Effect of mussel adhesive protein coating on osteogenesis in vitro and osteointegration in vivo to alkali-treated titanium with nanonetwork structures

被引:22
作者
Yin, Derong [1 ]
Komasa, Satoshi [1 ]
Yoshimine, Shigeki [1 ]
Sekino, Tohru [2 ]
Okazaki, Joji [1 ]
机构
[1] Osaka Dent Univ, Dept Removable Prosthodont & Occlus, 8-1 Kuzuha Hanazono Cho, Hirakata, Osaka 5731121, Japan
[2] Osaka Univ, Inst Sci & Ind Res, Adv Hard Mat, Suita, Osaka, Japan
来源
INTERNATIONAL JOURNAL OF NANOMEDICINE | 2019年 / 14卷
基金
日本学术振兴会;
关键词
biocomposite; bone marrow mesenchymal stem cell; extracellular matrix; nanopore; polydopamine; MESENCHYMAL STEM-CELL; DENTAL IMPLANT; SURFACE-CHEMISTRY; MYTILUS-EDULIS; BONE; DIFFERENTIATION; EXPECTATIONS; COMPLEXES; NANOTOPOGRAPHY; HYDROXYAPATITE;
D O I
10.2147/IJN.S206313
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Purpose: On the basis of reasonable superposition of various surface treatment methods, alkali-treated titanium with nanonetwork structures (TNS) was coated with mussel adhesive protein (MAP) and named TNS-MAP. The aims were to optimize the biological properties of TNS, endue it with new properties, and enhance its utility in clinical dental applications. Methods: TNS disks were coated with MAP and the product surface was characterized. Its osteogenic properties were determined by evaluating its effects on cell adhesion, cell proliferation, the expression of osteogenesis-related genes, and in vivo experiments. Results: The treated materials showed excellent hydrophilicity, good surface roughness, and advantages of both TNS and MAP. TNS-MAP significantly promoted initial cell attachment especially after 15 mins and 30 mins At every time point, cell adhesion and proliferation, the detection rate of osteogenesis-related markers in the extracellular matrix, and the expression of osteogenesis-related genes were markedly superior on TNS-MAP than the control. The in vivo experiments revealed that TNS-MAP promoted new bone growth around the implants and the bone-implant interface. Conclusion: We verified through in vitro and in vivo experiments that we successfully created an effective TNS-MAP composite implant with excellent biocompatibility and advantages of both its TNS and MAP parent materials. Therefore, the new biocomposite implant material TNS-MAP may potentially serve in practical dentistry and orthopedics.
引用
收藏
页码:3831 / 3843
页数:13
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