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首页> 外文期刊>Journal of Micromechanics and Microengineering >Force controlled SU-8 micropipettes fabricated with a sideways process
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Force controlled SU-8 micropipettes fabricated with a sideways process

机译:力控制的SU-8微量侧,侧向工艺制造

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We established an in-plane microfabrication process of polymeric AFM micropipettes that include a microchannel with an aperture at the apex without further processing after wafer scale lithography. The channel was obtained by etching a sacrificial electrochemically plated copper layer. Such sideways fabrication scheme offers the possibility of designing various types of cantilevers with different shapes and lengths within a single wafer, such as a length of 500 Arn or being connected by two triangular hollow tips. The probes were operated in optical beam deflection AFM mode. First, force-indentation curves were measured on substrates with different stiffness, and then microbeads were spatially manipulated in a hydrogel showing their reusability in case of clogging. Finally, we succeeded in using such probes to carry out cell-isolation experiments of neurons cultured in vitro (2D layers) and in hydrogels (3D architecture).
机译:我们建立了聚合物AFM微蛋白的面内微制造过程,其包括在顶点处的具有孔的微通道,而无需在晶片刻度光刻之后进一步处理。 通过蚀刻牺牲电化学电镀铜层获得通道。 这种侧面制造方案提供了在单个晶片内具有不同形状和长度的各种类型的悬臂的可能性,例如500 ARN的长度或通过两个三角形空心尖端连接。 探针在光束偏转AFM模式下操作。 首先,在具有不同刚度的底物上测量力缩进曲线,然后在水凝胶中在空间上操纵微珠,在堵塞的情况下显示其可重用性。 最后,我们成功地使用这些探针在体外(2D层)和水凝胶中进行神经元的细胞隔离实验(3D架构)。

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