Silk Fibroin/Collagen/Hydroxyapatite Scaffolds Obtained by 3D Printing Technology and Loaded with Recombinant Human Erythropoietin in the Reconstruction of Alveolar Bone Defects

丝素 材料科学 生物医学工程 脚手架 生物材料 牙槽 体内 组织工程 丝绸 纳米技术 牙科 复合材料 医学 生物 生物技术
作者
Han Liu,Chao Wang,Xiaoqian Sun,Chaojun Zhan,Zixiao Li,Lin Qiu,Rui Luo,Hao Liu,Xiaodi Sun,Ruixin Li,Jun Zhang
出处
期刊:ACS Biomaterials Science & Engineering [American Chemical Society]
卷期号:8 (12): 5245-5256 被引量:43
标识
DOI:10.1021/acsbiomaterials.2c00690
摘要

The fast osteogenesis of the large alveolar fossa and the maintenance of the height of the alveolar ridge after tooth extraction have always been a clinical challenge. Therefore, this work describes the creation of innovative silk fibroin/collagen/hydroxyapatite (SCH) biological scaffolds by 3D printing technology, which are loaded with recombinant human erythropoietin (rh-EPO) for the reconstruction of bone defects. Low-temperature 3D printing can maintain the biological activity of silk fibroin and collagen. The SCH scaffolds showed the ideal water absorption and porosity, being a sustained-release carrier of rh-EPO. The optimized scaffolds had ideal mechanical properties in vitro, and MC3T3-E1 cells could easily adhere and proliferate on it. In vivo experiments in rabbits demonstrated that the composite scaffolds gradually degraded and promoted the accumulation and proliferation of osteoblasts and the formation of collagen fibers, significantly promoting the reconstruction of mandibular defects. In this study, a novel composite biological scaffold was prepared using 3D printing technology, and the scaffold was innovatively combined with the multifunctional growth factor rh-EPO. This provides a new optimized composite material for the reconstruction of irregular mandible defects, and this biomaterial is promising for clinical reconstruction of alveolar bone defects.
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