Owen C S, Moore E
Cell Biophys. 1981 Jun;3(2):141-53. doi: 10.1007/BF02788130.
High Gradient Magnetic Separation (HGMS) is a rapid and straightforward technique that has previously been proven effective in extracting erythrocytes from a flowing cell suspension if the red cell hemoglobin is in a paramagnetic state. In this work it was applied to the enrichment of the small population (less than 2%) of splenocytes from an immune mouse that bound sheep red cells to form rosettes. Samples flowed through the HGMS column in a strong magnetic field where rosettes and free sheep cells were selectively retained. These were subsequently eluted by simply removing the magnetic field. The process required 20-30 min per mouse spleen. Rosettes in the initial sample and in the fractions that passed through, or were retained by the column were enumerated under the microscope. Under the conditions used here, the retained and eluted cells typically showed a 20-50-fold increase in the frequency of rosetted cells, and the cells that passed through the magnet showed 90-100% depletion of rosettes. The recovery of intact rosettes and the overall cell recovery were generally both in the range of 80-90%.
高梯度磁选(HGMS)是一种快速且直接的技术,先前已被证明,如果红细胞血红蛋白处于顺磁状态,该技术能有效地从流动的细胞悬液中提取红细胞。在这项研究中,该技术被用于富集来自免疫小鼠的少量(少于2%)与绵羊红细胞形成花环的脾细胞。样本在强磁场中流经HGMS柱,花环和游离的绵羊细胞被选择性地保留。随后,只需移除磁场即可将它们洗脱。该过程每只小鼠脾脏需要20 - 30分钟。在显微镜下对初始样本以及通过柱子或被柱子保留的组分中的花环进行计数。在此处使用的条件下,保留和洗脱的细胞中花环细胞的频率通常增加20 - 50倍,而通过磁体的细胞中花环减少90 - 100%。完整花环的回收率和总体细胞回收率通常都在80 - 90%的范围内。