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Controlling microarray spot morphology with polymer liftoff arrays

机译:用聚合物剥离阵列控制微阵列斑点形态

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摘要

Biological arrays are hindered by the lack of uniformity in the deposition of biomaterials. Efforts aimed at improving this deposition have focused on altering the composition of the solution or the tool used to deposit the material. However, little attention has been paid to controlling material deposition by constraining the physical and chemical topography of the surface. Here we present the use of a hybrid hydrophilic/hydrophobic micropatterned surface to direct the deposition of spotted DNA on microarrays. These polymer "liftoff" arrays combine the hydrophobic surface properties of di-p-xylylene (Parylene) with photolithographically etched hydrophilic openings within the polymer. We show that the flow pattern of solutes on these substrates favors the concentration of dissolved material into the mesoscopic openings underlying the printed spot, resulting in significantly improved uniformity of deposition. Moreover, the micropatterned surface allows for increased replication of spotted materials. Finally, these polymer liftoff arrays display reduced array-to-array variation, improving the reproducibility of data acquisition. We envision that these novel substrates can be generalized to produce more uniform arrays of other patterned biomaterials.
机译:生物阵列由于生物材料沉积中缺乏均匀性而受到阻碍。旨在改善这种沉积的努力集中在改变溶液或用于沉积材料的工具的组成上。然而,很少通过限制表面的物理和化学形貌来控制材料沉积。在这里,我们介绍了使用亲水/疏水微图案混合表面来指导斑点DNA在微阵列上的沉积。这些聚合物“剥离”阵列将二对二甲苯(对二甲苯)的疏水表面性能与聚合物内的光刻法蚀刻的亲水性开口相结合。我们表明,这些基质上溶质的流动模式有利于将溶解的物质集中到印刷点下方的介观孔中,从而显着提高沉积的均匀性。而且,微图案化的表面允许增加斑点材料的复制。最后,这些聚合物剥离阵列显示出减少的阵列间差异,提高了数据采集的可重复性。我们设想可以将这些新颖的底物泛化以产生其他图案化生物材料的更均匀阵列。

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