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Flexible enclosure for fluidic sealing of microcomponents

机译:柔性外壳,用于微组件的流体密封

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A flexible enclosure for fluidic sealing of SU-8 microcomponents was developed using polydimethylsiloxane (PDMS). The flexible enclosure can be mechanically assembled to SU-8 microchannels even in the presence of liquid. The seal is mechanical and completely reversible, thus allowing the channels to already contain immobilized enzymes or cells prior to assembly. To provide such a reversible fluid tight lid, the PDMS and SU-8 substrates contain interlocking structures that facilitate assembly and sealing together of the two substrates. Interlocking 1 mm ridges/holes and 400 μm ridges/grooves were fabricated on PDMS and SU-8 surfaces that hold the two pieces in place to prevent PDMS lid and SU-8 microchannels separation during handling and fluid flow. Furthermore, a 20 μm bump on the PDMS surface, which has the same width and length dimensions as the 400 μm deep SU-8 microchannel, acts as a plug to keep the fluid within the microchannel and prevent leakage between the PDMS-SU-8 interface. The assembled microchannels and enclosures can withstand manually applied fluidic pressure via a syringe which is noticeably higher than channels with a simple lid and no interconnect structures. The device was additionally quantified for pressure versus flow rate using a syringe pump and pressure sensor. The seal remained leak free up to 0.6 ml/min and 2.36 kPa. In addition, a preliminary cell viability test was conducted with leukemia cells and we observed that cells lived in the channel microenvironment for 24 hours.
机译:使用聚二甲基硅氧烷(PDMS)开发了用于SU-8微型组件流体密封的柔性外壳。即使在有液体的情况下,也可以将柔性外壳机械组装到SU-8微通道。密封件是机械的并且是完全可逆的,因此允许通道在组装之前已经包含固定的酶或细胞。为了提供这种可逆的液密盖,PDMS和SU-8基板包含互锁结构,有助于将两个基板组装和密封在一起。在PDMS和SU-8表面上制造了可互锁的1 mm脊/孔和400μm脊/槽,将这两部分固定在适当的位置,以防止在处理和流体流动过程中PDMS盖和SU-8微通道分离。此外,PDMS表面上的20μm凸块具有与400μm深的SU-8微通道相同的宽度和长度尺寸,充当塞子,将流体保持在微通道内并防止PDMS-SU-8之间泄漏接口。组装的微通道和外壳可以通过注射器承受手动施加的流体压力,该压力明显高于具有简单盖且没有互连结构的通道。使用注射泵和压力传感器对装置的压力与流速进行定量。密封件在0.6 ml / min和2.36 kPa的压力下仍保持无泄漏。此外,对白血病细胞进行了初步的细胞生存力测试,我们观察到细胞在通道微环境中生活了24小时。

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