首页> 外文期刊>Journal of Micromechanics and Microengineering >Excimer laser micropatterning of freestanding thermo-responsive hydrogel layers for cells-on-chip applications
【24h】

Excimer laser micropatterning of freestanding thermo-responsive hydrogel layers for cells-on-chip applications

机译:独立的热响应水凝胶层的准分子激光微图案化,用于芯片上细胞应用

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We report a novel reliable and repeatable technologic manufacturing protocol for the realization of micro-patterned freestanding hydrogel layers based on thermo-responsive poly-(N-isopropyl)acrylamide (PNIPAAm), which have potential to be employed as temperature-triggered smart surfaces for cells-on-chip applications. PNIPAAm-based films with controlled mechanical properties and different thicknesses (100-300 μm thickness) were prepared by injection compression moulding at room temperature. A 9 × 9 array of 20 μm diameter through-holes is machined by means of the KrF excimer laser on dry PNIPAAm films which are physically attached to flat polyvinyl chloride (PVC) substrates. Machining parameters, such as fluence and number of shots, are optimized in order to achieve highly resolved features. Micro-structured freestanding films are then easily obtained after hydrogels are detached from PVC by gradually promoting the film swelling in ethanol. In the PNIPAAm water-swollen state, the machined holes' diameter approaches a slight larger value (30 μm) according to the measured hydrogel swelling ratio. Thermo-responsive behaviour and through-hole tapering characterization are carried out by metrology measurements using an optical inverted and confocal microscope setup, respectively. After the temperature of freestanding films is raised above 32℃, we observe that the shrinkage of the whole through-hole array occurs, thus reducing the holes' diameter to less than a half its original size (about 15 μm) as a consequence of the film dehydration. Different holes' diameters (10 and 30 μm) are also obtained on dry hydrogel employing suitable projection masks, showing similar shrinking behaviour when hydrated and undergone thermo-response tests. Thermo-responsive PNIPAAm-based freestanding layers could then be integrated with other suitable micro-fabricated thermoplastic components in order to preliminary test their feasibility in operating as temperature-activated components in the frame of the development of microfluidic devices in multilayer hybrid materials.
机译:我们报告了一种新型的可靠和可重复的技术制造协议,用于实现基于热响应性聚-(N-异丙基)丙烯酰胺(PNIPAAm)的微图案独立式水凝胶层,它有可能被用作温度触发的智能表面芯片单元应用。通过在室温下注塑成型来制备具有受控机械性能和不同厚度(100-300μm厚度)的PNIPAAm基薄膜。借助KrF受激准分子激光在干燥的PNIPAAm膜上加工直径为20μm的9×9阵列,该膜物理附着在平坦的聚氯乙烯(PVC)基板上。为了达到高度解析的功能,对加工参数进行了优化,例如注量和打针数量。然后,通过逐渐促进薄膜在乙醇中的溶胀,将水凝胶从PVC上剥离下来,即可轻松获得微结构的独立薄膜。在PNIPAAm水溶胀状态下,根据测得的水凝胶溶胀率,加工孔的直径接近稍大的值(30μm)。热响应行为和通孔逐渐变细表征分别通过光学倒置和共聚焦显微镜设置进行计量测量。当独立膜的温度升高到32℃以上时,我们观察到整个通孔阵列都会发生收缩,因此,由于通孔的原因,孔的直径减小到小于其原始尺寸的一半(约15μm)。薄膜脱水。在干水凝胶上采用合适的投影掩模也可获得不同的孔径(10和30μm),当水合并进行热响应测试时,它们表现出相似的收缩行为。然后可以将基于热响应性PNIPAAm的独立层与其他合适的微细加工的热塑性组件集成在一起,以便在多层混合材料中微流控设备开发的框架中初步测试其用作温度激活组件的可行性。

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