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Three-dimensional bioprinted BMSCs-laden highly adhesive artificial periosteum containing gelatin-dopamine and graphene oxide nanosheets promoting bone defect repair

明胶 骨膜 3D生物打印 生物医学工程 材料科学 骨愈合 生物相容性 间充质干细胞 组织工程 化学 解剖 细胞生物学 医学 生物化学 生物 冶金
作者
Xin Sun,Yang Jin,Jie Ma,Tianchang Wang,Xue Zhao,Dan Zhu,Wenjie Jin,Kai Zhang,Xuzhou Sun,Yuling Shen,Neng Xie,Fei Yang,Xiushuai Shang,Shuai Li,Xiaojun Zhou,Chuanglong He,Deteng Zhang,Jinwu Wang
出处
期刊:Biofabrication [IOP Publishing]
卷期号:15 (2): 025010-025010 被引量:47
标识
DOI:10.1088/1758-5090/acb73e
摘要

The periosteum is a connective tissue membrane adhering to the surface of bone tissue that primarily provides nutrients and regulates osteogenesis during bone development and injury healing. However, building an artificial periosteum with good adhesion properties and satisfactory osteogenesis for bone defect repair remains a challenge, especially using three-dimensional (3D) bioprinting. In this study, dopamine was first grafted onto the molecular chain of gelatin usingN-(3-dimethylaminopropyl)-N'-ethylcarbodiimide hydrochloride andN-hydroxysuccinimide (NHS) to activate the carboxyl group and produce modified gelatin-dopamine (GelDA). Next, a methacrylated gelatin, methacrylated silk fibroin, GelDA, and graphene oxide nanosheet composite bioink loaded with bone marrow mesenchymal stem cells was prepared and used for bioprinting. The physicochemical properties, biocompatibility, and osteogenic roles of the bioink and 3D bioprinted artificial periosteum were then systematically evaluated. The results showed that the developed bioink showed good thermosensitivity and printability and could be used to build 3D bioprinted artificial periosteum with satisfactory cell viability and high adhesion. Finally, the 3D bioprinted artificial periosteum could effectively enhance osteogenesis bothin vitroandin vivo. Thus, the developed 3D bioprinted artificial periosteum can prompt new bone formation and provides a promising strategy for bone defect repair.
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