Leibniz-Institut für Analytische Wissenschaften - ISAS - e.V., Otto-Hahn-Str. 6b, 44227 Dortmund, Germany.
Leibniz-Institut für Analytische Wissenschaften - ISAS - e.V., Otto-Hahn-Str. 6b, 44227 Dortmund, Germany.
Anal Chim Acta. 2018 Dec 31;1044:77-85. doi: 10.1016/j.aca.2018.04.066. Epub 2018 May 22.
Microfluidic gradient generators have been employed in several works in the literature. However, these are typically application specific and especially limited in the range of flow rates that result in the required concentration gradient outputs. Here, a flow rate independent gradient generator designed as a modified Christmas tree-like microfluidic channel network including micromixers at each channel branch is demonstrated. The device was characterized theoretically, modeled using finite element analysis and tested experimentally. Input flow rates up to 200 μl/min, resulting in a maximum speed of about 333 mm/s, for the generation of linear and mirrored linear gradients were demonstrated. As an application example, the gradient generator was monolithically integrated with microfluidic free-flow electrophoresis for the separation/concentration of fluorophores using a novel E-field gradient free-flow electrophoresis mode. The separation of fluorophores, having different charge stages, showed concentration factors of up to 10 fold. In addition, an extended theoretical description of the realizable concentration gradients and the electric field gradient is presented as supplementary information.
微流控梯度发生器在文献中的多个工作中得到了应用。然而,这些通常是特定于应用的,特别是在产生所需浓度梯度输出的流速范围内受到限制。在这里,展示了一种设计为改进的圣诞树状微流控通道网络的流速无关梯度发生器,其中在每个通道分支处包括微混合器。该设备在理论上进行了表征,使用有限元分析进行建模,并进行了实验测试。演示了输入流速高达 200 μl/min,产生的最大速度约为 333 mm/s,可用于生成线性和镜像线性梯度。作为应用示例,梯度发生器与微流控自由流电泳单片集成,使用新型 E 场梯度自由流电泳模式分离/浓缩荧光染料。具有不同电荷阶段的荧光染料的分离显示出高达 10 倍的浓缩因子。此外,作为补充信息,还提出了可实现浓度梯度和电场梯度的扩展理论描述。