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利用双光子聚合工艺制备任意聚合物图案用于细胞研究。

Fabrication of arbitrary polymer patterns for cell study by two-photon polymerization process.

机构信息

Department of Mechanical Engineering, U.C. Berkeley, Berkeley, CA 94720-1740, USA.

出版信息

J Biomed Mater Res A. 2010 Apr;93(1):56-66. doi: 10.1002/jbm.a.32517.

Abstract

Topographically patterned surfaces are known to be powerful tools for influencing cellular functions. Here we demonstrate a method for fabricating high aspect ratio ( approximately 10) patterns of varying height by using two-photon polymerization process to study contact guidance of cells. Ridge patterns of various heights and widths were fabricated through single laser scanning steps by low numerical aperture optics, hence at much higher processing throughput. Fibroblast cells were seeded on parallel line patterns of different height ( approximately 1.5-microm, approximately 0.8-microm, and approximately 0.5-microm) and orthogonal mesh patterns ( approximately 8-microm and approximately 4-microm height, approximately 5-microm and approximately 5.5-microm height, approximately 5-microm and approximately 6-microm height). Cells experienced different strength of contact guidance depending on the ridge height. Our results demonstrate that a height threshold of nearly 1 microm influences cell alignment on both parallel line and orthogonal mesh patterns. This fabrication technique may find wide application in the design of single cell traps for controlling cell behavior in microdevices and investigating signal transduction as influenced by surface topology.

摘要

地形图案表面被公认为是影响细胞功能的有力工具。在这里,我们展示了一种通过双光子聚合工艺制造具有不同高度的高纵横比(约 10)图案的方法,以研究细胞的接触导向。通过低数值孔径光学,通过单次激光扫描步骤制造了各种高度和宽度的脊图案,因此处理速度大大提高。成纤维细胞接种在不同高度(约 1.5 微米、约 0.8 微米和约 0.5 微米)的平行线图案和正交网格图案(约 8 微米和约 4 微米高度、约 5 微米和约 5.5 微米高度、约 5 微米和约 6 微米高度)上。细胞根据脊的高度经历不同的接触导向强度。我们的结果表明,近 1 微米的高度阈值会影响平行线和正交网格图案上的细胞排列。这种制造技术可能会在设计用于控制微器件中细胞行为的单细胞陷阱以及研究表面拓扑结构对信号转导的影响方面得到广泛应用。

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