Department of Mechanical Engineering, Ecole de technologie superieure (ETS), 1100 Notre-Dame W Street, Montreal, QC H3C 1K3, Canada.
Centre de Recherche du CHUM, 900 Saint-Denis Street, Montreal, QC H2X 0A9, Canada.
J Mater Chem B. 2021 Oct 20;9(40):8406-8416. doi: 10.1039/d1tb00807b.
Injectable hydrogels designed for cell therapy need to be adhesive to the surrounding tissues to maximize their retention and the communication between the host and the encapsulated cells. Catechol grafting is an efficient and well-known strategy to improve the adhesive properties of various polymers, including chitosan. However, catechol groups are also known to be cytotoxic as they oxidize into quinones in alkaline environments. Usually, hydrogels made from catechol-grafted chitosan (cat-CH) oxidize quickly, which tends to limit adhesion and prevent cell encapsulation. In this work, we limited oxidation and improved the cytocompatibility of cat-CH hydrogels by grafting chitosan with dihydroxybenzoic acid (DHBA), a small cat-bearing molecule known to have a high resistance to oxidation. We show that DHBA-grafted CH (dhba-CH) oxidized significantly slower and to a lesser extent that cat-CH made with hydrocaffeic acid (hca-CH). By combining dhba-CH with sodium bicarbonate and phosphate buffer, we fabricated thermosensitive injectable hydrogels with higher mechanical properties, quicker gelation and significantly lower oxidation than previously designed cat-CH systems. The resulting gels are highly adhesive on inorganic substrates and support L929 fibroblast encapsulation with high viability (≥90% after 24 hours), something that was not possible in any previously designed cat-CH gel system. These properties make the dhba-CH hydrogels excellent candidates for minimally invasive and targeted cell therapy in applications that require high adhesive strength.
用于细胞治疗的可注射水凝胶需要与周围组织具有黏附性,以最大限度地提高其保留率和包封细胞与宿主之间的交流。儿茶酚接枝是一种提高各种聚合物(包括壳聚糖)黏附性能的有效且知名的策略。然而,儿茶酚基团也具有细胞毒性,因为它们在碱性环境中会氧化成醌。通常,由接枝儿茶酚的壳聚糖(cat-CH)制成的水凝胶会迅速氧化,这往往会限制黏附并阻止细胞包封。在这项工作中,我们通过用二羟基苯甲酸(DHBA)接枝壳聚糖来限制氧化并提高 cat-CH 水凝胶的细胞相容性,DHBA 是一种已知具有高抗氧化能力的小型带儿茶酚的分子。我们表明,DHBA 接枝的 CH(dhba-CH)的氧化速度明显较慢,氧化程度也低于用 hydrocaffeic 酸(hca-CH)制成的 cat-CH。通过将 dhba-CH 与碳酸氢钠和磷酸盐缓冲液结合,我们制造出具有更高机械性能、更快凝胶化速度和比以前设计的 cat-CH 系统低得多的氧化速度的温敏可注射水凝胶。所得凝胶在无机基底上具有很强的黏附性,支持 L929 成纤维细胞的包封,其存活率很高(24 小时后≥90%),这在以前设计的任何 cat-CH 凝胶系统中都是不可能的。这些特性使 dhba-CH 水凝胶成为需要高黏附强度的微创和靶向细胞治疗的理想候选者。