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Writing Behavior of Phospholipids in Polymer Pen Lithography (PPL) for Bioactive Micropatterns

机译:聚合物笔光刻(PPL)中用于生物活性微图案的磷脂的书写行为

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摘要

Lipid-based membranes play crucial roles in regulating the interface between cells and their external environment, the communication within cells, and cellular sensing. To study these important processes, various lipid-based artificial membrane models have been developed in recent years and, indeed, large-area arrays of supported lipid bilayers suit the needs of many of these studies remarkably well. Here, the direct-write scanning probe lithography technique called polymer pen lithography (PPL) was used as a tool for the creation of lipid micropatterns over large areas via polymer-stamp-mediated transfer of lipid-containing inks onto glass substrates. In order to better understand and control the lipid transfer in PPL, we conducted a systematic study of the influence of dwell time (i.e., duration of contact between tip and sample), humidity, and printing pressure on the outcome of PPL with phospholipids and discuss results in comparison to the more often studied dip-pen nanolithography with phospholipids. This is the first systematic study in phospholipid printing with PPL. Biocompatibility of the obtained substrates with up to two different ink compositions was demonstrated. The patterns are suitable to serve as a platform for mast cell activation experiments.
机译:基于脂质的膜在调节细胞与其外部环境之间的界面,细胞内部的通讯以及细胞感应中起着至关重要的作用。为了研究这些重要的过程,近年来已经开发了各种基于脂质的人工膜模型,实际上,大面积的支持脂质双层的阵列非常适合其中许多研究的需求。在这里,称为聚合物笔平版印刷术(PPL)的直接写入扫描探针平版印刷术技术被用作通过聚合物压印介导的含脂质墨水到玻璃基板上的大面积创建脂质微图案的工具。为了更好地理解和控制PPL中脂质的转移,我们对停留时间(即针尖与样品之间的接触时间),湿度和印刷压力对磷脂与PPL结果的影响进行了系统的研究,并讨论了与更常研究的使用磷脂的浸笔式纳米光刻技术相比,该方法的结果更好。这是使用PPL进行磷脂印刷的第一个系统研究。证明了所获得的基材与多达两种不同的油墨组合物的生物相容性。这些模式适合用作肥大细胞激活实验的平台。

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