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A microfluidic platform for the rapid determination of distribution coefficients by gravity assisted droplet-based liquid-liquid extraction

机译:一种微流体平台,用于通过重力辅助液滴液液萃取快速测定分配系数

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摘要

The determination of pharmacokinetic properties of drugs, such as the distribution coefficient, D, is a crucial measurement in pharmaceutical research. Surprisingly, the conventional (gold standard) technique used for D measurements, the shake-flask method, is antiquated and unsuitable for the testing of valuable and scarce drug candidates. Herein we present a simple micro fluidic platform for the determination of distribution coefficients using droplet-based liquid-liquid extraction. For simplicity, this platform makes use of gravity to enable phase separation for analysis and is 48 times faster and uses 99 % less reagents than performing an equivalent measurement using the shake-flask method. Furthermore, the D measurements achieved in our platform are in good agreement with literature values measured using traditional shake-flask techniques. Since D is affected by volume ratios, we use the apparent acid dissociation constant, pK', as a proxy for inter-system comparison. Our platform determines a pK' value of 7.24 ± 0.15, compared to 7.25 ± 0.58 for the shake-flask method in our hands and 7.21 for the shake-flask method in literature. Devices are fabricated using injection moulding, the batch-wise fabrication time is less than 2 minutes per device (at a cost of 1 USD per device) and the inter-device reproducibility is high.
机译:药物的药代动力学特性(例如分布系数D)的确定是药物研究中的关键指标。出乎意料的是,用于D测量的常规(金标准)技术(摇瓶法)过时了,不适合用于测试有价值和稀缺的候选药物。在这里,我们提出了一个简单的微流体平台,用于使用基于液滴的液-液萃取来确定分配系数。为简单起见,与使用摇瓶法进行等效测量相比,该平台利用重力实现了相分离以进行分析,速度提高了48倍,使用的试剂减少了99%。此外,在我们的平台上实现的D测量与使用传统摇瓶技术测量的文献值非常吻合。由于D受体积比的影响,我们使用表观酸解离常数pK'作为系统间比较的代理。我们的平台将pK'值确定为7.24±0.15,相比之下,我们手中的摇瓶法为7.25±0.58,文献中的摇瓶法为7.21。使用注模制造设备,每台设备的分批制造时间少于2分钟(每个设备的成本为1美元),并且设备间的可重复性很高。

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