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Biological interactions of fibroblasts with smooth and microtextured commercially-pure titanium thin films.

机译:成纤维细胞与光滑和微织构的商业纯钛薄膜的生物相互作用。

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摘要

Improving the biological performance of engineered implants, that are apposing interfacing tissues, is a critical issue in prosthetic devices. Micromotion at the soft tissue-implant interface has been shown to sustain an inflammatory response. In order to reduce or eliminate micromotion, it is desirable to promote cellular and extracellular matrix adhesion to the implant surface. Implant surfaces can be modified topographically or chemically in order to influence cellular interactions and function. Previous studies have identified the specific topographical characteristics that appear to elicit cellular attachment. This prospective study compares the independent effects of surface chemistry and topography on fibroblast cultures.; Titanium (Ti) was sputter-coated in step-wise, increasing thickness (from 20 nm to 350 nm) onto a series of either smooth or microtextured polyethylene terephthalate (PET), resulting in a step-wise change from a PET surface to a Ti surface. The sample series was evaluated in a fibroblast culture. Cell proximity, density, proliferation and metabolic activity were assessed.; The scanning electron microscopy demonstrates that the cellular density increases as the Ti film thickness increases on either smooth or textured test-specimens. The fibroblasts exhibited contact guidance on the textured test-specimens. The transmission electron microscopy demonstrates that the fibroblast proximity to the coverslip surface increases as the Ti thickness increases on either smooth or textured test-specimens. Furthermore, the fibroblasts were firmly attached to the tops of the ridges on the coated textured test-specimens. The proliferation assay (NITS) demonstrates that the cell metabolism significantly increases as the Ti film thickens on either smooth or textured test-specimens. However, the coated textured test-specimens exhibited the most cellular proliferation. Therefore, we conclude that Ti and surface texture have stronger influences on fibroblast apposition, spreading and proliferation than PET and smooth surfaces.
机译:在人工装置中,改善与界面组织接触的工程植入物的生物学性能是一个关键问题。已显示在软组织-植入物界面的微动能维持炎症反应。为了减少或消除微运动,期望促进细胞和细胞外基质对植入物表面的粘附。植入物表面可以进行拓扑或化学修饰,以影响细胞相互作用和功能。先前的研究已经确定了似乎引起细胞附着的特定地形特征。这项前瞻性研究比较了表面化学和形貌对成纤维细胞培养的独立影响。逐步将钛(Ti)溅射镀膜(厚度从20 nm增加到350 nm)到一系列光滑或微结构化的聚对苯二甲酸乙二醇酯(PET)上,从而从PET表面逐步改变为钛表面。在成纤维细胞培养物中评估样品系列。评估细胞接近度,密度,增殖和代谢活性。扫描电子显微镜表明,在光滑或织构化的试样上,细胞密度均随Ti膜厚度的增加而增加。成纤维细胞在织构化的试样上显示出接触指导。透射电子显微镜表明,在光滑或织构化的试样上,随着Ti厚度的增加,成纤维细胞与盖玻片表面的接近度增加。此外,成纤维细胞牢固地附着在涂覆的有纹理的测试样品上的脊的顶部。增殖测定(NITS)表明,在光滑或有纹理的试样上,随着Ti膜的增厚,细胞的代谢显着增加。然而,涂覆的织构的测试样品表现出最多的细胞增殖。因此,我们得出结论,与PET和光滑表面相比,Ti和表面质地对成纤维细胞的附着,扩散和扩散的影响更大。

著录项

  • 作者

    Jain, Rakhi.;

  • 作者单位

    The Ohio State University.;

  • 授予单位 The Ohio State University.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 90 p.
  • 总页数 90
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

  • 入库时间 2022-08-17 11:46:16

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