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Topographic and chemical patterning of cell -surface interfaces to influence cellular functions.

机译:细胞表面界面的拓扑和化学构图会影响细胞功能。

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摘要

This dissertation aims to further the understanding of the complex communication that occurs as cells interact with topographical and chemical patterns on a biomaterial interface. The research accomplishes this through two aims—fabricating cell substrate surface topography and chemical patterns independently using non-cleanroom approaches, and analyzing higher order cellular response to surface features. The work will impact biomaterial surface modification and fabrication which will apply to biomedical implanted devices, tissue engineering scaffolds, and biological analysis devices. The first aim seeks to apply non-traditional topographical and chemical patterning methods in order to create independent topographical and chemical patterns on cell culture substrates. Experiments use the resulting patterned substrates to quantify cellular alignment to surface topography and compare the relative influence of topographical and chemical patterns on cellular response. The combined patterning methods of imprint lithography and micro-contact printing result in a high-throughput technique applicable to a variety of materials and a range of feature sizes from nanoscale through microscale, thereby enabling future analysis of cell response to surface features. The second aim evaluates the impact of topographical and chemical features on cellular differentiation. Experiments use patterned topography overlaid with a characterized chemical model layer to evaluate the effects of topography on myoblast differentiation and alignment. Chemical patterns that independently control available cell spreading area and modulate cell-cell contact are used to investigate the impact of cell-cell contact on differentiation.
机译:本文旨在进一步理解细胞与生物材料界面上的地形和化学模式相互作用时发生的复杂交流。该研究通过两个目标实现了这一目标-使用非洁净室方法独立制造细胞基底表面的形貌和化学图案,以及分析对表面特征的更高阶细胞响应。这项工作将影响生物材料的表面修饰和制造,将应用于生物医学植入设备,组织工程支架和生物分析设备。第一个目标是寻求应用非传统的地形和化学图案化方法,以便在细胞培养基质上创建独立的地形和化学图案。实验使用所得的图案化基板来量化细胞与表面形貌的对齐方式,并比较形貌和化学图案对细胞反应的相对影响。压印光刻和微接触印刷的组合图案化方法导致了一种高通量技术,该技术适用于各种材料以及从纳米级到微米级的一系列特征尺寸,从而能够在将来对细胞对表面特征的响应进行分析。第二个目标是评估地形和化学特征对细胞分化的影响。实验使用覆盖有特征化学模型层的图案化地形来评估地形对成肌细胞分化和排列的影响。独立控制可用细胞扩散区域并调节细胞与细胞接触的化学模式用于研究细胞与细胞接触对分化的影响。

著录项

  • 作者

    Charest, Joseph L.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Biomedical.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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