首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Fabricating Complex Culture Substrates Using Robotic Microcontact Printing (R-µCP) and Sequential Nucleophilic Substitution
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Fabricating Complex Culture Substrates Using Robotic Microcontact Printing (R-µCP) and Sequential Nucleophilic Substitution

机译:使用机器人微接触印刷(R-µCP)和顺序亲核取代制备复杂的培养基质

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摘要

In tissue engineering, it is desirable to exhibit spatial control of tissue morphology and cell fate in culture on the micron scale. Culture substrates presenting grafted poly(ethylene glycol) (PEG) brushes can be used to achieve this task by creating microscale, non-fouling and cell adhesion resistant regions as well as regions where cells participate in biospecific interactions with covalently tethered ligands. To engineer complex tissues using such substrates, it will be necessary to sequentially pattern multiple PEG brushes functionalized to confer differential bioactivities and aligned in microscale orientations that mimic in vivo niches. Microcontact printing (μCP) is a versatile technique to pattern such grafted PEG brushes, but manual μCP cannot be performed with microscale precision. Thus, we combined advanced robotics with soft-lithography techniques and emerging surface chemistry reactions to develop a robotic microcontact printing (R-μCP)-assisted method for fabricating culture substrates with complex, microscale, and highly ordered patterns of PEG brushes presenting orthogonal ‘click’ chemistries. Here, we describe in detail the workflow to manufacture such substrates.
机译:在组织工程中,期望以微米尺度展现组织形态和培养中细胞命运的空间控制。呈现接枝聚乙二醇(PEG)刷的培养底物可用于创建微型,无污垢和抗细胞粘附的区域以及细胞参与与共价束缚配体的生物特异性相互作用的区域,从而实现此任务。为了使用这样的底物工程化复杂的组织,将需要顺序地图案化多个功能化的PEG刷,以赋予不同的生物活性并在模仿体内壁的微观方向上对齐。微接触印刷(μCP)是对接枝的PEG刷进行构图的通用技术,但是手动μCP不能以微米级的精度执行。因此,我们将先进的机器人技术与软光刻技术和新兴的表面化学反应相结合,以开发出一种机器人微接触印刷(R-μCP)辅助方法来制造具有复杂,微尺度和高度有序图案的PEG刷的培养基质,从而呈现出正交的“点击”化学。在此,我们详细描述了制造此类基材的工作流程。

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