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Automated Dielectrophoretic Tweezers-Based Force Spectroscopy System in a Microfluidic Device

Authors
Kim, Min HyungLee, JeongjickNam, KihwanPark, In SooSon, MyeongguKo, HyunchulLee, SangyoupYoon, Dae SungChang, Woo-JinLee, Sei YoungYoon, Young RoLee, Sang Woo
Issue Date
Oct-2017
Publisher
MDPI
Keywords
dielectrophoresis; force spectroscopy; force loading rate; intermolecular weak binding interactions
Citation
SENSORS, v.17, no.10
Indexed
SCIE
SCOPUS
Journal Title
SENSORS
Volume
17
Number
10
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/82072
DOI
10.3390/s17102272
ISSN
1424-8220
Abstract
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.
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