4.6 Review

Bridging wounds: tissue adhesives' essential mechanisms, synthesis and characterization, bioinspired adhesives and future perspectives

Journal

BURNS & TRAUMA
Volume 10, Issue -, Pages -

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/burnst/tkac033

Keywords

Adhesive patch; Adhesion mechanism; Nature-inspired; Tissue adhesives; Bioadhesives

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Bioadhesives play an important role in wound closure by preventing liquid and gas leakage and assisting in the stoppage of bleeding. Compared to traditional closures like suturing and stapling, tissue adhesives offer advantages such as minimal tissue damage, low infection risk, ease of use, and shorter wound closure time. While significant progress has been made in the development of tissue adhesives, there is still room for improvement. Therefore, summarizing existing adhesive designs and comparing different products will contribute to future advancements.
Bioadhesives act as a bridge in wound closure by forming an effective interface to protect against liquid and gas leakage and aid the stoppage of bleeding. To their credit, tissue adhesives have made an indelible impact on almost all wound-related surgeries. Their unique properties include minimal damage to tissues, low chance of infection, ease of use and short wound-closure time. In contrast, classic closures, like suturing and stapling, exhibit potential additional complications with long operation times and undesirable inflammatory responses. Although tremendous progress has been made in the development of tissue adhesives, they are not yet ideal. Therefore, highlighting and summarizing existing adhesive designs and synthesis, and comparing the different products will contribute to future development. This review first provides a summary of current commercial traditional tissue adhesives. Then, based on adhesion interaction mechanisms, the tissue adhesives are categorized into three main types: adhesive patches that bind molecularly with tissue, tissue-stitching adhesives based on pre-polymer or precursor solutions, and bioinspired or biomimetic tissue adhesives. Their specific adhesion mechanisms, properties and related applications are discussed. The adhesion mechanisms of commercial traditional adhesives as well as their limitations and shortcomings are also reviewed. Finally, we also discuss the future perspectives of tissue adhesives.

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