骨整合
材料科学
润湿
生物医学工程
牙种植体
植入
3d打印
表面改性
生物相容性
钛
接触角
纳米技术
复合材料
化学
外科
医学
冶金
物理化学
作者
Tianyu Shu,Xueliang Wang,Meng Li,Shaoyang Ma,Jiao Cao,Guo Sun,Tao Lai,Shaobao Liu,Ang Li,Zhiguo Qu,Dandan Pei
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-12-20
标识
DOI:10.1021/acsnano.3c09285
摘要
Three-dimensional printing is a revolutionary strategy to fabricate dental implants. Especially, 3D-printed dental implants modified with nanoscaled titanium oxide layer (H-SLM) have impressively shown quick osseointegration, but the accurate mechanism remains elusive. Herein, we unmask a domino effect that the hydrophilic surface of the H-SLM facilitates blood wetting, enhances the blood shear rate, promotes blood clotting, and changes clot features for quick osseointegration. Combining computational fluid dynamic simulation and biological verification, we find a blood shear rate during blood wetting of the hydrophilic H-SLM 1.2-fold higher than that of the raw 3D-printed implant, which activates blood clot formation. Blood clots formed on the hydrophilic H-SLM demonstrate anti-inflammatory and pro-osteogenesis effects, leading to a 1.5-fold higher bone-to-implant contact and a 1.8-fold higher mechanical anchorage at the early stage of osseointegration. This mechanism deepens current knowledge between osseointegration speed and implant surface characteristics, which is instructive in surface nanoscaled modification of multiple 3D-printed intrabony implants.
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