School of Electronic and Electrical Engineering, University of Leeds, Woodhouse Lane, Leeds, West Yorkshire, LS2 9JT, UK.
University of Leeds, Department of Oral Biology, Leeds School of Dentistry, Leeds, UK.
Sci Rep. 2017 Feb 2;7:41872. doi: 10.1038/srep41872.
The ability to isolate specific, viable cell populations from mixed ensembles with minimal manipulation and within intra-operative time would provide significant advantages for autologous, cell-based therapies in regenerative medicine. Current cell-enrichment technologies are either slow, lack specificity and/or require labelling. Thus a rapid, label-free separation technology that does not affect cell functionality, viability or phenotype is highly desirable. Here, we demonstrate separation of viable from non-viable human stromal cells using remote dielectrophoresis, in which an electric field is coupled into a microfluidic channel using shear-horizontal surface acoustic waves, producing an array of virtual electrodes within the channel. This allows high-throughput dielectrophoretic cell separation in high conductivity, physiological-like fluids, overcoming the limitations of conventional dielectrophoresis. We demonstrate viable/non-viable separation efficacy of >98% in pre-purified mesenchymal stromal cells, extracted from human dental pulp, with no adverse effects on cell viability, or on their subsequent osteogenic capabilities.
从混合群体中分离出具有特定功能、存活的细胞群体,且尽量减少操作并在手术过程中完成,这将为再生医学中的自体、基于细胞的治疗提供显著优势。目前的细胞富集技术要么速度较慢,特异性不足,要么需要标记。因此,人们非常希望有一种快速、无需标记且不会影响细胞功能、活力或表型的分离技术。在这里,我们展示了使用远程电介质电泳分离有活力和无活力的人类基质细胞,其中电场通过切向水平表面声波耦合到微流道中,在通道内产生一系列虚拟电极。这使得在高导电性、类似生理的流体中可以进行高通量的介电泳细胞分离,克服了传统介电泳的局限性。我们证明了从人牙髓中提取的预纯化间充质基质细胞的有活力/无活力分离效率>98%,对细胞活力或随后的成骨能力没有不良影响。