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用MTA改性氧化锆种植体表面新方法的细胞生物学和抗菌评价

Cell Biological and Antibacterial Evaluation of a New Approach to Zirconia Implant Surfaces Modified with MTA.

作者信息

Fernandes Beatriz Ferreira, Silva Neusa, Da Cruz Mariana Brito, Garret Gonçalo, Carvalho Óscar, Silva Filipe, Mata António, Francisco Helena, Marques Joana Faria

机构信息

Oral Biology and Biochemistry Research Group-Unidade de Investigação em Ciências Orais e Biomédicas (UICOB), Faculdade de Medicina Dentária, Universidade de Lisboa, 1600-277 Lisboa, Portugal.

Department of Mechanical Engineering, Center for Microelectromechanical Systems (CMEMS), University of Minho, 4800-058 Guimarães, Portugal.

出版信息

Biomimetics (Basel). 2024 Mar 1;9(3):155. doi: 10.3390/biomimetics9030155.

Abstract

Peri-implantitis continues to be one of the major reasons for implant failure. We propose a new approach to the incorporation of MTA into zirconia implant surfaces with Nd:YAG laser and investigate the biological and the microbiological responses of peri-implant cells. Discs of zirconia stabilized with yttria and titanium were produced according to the following four study groups: Nd:YAG laser-textured zirconia coated with MTA (Zr MTA), Nd:YAG laser-textured zirconia (Zr textured), polished zirconia discs, and polished titanium discs (Zr and Ti). Surface roughness was evaluated by contact profilometry. Human osteoblasts (hFOB), gingival fibroblasts (HGF hTERT) and were cultured on discs. Cell adhesion and morphology, cell differentiation markers and bacterial growth were evaluated. Zr textured roughness was significantly higher than all other groups. SEM images reveal cellular adhesion at 1 day in all samples in both cell lines. Osteoblasts viability was lower in the Zr MTA group, unlike fibroblasts viability, which was shown to be higher in the Zr MTA group compared with the Zr textured group at 3 and 7 days. Osteocalcin and IL-8 secretion by osteoblasts were higher in Zr MTA. The Zr textured group showed higher IL-8 values released by fibroblasts. No differences in CFUs were observed between groups. The present study suggests that zirconia implant surfaces coated with MTA induced fibroblast proliferation and osteoblast differentiation; however, they did not present antibacterial properties.

摘要

种植体周围炎仍然是种植体失败的主要原因之一。我们提出了一种将MTA通过Nd:YAG激光结合到氧化锆种植体表面的新方法,并研究种植体周围细胞的生物学和微生物学反应。根据以下四个研究组制作了用氧化钇和钛稳定的氧化锆盘:用MTA涂层的Nd:YAG激光纹理化氧化锆(Zr MTA)、Nd:YAG激光纹理化氧化锆(Zr纹理化)、抛光氧化锆盘和抛光钛盘(Zr和Ti)。通过接触轮廓仪评估表面粗糙度。将人成骨细胞(hFOB)、牙龈成纤维细胞(HGF hTERT)培养在盘上。评估细胞黏附与形态、细胞分化标志物和细菌生长情况。Zr纹理化的粗糙度显著高于所有其他组。扫描电子显微镜图像显示在两个细胞系的所有样品中第1天均有细胞黏附。Zr MTA组中成骨细胞活力较低,与成纤维细胞活力不同,成纤维细胞活力在第3天和第7天显示在Zr MTA组中比Zr纹理化组更高。Zr MTA组中成骨细胞分泌的骨钙素和IL-8更高。Zr纹理化组显示成纤维细胞释放的IL-8值更高。各组之间未观察到菌落形成单位的差异。本研究表明,涂有MTA的氧化锆种植体表面诱导了成纤维细胞增殖和成骨细胞分化;然而,它们没有呈现抗菌特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c96/10967899/aca22657b4a7/biomimetics-09-00155-g001.jpg

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