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具有可调机械和粘附性能的三重交联的双网络海藻酸盐/葡聚糖/树枝状聚合物水凝胶:一种用于无缝合角膜移植的潜在候选材料。

Triple-crosslinked double-network alginate/dextran/dendrimer hydrogel with tunable mechanical and adhesive properties: A potential candidate for sutureless keratoplasty.

机构信息

College of Biomedical Engineering, Sichuan University, Chengdu, Sichuan 610065, China.

Department of Ophthalmology, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, China.

出版信息

Carbohydr Polym. 2024 Nov 15;344:122538. doi: 10.1016/j.carbpol.2024.122538. Epub 2024 Jul 23.

DOI:10.1016/j.carbpol.2024.122538
PMID:39218556
Abstract

An ideal adhesive hydrogel must possess high adhesion to the native tissue, biocompatibility, eligible biodegradability, and good mechanical compliance with the substrate tissues. We constructed an interpenetrating double-network hydrogel containing polysaccharides (alginate and dextran) and nanosized spherical dendrimer by both physical and chemical crosslinking, thus endowing the hydrogel with a broad range of mechanical properties, adhesive properties, and biological functions. The double-network hydrogel has moderate pore sizes and swelling properties. The chelation of calcium ions significantly enhances the tensile and compressive properties. The incorporation of dendrimer improves both the mechanical and adhesive properties. This multicomponent interpenetrating network hydrogel has excellent biocompatibility, tunable mechanical and adhesive properties, and satisfied multi-functions to meet the complex requirements of wound healing and tissue engineering. The hydrogel exhibits promising corneal adhesion capabilities in vitro, potentially supplanting the need for sutures in corneal stromal surgery and mitigating the risks associated with donor corneal damage and graft rejection during corneal transplantation. This novel polysaccharide and dendrimer hydrogel also shows good results in sutureless keratoplasty, with high efficiency and reliability. Based on the clinical requirements for tissue bonding and wound closure, the hydrogel provides insight into solving the mechanical properties and adhesive strength of tissue adhesives.

摘要

一种理想的黏附性水凝胶必须具备对天然组织的高黏附性、生物相容性、合适的可生物降解性以及与基底组织良好的机械顺应性。我们通过物理和化学交联构建了一种包含多糖(海藻酸钠和葡聚糖)和纳米级球形树枝状大分子的互穿双网络水凝胶,从而赋予水凝胶广泛的机械性能、黏附性能和生物功能。双网络水凝胶具有适中的孔径和溶胀性能。钙离子螯合显著提高了拉伸和压缩性能。树枝状大分子的掺入提高了机械性能和黏附性能。这种多组分互穿网络水凝胶具有优异的生物相容性、可调的机械和黏附性能以及满足多种功能,以满足伤口愈合和组织工程的复杂要求。水凝胶在体外表现出良好的角膜黏附能力,有望替代角膜基质手术中缝线的需求,并减轻供体角膜损伤和角膜移植中移植物排斥的相关风险。这种新型多糖和树枝状大分子水凝胶在无缝线角膜移植中也取得了良好的效果,具有高效和可靠的特点。基于组织黏合和伤口闭合的临床要求,该水凝胶为解决组织黏合剂的机械性能和黏附强度提供了思路。

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