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Workshop Cost-Effective and Streamlined Fabrications of Re-Usable World-To-Chip Connectors for Handling Sample of Limited Volume and for Assembling Chip Array

机译:可重复使用的世界级芯片连接器的研讨会具有成本效益和简化的制造方法用于处理数量有限的样品和组装芯片阵列

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摘要

The world-to-chip interface is an essential yet intriguing part of making and employing microfluidic devices. A user-friendly connector could be expensive or difficult to make. We fabricated two ports of microfluidic chips with easily available materials including Teflon blocks, double adhesive films, coverslips, and transparency films. By using a mini grinder, coverslips were drilled to form small holes for the fluid passages between port and chip. Except for the double adhesive films, the resultant ports are durable and re-useable. The DK1 port, contains a mini three-way switch which allows users to handle fluid by a tube-connected pump, or by a manual pipette for the sample of trace amount. The other port, the DK2 port, provides secured tube-connections. Importantly, we invented a bridge made of craft cutter-treated transparency films and double adhesive films to mediate liquid flow between DK2 port and chip. With the use of a bridge, users do not need to design new ports for new chips. Also, individual chips could be linked by a bridge to form a chip array. We successfully applied DK1 port on a microfluidic chip where green fluorescent protein was immobilized. We used DK2 port on an array of fish chips where the embryos of zebra fish developed.
机译:芯片间接口是制造和使用微流控设备必不可少的有趣部分。用户友好的连接器可能昂贵或难以制造。我们用容易获得的材料制造了两个微流控芯片端口,包括特氟龙块,双胶膜,盖玻片和透明膜。通过使用微型研磨机,钻出盖玻片以形成小孔,以供端口和切屑之间的流体通道通过。除了双面胶膜外,所得的端口均经久耐用且可重复使用。 DK1端口包含一个微型三通开关,允许用户通过连接管的泵或手动移液器处理痕量样品。另一个端口DK2端口提供安全的管连接。重要的是,我们发明了一种桥,该桥由经切割机处理过的透明膜和双胶膜制成,以调节DK2端口和芯片之间的液体流动。使用桥接器,用户无需为新芯片设计新端口。而且,各个芯片可以通过桥接器链接以形成芯片阵列。我们成功地将DK1端口应用到了固定有绿色荧光蛋白的微流控芯片上。我们在一系列斑马鱼胚胎发育的鱼片上使用了DK2端口。

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