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DNA Assembly in 3D Printed Fluidics

机译:3D打印流体学中的DNA组装

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摘要

The process of connecting genetic parts—DNA assembly—is a foundational technology for synthetic biology. Microfluidics present an attractive solution for minimizing use of costly reagents, enabling multiplexed reactions, and automating protocols by integrating multiple protocol steps. However, microfluidics fabrication and operation can be expensive and requires expertise, limiting access to the technology. With advances in commodity digital fabrication tools, it is now possible to directly print fluidic devices and supporting hardware. 3D printed micro- and millifluidic devices are inexpensive, easy to make and quick to produce. We demonstrate Golden Gate DNA assembly in 3D-printed fluidics with reaction volumes as small as 490 nL, channel widths as fine as 220 microns, and per unit part costs ranging from $0.61 to $5.71. A 3D-printed syringe pump with an accompanying programmable software interface was designed and fabricated to operate the devices. Quick turnaround and inexpensive materials allowed for rapid exploration of device parameters, demonstrating a manufacturing paradigm for designing and fabricating hardware for synthetic biology.
机译:连接遗传部分(DNA组装)的过程是合成生物学的基础技术。微流体技术提供了一种有吸引力的解决方案,可通过集成多个协议步骤来最大限度地减少使用昂贵的试剂,实现多重反应并自动执行协议。然而,微流体的制造和操作可能是昂贵的并且需要专业知识,从而限制了对该技术的访问。随着商品数字制造工具的发展,现在可以直接打印流体设备和支持硬件。 3D打印的微流体和毫流体设备价格便宜,易于制造且生产迅速。我们展示了3D打印流体技术中的Golden Gate DNA组装,反应体积小至490 nL,通道宽度小至220微米,每单位零件成本从0.61美元到5.71美元不等。设计并制造了带有随附的可编程软件界面的3D打印注射泵,以操作设备。快速周转和廉价的材料可以快速探索设备参数,从而展示了设计和制造合成生物学硬件的制造范例。

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