O2 level controls hematopoietic circulating progenitor cells differentiation into endothelial or smooth muscle cells.

BACKGROUND:Recent studies showed that progenitor cells could differentiate into mature vascular cells. The main physiological factors implicated in cell differentiation are specific growth factors. We hypothesized that simply by varying the oxygen content, progenitor cells can be differentiated eith...

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Main Authors: Nicolas Berthelemy, Halima Kerdjoudj, Pierre Schaaf, Christine Prin-Mathieu, Patrick Lacolley, Jean-François Stoltz, Jean-Claude Voegel, Patrick Menu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2678195?pdf=render
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spelling doaj-8006c86fa5ed4119889419084608eb202020-11-25T01:22:52ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-01-0145e551410.1371/journal.pone.0005514O2 level controls hematopoietic circulating progenitor cells differentiation into endothelial or smooth muscle cells.Nicolas BerthelemyHalima KerdjoudjPierre SchaafChristine Prin-MathieuPatrick LacolleyJean-François StoltzJean-Claude VoegelPatrick MenuBACKGROUND:Recent studies showed that progenitor cells could differentiate into mature vascular cells. The main physiological factors implicated in cell differentiation are specific growth factors. We hypothesized that simply by varying the oxygen content, progenitor cells can be differentiated either in mature endothelial cells (ECs) or contractile smooth muscle cells (SMCs) while keeping exactly the same culture medium. METHODOLOGY/PRINCIPAL FINDINGS:Mononuclear cells were isolated by density gradient were cultivated under hypoxic (5% O2) or normoxic (21% O2) environment. Differentiated cells characterization was performed by confocal microscopy examination and flow cytometry analyses. The phenotype stability over a longer time period was also performed. The morphological examination of the confluent obtained cells after several weeks (between 2 and 4 weeks) showed two distinct morphologies: cobblestone shape in normoxia and a spindle like shape in hypoxia. The cell characterization showed that cobblestone cells were positive to ECs markers while spindle like shape cells were positive to contractile SMCs markers. Moreover, after several further amplification (until 3(rd) passage) in hypoxic or normoxic conditions of the previously differentiated SMC, immunofluorescence studies showed that more than 80% cells continued to express SMCs markers whatever the cell environmental culture conditions with a higher contractile markers expression compared to control (aorta SMCs) signature of phenotype stability. CONCLUSION/SIGNIFICANCE:We demonstrate in this paper that in vitro culture of peripheral blood mononuclear cells with specific angiogenic growth factors under hypoxic conditions leads to SMCs differentiation into a contractile phenotype, signature of their physiological state. Moreover after amplification, the differentiated SMC did not reverse and keep their contractile phenotype after the 3rd passage performed under hypoxic and normoxic conditions. These aspects are of the highest importance for tissue engineering strategies. These results highlight also the determinant role of the tissue environment in the differentiation process of vascular progenitor cells.http://europepmc.org/articles/PMC2678195?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Nicolas Berthelemy
Halima Kerdjoudj
Pierre Schaaf
Christine Prin-Mathieu
Patrick Lacolley
Jean-François Stoltz
Jean-Claude Voegel
Patrick Menu
spellingShingle Nicolas Berthelemy
Halima Kerdjoudj
Pierre Schaaf
Christine Prin-Mathieu
Patrick Lacolley
Jean-François Stoltz
Jean-Claude Voegel
Patrick Menu
O2 level controls hematopoietic circulating progenitor cells differentiation into endothelial or smooth muscle cells.
PLoS ONE
author_facet Nicolas Berthelemy
Halima Kerdjoudj
Pierre Schaaf
Christine Prin-Mathieu
Patrick Lacolley
Jean-François Stoltz
Jean-Claude Voegel
Patrick Menu
author_sort Nicolas Berthelemy
title O2 level controls hematopoietic circulating progenitor cells differentiation into endothelial or smooth muscle cells.
title_short O2 level controls hematopoietic circulating progenitor cells differentiation into endothelial or smooth muscle cells.
title_full O2 level controls hematopoietic circulating progenitor cells differentiation into endothelial or smooth muscle cells.
title_fullStr O2 level controls hematopoietic circulating progenitor cells differentiation into endothelial or smooth muscle cells.
title_full_unstemmed O2 level controls hematopoietic circulating progenitor cells differentiation into endothelial or smooth muscle cells.
title_sort o2 level controls hematopoietic circulating progenitor cells differentiation into endothelial or smooth muscle cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2009-01-01
description BACKGROUND:Recent studies showed that progenitor cells could differentiate into mature vascular cells. The main physiological factors implicated in cell differentiation are specific growth factors. We hypothesized that simply by varying the oxygen content, progenitor cells can be differentiated either in mature endothelial cells (ECs) or contractile smooth muscle cells (SMCs) while keeping exactly the same culture medium. METHODOLOGY/PRINCIPAL FINDINGS:Mononuclear cells were isolated by density gradient were cultivated under hypoxic (5% O2) or normoxic (21% O2) environment. Differentiated cells characterization was performed by confocal microscopy examination and flow cytometry analyses. The phenotype stability over a longer time period was also performed. The morphological examination of the confluent obtained cells after several weeks (between 2 and 4 weeks) showed two distinct morphologies: cobblestone shape in normoxia and a spindle like shape in hypoxia. The cell characterization showed that cobblestone cells were positive to ECs markers while spindle like shape cells were positive to contractile SMCs markers. Moreover, after several further amplification (until 3(rd) passage) in hypoxic or normoxic conditions of the previously differentiated SMC, immunofluorescence studies showed that more than 80% cells continued to express SMCs markers whatever the cell environmental culture conditions with a higher contractile markers expression compared to control (aorta SMCs) signature of phenotype stability. CONCLUSION/SIGNIFICANCE:We demonstrate in this paper that in vitro culture of peripheral blood mononuclear cells with specific angiogenic growth factors under hypoxic conditions leads to SMCs differentiation into a contractile phenotype, signature of their physiological state. Moreover after amplification, the differentiated SMC did not reverse and keep their contractile phenotype after the 3rd passage performed under hypoxic and normoxic conditions. These aspects are of the highest importance for tissue engineering strategies. These results highlight also the determinant role of the tissue environment in the differentiation process of vascular progenitor cells.
url http://europepmc.org/articles/PMC2678195?pdf=render
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