首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Anodic oxidation and hydrothermal treatment of titanium results in a surface that causes increased attachment and altered cytoskeletal morphology of rat bone marrow stromal cells in vitro
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Anodic oxidation and hydrothermal treatment of titanium results in a surface that causes increased attachment and altered cytoskeletal morphology of rat bone marrow stromal cells in vitro

机译:钛的阳极氧化和水热处理导致其表面在体外引起大鼠骨髓基质细胞的附着增加和细胞骨架形态改变

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Previous studies have suggested the usefulness of a new coating method-namely, the forming of a thin hydroxyapatite (HA) layer on commercially pure titanium (cpTi) by anodization and hydrothermal treatment-for use as a dental root implant material. In vivo and in vitro studies confirmed that an HA layer on cpTi (HA/cpTi) implants showed good compatibility with bone tissue, rat bone marrow stromal (RBM) cells, and immune cells. The aim of the present investigation was to further characterize the in vitro early cellular behavior of RBM cells on HA/cpTi implants. Therefore, in this study we performed surface analysis, analysis of cell initial attachment, and analysis of cell morphology and the cytoskeleton. Drops of distilled water or cell culture medium showed smaller contact angles with HA/cpTi than with cpTi . RBM cells were cultured for 30, 60, and 120 mm on HA/cpTi and cpTi, and the level of cell adhesion was shown to increase with time on both substrates. However, cell adhesion on HA/cpTi was significantly higher than on cpTi at 60 and 120 min. Especially at 120 mm, when compared with cpTi, the cell morphology on the surface of HA/cpTi not only adopted a flattened and spreading form, but also extended filopodium-like processes with irregular edges that were intimately adapted to the surface of the HA microcrystals. The cytoskeleton on HA/ cpTi showed well-formed actin filaments that were parallel to each other and the long axis of RBM cells. The actin filaments of RBM cells on the HA/cpTi surface were localized to the periphery (corresponding to the edge of the filopodium-like processes) well after 120 mm. This suggests that actin filaments of RBM cells need to be anchored at the HA/cpTi surface and the numerous HA microcrystals precipitated on the HA/cpTi surface. These findings were similar to the scanning electron microscopic morphology. The peripheral anchorage provide sufficient strength of attachment to allow recognization of actin filaments upon HA/cpTi. The surface of HA/cpTi was more hydrophilic and exhibited markedly improved wettability compared to untreated cpTi, and higher levels of early cell attachment were observed on surfaces after anodization and hydrothermal treatment than on surfaces with untreated cpTi. The results of in vitro experiments suggest that this new method for forming a thin HA layer on the surface of cpTi could be useful to ensure excellent cellular behavior on implant surfaces. The characterization of cell morphology on the thin HA layer formed by anodization and hydrothermal treatment on cpTi implant material suggests that physicochemical or biological conditioning of the implant surface involves implant surface topography.
机译:先前的研究表明,一种新的涂层方法的实用性,即通过阳极氧化和水热处理在商业纯钛(cpTi)上形成一层薄薄的羟基磷灰石(HA)层,用作牙根植入材料。体内和体外研究证实,cpTi(HA / cpTi)植入物上的HA层与骨组织,大鼠骨髓基质(RBM)细胞和免疫细胞具有良好的相容性。本研究的目的是进一步表征HA / cpTi植入物中RBM细胞的体外早期细胞行为。因此,在这项研究中,我们进行了表面分析,细胞初始附着分析以及细胞形态和细胞骨架分析。滴蒸馏水或细胞培养基显示与HA / cpTi的接触角小于与cpTi的接触角。将RBM细胞在HA / cpTi和cpTi上培养30、60和120 mm,并且在两种底物上细胞粘附水平均随时间增加。然而,在60和120分钟时,HA / cpTi上的细胞粘附力明显高于cpTi上。尤其是在120 mm时,与cpTi相比,HA / cpTi表面的细胞形态不仅呈展平和散布的形式,而且还延伸了类似不规则边缘的,呈Fipopodium状的过程,紧密地适应了HA微晶的表面。 。 HA / cpTi上的细胞骨架显示结构良好的肌动蛋白丝,它们彼此平行且与RBM细胞的长轴平行。 HA / cpTi表面上的RBM细胞的肌动蛋白细丝在120毫米后很好地定位在外围(对应于类假单胞菌过程的边缘)。这表明RBM细胞的肌动蛋白丝需要锚定在HA / cpTi表面,并且大量的HA微晶沉淀在HA / cpTi表面。这些发现与扫描电子显微镜形态相似。外周锚固提供足够的附着强度,以使肌动蛋白丝在HA / cpTi上得以识别。与未处理的cpTi相比,HA / cpTi的表面更具亲水性,并且润湿性显着提高,与未处理的cpTi相比,阳极氧化和水热处理后的表面早期细胞附着水平更高。体外实验结果表明,这种在cpTi表面上形成薄HA层的新方法可能对确保植入物表面上优异的细胞行为有用。通过对cpTi植入材料进行阳极氧化和水热处理形成的薄HA层上的细胞形态特征表明,植入物表面的物理化学或生物调节涉及植入物的表面形貌。

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