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首页> 外文期刊>Journal of materials science >Evaluation of early stage human bone marrow stromal proliferation, cell migration and osteogenic differentiation on μ-MIM structured stainless steel surfaces
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Evaluation of early stage human bone marrow stromal proliferation, cell migration and osteogenic differentiation on μ-MIM structured stainless steel surfaces

机译:在μ-MIM结构不锈钢表面上评估早期人类骨髓基质增殖,细胞迁移和成骨分化

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摘要

It is well established that surface topography greatly affect cell-surface interactions. In a recent study we showed that microstructured stainless steel surfaces characterized by the presence of defined hexagonally arranged hemisphere-like structures significantly affected cell architecture (shape and focal adhesion size) of primary human bone mesenchymal stromal cells. This study aimed at further investigating the influence these microstructures (microcline protruding hemispheres) on critical aspects of cell behaviour namely; proliferation, migration and osteogenic differentiation. As with previously reported data, we used primary human bone mesenchymal stromal cells to investigate such effects at an early stage in vitro. Cells of different patients were utilised for cell migration studies. Our data showed that an increase in cell proliferation was exhibited as a function of surface topography (hemispheres). Cell migration velocity also varied as a function of surface topography on patient specific basis and seems to relate to the differentiated state of the seeded cell population (as demonstrated by bALP positivity).Osteogenic differentiation, however, did not exhibit significant variations (both up and down-regulation) as a function of both surface topography and time in culture.
机译:公认的是,表面形貌极大地影响细胞-表面相互作用。在最近的一项研究中,我们发现以定义的六角形排列的半球状结构为特征的微结构不锈钢表面会显着影响原代人骨间充质基质细胞的细胞结构(形状和粘着斑大小)。这项研究旨在进一步研究这些微结构(微球突出的半球)对细胞行为关键方面的影响。增殖,迁移和成骨分化。与以前报道的数据一样,我们使用人类原代骨间充质基质细胞在体外早期研究了这种作用。将不同患者的细胞用于细胞迁移研究。我们的数据表明,细胞增殖的增加表现为表面形貌(半球)的函数。细胞迁移速度也根据患者的具体情况而随表面形貌的变化而变化,并且似乎与种子细胞群的分化状态有关(如bALP阳性所证实),但成骨分化并没有表现出明显的变化(向上和向下)。下调)作为表面形貌和培养时间的函数。

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  • 来源
    《Journal of materials science》 |2013年第5期|1285-1292|共8页
  • 作者单位

    Materials-Biology Interactions Lab, EMPA, Lerchenfelstrasse 5,9014 St. Gallen, Switzerland,Technical Research and Development, Novartis Pharma AG,4057 Basel, Switzerland;

    Materials-Biology Interactions Lab, EMPA, Lerchenfelstrasse 5,9014 St. Gallen, Switzerland;

    Materials-Biology Interactions Lab, EMPA, Lerchenfelstrasse 5,9014 St. Gallen, Switzerland;

    Fraunhofer Institute for Manufacturing and Advanced Materials (IFAM), Wiener Strasse 12, 28359 Bremen, Germany;

    Fraunhofer Institute for Manufacturing and Advanced Materials (IFAM), Wiener Strasse 12, 28359 Bremen, Germany;

    Materials-Biology Interactions Lab, EMPA, Lerchenfelstrasse 5,9014 St. Gallen, Switzerland;

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