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Nanostructured Titanium Implant Surface Facilitating Osseointegration from Protein Adsorption to Osteogenesis: The Example of TiO2 NTAs

期刊

INTERNATIONAL JOURNAL OF NANOMEDICINE
卷 17, 期 -, 页码 1865-1879

出版社

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJN.S362720

关键词

nanostructure; TiO 2 nanotube arrays; titanium implant; osseointegration; anodization

资金

  1. National Natural Science Foundation of China [82170997]
  2. Sichuan Science and Technology Program [2021YJ0422]
  3. Project of Chengdu Science and Technology Bureau [2021-YF05-02054-SN]
  4. West China School/Hospital of Stomatology Sichuan University [RCDWJS2020-6]

向作者/读者索取更多资源

TiO2 nanotube arrays (TiO2 NTAs) on titanium implant surfaces play an important role in osseointegration by manipulating protein adsorption, inflammatory cell adhesion and response, additional relevant cell adhesion, as well as angiogenesis and osteogenesis.
Titanium implants have been widely applied in dentistry and orthopedics due to their biocompatibility and resistance to mechanical fatigue. TiO2 nanotube arrays (TiO2 NTAs) on titanium implant surfaces have exhibited excellent biocompatibility, bioactivity, and adjustability, which can significantly promote osseointegration and participate in its entire path. In this review, to give a comprehensive understanding of the osseointegration process, four stages have been divided according to pivotal biological processes, including protein adsorption, inflammatory cell adhesion/inflammatory response, additional relevant cell adhesion and angiogenesis/osteogenesis. The impact of TiO2 NTAs on osseointegration is clarified in detail from the four stages. The nanotubular layer can manipulate the quantity, the species and the conformation of adsorbed protein. For inflammatory cells adhesion and inflammatory response, TiO2 NTAs improve macrophage adhesion on the surface and induce M2-polarization. TiO2 NTAs also facilitate the repairment-related cells adhesion and filopodia formation for additional relevant cells adhesion. In the angiogenesis and osteogenesis stage, TiO2 NTAs show the ability to induce osteogenic differentiation and the potential for blood vessel formation. In the end, we propose the multi-dimensional regulation of TiO2 NTAs on titanium implants to achieve highly efficient manipulation of osseointegration, which may provide views on the rational design and development of titanium implants.

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