Department of Oral Surgery and Implant Dentistry, Faculdade de Medicina Dentária, Universidade de Lisboa, 1600-277, Lisboa, Portugal.
Center for Micro-Electro Mechanical Systems (CMEMS-UMinho), Universidade do Minho, Campus de Azurém, 4800-058, Guimarães, Portugal.
J Mech Behav Biomed Mater. 2022 Feb;126:105060. doi: 10.1016/j.jmbbm.2021.105060. Epub 2021 Dec 24.
The use of zirconia as an alternative biomaterial for titanium implants has been increasing due to its biocompatibility, favorable aesthetic features, less potential for early plaque accumulation and mechanical properties. Despite the developed efforts, strategies to promote an effective osseointegration are still enough. In this sense and combining the silica properties to improve bone formation with the micropatterning guidance characteristics, silica coatings with micropatterns were designed and evaluated regarding their hydrophilicity and integrity through resistance to scratch and friction tests against femoral bone plates (simulating implant insertion). A combined sol-gel and soft-lithography techniques were used to produce silica coatings onto zirconia substrates and different techniques were used to characterize the micropatterned silica coatings. The results revealed that the production of lines and pillars micropatterns increases the surface roughness (Ra values) and improves the surface strength adhesion. Through the scratch test, it was possible to verify that the integrity and topography characteristics of all micropatterned coatings were not significantly affected after the friction test meaning that their function is not compromised after implant insertion. Additionally, the lines micropattern was the one that presented the highest hydrophilicity for distilled water, thus being a promising surface to promote improved osseointegration. The combined use of different surface micropatterns could potentially be used to guide bone apposition and avoiding peri-implantitis.
由于氧化锆的生物相容性、良好的美观特性、早期菌斑积累的潜力较小以及机械性能,将其作为钛植入物的替代生物材料的使用越来越多。尽管已经做了很多努力,但促进有效骨整合的策略仍然不足。从这个意义上说,结合硅的特性来改善骨形成,并利用微图案引导特性,设计并评估了具有微图案的硅涂层,以通过耐刮擦和与股骨板(模拟植入物插入)的摩擦试验来评估其亲水性和完整性。采用溶胶-凝胶法和软光刻技术在氧化锆基底上制备硅涂层,并采用不同的技术对微图案化硅涂层进行了表征。结果表明,线和柱微图案的制作增加了表面粗糙度(Ra 值)并提高了表面强度附着力。通过划痕试验,可以验证所有微图案化涂层的完整性和形貌特征在摩擦试验后没有受到显著影响,这意味着它们的功能在植入物插入后不会受到影响。此外,线微图案对蒸馏水的亲水性最高,因此是一种有前途的表面,可以促进改善的骨整合。不同表面微图案的组合可能可用于引导骨附着和避免种植体周围炎。