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Stamp-stiffness calibrated micro contact printing

机译:印模刚度校准的微接触印刷

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Micro contact printing is a quite useful technique for patterning protein such as cellular adhesion molecular. Especially, the method is popular to fabricate substrates for cell patterning in tissue engineering. However, a manual printing is difficult, because the stamp made from polydimethylsiloxane (PDMS) is easily deformed, and a printed pattern is also crushed. This study focused on the stiffness of PDMS stamp and discussed a micro-contact-printing controlled stamping force for a higher quality of pattern than that of manual. Considering in availability in medical or biological laboratory, the measurement method of stamp stiffness was developed by using a general microscope. The proposed stamping method gave a high printing-quality with 2.5% error of stamping area. Stamping setup controlling stamping force was developed, and a protein was patterned on a cell-culture substrate by the setup. By using the protein-patterned substrate, two-cell-patterned co-culture was successfully performed.
机译:微接触印刷是用于构图蛋白质(例如细胞粘附分子)的非常有用的技术。特别地,该方法普遍用于制造用于组织工程中的细胞图案化的基底。然而,由于由聚二甲基硅氧烷(PDMS)制成的压模容易变形,并且印刷图案也被压碎,因此手动印刷是困难的。这项研究的重点是PDMS压模的刚度,并讨论了微接触印刷控制的压模力,以获得比手工更高的图案质量。考虑到医学或生物实验室中的可用性,通过使用普通显微镜开发了压模刚度的测量方法。所提出的压印方法具有较高的印刷质量,压印面积误差为2.5%。开发了用于控制压模力的压模装置,并通过该设置在细胞培养基质上对蛋白质进行了图案化。通过使用蛋白质图案的底物,成功地进行了两细胞图案的共培养。

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