Liu Yijuan, Li Li, He Mengjiao, Xu Yanmei, Wu Zekai, Xu Xiongcheng, Luo Kai, Lv Hongbing
Fujian Key Laboratory of Oral Diseases & Fujian Provincial Engineering Research Center of Oral Biomaterial & Stomatological Key Laboratory of Fujian College and University, School and Hospital of Stomatology, Fujian Medical University, Fuzhou 350002, People's Republic of China.
Institute of Stomatology & Laboratory of Oral Tissue Engineering, School and Hospital of Stomatology, Fujian Medical University, Fuzhou 350002, People's Republic of China.
Regen Biomater. 2024 Aug 23;11:rbae106. doi: 10.1093/rb/rbae106. eCollection 2024.
Regeneration of oral craniofacial bone defects is a complex process, and reconstruction of large bone defects without the use of exogenous cells or bioactive substances remains a major challenge. Hydrogels are highly hydrophilic polymer networks with the potential to promote bone tissue regeneration. In this study, functional peptide Dentonin was loaded onto self-assembled peptide hydrogels (RAD) to constitute functionally self-assembling peptide RAD/Dentonin hydrogel scaffolds with a view that RAD/Dentonin hydrogel could facilitate vascularized bone regeneration in critical-size calvarial defects. The functionalized peptide RAD/Dentonin forms highly ordered β-sheet supramolecular structures via non-covalent interactions like hydrogen bonding, ultimately assembling into nano-fiber network. RAD/Dentonin hydrogels exhibited desirable porosity and swelling properties, and appropriate biodegradability. RAD/Dentonin hydrogel supported the adhesion, proliferation and three-dimensional migration of bone marrow mesenchymal stem cells (BMSCs) and has the potential to induce differentiation of BMSCs towards osteogenesis through activation of the Wnt/β-catenin pathway. Moreover, RAD/Dentonin hydrogel modulated paracrine secretion of BMSCs and increased the migration, tube formation and angiogenic gene expression of human umbilical vein endothelial cells (HUVECs), which boosted the angiogenic capacity of HUVECs. , RAD/Dentonin hydrogel significantly strengthened vascularized bone formation in rat calvarial defect. Taken together, these results indicated that the functionalized self-assembling peptide RAD/Dentonin hydrogel effectively enhance osteogenic differentiation of BMSCs, indirectly induce angiogenic effects in HUVECs, and facilitate vascularized bone regeneration . Thus, it is a promising bioactive material for oral and maxillofacial regeneration.
口腔颅面骨缺损的再生是一个复杂的过程,在不使用外源性细胞或生物活性物质的情况下重建大的骨缺损仍然是一个重大挑战。水凝胶是具有促进骨组织再生潜力的高度亲水聚合物网络。在本研究中,将功能性肽Dentonin负载到自组装肽水凝胶(RAD)上,以构建功能性自组装肽RAD/Dentonin水凝胶支架,期望RAD/Dentonin水凝胶能够促进临界尺寸颅骨缺损的血管化骨再生。功能化肽RAD/Dentonin通过氢键等非共价相互作用形成高度有序的β-折叠超分子结构,最终组装成纳米纤维网络。RAD/Dentonin水凝胶表现出理想的孔隙率和溶胀性能,以及适当的生物降解性。RAD/Dentonin水凝胶支持骨髓间充质干细胞(BMSC)的黏附、增殖和三维迁移,并有可能通过激活Wnt/β-连环蛋白途径诱导BMSC向成骨分化。此外,RAD/Dentonin水凝胶调节BMSC的旁分泌分泌,并增加人脐静脉内皮细胞(HUVEC)的迁移、管形成和血管生成基因表达,从而增强HUVEC的血管生成能力。RAD/Dentonin水凝胶显著增强大鼠颅骨缺损中的血管化骨形成。综上所述,这些结果表明功能化自组装肽RAD/Dentonin水凝胶有效地增强了BMSC的成骨分化,间接诱导了HUVEC的血管生成效应,并促进了血管化骨再生。因此,它是一种用于口腔颌面再生的有前途的生物活性材料。