such as cell migration, cell proliferation, angiogenesis, and re-epithelialization. A detailed insight into the progress of silk-based cellular skin grafts is also provided that discusses various co-culture strategies and development of bilayer and tri-layer human skin equivalent under in vitro conditions. In addition, functionalized silk matrices loaded with bioactive molecules and antibacterial compounds are discussed, which have shown great potential in treating hard-to-heal wounds. Finally, clinical studies performed using silk-based translational products are reviewed that validate their regenerative properties and future applications in this area. STATEMENT OF SIGNIFICANCE: The review article discusses the recent advances in silk-based technologies for wound healing applications, covering various types of silk biomaterials and their properties suitable for wound repair and regeneration. The article demonstrates the progress of silk-based matrices with an update on the patented technologies and clinical advancements over the years. The rationale behind this review is to highlight numerous properties of silk biomaterials that aid in all the critical events of the wound healing process towards skin regeneration. Functionalization strategies to fabricate silk dressings containing bioactive molecules and antimicrobial compounds for drug delivery to the wound bed are discussed. In addition, a separate section describes the approaches taken to generate living human skin equivalent that have recently contributed in the field of skin tissue engineering.

摘要

丝质生物材料因其具有生物相容性和广泛的理想物理化学性质,已被广泛应用于医学和组织工程领域,包括药物输送和可植入设备。本文重点介绍了近年来的创新和科学发现,对丝质基质在皮肤再生治疗中的应用进行了批判性的综述。首先简要介绍了多种丝质材料,然后总结了我们目前对丝质材料在伤口愈合过程中的生物学特性的理解。过去几十年,人们已经探索了各种丝质材料,如桑蚕丝、丝胶、天然蜘蛛丝和重组丝材料,用于皮肤伤口愈合应用。为了利用丝质的再生特性,近年来已经应用了许多策略来开发功能性生物活性伤口敷料和可行的生物人工皮肤移植物。本综述考察了丝质在细胞迁移、细胞增殖、血管生成和再上皮化等愈合过程关键事件中的多种固有特性。还详细介绍了丝质细胞皮肤移植物的进展,讨论了各种共培养策略以及在体外条件下开发双层和三层人类皮肤等效物。此外,还讨论了负载生物活性分子和抗菌化合物的功能化丝质基质,这些基质在治疗难愈性伤口方面显示出巨大的潜力。最后,综述了使用丝质转化产品进行的临床研究,这些研究验证了它们的再生特性以及在该领域的未来应用。

意义

本文综述了丝质技术在伤口愈合应用方面的最新进展,涵盖了各种类型的丝质生物材料及其适合伤口修复和再生的特性。本文介绍了丝质基质的最新进展,包括多年来专利技术和临床进展的更新。撰写本文的原因是强调丝质生物材料的许多特性,这些特性有助于伤口愈合过程中的所有关键事件,从而实现皮肤再生。讨论了用于药物输送到伤口床的含有生物活性分子和抗菌化合物的丝质敷料的功能化策略。此外,还有一个单独的部分描述了用于生成最近在皮肤组织工程领域做出贡献的活体人类皮肤等效物的方法。

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