Thomas T E, Abraham S J, Otter A J, Blackmore E W, Lansdorp P M
Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, Canada.
J Immunol Methods. 1992 Oct 2;154(2):245-52. doi: 10.1016/0022-1759(92)90198-3.
The possibility of separating cells on the basis of levels of antigen expression was explored in a model system using fixed erythrocytes and high gradient magnetic separation (HGMS). Fixed human erythrocytes were labelled to varying degrees with tetrameric monoclonal antibody complexes specific for both dextran and glycophorin A-M. The cells were then mixed and incubated with dextran iron particles prior to magnetic separation. The small size of the dextran iron particles (less than 0.2 microns) resulted in quantitative magnetic labelling of cells as shown using fluoresceinated anti-dextran antibodies and flow cytometry. The relationships between the initial percentage of labelled cells, cell recovery, non-specific entrapment of unlabelled cells, the purity of the removed fraction, the degree of antigen expression and separation conditions (flow rate and field strength) were determined and used to establish separation conditions that allowed recovery of cells that differ only in the degree of antibody labelling.
在一个使用固定红细胞和高梯度磁分离(HGMS)的模型系统中,研究了基于抗原表达水平分离细胞的可能性。用对葡聚糖和血型糖蛋白A - M均具有特异性的四聚体单克隆抗体复合物对固定的人红细胞进行不同程度的标记。然后将细胞混合,并在磁分离之前与葡聚糖铁颗粒一起孵育。葡聚糖铁颗粒的小尺寸(小于0.2微米)导致细胞的定量磁标记,如使用荧光素化抗葡聚糖抗体和流式细胞术所显示的那样。确定了标记细胞的初始百分比、细胞回收率、未标记细胞的非特异性截留、去除部分的纯度、抗原表达程度与分离条件(流速和场强)之间的关系,并用于建立分离条件,从而能够回收仅在抗体标记程度上有所不同的细胞。