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通过表面声波雾化从纸中提取液体、蛋白质分子和酵母细胞。

The extraction of liquid, protein molecules and yeast cells from paper through surface acoustic wave atomization.

机构信息

MicroNanophysics Research Laboratory, Department of Mechanical and Aerospace Engineering, Monash University, Melbourne, VIC 3800, Australia.

出版信息

Lab Chip. 2010 Feb 21;10(4):470-6. doi: 10.1039/b915833b. Epub 2009 Dec 1.

Abstract

Paper has been proposed as an inexpensive and versatile carrier for microfluidics devices with abilities well beyond simple capillary action for pregnancy tests and the like. Unlike standard microfluidics devices, extracting a fluid from the paper is a challenge and a drawback to its broader use. Here, we extract fluid from narrow paper strips using surface acoustic wave (SAW) irradiation that subsequently atomizes the extracted fluid into a monodisperse aerosol for use in mass spectroscopy, medical diagnostics, and drug delivery applications. Two protein molecules, ovalbumin and bovine serum albumin (BSA), have been preserved in paper and then extracted using atomized mist through SAW excitation; protein electrophoresis shows there is less than 1% degradation of either protein molecule in this process. Finally, a solution of live yeast cells was infused into paper, which was subsequently dried for preservation then remoistened to extract the cells via SAW atomization, yielding live cells at the completion of the process. The successful preservation and extraction of fluids, proteins and yeast cells significantly expands the usefulness of paper in microfluidics.

摘要

纸张已被提议作为一种廉价且用途广泛的微流控器件载体,其能力远远超出了妊娠等测试的简单毛细作用。与标准微流控器件不同,从纸张中提取液体是其更广泛应用的一个挑战和缺点。在这里,我们使用表面声波 (SAW) 辐射从狭窄的纸条中提取液体,随后将提取的液体雾化成单分散气溶胶,用于质谱分析、医疗诊断和药物输送应用。两种蛋白质分子,卵清蛋白和牛血清白蛋白(BSA),已被保存在纸张中,然后通过 SAW 激发的雾化雾进行提取;蛋白质电泳表明,在此过程中,两种蛋白质分子的降解都不到 1%。最后,将活酵母细胞的溶液注入纸张中,然后干燥保存,再通过 SAW 雾化重新润湿以提取细胞,完成后得到活细胞。成功地保存和提取液体、蛋白质和酵母细胞,极大地扩展了纸张在微流控中的用途。

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