Son Myeonggu, Choi Seungyeop, Ko Kwan Hwi, Kim Min Hyung, Lee Sei-Young, Key Jaehong, Yoon Young-Ro, Park In Soo, Lee Sang Woo
Department of Biomedical Engineering, Yonsei University , Wonju 26493, Republic of Korea.
Langmuir. 2016 Jan 26;32(3):922-7. doi: 10.1021/acs.langmuir.5b03677. Epub 2016 Jan 6.
Characterization of the stiffness of multiple particles trapped by tweezers-based force spectroscopy is a key step in building simple, high-throughput, and robust systems that can investigate the molecular interactions in a biological process, but the technology to characterize it in a given environment simultaneously is still lacking. We first characterized the stiffness of multiple particles trapped by dielectrophoretic (DEP) tweezers inside a microfluidic device. In this characterization, we developed a method to measure the thermal fluctuations of the trapped multiple particles with DEP tweezers by varying the heights of the particles in the given environment at the same time. Using the data measured in this controlled environment, we extracted the stiffness of the trapped particles and calculated their force. This study not only provides a simple and high-throughput method to measure the trap stiffness of multiple particles inside a microfluidic device using DEP tweezers but also inspires the application of the trapped multiple particles to investigate the dynamics in molecular interactions.
基于镊子的力谱法对多个捕获粒子的刚度进行表征,是构建能够研究生物过程中分子相互作用的简单、高通量且稳健系统的关键步骤,但在给定环境中同时对其进行表征的技术仍然缺乏。我们首先对微流控装置内通过介电泳(DEP)镊子捕获的多个粒子的刚度进行了表征。在该表征过程中,我们开发了一种方法,通过在给定环境中同时改变粒子的高度,利用DEP镊子测量捕获的多个粒子的热涨落。利用在这个可控环境中测量的数据,我们提取了捕获粒子的刚度并计算了它们的力。这项研究不仅提供了一种简单且高通量的方法,用于使用DEP镊子测量微流控装置内多个粒子的捕获刚度,还激发了将捕获的多个粒子应用于研究分子相互作用动力学的灵感。