Biomaterial research laboratory, Department of Material Science and Engineering, College of Chemistry and Materials, Jinan University, Guangzhou, 510632, P. R. China.
Engineering Research center of Artificial Organs and Materials, Ministry of Education, Guangzhou, 510632, P. R. China.
Adv Healthc Mater. 2023 Aug;12(21):e2300122. doi: 10.1002/adhm.202300122. Epub 2023 May 11.
Scaffold-based tissue engineering is a promising strategy to address the rapidly growing demand for bone implants, but developing scaffolds with bone extracellular matrix-like structures, suitable mechanical properties, and multiple biological activities remains a huge challenge. Here, it is aimed to develop a wood-derived composite scaffold with an anisotropic porous structure, high elasticity, and good antibacterial, osteogenic, and angiogenic activities. First, natural wood is treated with an alkaline solution to obtain a wood-derived scaffold with an oriented cellulose skeleton and high elasticity, which can not only simulate collagen fiber skeleton in bone tissue but also greatly improve the convenience of clinical implantation. Subsequently, chitosan quaternary ammonium salt (CQS) and dimethyloxalylglycine (DMOG) are further modified on the wood-derived elastic scaffold through a polydopamine layer. Among them, CQS endows the scaffold with good antibacterial activity, while DMOG significantly improves the scaffold's osteogenic and angiogenic activities. Interestingly, the mechanical characteristics of the scaffolds and the modified DMOG can synergistically enhance the expression of yes-associated protein/transcriptional co-activator with PDZ binding motif signaling pathway, thereby effectively promoting osteogenic differentiation. Therefore, this wood-derived composite scaffold is expected to have potential application in the treatment of bone defects.
基于支架的组织工程学是满足骨植入物快速增长需求的一种很有前途的策略,但开发具有骨细胞外基质样结构、合适的机械性能和多种生物活性的支架仍然是一个巨大的挑战。本研究旨在开发一种具有各向异性多孔结构、高弹性和良好抗菌、成骨和血管生成活性的木材衍生复合材料支架。首先,用碱性溶液处理天然木材,得到具有定向纤维素骨架和高弹性的木材衍生支架,不仅可以模拟骨组织中的胶原纤维骨架,还可以极大地提高临床植入的便利性。随后,通过聚多巴胺层进一步在木材衍生的弹性支架上修饰壳聚糖季铵盐(CQS)和二甲草酰甘氨酸(DMOG)。其中,CQS 赋予支架良好的抗菌活性,而 DMOG 则显著提高了支架的成骨和血管生成活性。有趣的是,支架的机械特性和修饰的 DMOG 可以协同增强 PDZ 结合基序信号通路中 yes 相关蛋白/转录共激活因子的表达,从而有效促进成骨分化。因此,这种木材衍生的复合材料支架有望在骨缺损的治疗中具有潜在的应用。