1. Lactoferrin Coating Improves the Antibacterial and Osteogenic Properties of Alkali-Treated Titanium with Nanonetwork Structures
- Author
-
Tetsuji Kusumoto, Joji Okazaki, Yonglong Hong, Hiroshi Nishizaki, Derong Yin, Luyuan Chen, Sifan Yan, Yuanyuan Yang, Wen Sui, Satoshi Komasa, Honghao Zhang, and Takayoshi Kawazoe
- Subjects
Materials science ,Article Subject ,medicine.medical_treatment ,Composite number ,chemistry.chemical_element ,02 engineering and technology ,engineering.material ,03 medical and health sciences ,Coating ,In vivo ,medicine ,T1-995 ,General Materials Science ,Dental implant ,Technology (General) ,030304 developmental biology ,0303 health sciences ,Biofilm ,021001 nanoscience & nanotechnology ,Antimicrobial ,chemistry ,Chemical engineering ,engineering ,Implant ,0210 nano-technology ,Titanium - Abstract
Titanium and its alloys are the main dental implant materials used at present. The biological properties of pure titanium can be further improved by surface treatment methods. Alkali treatment of pure titanium at room temperature can form nanonetwork structures (TNS) on the surface, which has better osteoinductive ability than pure titanium. However, TNS does not possess antimicrobial properties, and bacterial infection is one of the main reasons for the failure of dental implant therapy. Therefore, it was the focus of our research to endow TNS with certain antimicrobial properties on the premise of maintaining its osteoinductive ability. Because of its excellent broad-spectrum antimicrobial properties and because it promotes osteoblast-like cell growth, lactoferrin (LF) was considered a promising prospect as a surface biological treatment material. In this study, bovine LF of physiological concentration was successfully coated on the surface of TNS to form the TNS-LF composite material. Results from in vitro and in vivo experiments showed that TNS-LF had better osteoinductive ability than TNS. Bacterial attachment and biofilm formation were also significantly decreased on the surface of TNS-LF. Therefore, this study has provided an experimental basis for the development of osteoinduction-antimicrobial composite implant materials for dental applications.
- Published
- 2020
- Full Text
- View/download PDF