| Literature DB >> 21985235 |
Daria Mamaeva1, Chantal Ripoll, Claire Bony, Marisa Teigell, Florence E Perrin, Bernard Rothhut, Ivan Bieche, Rosette Lidereau, Alain Privat, Valérie Rigau, Hélène Guillon, Florence Vachiery-Lahaye, Daniele Noel, Luc Bauchet, Jean-Philippe Hugnot.
Abstract
BACKGROUND: The adult central nervous system (CNS) contains different populations of immature cells that could possibly be used to repair brain and spinal cord lesions. The diversity and the properties of these cells in the human adult CNS remain to be fully explored. We previously isolated Nestin+ Sox2+ neural multipotential cells from the adult human spinal cord using the neurosphere method (i.e. non adherent conditions and defined medium).Entities:
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Year: 2011 PMID: 21985235 PMCID: PMC3205052 DOI: 10.1186/1471-2202-12-99
Source DB: PubMed Journal: BMC Neurosci ISSN: 1471-2202 Impact factor: 3.288
Figure 1Characterization of proliferating cells isolated from human adult spinal cord. A: Phase contrast photograph of cells (passage 4) isolated from the human spinal cord. Most cells display a mesenchymal morphology. Scale bar = 10 μm. B: Proliferation rate of adherent human cells. Y axis represents the cumulative number of doublings measured at each passage. C, D: QPCR analysis of gene expression in spinal cord cells (red bars) and human fetal brain neural stem cells cultured for 3 passages in serum-containing spinal cord cell medium (blue bars). Y axis represents the expression ratio between the indicated messenger and TBP (TATA binding protein) mRNA. C: Mesenchymal and neural markers. D: Mesenchymal and neural transcription factors. Mes: mesenchymal. NSC: neural stem cells. Neu: neurons. Astro: astrocytes. Oligo: oligodendrocytes. N.D: Not detected.
Figure 2Immunofluorescence characterization. A: Spinal cord cells and human fetal neural stem cells (cultured for 3 passages with serum-containing spinal cord cell medium) were labelled with indicated antibody. Arrows show examples of stained cells. Scale bars = 10 μm. B: Western blot analysis for indicated antibodies. A main band at the expected size is observed for the three antibodies in spinal cord stem cells. SC p6, SC p7: spinal cord cells analysed at passages 6 and 7. MSC: human mesenchymal stem cells isolated from bone marrow.
Figure 3Expression of smooth muscle markers and Nkx6.1 in spinal cord cells. A-F: Immunofluorescence staining of spinal cord cells (A-E) and human mesenchymal stem cells (F). The vast majority of cells (>80%) express Nestin, Acta2, Caldesmon, Calponin and NG2. Nuclear Nkx6.1 staining is detected in Caldesmon+, Calponin+, NG2+ spinal cord cells (C, D, E) but not in human mesenchymal stem cells (F). Scale bars = 10 μm.
Figure 4Nkx6.1 expression in human spinal cord. A: Example of detection of nuclear Nkx6.1 staining (arrow) in a vessel in the human spinal cord parenchyma. B: Example of detection of nuclear Nkx6.1 staining in a vessel (arrow) in the meninges. Scale bars = 10 μm.
Figure 5Co-culture of spinal cord cells with differentiated human fetal brain neural stem cells. Spinal cord cells labelled with GFP-expressing lentivirus (green fluorescence, arrows) do not stain with GFAP, Map2ab, Olig2 and Nkx2.2 antibodies (red) in contrast to neural precursor cells (arrowheads). Scale bars = 10 μm.
Figure 6Mineralization of spinal cord cells. A: Alizarin red S stainings performed on spinal cord cells and on human fetal brain neural stem cells (cultured for 3 passages in serum-containing spinal cord cell medium). Cells were incubated for 14 days in control (left-hand wells) or in osteogenic medium (right-hand wells). High-magnification photographs of corresponding wells are presented on the right-hand side. Scale bars = 10 μm. B: QPCR detection of alkaline phosphatase mRNA in spinal cord cells after 0 and 14 days of differentiation in osteogenic media. Y axis represents the ratio between alkaline phosphatase mRNA (PA) and GAPDH mRNA. This experiment is representative of three independent experiments. C: Detection of alkaline phosphatase activity with naphtol ASBI phosphate/Na3-fast red staining in spinal cord cells and human fetal neural stem cells placed in osteogenic media for 14 days. No staining is detected in neural precursors. D: Characterisation of one clone, representative of 34, derived from the primary human spinal cord culture. Nkx6.1 is detected in the nuclei of most cells. Cells placed in osteogenic differentiation medium for 21 days stained with Alizarine red S. Scale bars = 10 μm.