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首页> 外文期刊>Biomaterials >Interactions between human whole blood and modified TiO2-surfaces: influence of surface topography and oxide thickness on leukocyte adhesion and activation.
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Interactions between human whole blood and modified TiO2-surfaces: influence of surface topography and oxide thickness on leukocyte adhesion and activation.

机译:人全血与修饰的TiO2表面之间的相互作用:表面形貌和氧化物厚度对白细胞粘附和活化的影响。

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摘要

An in vitro model (Nygren et al., J Lab Clin Med 129 (1997) 35-46) was used to investigate interactions between leukocytes and four modified TiO2-surfaces. Surface topography was measured using scanning electron microscopy and optical profilometry while Auger electron spectroscopy was used to determine surface composition and oxide thickness. The surfaces were either smooth or rough with either thin or thick oxides. All surfaces consisted of TiO2 covered by a carbonaceous layer. The surfaces were incubated with capillary blood for time periods of between 8 min and 32 h. Immunofluorescence techniques together with computer aided image analysis and chemiluminescence technique were used to detect cell adhesion, expression of adhesion receptors and the zymosan-stimulated respiratory burst response. Leukocyte adhesion to the surfaces increased during the first hours of blood-material contact and then decreased. Polymorphonuclear granulocytes were the dominating leukocytes on all surfaces followed by monocytes. Cells adhering to rough surfaces had higher normalized expression of adhesive receptors than cells on smooth surfaces. Maximum respiratory burst response occurred earlier on the smooth than on the rough surfaces. In conclusion, topography had a greater impact than oxide thickness on most cellular reactions investigated, but the latter often had a dampening effect on the responses.
机译:使用体外模型(Nygren等人,J Lab Clin Med 129(1997)35-46)研究白细胞与四个修饰的TiO 2表面之间的相互作用。使用扫描电子显微镜和光学轮廓仪测量表面形貌,同时使用俄歇电子能谱法确定表面组成和氧化物厚度。表面光滑或粗糙,有薄或厚的氧化物。所有表面由被碳层覆盖的TiO2组成。将表面与毛细血管血孵育8分钟至32小时。免疫荧光技术与计算机辅助图像分析和化学发光技术一起用于检测细胞粘附,粘附受体的表达以及由酵母聚糖刺激的呼吸爆发反应。在血液与血液接触的最初几个小时,白细胞对表面的粘附增加,然后下降。多形核粒细胞是在所有表面上占主导地位的白细胞,其次是单核细胞。附着在粗糙表面上的细胞比光滑表面上的细胞具有更高的粘附受体标准化表达。最大的呼吸爆发反应发生在光滑表面比粗糙表面更早。总之,在大多数研究的细胞反应中,形貌比氧化物厚度具有更大的影响,但后者通常会对响应产生阻尼作用。

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