Literature DB >> 23940503

Biomarker-free dielectrophoretic sorting of differentiating myoblast multipotent progenitor cells and their membrane analysis by Raman spectroscopy.

Massimo Muratore1, Vlastimil Srsen, Martin Waterfall, Andrew Downes, Ronald Pethig.   

Abstract

Myoblasts are muscle derived mesenchymal stem cell progenitors that have great potential for use in regenerative medicine, especially for cardiomyogenesis grafts and intracardiac cell transplantation. To utilise such cells for pre-clinical and clinical applications, and especially for personalized medicine, it is essential to generate a synchronised, homogenous, population of cells that display phenotypic and genotypic homogeneity within a population of cells. We demonstrate that the biomarker-free technique of dielectrophoresis (DEP) can be used to discriminate cells between stages of differentiation in the C2C12 myoblast multipotent mouse model. Terminally differentiated myotubes were separated from C2C12 myoblasts to better than 96% purity, a result validated by flow cytometry and Western blotting. To determine the extent to which cell membrane capacitance, rather than cell size, determined the DEP response of a cell, C2C12 myoblasts were co-cultured with GFP-expressing MRC-5 fibroblasts of comparable size distributions (mean diameter ∼10 μm). A DEP sorting efficiency greater than 98% was achieved for these two cell types, a result concluded to arise from the fibroblasts possessing a larger membrane capacitance than the myoblasts. It is currently assumed that differences in membrane capacitance primarily reflect differences in the extent of folding or surface features of the membrane. However, our finding by Raman spectroscopy that the fibroblast membranes contained a smaller proportion of saturated lipids than those of the myoblasts suggests that the membrane chemistry should also be taken into account.

Entities:  

Year:  2012        PMID: 23940503      PMCID: PMC3432085          DOI: 10.1063/1.4746252

Source DB:  PubMed          Journal:  Biomicrofluidics        ISSN: 1932-1058            Impact factor:   2.800


  36 in total

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3.  Utilizing stem cells for myocardial repair--to differentiate or not to differentiate prior to transplantation?

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4.  Marker-specific sorting of rare cells using dielectrophoresis.

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5.  Measuring single-cell density.

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6.  Quantitative analysis of phospholipids in functionally important membrane domains from RBL-2H3 mast cells using tandem high-resolution mass spectrometry.

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7.  Quantitative analysis of biological membrane lipids at the low picomole level by nano-electrospray ionization tandem mass spectrometry.

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9.  Multitarget dielectrophoresis activated cell sorter.

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  15 in total

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2.  Dielectric characterization of costal cartilage chondrocytes.

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3.  Increasing label-free stem cell sorting capacity to reach transplantation-scale throughput.

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Review 6.  Hydrodynamic mechanisms of cell and particle trapping in microfluidics.

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7.  New insights into anhydrobiosis using cellular dielectrophoresis-based characterization.

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Review 8.  Separation of neural stem cells by whole cell membrane capacitance using dielectrophoresis.

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9.  Membrane biophysics define neuron and astrocyte progenitors in the neural lineage.

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10.  Dielectrophoresis based discrimination of human embryonic stem cells from differentiating derivatives.

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