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用于自动化微流控分析系统的旋转磁阱。

Spinning magnetic trap for automated microfluidic assay systems.

机构信息

Naval Research Laboratory, 4555 Overlook Avenue, SW, Washington, DC 20375, USA.

出版信息

Lab Chip. 2012 Apr 24;12(10):1793-9. doi: 10.1039/c2lc21189k. Epub 2012 Feb 17.

Abstract

While sophisticated analyses have been performed using lab-on-chip devices, in most cases the sample preparation is still performed off chip. The global need for easy-to-use, disposable testing devices necessitates that sample processing is automated and that transport complexity between the processing and analytical components is minimal. We describe a complete sample manipulation unit for performing automated target capture, efficient mixing with reagents, and controlled target release in a microfluidic channel, using an array of spinning magnets. The "MagTrap" device consists of 6 pairs of magnets in a rotating wheel, situated immediately beneath the microchannel. Rotation of the wheel in the direction opposite to the continuous flow entraps and concentrates the bead-target complexes and separates them from the original sample matrix. As the wheel rotates and the active pair of magnets moves away from the microchannel, the beads are released and briefly flow downstream before being trapped and pulled upstream by the next pair of magnets. This dynamic and continuous movement of the beads ensures that the full surface area of each bead is exposed to reagents and prevents aggregation. The release of the target-bead complexes for further analysis is facilitated by reversing the rotational direction of the wheel to sweep the beads downstream. Sample processing with the MagTrap was demonstrated for the detection of E. coli in a range of concentrations (1 × 10(3), 1 × 10(4) and 1 × 10(6) cells ml(-1)). Results show that sample processing with the MagTrap outperformed the standard manual protocols, improving the detection capability while simultaneously reducing the processing time.

摘要

虽然使用芯片实验室设备已经进行了复杂的分析,但在大多数情况下,样品制备仍然在芯片外进行。全球对易于使用的一次性测试设备的需求使得样品处理需要自动化,并且处理和分析组件之间的传输复杂性最小化。我们描述了一种完整的样品处理单元,用于在微流道中进行自动目标捕获、与试剂的有效混合以及目标的受控释放,使用的是一组旋转磁铁。“MagTrap”装置由旋转轮中的 6 对磁铁组成,位于微通道的正下方。轮沿与连续流相反的方向旋转,捕获并浓缩珠-靶复合物,并将它们与原始样品基质分离。当轮旋转并且主动对磁铁远离微通道移动时,珠被释放并在被下一对磁铁捕获并拉向上游之前短暂地向下游流动。珠的这种动态和连续运动确保了每个珠的全部表面积都暴露于试剂并防止聚集。通过反转轮的旋转方向以将珠向下游冲洗来促进目标珠复合物的释放以进行进一步分析。使用 MagTrap 进行了样品处理,以检测不同浓度(1×10(3)、1×10(4)和 1×10(6)个细胞 ml(-1))的大肠杆菌。结果表明,MagTrap 的样品处理优于标准手动方案,提高了检测能力,同时缩短了处理时间。

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