Department of Biomedical Engineering, Southern University of Science and Technology, Shenzhen, Guangdong, P. R. China.
Harbin Institute of Technology, Harbin, Heilongjiang, P. R. China.
Adv Healthc Mater. 2022 Jul;11(13):e2200398. doi: 10.1002/adhm.202200398. Epub 2022 May 6.
Besides inducing osteogenic differentiation, the surface modification of poly(ether ether ketone) (PEEK) is highly expected to improve its angiogenic activity and reduce the inflammatory response in the surrounding tissue. Herein, strontium chondroitin sulfate is first attempted to be introduced into the surface of sulfonated PEEK (SPEEK-CS@Sr) based on the Schiff base reaction between PEEK and ethylenediamine (EDA) and the amidation reaction between EDA and chondroitin sulfate (CS). The surface characteristics of SPEEK-CS@Sr implant are systematically investigated, and its biological properties in vitro and in vivo are also evaluated. The results show that the surface of SPEEK-CS@Sr implant exhibits a 3D microporous structure and good hydrophilicity, and can steadily release Sr ions. Importantly, the SPEEK-CS@Sr not only displays excellent biocompatibility, but also can remarkably promote cell adhesion and spread, improve osteogenic activity and angiogenic activity, and reduce the inflammatory response compared to the original PEEK. Therefore, this study presents the surface modification of PEEK material by simple chemical grafting of strontium chondroitin sulfate to improve its angiogenesis, anti-inflammation, and osteogenic properties, and the as-fabricated SPEEK-CS@Sr has the potential to serve as a promising orthopedic implant in bone tissue engineering.
除了诱导成骨分化外,聚醚醚酮(PEEK)的表面改性还高度期望提高其血管生成活性并减少周围组织的炎症反应。在此,首次尝试基于 PEEK 与乙二胺(EDA)之间的席夫碱反应和 EDA 与硫酸软骨素(CS)之间的酰胺化反应,将硫酸软骨素锶引入磺化 PEEK(SPEEK-CS@Sr)的表面。系统研究了 SPEEK-CS@Sr 植入物的表面特性,并评估了其体外和体内的生物学特性。结果表明,SPEEK-CS@Sr 植入物的表面具有 3D 微孔结构和良好的亲水性,并能稳定释放 Sr 离子。重要的是,与原始 PEEK 相比,SPEEK-CS@Sr 不仅表现出优异的生物相容性,而且还能显著促进细胞黏附和铺展,提高成骨活性和血管生成活性,并减少炎症反应。因此,本研究通过简单的化学接枝硫酸软骨素锶对 PEEK 材料进行表面改性,以提高其血管生成、抗炎和成骨性能,所制备的 SPEEK-CS@Sr 有望成为骨组织工程中一种有前途的骨科植入物。