미세유동시스템 내에서의 입자의 위치제어 연구
- Author(s)
- 허윤석
- Keimyung Author(s)
- Heo, Yun Seok
- Department
- Dept. of Biomedical Engineering (의용공학과)
- Journal Title
- 한국정밀공학회지
- Issued Date
- 2014
- Volume
- 31
- Issue
- 6
- Keyword
- Microfluidics; Herringbone Chip; Circulating tumor cell; Ovarian cancer; Motion of Particle; microfluidics; herringbonechip; circulatingtumorcell; ovariancancer; motionofparticle
- Abstract
- Circulating tumor cells (CTCs) in the bloodstream of cancer patients provide an accessible source for detection, characterization, and monitoring of nonhematological cancers. The effectiveness of the CTC-Chip for the isolation of ovarian cancer cells was demonstrated by adapting the herringbone-chip (HB-Chip). The motions of the particles on the HB chip were simulated by a unique combination of buoyant, gravitational forces, and helical flows with a computational modeling. The motions of cells are demonstrated by applying polystylene bead and ovarian cancer cells into the microfabricated HB-Chip. The experimental results from beads and cells are well accordance with the simulated ones, as previously reported by Toner group. Thus, I expect that these modeling and experimental skills will play key roles in the clinical applications on CTC isolation as well as the basic research on characterization of CTCs under flow.
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