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使用激光扫描光刻技术制造多面微图案表面及图像引导图案化

Fabrication of multifaceted, micropatterned surfaces and image-guided patterning using laser scanning lithography.

作者信息

Slater John H, West Jennifer L

机构信息

Department of Biomedical Engineering, Duke University, Durham, North Carolina, USA.

出版信息

Methods Cell Biol. 2014;119:193-217. doi: 10.1016/B978-0-12-416742-1.00011-1.

Abstract

This protocol describes the implementation of laser scanning lithography (LSL) for the fabrication of multifaceted, patterned surfaces and for image-guided patterning. This photothermal-based patterning technique allows for selective removal of desired regions of an alkanethiol self-assembled monolayer on a metal film through raster scanning a focused 532 nm laser using a commercially available laser scanning confocal microscope. Unlike traditional photolithography methods, this technique does not require the use of a physical master and instead utilizes digital "virtual masks" that can be modified "on the fly" allowing for quick pattern modifications. The process to create multifaceted, micropatterned surfaces, surfaces that display pattern arrays of multiple biomolecules with each molecule confined to its own array, is described in detail. The generation of pattern configurations from user-chosen images, image-guided LSL is also described. This protocol outlines LSL in four basic sections. The first section details substrate preparation and includes cleaning of glass coverslips, metal deposition, and alkanethiol functionalization. The second section describes two ways to define pattern configurations, the first through manual input of pattern coordinates and dimensions using Zeiss AIM software and the second via image-guided pattern generation using a custom-written MATLAB script. The third section describes the details of the patterning procedure and postpatterning functionalization with an alkanethiol, protein, and both, and the fourth section covers cell seeding and culture. We end with a general discussion concerning the pitfalls of LSL and present potential improvements that can be made to the technique.

摘要

本方案描述了用于制造多面图案化表面和图像引导图案化的激光扫描光刻(LSL)的实施方法。这种基于光热的图案化技术允许通过使用市售的激光扫描共聚焦显微镜对聚焦的532nm激光进行光栅扫描,选择性地去除金属膜上烷硫醇自组装单分子层的所需区域。与传统光刻方法不同,该技术不需要使用物理母版,而是利用数字“虚拟掩模”,可以“即时”修改,从而实现快速的图案修改。详细描述了创建多面微图案化表面的过程,即显示多个生物分子图案阵列且每个分子局限于其自己阵列的表面。还描述了从用户选择的图像生成图案配置,即图像引导LSL。本方案在四个基本部分概述了LSL。第一部分详细介绍了基板制备,包括玻璃盖玻片的清洁、金属沉积和烷硫醇功能化。第二部分描述了定义图案配置的两种方法,第一种是使用蔡司AIM软件手动输入图案坐标和尺寸,第二种是通过使用自定义编写的MATLAB脚本进行图像引导图案生成。第三部分描述了图案化过程的细节以及用烷硫醇、蛋白质或两者进行图案化后功能化,第四部分涵盖细胞接种和培养。我们最后对LSL的陷阱进行了一般性讨论,并提出了该技术可以进行的潜在改进。

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