Han K-H, Frazier A B
Inje University, School of Nano Engineering, Gimhae, Gyeongnam 621-749, South Korea.
IEE Proc Nanobiotechnol. 2006 Aug;153(4):67-73. doi: 10.1049/ip-nbt:20050019.
The paper presents the characterisation of a continuous paramagnetic capture (PMC) mode magnetophoretic microseparator for separating red and white blood cells from whole blood based on their native magnetic properties. The PMC microseparator separates the blood cells using a high-gradient magnetic separation method without the use of additives such as magnetic tagging. The microseparator is fabricated using microfabrication technology, enabling the integration of micro-scale magnetic flux concentrators in an aqueous micro-environment. Experimental results show that the PMC microseparator can continuously separate out 91.1% of red blood cells from whole blood within 5 min, using an external magnetic flux of 0.2 T from a permanent magnet. Monitoring of white blood cells dyed with a fluorescent probe shows that 87.7% of white blood cells are separated out by the 0.2 T external magnetic flux applied to the PMC microseparator.
本文介绍了一种连续顺磁捕获(PMC)模式的磁泳微分离器,该分离器基于全血中红细胞和白细胞的天然磁性特性,将它们从全血中分离出来。PMC微分离器采用高梯度磁分离方法分离血细胞,无需使用诸如磁性标记等添加剂。该微分离器采用微制造技术制造,能够在水性微环境中集成微尺度磁通量集中器。实验结果表明,使用来自永磁体的0.2 T外部磁通量,PMC微分离器可在5分钟内从全血中连续分离出91.1%的红细胞。对用荧光探针染色的白细胞进行监测表明,施加到PMC微分离器上的0.2 T外部磁通量可分离出87.7%的白细胞。