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High throughput microfluidic drug screening system for corneal epithelial wound healing

Authors
Lee, RinaKim, HongbinKim, HoonLee, JinhoCho, Kyong JinKim, Jeongyun
Issue Date
Dec-2023
Publisher
Institute of Physics Publishing
Keywords
corneal epithelial wound healing; high throughput microfluidic system; ursolic acid
Citation
Journal of Micromechanics and Microengineering, v.33, no.12
Indexed
SCIE
SCOPUS
Journal Title
Journal of Micromechanics and Microengineering
Volume
33
Number
12
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/68582
DOI
10.1088/1361-6439/ad0aeb
ISSN
0960-1317
1361-6439
Abstract
In this study, we developed a microfluidic in vitro wound healing model to overcome the existing limitations of traditional experimental methods in quantifying cell migration. We manufactured a microfluidic system equipped with a gradient concentration generator to control the reagent density and with microvalves so the wound masking pattern could be automatically controlled by a programmable Arduino board. A wound healing experiment of human corneal epithelial cells (HCE-T cells) using eight different concentrations of ursolic acid with eight replicates was conducted simultaneously using our microfluidic system. A microfluidic in vitro wound healing model using HCE-T cells involving a programmable Arduino board for automatic process control was established to provide a well-controlled concentration gradient to determine the optimal concentration of ursolic acid in the wound healing process. The migration of cells according to different concentrations of ursolic acid was achieved easily, quickly, and reliably, and the effect of ursolic acid in promoting cell migration was confirmed. We demonstrated that our system effectively provides an appropriate environment for in vitro wound healing studies and is expected to be an advanced tool and an economically efficient, robust, and reliable platform to study and evaluate new wound healing drugs in vitro. © 2023 IOP Publishing Ltd
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사범대학 (물리교육과)
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