Kim Min Hyung, Lee Jeongjick, Nam Kihwan, Park In Soo, Son Myeonggu, Ko Hyunchul, Lee Sangyoup, Yoon Dae Sung, Chang Woo-Jin, Lee Sei Young, Yoon Young Ro, Lee Sang Woo
Department of Biomedical Engineering, Yonsei University, Wonju 220-710, Korea.
Biomedical Research Institute, Korea Institute of Science and Technology, Seoul 136-791, Korea.
Sensors (Basel). 2017 Oct 4;17(10):2272. doi: 10.3390/s17102272.
We reported an automated dielectrophoretic (DEP) tweezers-based force spectroscopy system to examine intermolecular weak binding interactions, which consists of three components: (1) interdigitated electrodes and micro-sized polystyrene particles used as DEP tweezers and probes inside a microfluidic device, along with an arbitrary function generator connected to a high voltage amplifier; (2) microscopy hooked up to a high-speed charge coupled device (CCD) camera with an image acquisition device; and (3) a computer aid control system based on the LabVIEW program. Using this automated system, we verified the measurement reliability by measuring intermolecular weak binding interactions, such as hydrogen bonds and Van der Waals interactions. In addition, we also observed the linearity of the force loading rates, which is applied to the probes by the DEP tweezers, by varying the number of voltage increment steps and thus affecting the linearity of the force loading rates. This system provides a simple and low-cost platform to investigate intermolecular weak binding interactions.
我们报道了一种基于自动介电泳(DEP)镊子的力谱系统,用于检测分子间的弱结合相互作用,该系统由三个部分组成:(1)微流控装置内用作DEP镊子和探针的叉指电极及微米级聚苯乙烯颗粒,以及连接到高压放大器的任意函数发生器;(2)与带有图像采集装置的高速电荷耦合器件(CCD)相机相连的显微镜;(3)基于LabVIEW程序的计算机辅助控制系统。使用这个自动化系统,我们通过测量分子间的弱结合相互作用(如氢键和范德华相互作用)验证了测量的可靠性。此外,我们还通过改变电压增量步长来观察DEP镊子施加在探针上的力加载速率的线性,从而影响力加载速率的线性。该系统为研究分子间弱结合相互作用提供了一个简单且低成本的平台。