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Influence of buoyancy-driven flow on mass transfer in a two-stream microfluidic channel: Introduction of cryoprotective agents into cell suspensions

机译:浮力驱动的流动对两流微流通道中传质的影响:将冷冻保护剂引入细胞悬液

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摘要

A variety of methods have been used to introduce chemicals into a stream or to mix two or more streams of different compositions using microfluidic devices. In the following paper, the introduction of cryoprotective agents (CPAs) used during cryopreservation of cells in order to protect them from freezing injuries and increase viability post thaw is described. Dimethylsulphoxide (DMSO) is the most commonly used CPA. We aim to optimize the operating conditions of a two-stream microfluidic device to introduce a 10% vol/vol solution of DMSO into a cell suspension. Transport behavior of DMSO between two streams in the device has been experimentally characterized for a spectrum of flow conditions (0.7 < Re < 10), varying initial donor stream concentrations, (1% vol/vol < Co < 15% vol/vol) and different flow rate fractions (0.23 < fq < 0.77). The outlet cell stream concentration is analyzed for two different flow configurations: one with the cell stream flowing on top of the DMSO-rich donor stream, and the other with the cell stream flowing beneath the heavy DMSO-laden stream. We establish a transition from a diffusive mode of mass transfer to gravity-influenced convective currents for Atwood numbers (At) in the range of (1.7 × 10−3 < At < 3.1 × 10−3) for the latter configuration. Flow visualization with cells further our understanding of the effect of At on the nature of mass transport. Cell motion studies performed with Jurkat cells confirm a high cell recovery from the device while underscoring the need to collect both the streams at the outlet of the device and suggesting flow conditions that will help us achieve the target DMSO outlet concentration for clinical scale flow rates of the cell suspension.
机译:已经使用多种方法使用微流体装置将化学物质引入物流或将两种或更多种不同组成的物流混合。在以下论文中,介绍了在细胞冷冻保存过程中使用的冷冻保护剂(CPA)的引入,以保护它们免受冻伤并提高融化后的活力。二甲基亚砜(DMSO)是最常用的CPA。我们旨在优化两流微流控设备的操作条件,以将10%vol / vol的DMSO溶液引入细胞悬液中。 DMSO在装置中两股物流之间的传输行为已针对一系列流动条件(0.7 −3 - 3 )用于后一种配置。细胞流动可视化进一步了解了At对质量传输性质的影响。使用Jurkat细胞进行的细胞运动研究证实了该装置具有很高的细胞回收率,同时强调了在装置出口处收集两种流的需求,并提出了有助于我们达到临床规模流速的目标DMSO出口浓度的流动条件。细胞悬浮液。

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