Banigo Alma Tamunonengiofori, Konings Irene B M, Nauta Laura, Zoetebier Bram, Karperien Marcel
Department of Developmental BioEngineering, Faculty of Science and Technology and TechMed Centre, University of Twente, Drienerlolaan 5, 7522 NB Enschede, The Netherlands.
Polymers (Basel). 2024 Dec 3;16(23):3410. doi: 10.3390/polym16233410.
Injectable hydrogels are promising materials for cartilage regeneration in tissue engineering due to their tunable crosslinking rates, mechanical properties, and biodegradation profiles. This study investigates the chondrogenic potential of hyaluronic acid (HA) hydrogels crosslinked via tyramine (TA) moieties, with and without gelatin modified with TA (Gel-TA). Incorporating Gel-TA improved cell viability, spreading, and cartilage matrix deposition, particularly in medium and high molecular weight (MMW and HMW) HA-TA/Gel-TA hydrogels. Although the hydrogels' molecular weight did not significantly alter stiffness, MMW and HMW HA-TA/Gel-TA formulations exhibited enhanced functional properties such as slower degradation and superior cartilage matrix deposition. These attributes, coupled with Gel-TA's effects, underscore the importance of both molecular weight and biofunctional components in hydrogel design for cartilage regeneration. While low molecular weight (LMW) HA-TA hydrogels offered excellent injectability and supported high cell viability, they degraded rapidly and exhibited reduced cartilage matrix formation. Gel-TA enhanced cell adhesion and spreading by providing integrin-binding sites and promoted collagen type II deposition, crucial for cartilage regeneration. Moreover, the increased stiffness of MMW and HMW HA-TA/Gel-TA hydrogels facilitated extracellular matrix production. These findings show the potential of Gel-TA-modified HA-TA hydrogels for cartilage tissue engineering, with the opportunity for further optimization through the incorporation of bioactive components.
可注射水凝胶因其可调节的交联速率、机械性能和生物降解特性,在组织工程软骨再生方面是很有前景的材料。本研究调查了通过酪胺(TA)部分交联的透明质酸(HA)水凝胶在有和没有用TA修饰的明胶(Gel-TA)情况下的软骨生成潜力。加入Gel-TA可提高细胞活力、细胞铺展以及软骨基质沉积,特别是在中高分子量(MMW和HMW)的HA-TA/Gel-TA水凝胶中。尽管水凝胶的分子量没有显著改变其硬度,但MMW和HMW的HA-TA/Gel-TA配方表现出增强的功能特性,如降解较慢和软骨基质沉积更优。这些特性,再加上Gel-TA的作用,突出了分子量和生物功能成分在用于软骨再生的水凝胶设计中的重要性。虽然低分子量(LMW)的HA-TA水凝胶具有出色的可注射性并支持高细胞活力,但它们降解迅速且软骨基质形成减少。Gel-TA通过提供整合素结合位点增强细胞黏附和铺展,并促进对软骨再生至关重要的II型胶原蛋白沉积。此外,MMW和HMW的HA-TA/Gel-TA水凝胶硬度的增加促进了细胞外基质的产生。这些发现表明Gel-TA修饰的HA-TA水凝胶在软骨组织工程中的潜力,并有通过加入生物活性成分进一步优化的机会。