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Rapid prototyping of glass microfluidic chips based on autonomous capillary networks for physiological solutions

机译:基于自主毛细管网络的玻璃微流控芯片快速原型化的生理解决方案

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In this work, a technological solution is proposed for the fast and low cost realization of autonomous capillary systems that can operate with saline solutions typically used for the implementation of bioanalytical protocols. In order to develop and test the technological process, a simple microfluidic network has been designed. The network includes elementary structures as mixers, T-junctions and capillary pumps for studying the behavior of the fluid inside the test chips. The proposed microfluidic network is made in SU-8 deposited on glass substrate and the microchannels are sealed using a glass cover. A novel procedure has been implemented for the fabrication of devices using low-pressure and low-temperature bonding avoiding the risk of breaking the glass slides while ensuring a very good sealing of the microchannels. The fabricated devices showed strong capillary force and successful mixing of colored physiological solutions. Thanks to the chemical inertia of the used materials and to their mechanical properties, the chip can be easily reused after a chemical rinse, high pressure air blow and thermal treatment.
机译:在这项工作中,提出了一种技术解决方案,用于快速,低成本地实现自主毛细管系统,该系统可以与通常用于实施生物分析方案的盐溶液一起使用。为了开发和测试工艺过程,设计了一个简单的微流体网络。该网络包括基本结构,如混合器,T型接头和毛细管泵,用于研究测试芯片内部流体的行为。拟议的微流体网络是用沉积在玻璃基板上的SU-8制成的,微通道使用玻璃盖密封。已经实施了用于使用低压和低温结合的装置制造的新颖程序,避免了在确保很好地密封微通道的同时避免了破裂玻璃载玻片的风险。制成的设备显示出强大的毛细作用力,并成功地混合了有色生理溶液。由于所用材料的化学惯性及其机械性能,经过化学冲洗,高压吹气和热处理后,可以轻松地重新使用芯片。

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