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首页> 外文期刊>Journal of biomedical materials research, Part A >Titania-polymeric powder coatings with nano-topography support enhanced human mesenchymal cell responses
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Titania-polymeric powder coatings with nano-topography support enhanced human mesenchymal cell responses

机译:具有纳米形貌的二氧化钛聚合物粉末涂料可增强人类间质细胞反应

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Titanium implant osseointegration is dependent on the cellular response to surface modifications and coatings. Tita-nia-enriched nanocomposite polymeric resin coatings were prepared through the application of advanced ultrafine powder coating technology. Their surfaces were readily modified to create nano-rough (<100 nm) surface nano-topographies that supported human embryonic palatal mesenchymal cell responses. Energy dispersive x-ray spectroscopy confirmed continuous and homogenous coatings with a similar composition and even distribution of titanium. Scanning electron microscopy (SEM) showed complex micro-topographies, and atomic force microscopy revealed intricate nanofeatures and surface roughness. Cell counts, mitochondrial enzyme activity reduction of yellow 3-(4,5-dimethythiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) to dark purple, SEM, and inverted fluorescence microscopy showed a marked increase in cell attachment, spreading, proliferation, and metabolic activity on the nanostructured surfaces.Reverse Transcription- Polymerase Chain Reaction (RT-PCR) analysis showed that type I collagen and Runx2 expression were induced, and Alizarin red staining showed that mineral deposits were abundant in the cell cultures grown on nanosurfaces. This enhancement in human mesenchymal cell attachment, growth, and osteogenesis were attributed to the nanosized surface topographies, roughness, and moderate wetting characteristics of the coatings. Their dimensional similarity to naturally occurring matrix proteins and crystals, coupled with their increased surface area for protein adsorption, may have facilitated the response. Therefore, this application of ultrafine powder coating technology affords highly biocompatible surfaces that can be readily modified to accentuate the cellular response.
机译:钛植入物的骨整合取决于细胞对表面修饰和涂层的反应。通过应用先进的超细粉末涂料技术,制备了富含二氧化钛的纳米复合聚合物树脂涂料。它们的表面很容易被修饰以产生纳米粗糙(<100 nm)的表面纳米形貌,从而支持人类胚胎的lat间充质细胞反应。能量色散X射线光谱证实了具有相似组成和均匀钛分布的连续且均匀的涂层。扫描电子显微镜(SEM)显示出复杂的微观形貌,原子力显微镜显示出复杂的纳米特征和表面粗糙度。黄色3-(4,5-dimethythiazol-2-yl)-2,5-diphenyl tetrazolium bromide(MTT)的细胞计数,线粒体酶活性降低至深紫色,SEM和倒置荧光显微镜显示细胞附着明显增加逆转录-聚合酶链反应(RT-PCR)分析表明,诱导了I型胶原和Runx2表达,茜素红染色表明细胞培养物中有大量矿物质沉积生长在纳米表面上。人间充质细胞附着,生长和成骨的这种增强归因于涂层的纳米表面形貌,粗糙度和适度的润湿特性。它们与天然存在的基质蛋白质和晶体的尺寸相似性,再加上增加的蛋白质吸附表面积,可能促进了反应。因此,超细粉末涂料技术的这种应用提供了高度生物相容性的表面,可以容易地对其进行修饰以增强细胞反应。

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