A microfluidic system for detection of cholangiocarcinoma cells by using heparan sulfate octasaccharides

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Abstract

This study reports a magnetic-bead based microfluidic system to capture cholangiocarcinoma cells by using structurally well-defined heparan sulfate (HS) octasaccharides. Ten synthetic HS octasaccharides (from SCH-43 to SCH-52) were coated on magnetic beads for this study, respectively. An integrated microfluidic system equipped with micromixers, normally-closed valves, and microchambers was developed such that the entire cancer cell isolation process could be automated. The experimental results have revealed that SCH-45 and SCH-46 of 100 μM-coated magnetic beads were capable to capture more than 70% of Huh28 cells, which is higher than the one by using epithelial cell adhesion molecule (EpCAM)-coated beads. Furthermore, they also exhibited high specificity toward target cells. It is the first time that HS octasaccharides were demonstrated as an excellent affinity reagent for cancer cell isolation.

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Tsai, W. C., Hung, L. Y., Huang, T. Y., Shan, Y. S., Hung, S. C., & Lee, G. B. (2017). A microfluidic system for detection of cholangiocarcinoma cells by using heparan sulfate octasaccharides. In 2017 IEEE 12th International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2017 (pp. 489–493). Institute of Electrical and Electronics Engineers Inc. https://doi.org/10.1109/NEMS.2017.8017070

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