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Alternate Soaking Technique for Micropatterning Alginate Hydrogels on Wettability-patterned Substrates

机译:用于润湿性图案底板上的微型蚀刻水凝胶的替代浸泡技术

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摘要

Techniques for patterning hydrogels are important for fabrication of cell culture, analytical, and actuator devices at the micro- and nanometer length scales.In this study, we fabricated alginate hydrogels cross-linked by divalent cations on wettability-patterned substrates by alternate soaking of precursor solutions of sodium alginate and divalent cations.The wettability-patterned substrates were fabricated on hydrophilic glass plates modified with hydrophobic self-assembled monolayers of hexamethyldisilazane followed by exposure to an ultraviolet/ozone atmosphere through a metal mask.The film thickness of alginate gels with a width and length of 0.1 and 4 mm were tuned stepwise from 30 nm to 200 nm by adjusting the precursor conditions, including the pH, type of divalent metal ions, and sodium alginate concentration, and the alternate soaking conditions, including the dipping/withdrawal speed and number of alternate soaking cycles.This technique can be applied to other functional gels and will contribute to fabrication of hydrogel devices at the micro- and nanometer scales in the future.
机译:图案化水凝胶的技术对于在微纳米和纳米长度尺度上制造细胞培养,分析和致动器装置是重要的。本研究中,我们通过前体的交替浸泡制造了由润湿性型底物上的二价阳离子交联的藻酸盐水凝胶。藻酸钠和二价阳离子的溶液。用疏水性自组装单层用六甲基二硅氮烷改性的亲水性玻璃板制造润湿性玻璃板,然后通过金属掩模暴露于紫外/臭氧气氛。藻酸盐凝胶的膜厚度通过调节前体条件,包括pH,二价金属离子和海藻酸钠浓度,以及包括浸渍/取液速度,逐步调节0.1和4mm的宽度和4mm至200nm。和交替浸泡循环的数量。本技术可以应用于其他功能凝胶S并将有助于在未来制造水凝胶装置的微型和纳米尺度。

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