OAK

A Microfluidic Device For Continuous WBC Separation And Lysis From Whole Blood

Metadata Downloads
Author(s)
Myounggon KimSeung Mo JungKyeong‐Hwan LeeYang Jun KangYang, Sung
Type
Conference Paper
Citation
6th International Conference, pp.996 - 1002
Issued Date
2010-05-07
Abstract
A microfluidic device, which is composed of a blood inlet, a cell lysis solution inlet, a bifurcation outlet containing six microchannels, and a white blood cell (WBC)‐lysed solution outlet, is proposed in this study to separate WBCs from whole blood and lyse the WBCs in a continuous and near real‐time fashion. The geometry of the microfluidic device is determined based on the bifurcation law and a cell crossover method. The microflow patterns of blood cells in the microfluidic channels are simulated by computational fluid dynamics. The simulation results agree with the experiment results by considering the reduction of blood viscosity in the microfluidic channels. The performance of the microfluidic device is evaluated by investigating the WBC recovery efficiency and the ratio of spectrophotometric absorbance of the blood sample at 260 to that at 280 nm. The WBC recovery efficiency at the main channel outlet is 97.2%. The measured spectrophotometric absorbance ratio of 1.82 indicates that the separated WBCs are completely lysed, leaving only pure DNA in the WBC‐lysed solution. The continuous cell separation and lysis is completed within only 0.5 s. Therefore, it is concluded that the proposed microfluidic device is promising for separating WBCs from whole blood without any pretreatment and lysing the WBCs in a continuous and near real‐time fashion. The proposed microfluidic device may be applicable to a lab‐on‐a‐chip for blood analysis.
Publisher
00
Conference Place
US
URI
https://scholar.gist.ac.kr/handle/local/25025
공개 및 라이선스
  • 공개 구분공개
파일 목록
  • 관련 파일이 존재하지 않습니다.

Items in Repository are protected by copyright, with all rights reserved, unless otherwise indicated.