Soe Mi Thant Mon, Spiller Kara L, Noh Moses
Mechanical Engineering and Mechanics, Drexel University, Philadelphia, Pennsylvania, USA.
School of Biomedical Engineering, Science and Health Systems, Drexel University, Philadelphia, Pennsylvania, USA.
Electrophoresis. 2022 Dec;43(23-24):2440-2452. doi: 10.1002/elps.202200046. Epub 2022 Oct 9.
Different macrophage phenotypes play important roles in diverse biological processes and diseases. In this study, we have characterized the dielectrophoretic responses of human monocytes and macrophage phenotypes: nonactivated (M0), pro-inflammatory (M1), and pro-healing (M2a). Dielectrophoretic responses of cells change as a function of frequency of the applied electric field. We measured the crossover frequency at which cells transition from negative to positive dielectrophoresis (DEP) or vice versa using interdigitated electrodes. For these characterization experiments, we also developed a new low-conductivity media formulation that retained 100% of the initial viability for 1 h. Human THP1 monocytes showed a distinguishable DEP response from mature macrophages. M1 macrophages also showed a distinct DEP response compared to M0 and M2a macrophages. No clear distinction could be drawn between M0 and M2a. The median values of the crossover frequencies of monocytes, M0, M1, and M2a were 38, 21, 11, and 23 kHz, respectively. Membrane capacitances of these cells were calculated consequently, and the values were 0.0111, 0.0128, 0.0244, and 0.0117 F/m for monocytes, M0, M1, and M2a, respectively. These results show how bioelectric properties are influenced by changes in macrophage phenotype.
不同的巨噬细胞表型在多种生物学过程和疾病中发挥着重要作用。在本研究中,我们已经对人类单核细胞和巨噬细胞表型(非活化型(M0)、促炎型(M1)和促愈合型(M2a))的介电泳响应进行了表征。细胞的介电泳响应会随着所施加电场频率的变化而改变。我们使用叉指电极测量了细胞从负介电泳(DEP)转变为正介电泳或反之的交叉频率。对于这些表征实验,我们还开发了一种新的低电导率培养基配方,该配方在1小时内保持了100%的初始活力。人类THP1单核细胞显示出与成熟巨噬细胞不同的DEP响应。与M0和M2a巨噬细胞相比,M1巨噬细胞也显示出独特的DEP响应。M0和M2a之间没有明显区别。单核细胞、M0、M1和M2a的交叉频率中值分别为38、21、11和23kHz。因此计算了这些细胞的膜电容,单核细胞、M0、M1和M2a的值分别为0.0111、0.0128、0.0244和0.0117F/m。这些结果表明巨噬细胞表型的变化如何影响生物电特性。