Department of Chemical Engineering, Texas Tech University, Lubbock, Texas 79409, United States.
Anal Chem. 2013 Feb 19;85(4):2044-8. doi: 10.1021/ac303526y. Epub 2013 Feb 7.
We report a one-step passive microfluidic technique to generate arrays of moving droplets containing variation of chemical concentration between individual drops. We find that a concentration gradient can be established in a long diluting plug by on-chip dilution and extraction of samples via orthogonal coalescence of the plug with a static array of sample drops. The diluting plug containing the gradient is subsequently fragmented by a droplet generator. We show that the technique is flexible, as the dilution range can be tuned by a variety of control parameters including the carrier fluid flow rate, volume of diluting plugs, and stationary drops. We also find that the concentration gradients have a fine resolution and are reproducible to within 2% relative standard deviation. As one demonstrative application, we show the suitability of the technique for generating a dose-response curve for an enzyme inhibition assay. Because of the ability to inject multiple plugs, our technique has the potential for unlimited as well as sequential dilution of a series of substrates. Thus, our method could be valuable as a high-throughput and high-resolution screening tool for assays that require interrogation of the response of one or more target species to numerous distinct chemical concentrations.
我们报告了一种一步式被动微流技术,用于生成包含单个液滴之间化学浓度变化的移动液滴阵列。我们发现,通过在芯片上稀释和通过与静态样品液滴阵列正交聚合并提取样品,可以在长稀释塞中建立浓度梯度。含有梯度的稀释塞随后通过液滴发生器进行破碎。我们表明,该技术具有灵活性,因为稀释范围可以通过多种控制参数进行调节,包括载液流速、稀释塞的体积和固定液滴。我们还发现,浓度梯度具有精细的分辨率,并且在 2%的相对标准偏差内可重复。作为一个示范应用,我们展示了该技术在生成酶抑制测定的剂量反应曲线方面的适用性。由于能够注入多个塞子,我们的技术具有对一系列底物进行无限和连续稀释的潜力。因此,我们的方法可能是一种有价值的高通量和高分辨率筛选工具,适用于需要对一个或多个目标物种对众多不同化学浓度的反应进行检测的测定。