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具有稳定湿黏附性、抗菌活性和按需脱落的天然聚合物-多酚生物黏附共凝聚体。

Natural Polymer-Polyphenol Bioadhesive Coacervate with Stable Wet Adhesion, Antibacterial Activity, and On-Demand Detachment.

机构信息

CICECO - Aveiro Institute of Materials, Department of Chemistry, University of Aveiro, Campus Universitário de Santiago, Aveiro, 3810-193, Portugal.

John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, 02138, USA.

出版信息

Adv Healthc Mater. 2024 May;13(13):e2304587. doi: 10.1002/adhm.202304587. Epub 2024 Feb 17.

Abstract

Medical adhesives are emerging as an important clinical tool as adjuvants for sutures and staples in wound closure and healing and in the achievement of hemostasis. However, clinical adhesives combining cytocompatibility, as well as strong and stable adhesion in physiological conditions, are still in demand. Herein, a mussel-inspired strategy is explored to produce adhesive coacervates using tannic acid (TA) and methacrylate pullulan (PUL-MA). TA|PUL-MA coacervates mainly comprise van der Waals forces and hydrophobic interactions. The methacrylic groups in the PUL backbone increase the number of interactions in the adhesives matrix, resulting in enhanced cohesion and adhesion strength (72.7 Jm), compared to the non-methacrylated coacervate. The adhesive properties are kept in physiologic-mimetic solutions (72.8 Jm) for 72 h. The photopolymerization of TA|PUL-MA enables the on-demand detachment of the adhesive. The poor cytocompatibility associated with the use of phenolic groups is here circumvented by mixing reactive oxygen species-degrading enzyme in the adhesive coacervate. This addition does not hamper the adhesive character of the materials, nor their anti-microbial or hemostatic properties. This affordable and straightforward methodology, together with the tailorable adhesivity even in wet environments, high cytocompatibility, and anti-bacterial activity, enables foresee TA|PUL-MA as a promising ready-to-use bioadhesive for biomedical applications.

摘要

医用粘合剂作为缝线和订书钉在伤口闭合和愈合以及止血方面的辅助手段,正在成为一种重要的临床工具。然而,临床粘合剂需要兼具细胞相容性,以及在生理条件下具有强大且稳定的黏附力,这仍然是一个需求。在此,我们探索了一种贻贝启发的策略,使用单宁酸(TA)和甲基丙烯酰化普鲁兰(PUL-MA)制备粘合剂凝聚体。TA|PUL-MA 凝聚体主要由范德华力和疏水相互作用构成。PUL 主链中的甲基丙烯酰基增加了粘合剂基质中的相互作用数量,与非甲基丙烯酰化凝聚体相比,其内聚强度和黏附强度(72.7 Jm)得到增强。在生理模拟溶液中(72.8 Jm),其粘合性能可保持 72 小时。TA|PUL-MA 的光聚合作用可实现按需分离粘合剂。通过在粘合剂凝聚体中混合活性氧降解酶,避免了使用酚类基团带来的细胞相容性差的问题。这种添加物不会影响材料的粘合特性,也不会影响其抗菌或止血性能。这种经济实惠且简单的方法,以及即使在潮湿环境下也可定制的粘合性、高细胞相容性和抗菌活性,使 TA|PUL-MA 有望成为一种有前途的可用于生物医学应用的即用型生物粘合剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bdb/11469155/4d48acdf0eaa/ADHM-13-2304587-g007.jpg

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