Gómez-Florit M, Xing R, Ramis J M, Taxt-Lamolle S, Haugen H J, Lyngstadaas S P, Monjo M
Department of Fundamental Biology and Health Sciences. Research Institute on Health Sciences (IUNICS), University of Balearic Islands, Palma de Mallorca, Spain.
Department of Biomaterials, Institute for Clinical Dentistry, University of Oslo, Oslo, Norway.
J Dent. 2014 Jan;42(1):30-8. doi: 10.1016/j.jdent.2013.11.003. Epub 2013 Nov 16.
The aim of this study was to evaluate the influence of different titanium zirconium (TiZr) alloy surfaces on primary human gingival fibroblasts (HGF) for improved soft tissue integration of dental implants.
TiZr polished, machined and machined+HCl/H2SO4 acid-etched surfaces were modified by cathodic polarization and/or HNO3/HF acid etching. Contact angle of surfaces was measured. The influence of modified TiZr surfaces on HGF was evaluated through the analysis of cell number, morphology, recovery after a wound (wound healing assay) and the expression of several genes, including matrix metalloproteinase-1 (MMP1) and metallopeptidase inhibitor-1 (TIMP1).
Modification of TiZr surfaces decreased its hydrophilicity. Hydride implementation on TiZr surfaces via cathodic polarization increased TIMP1 expression and decreased MMP1/TIMP1 mRNA ratio. Cathodic polarization of machined surfaces promoted cell attachment. Cells on machined and machined+cathodic polarization surfaces grew aligned to the microgrooves whereas on all polished surfaces they grew randomly. Acid etching of polished and machined surfaces did not improve HGF function.
Hydride implementation on TiZr machined surfaces may be used as new dental implant material for improved soft tissue integration.
Enhancing dental implant surfaces' bioactivity by hydride implementation may promote soft tissue attachment and sealing around the implant and reduce peri-implantitis related to ECM-destruction compared with conventional machined surfaces.
本研究旨在评估不同钛锆(TiZr)合金表面对原代人牙龈成纤维细胞(HGF)的影响,以改善牙种植体的软组织整合。
对TiZr抛光、机械加工以及机械加工+HCl/H₂SO₄酸蚀表面进行阴极极化和/或HNO₃/HF酸蚀处理。测量表面的接触角。通过分析细胞数量、形态、伤口愈合后的恢复情况(伤口愈合试验)以及包括基质金属蛋白酶-1(MMP1)和金属肽酶抑制剂-1(TIMP1)在内的几种基因的表达,评估改性TiZr表面对HGF的影响。
TiZr表面改性降低了其亲水性。通过阴极极化在TiZr表面引入氢化物可增加TIMP1表达并降低MMP1/TIMP1 mRNA比值。机械加工表面的阴极极化促进了细胞附着。在机械加工和机械加工+阴极极化表面上的细胞沿微槽排列生长,而在所有抛光表面上细胞随机生长。对抛光和机械加工表面进行酸蚀并未改善HGF功能。
在TiZr机械加工表面引入氢化物可作为新型牙种植体材料,以改善软组织整合。
与传统机械加工表面相比,通过引入氢化物增强牙种植体表面的生物活性可促进种植体周围软组织的附着和封闭,并减少与细胞外基质破坏相关的种植体周围炎。