Nano-Modified Titanium Implant Materials: A Way Toward Improved Antibacterial Properties

Наномодифицированные титановые имплантационные материалы: путь к улучшению антибактериальных свойств
Yujin Tang, Liqiang Wang, Chaozong Liu, Chong Wang, Shokouh Attarilar, Kegong Xie, Chengliang Yang, Jia Liu, Jianqiao Liu, Maryam Tamaddon, Jin‐Guang Yao
2020-11-23

antibacterial propertiesimplant-associated infectionosteogenic activitysurface nano-modificationtitanium implant materials
Titanium and its alloys have superb biocompatibility, low elastic modulus, and favorable corrosion resistance. These exceptional properties lead to its wide use as a medical implant material. Titanium itself does not have antibacterial properties, so bacteria can gather and adhere to its surface resulting in infection issues. The infection is among the main reasons for implant failure in orthopedic surgeries. Nano-modification, as one of the good options, has the potential to induce different degrees of antibacterial effect on the surface of implant materials. At the same time, the nano-modification procedure and the produced nanostructures should not adversely affect the osteogenic activity, and it should simultaneously lead to favorable antibacterial properties on the surface of the implant. This article scrutinizes and deals with the surface nano-modification of titanium implant materials from three aspects: nanostructures formation procedures, nanomaterials loading, and nano-morphology. In this regard, the research progress on the antibacterial properties of various surface nano-modification of titanium implant materials and the related procedures are introduced, and the new trends will be discussed in order to improve the related materials and methods.
1
Bacterial adhesion and accumulation on titanium surfaces contribute substantially to infection-related orthopedic implant failure.
2
Future development should optimize nano-modification methods and structures to achieve favorable antibacterial performance without compromising bone-forming activity.
3
Surface nano-modification can induce antibacterial effects on titanium implant materials while potentially preserving their osteogenic activity.
4
The review examines antibacterial titanium nano-modification through nanostructure formation procedures, nanomaterial loading, and surface nano-morphology.
5
Titanium implants offer excellent biocompatibility, low elastic modulus, and corrosion resistance but lack intrinsic antibacterial activity.

Surface-nano-modified titanium implant materials

antibacterial properties and their relationship with osteogenic activity as influenced by nanostructure formation procedures, nanomaterial loading, and nano-morphology

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2020-11-23
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Yujin Tang
Liqiang Wang
Chaozong Liu
Chong Wang
Shokouh Attarilar
Kegong Xie
Chengliang Yang
Jia Liu
Jianqiao Liu
Maryam Tamaddon
Jin‐Guang Yao
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