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A Combined Fabrication and Instrumentation Platform for Sample Preparation

机译:用于样品制备的组合制造和仪器平台

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摘要

While potentially powerful, access to molecular diagnostics is substantially limited in the developing world. Here we present an approach to reduced cost molecular diagnostic instrumentation that has the potential to empower developing world communities by reducing costs through streamlining the sample preparation process. In addition, this instrument is capable of producing its own consumable devices on demand, reducing reliance on assay suppliers. Furthermore, this instrument is designed with an "open" architecture, allowing users to visually observe the assay process and make modifications as necessary (as opposed to traditional "black box" systems). This open environment enables integration of microfluidic fabrication and viral RNA purification onto an easy-to-use modular system via the use of interchangeable trays. Here we employ this system to develop a protocol to fabricate microfluidic devices and then use these devices to isolate viral RNA from serum for the measurement of human immunodeficiency virus (HIV) viral load. Results obtained from this method show significantly reduced error compared with similar nonautomated sample preparation processes.
机译:尽管具有潜在的强大功能,但在发展中国家,分子诊断的使用受到很大限制。在这里,我们提出了一种降低成本的分子诊断仪器的方法,该方法有可能通过简化样品制备过程来降低成本,从而为发展中世界提供能力。此外,该仪器能够按需生产自己的消耗设备,从而减少了对化验供应商的依赖。此外,该仪器采用“开放式”架构设计,允许用户直观地观察化验过程并根据需要进行修改(与传统的“黑匣子”系统相对)。这种开放的环境可通过使用可互换的托盘将微流体制造和病毒RNA纯化整合到易于使用的模块化系统上。在这里,我们采用该系统来开发制造微流控设备的协议,然后使用这些设备从血清中分离病毒RNA,以测量人类免疫缺陷病毒(HIV)病毒载量。与类似的非自动化样品制备过程相比,从该方法获得的结果显示出大大降低的误差。

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