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Quick and easy microfabrication of T-shaped cantilevers to generate arrays of microtissues

机译:T型悬臂的快速简便的微细加工以生成微组织阵列

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摘要

Over the past decade, a major effort was made to miniaturize engineered tissues, as to further improve the throughput of such approach. Most existing methods for generating microtissues thus rely on T-shaped cantilevers made by soft lithography and based on the use of negative SU-8 photoresist. However, photopatterning T-shaped microstructures with these negative photoresists is fastidious and time-consuming. Here we introduce a novel method to quickly generate T-shaped cantilevers dedicated to generation of cellular microtissues, based on the use of positive photoresist. With only two layers of photoresist and one photomask, we were able to fabricate arrays of microwells in less than 3 h, each containing two T-shaped cantilevers presenting either a rectangular or a circular geometry. As a proof of concept, these arrays were then replicated in poly(dimethylsiloxane) and microtissues composed of NIH 3T3 fibroblasts encapsulated in collagen I were generated, while the two cantilevers simultaneously constrain and report forces generated by the microtissues. Immunostainings showed longitudinally aligned and elongated fibroblasts over the whole microtissue after 8 days of culture. The method described here opens the potential to quick prototyping platforms for high-throughput, low-volume screening applications.
机译:在过去的十年中,为使工程组织最小化做出了巨大的努力,以进一步提高这种方法的产量。因此,大多数现有的产生微组织的方法都依赖于通过软光刻法以及基于使用负性SU-8光致抗蚀剂制成的T形悬臂。然而,使用这些负性光刻胶对T形微结构进行光图案化是费时又费力的。在这里,我们介绍一种基于使用正性光刻胶的方法,以快速生成专用于生成细胞微组织的T形悬臂。仅使用两层光致抗蚀剂和一个光掩模,我们就能在不到3小时的时间内制造出微孔阵列,每个微孔包含两个呈矩形或圆形几何形状的T形悬臂。作为概念验证,然后将这些阵列复制到聚二甲基硅氧烷中,并生成由包裹在胶原蛋白I中的NIH 3T3成纤维细胞组成的微组织,而两个悬臂同时约束并报告由微组织产生的力。培养8天后,免疫染色显示整个微组织呈纵向排列并呈细长形的成纤维细胞。此处描述的方法为高通量,小批量筛选应用的快速原型开发平台提供了潜力。

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