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不同钛表面处理对骨细胞黏附、增殖及分化的影响:一项体外研究

Effects of Different Titanium Surface Treatments on Adhesion, Proliferation and Differentiation of Bone Cells: An In Vitro Study.

作者信息

Stoilov Milan, Stoilov Lea, Enkling Norbert, Stark Helmut, Winter Jochen, Marder Michael, Kraus Dominik

机构信息

Department of Prosthodontics, Preclinical Education and Dental Materials Science, Medical Faculty, University of Bonn, 53111 Bonn, Germany.

Department of Reconstructive Dentistry and Gerodontology, School of Dental Medicine, University of Bern, 3012 Bern, Switzerland.

出版信息

J Funct Biomater. 2022 Sep 5;13(3):143. doi: 10.3390/jfb13030143.

Abstract

The objective of this study was to evaluate the impacts of different sandblasting procedures in acid etching of Ti6Al4V surfaces on osteoblast cell behavior, regarding various physicochemical and topographical parameters. Furthermore, differences in osteoblast cell behavior between cpTi and Ti6Al4V SA surfaces were evaluated. Sandblasting and subsequent acid etching of cpTi and Ti6Al4V discs was performed with AlO grains of different sizes and with varying blasting pressures. The micro- and nano-roughness of the experimental SA surfaces were analyzed via confocal, atomic force and scanning electron microscopy. Surface free energy and friction coefficients were determined. hFOB 1.19 cells were seeded to evaluate adhesion, proliferation and osteoblastic differentiation for up to 12 d via crystal violet assays, MTT assays, ALP activity assays and Alizarin Red staining assays. Differences in blasting procedures had significant impacts on surface macro- and micro-topography. The crystal violet assay revealed a significant inverse relationship between blasting grain size and hFOB cell growth after 7 days. This trend was also visible in the Alizarin Red assays staining after 12 d: there was significantly higher biomineralization visible in the group that was sandblasted with smaller grains (F180) when compared to standard-grain-size groups (F70). SA samples treated with reduced blasting pressure exhibited lower hFOB adhesion and growth capabilities at initial (2 h) and later time points for up to 7 days, when compared to the standard SA surface, even though micro-roughness and other relevant surface parameters were similar. Overall, etched-only surfaces consistently exhibited equivalent or higher adhesion, proliferation and differentiation capabilities when compared to all other sandblasted and etched surfaces. No differences were found between cpTi and Ti6Al4V SA surfaces. Subtle modifications in the blasting protocol for Ti6Al4V SA surfaces significantly affect the proliferative and differentiation behavior of human osteoblasts. Surface roughness parameters are not sufficient to predict osteoblast behavior on etched Ti6Al4V surfaces.

摘要

本研究的目的是评估不同喷砂工艺对Ti6Al4V表面酸蚀的影响,以及这些工艺对成骨细胞行为的影响,同时考虑各种物理化学和形貌参数。此外,还评估了纯钛(cpTi)和Ti6Al4V喷砂(SA)表面之间成骨细胞行为的差异。使用不同尺寸的AlO颗粒和不同的喷砂压力对cpTi和Ti6Al4V圆盘进行喷砂和随后的酸蚀处理。通过共聚焦显微镜、原子力显微镜和扫描电子显微镜分析实验SA表面的微观和纳米粗糙度。测定表面自由能和摩擦系数。接种hFOB 1.19细胞,通过结晶紫测定法、MTT测定法、碱性磷酸酶(ALP)活性测定法和茜素红染色测定法评估长达12天的细胞黏附、增殖和成骨分化情况。喷砂工艺的差异对表面宏观和微观形貌有显著影响。结晶紫测定显示,7天后喷砂颗粒尺寸与hFOB细胞生长之间存在显著的负相关关系。在12天后的茜素红染色测定中也可见到这种趋势:与标准粒度组(F70)相比,用较小颗粒(F180)喷砂的组中可见到明显更高的生物矿化。与标准SA表面相比,在初始(2小时)和长达7天的后期时间点,采用降低喷砂压力处理的SA样品表现出较低的hFOB黏附力和生长能力,尽管微观粗糙度和其他相关表面参数相似。总体而言,与所有其他喷砂和酸蚀表面相比,仅酸蚀表面始终表现出相当或更高的黏附、增殖和分化能力。在cpTi和Ti6Al4V SA表面之间未发现差异。Ti6Al4V SA表面喷砂方案的细微改变会显著影响人成骨细胞的增殖和分化行为。表面粗糙度参数不足以预测酸蚀Ti6Al4V表面上的成骨细胞行为。

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