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Cell/surface interactions on laser micro-textured titanium-coated silicon surfaces

机译:激光微纹理钛涂层硅表面上的电池/表面相互作用

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摘要

This paper presents the results of recent efforts to improve the biocompatibility and integration of implantable bioMEMS devices. Laser micro-grooves and micro-grids were irradiated onto silicon surfaces using ultraviolet lasers. The micro-textured surfaces were then coated with nano-scale layers of titanium to promote improved biocompatibility. The micro-groove geometries have been shown to promote contact guidance, which leads to reduced scar tissue formation. In contrast, smooth surfaces result in random cell orientations and the increased possibility of scar tissue formation. The nature of the cellular attachment and adhesion to the coated/uncoated micro-textured surfaces was elucidated by the visualization of the cells through scanning electron microscopy. Finally, the implications of the results are discussed for integration of silicon-based microelectronics and sensors into biological systems.
机译:本文介绍了近期努力提高植入生物莫马姆斯设备的生物相容性和整合的结果。使用紫外线激光照射激光微槽和微栅格在硅表面上。然后将微织地用表面涂覆有纳米级钛层以促进改善的生物相容性。已经显示微沟几何形状促进接触引导,这导致减少瘢痕组织形成。相比之下,平滑表面导致随机细胞取向和瘢痕组织形成的增加的可能性。通过扫描电子显微镜通过细胞的可视化,阐明了细胞附着和对涂覆/未涂覆的微纹理表面的粘附性的性质。最后,讨论了结果的含义,用于将基于硅基的微电子和传感器集成到生物系统中。

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