首页> 外文期刊>Journal of the American Chemical Society >Effect of silicon oxidation on long-term cell selectivity of cell-patterned Au/SiO2 platforms
【24h】

Effect of silicon oxidation on long-term cell selectivity of cell-patterned Au/SiO2 platforms

机译:硅氧化对细胞图案化Au / SiO2平台长期细胞选择性的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Cellular patterning on silicon platforms is the basis for development of integrated cell-based biosensing devices, for which long-term cell selectivity and biostability remain a major challenge. We report the development of a silicon-based platform in a metal-insulator format capable of producing uniform and biostable cell patterns with long-term cell selectivity. Substrates patterned with arrays of gold electrodes were surface-engineered such that the electrodes were activated with fibronectin to mediate cell attachment and the silicon oxide background was passivated with PEG to resist protein adsorption and cell adhesion. Three types of oxide surfaces, i.e., native oxide, dry thermally grown oxide, and wet thermally grown oxide, were produced to illustrate the effect of oxide state of the surface on long-term cell selectivity. Results indicated that the cell selectivity over time differed dramatically among three patterned platforms and the best cell selectivity was found on the dry oxide surface for up to 10 days. Surface analysis results suggested that this enhancement in cell selectivity may be related to the presence of additional, more active oxide states on the dry oxide surface supporting the stability of PEG films and effectively suppressing the cell adhesion. This research offers a new strategy for development of stable and uniform cell-patterned surfaces, which is versatile for immobilization of silane-based chemicals for preparation of biostable interfaces.
机译:硅平台上的细胞构图是开发基于细胞的集成生物传感设备的基础,长期的细胞选择性和生物稳定性仍然是主要挑战。我们报告了一种金属绝缘体形式的硅基平台的开发,该平台能够产生具有长期细胞选择性的均匀且生物稳定的细胞模式。对用金电极阵列图案化的基板进行表面工程处理,以便用纤连蛋白激活电极以介导细胞附着,并用PEG钝化氧化硅背景以抵抗蛋白质吸附和细胞粘附。产生三种类型的氧化物表面,即天然氧化物,干热生长的氧化物和湿热生长的氧化物,以说明表面的氧化物状态对长期细胞选择性的影响。结果表明,随时间变化的细胞选择性在三个图案化平台之间差异显着,并且在长达10天的干燥氧化物表面上发现了最佳的细胞选择性。表面分析结果表明,细胞选择性的这种增强可能与干氧化物表面上存在更多,更具活性的氧化物状态有关,从而支持PEG膜的稳定性并有效地抑制了细胞粘附。这项研究为开发稳定且均匀的细胞图案表面提供了一种新策略,该表面可用于固定硅烷基化学品以制备生物稳定界面。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号