School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50 Nanyang Avenue, 639798 Singapore.
Microfluidics Manufacturing Programme, Singapore Institute of Manufacturing Technology, 71 Nanyang Drive, 63807 Singapore.
Lab Chip. 2016 Jan 21;16(2):368-76. doi: 10.1039/c5lc01137j.
Concentration gradient generation in microfluidics is typically constrained by two conflicting mass transport requirements: short characteristic times (τ) for precise temporal control of concentration gradients but at the expense of high flow rates and hence, high flow shear stresses (σ). To decouple the limitations from these parameters, here we propose the use of stagnation flows to confine concentration gradients within large velocity gradients that surround the stagnation point. We developed a modified cross-slot (MCS) device capable of feeding binary and combinational concentration sources in stagnation flows. We show that across the velocity well, source-sink pairs can form permanent concentration gradients. As source-sink concentration pairs are continuously supplied to the MCS, a permanently stable concentration gradient can be generated. Tuning the flow rates directly controls the velocity gradients, and hence the stagnation point location, allowing the confined concentration gradient to be focused. In addition, the flow rate ratio within the MCS rapidly controls (τ ∼ 50 ms) the location of the stagnation point and the confined combinational concentration gradients at low flow shear (0.2 Pa < σ < 2.9 Pa). The MCS device described in this study establishes the method for using stagnation flows to rapidly generate and position low shear combinational concentration gradients for shear sensitive biological assays.
在微流控中,浓度梯度的产生通常受到两个相互冲突的质量传输要求的限制:为了精确控制浓度梯度的时间,需要较短的特征时间(τ),但这会导致高流速和高流动剪切应力(σ)。为了将这些限制与这些参数分离,我们提出使用停滞流将浓度梯度限制在围绕停滞点的大速度梯度内。我们开发了一种改进的十字缝(MCS)装置,能够在停滞流中输送二元和组合浓度源。我们表明,在速度阱中,源-汇对可以形成永久的浓度梯度。随着源-汇浓度对不断供应给 MCS,可产生永久稳定的浓度梯度。通过直接控制流速,即可调节速度梯度,从而控制停滞点的位置,使受限的浓度梯度能够集中。此外,MCS 中的流速比可以快速控制(τ∼50ms)停滞点的位置和受限的组合浓度梯度在低剪切力(0.2Pa<σ<2.9Pa)下的位置。本研究中描述的 MCS 装置为使用停滞流快速产生和定位低剪切组合浓度梯度提供了方法,适用于对剪切敏感的生物分析。