Biological Sciences Division and Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, Richland, WA, USA.
Electrophoresis. 2011 Jun;32(13):1610-8. doi: 10.1002/elps.201000522. Epub 2011 Apr 26.
A novel hydrodynamic injector that is directly controlled by a pneumatic valve has been developed for reproducible microchip CE separations. The PDMS devices used for the evaluation comprise a separation channel, a side channel for sample introduction, and a pneumatic valve aligned at the intersection of the channels. A low pressure (≤ 3 psi) applied to the sample reservoir is sufficient to drive sample into the separation channel. The rapidly actuated pneumatic valve enables injection of discrete sample plugs as small as ~ 100 pL for CE separation. The injection volume can be easily controlled by adjusting the intersection geometry, the solution back pressure, and the valve actuation time. Sample injection could be reliably operated at different frequencies (< 0.1 Hz to > 2 Hz) with good reproducibility (peak height relative standard deviation ≤ 3.6%) and no sampling biases associated with the conventional electrokinetic injections. The separation channel was dynamically coated with a cationic polymer, and FITC-labeled amino acids were employed to evaluate the CE separation. Highly efficient (≥ 7.0 × 10³ theoretical plates for the ~2.4-cm-long channel) and reproducible CE separations were obtained. The demonstrated method has numerous advantages compared with the conventional techniques, including repeatable and unbiased injections, little sample waste, high duty cycle, controllable injected sample volume, and fewer electrodes with no need for voltage switching. The prospects of implementing this injection method for coupling multidimensional separations for multiplexing CE separations and for sample-limited bioanalyses are discussed.
一种新型的水力注射器,由气动阀直接控制,已被开发用于可重现的微芯片 CE 分离。用于评估的 PDMS 器件包括分离通道、用于样品引入的侧通道和与通道交叉处对齐的气动阀。施加到样品储器的低压(≤3psi)足以将样品驱动到分离通道中。快速动作的气动阀能够注入小至约 100pl 的离散样品塞用于 CE 分离。通过调整交叉几何形状、溶液背压和阀致动时间,可以轻松控制注入体积。可以以不同的频率(<0.1Hz 至>2Hz)可靠地进行样品注入,具有良好的重现性(峰高相对标准偏差≤3.6%),并且没有与传统电动注入相关的采样偏差。分离通道被动态涂覆有阳离子聚合物,并用 FITC 标记的氨基酸来评估 CE 分离。获得了高效(对于~2.4cm 长的通道,≥7.0×10³理论板)和可重现的 CE 分离。与传统技术相比,该方法具有许多优势,包括可重复和无偏注入、样品浪费少、高占空比、可控制的注入样品量以及无需电压切换的电极更少。讨论了实施这种注入方法用于多维分离的前景,用于多重 CE 分离和用于样品有限的生物分析。