Milliliter Scale Acoustophoresis Based Bioparticle Processing Platform

M. A. Faridi, Adnan Faqui Shahzad, A. Russom, M. Wiklund
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Abstract

Bioparticles such as mammalian cells and bacteria can be manipulated directly or indirectly for multiple applications such as sample preparation for diagnostic applications mainly up-concentration, enrichment & separation as well as immunoassay development. There are various active and passive microfluidic particle manipulation techniques where Acoustophoresis is a powerful technique showing high cell viability. The use of disposable glass capillaries for acoustophoresis, instead of cleanroom fabricated glass-silicon chip can potentially bring down the cost factor substantially, aiding the realization of this technique for real-world diagnostic devices. Unlike available chips and capillary-based microfluidic devices, we report milliliter-scale platform able to accommodate 1ml of a sample for acoustophoresis based processing on a market available glass capillary. Although it is presented as a generic platform but as a demonstration we have shown that polystyrene suspending medium sample can be processed with trapping efficiency of 87% and the up-concentration factor of 10 times in a flow through manner i.e., at 35μl/min. For stationary volume accommodation, this platform practically offers 50 times more sample handling capacity than most of the microfluidic setups. Furthermore, we have also shown that with diluted blood (0.6%) in a flow-through manner, 82% of the white blood cells (WBCs) per ml could be kept trapped. This milliliter platform could potentially be utilized for assisting in sample preparation, plasma separation as well as a flow-through immunoassay assay development for clinical diagnostic applications.
毫升级声控生物制品处理平台
生物颗粒如哺乳动物细胞和细菌可以直接或间接操作多种应用,如用于诊断应用的样品制备,主要是提高浓度,富集和分离以及免疫分析开发。有各种各样的主动和被动微流控颗粒操作技术,其中声阻抗技术是一种强大的技术,具有很高的细胞存活率。使用一次性玻璃毛细管进行声阻抗,而不是洁净室制造的玻璃硅芯片,可以潜在地大大降低成本因素,有助于实现这种技术在现实世界的诊断设备。与现有的芯片和基于毛细管的微流控装置不同,我们报告了毫升级的平台,能够容纳1ml的样品,用于基于市场上可用的玻璃毛细管的声阻抗处理。虽然它是一个通用的平台,但作为一个示范,我们已经证明聚苯乙烯悬浮介质样品可以在35μl/min的流动方式下以87%的捕获效率和10倍的富集系数进行处理。对于固定体积调节,该平台实际上提供了比大多数微流体装置多50倍的样品处理能力。此外,我们还表明,以流动方式稀释血液(0.6%),每毫升82%的白细胞(wbc)可以被捕获。该毫升平台可用于协助样品制备,血浆分离以及用于临床诊断应用的流式免疫分析分析开发。
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