Institute of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, Ontario M5S 3G9, Canada.
University of Kragujevac, Kragujevac, Serbia.
Biomicrofluidics. 2013 Feb 13;7(1):14110. doi: 10.1063/1.4791649. eCollection 2013.
The majority of available cardiomyocyte markers are intercellular proteins, limiting our ability to enrich live cardiomyocytes from heterogeneous cell preparations in the absence of genetic labeling. Here, we describe enrichment of live cardiomyocytes from the hearts of adult mice in a label-free microfluidic approach. The separation device consisted of a vertical column (15 mm long, 700 μm diameter), placed between permanent magnets resulting in a field strength of 1.23 T. To concentrate the field at the column wall, the column was wrapped with 69 μm diameter nickel wire. Before passing the cells through the column, the cardiomyocytes in the cell suspension had been rendered paramagnetic by treatment of the adult mouse heart cell preparation with sodium nitrite (2.5 mM) for 20 min on ice. The cell suspension was loaded into the vertical column from the top and upon settling, the non-myocytes were removed by the upward flow from the column. The cardiomyocytes were then collected from the column by applying a higher flow rate (144 μl/min). We found that by applying a separation flow rate of 4.2 μl/min in the first step, we can enrich live adult cardiomyocytes to 93% ± 2% in a label-free manner. The cardiomyocytes maintained viability immediately after separation and upon 24 h in culture.
大多数可用的心肌细胞标志物都是细胞间蛋白,这限制了我们在没有遗传标记的情况下,从异质细胞制剂中富集活心肌细胞的能力。在这里,我们描述了一种无标记的微流控方法,从成年小鼠心脏中富集活心肌细胞。分离装置由一个垂直柱(长 15mm,直径 700μm)组成,放置在永久磁铁之间,产生 1.23T 的磁场强度。为了将磁场集中在柱壁上,柱体用 69μm 直径的镍丝缠绕。在将细胞通过柱体之前,通过用亚硝酸钠(2.5mM)处理成年小鼠心脏细胞制剂 20 分钟,使冰上的心肌细胞具有顺磁性。细胞悬浮液从顶部装入垂直柱体,当沉降时,非心肌细胞通过柱体的向上流动被去除。然后通过施加更高的流速(144μl/min)从柱体收集心肌细胞。我们发现,通过在第一步施加 4.2μl/min 的分离流速,可以无标记地将活的成年心肌细胞富集到 93%±2%。分离后和培养 24 小时后,心肌细胞立即保持活力。