Biophysics and Cellular Biotechnology Department, Faculty of Medicine, Carol Davila University of Medicine and Pharmacy, 8 Eroii Sanitari Blvd., 050474, Bucharest, Romania.
Excellence Center for Research in Biophysics and Cellular Biotechnology, Carol Davila University of Medicine and Pharmacy, 050474, Bucharest, Romania.
Sci Rep. 2024 Feb 21;14(1):4330. doi: 10.1038/s41598-024-54350-z.
The therapeutic use of mesenchymal stem cells (MSCs) becomes more and more important due to their potential for cell replacement procedures as well as due to their immunomodulatory properties. However, protocols for MSCs differentiation can be lengthy and may result in incomplete or asynchronous differentiation. To ensure homogeneous populations for therapeutic purposes, it is crucial to develop protocols for separation of the different cell types after differentiation. In this article we show that, when MSCs start to differentiate towards adipogenic or osteogenic progenies, their dielectrophoretic behavior changes. The values of cell electric parameters which can be obtained by dielectrophoretic measurements (membrane permittivity, conductivity, and cytoplasm conductivity) change before the morphological features of differentiation become microscopically visible. We further demonstrate, by simulation, that these electric modifications make possible to separate cells in their early stages of differentiation by using the dielectrophoretic separation technique. A label free method which allows obtaining cultures of homogenously differentiated cells is thus offered.
间充质干细胞(MSCs)的治疗用途由于其细胞替代程序的潜力以及其免疫调节特性而变得越来越重要。然而,MSCs 分化的方案可能会很冗长,并且可能导致不完全或不同步的分化。为了确保治疗目的的同质群体,开发分化后分离不同细胞类型的方案至关重要。在本文中,我们表明,当 MSCs 开始向脂肪生成或成骨祖细胞分化时,它们的介电泳行为会发生变化。通过介电泳测量(膜介电常数、电导率和细胞质电导率)获得的细胞电参数值在分化的形态特征在显微镜下可见之前就发生了变化。我们进一步通过模拟证明,这些电修饰使得通过介电泳分离技术在分化的早期阶段分离细胞成为可能。因此,提供了一种无需标记的方法,可以获得均一分化的细胞培养物。