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高效实现生物聚合水凝胶的儿茶酚官能化,以实现有效的多尺度生物黏附。

Efficient catechol functionalization of biopolymeric hydrogels for effective multiscale bioadhesion.

机构信息

Department of Biomedical Engineering, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, China.

China Orthopedic Regenerative Medicine Group (CORMed), Hangzhou, PR China; Baiyinnuo Biotechnology Ltd., Shenzhen, Guangdong, PR China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2019 Oct;103:109835. doi: 10.1016/j.msec.2019.109835. Epub 2019 May 30.

DOI:10.1016/j.msec.2019.109835
PMID:31349495
Abstract

Hydrogels are promising soft materials for the delivery of therapeutic cells and cargo molecules. Inspired by mussel adhesion chemistry, hydrogels based on catechol (Cat)-modified polysaccharides have been developed to enhance hydrogel-tissue interactions. However, due to the inevitable side reactions such as self-polymerization of dopamine involved in the conventional catechol conjugation process, the efficiency of catechol conjugation to polymers is typically low, leading to insufficient stability, low mechanical strength, and poor adhesiveness of these catechol-modified hydrogels. In this study, we report a new approach to synthesize catechol-functionalized hyaluronic acid with improved degree of substitution. Due to the significantly increased conjugated Cat groups, the obtained HA-Cat hydrogels not only can adhere to tissue samples under wet conditions but also can capture cell adhesion proteins to enhance cell attachment and spreading. Meanwhile, owing to the extensive Cat-protein interactions, these hydrogels can also facilitate long-term release of protein-based therapeutic cargoes, such as the osteoinductive BMP-2 protein, thereby effectively promoting osteogenic differentiation of stem cells. These findings show that the HA-Cat hydrogels are ideal carriers of therapeutic cells and drugs for tissue regeneration.

摘要

水凝胶是一种有前途的用于递送治疗细胞和货物分子的软材料。受贻贝黏附化学的启发,已经开发出基于儿茶酚(Cat)修饰多糖的水凝胶,以增强水凝胶-组织相互作用。然而,由于传统儿茶酚缀合过程中涉及多巴胺的不可避免的副反应,如自聚合,儿茶酚与聚合物的缀合效率通常较低,导致这些儿茶酚修饰的水凝胶稳定性不足、机械强度低且粘附性差。在这项研究中,我们报告了一种新的方法来合成具有改善取代度的儿茶酚功能化透明质酸。由于共轭 Cat 基团的数量显著增加,所得到的 HA-Cat 水凝胶不仅可以在潮湿条件下黏附于组织样品,还可以捕获细胞黏附蛋白,从而增强细胞附着和铺展。同时,由于广泛的 Cat-蛋白相互作用,这些水凝胶还可以促进基于蛋白质的治疗性货物(如成骨诱导的 BMP-2 蛋白)的长期释放,从而有效促进干细胞的成骨分化。这些发现表明,HA-Cat 水凝胶是治疗细胞和药物用于组织再生的理想载体。

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