Orthopaedic Research Center, Sixth Affiliated Hospital of Xinjiang Medical University, Urumqi 830002, PR China.
Key Laboratory of Polymer Ecomaterials, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, PR China.
Int J Biol Macromol. 2024 Jul;273(Pt 2):133122. doi: 10.1016/j.ijbiomac.2024.133122. Epub 2024 Jun 13.
In articular cartilage defect, particularly in arthroscopy, regenerative hydrogels are urgently needed. It should be able to firmly adhere to the cartilage tissue and maintain sufficient mechanical strength to withstand approximately 10 kPa of arthroscopic hydraulic flushing. In this study, we report a carbene-mediated ultra adhesive hybrid hydrogel paints for arthroscopic cartilage repair, which combined the photo initiation of double crosslinking system with the addition of diatomite, as a further reinforcing agent and biological inorganic substances. The double network consisting of ultraviolet initiated polymerization of hyaluronic acid methacrylate (HAMA) and carbene insertion chemistry of diazirine-grafted gelatin (GelDA) formed an ultra-strong adhesive hydrogel paint (H2G5DE). Diatomite helped the H2G5DE hydrogel paint firmly adhere to the cartilage defect, withstanding nearly 100 kPa of hydraulic pressure, almost 10 times that in clinical arthroscopy. Furthermore, the H2G5DE hydrogel supported cell growth, proliferation, and migration, thus successfully repairing cartilage defects. Overall, this study demonstrates a proof-of-concept of ultra-adhesive polysaccharide hydrogel paints, which can firmly adhere to the articular cartilage defects, can resist continuous hydraulic pressure, can promote effective cartilage regeneration, and is very suitable for minimally invasive arthroscopy.
在关节软骨缺损,特别是在关节镜检查中,迫切需要再生水凝胶。它应该能够牢固地粘附在软骨组织上,并保持足够的机械强度,以承受大约 10kPa 的关节镜液压冲洗。在本研究中,我们报告了一种碳烯介导的超粘性杂化水凝胶涂料,用于关节镜软骨修复,该涂料结合了双交联体系的光引发和硅藻土的添加,作为进一步的增强剂和生物无机物质。由紫外线引发的透明质酸甲基丙烯酰胺(HAMA)聚合和氮丙啶接枝明胶(GelDA)的碳烯插入化学形成的双网络形成了一种超强力的粘性水凝胶涂料(H2G5DE)。硅藻土有助于 H2G5DE 水凝胶涂料牢固地粘附在软骨缺陷上,能够承受近 100kPa 的液压,几乎是临床关节镜检查的 10 倍。此外,H2G5DE 水凝胶支持细胞生长、增殖和迁移,从而成功修复了软骨缺陷。总体而言,本研究证明了超粘性多糖水凝胶涂料的概念验证,它可以牢固地粘附在关节软骨缺陷上,能够抵抗持续的液压,能够促进有效的软骨再生,非常适合微创关节镜检查。