Prospective identification of cardiac progenitors by a novel single cell‐based cardiomyocyte induction
Autor: | Shin-Ichi Nishikawa, Makoto Takano, Chikashi Shimazu, Kentoku Yanagi, Emi Inoue, Yan Peishi, Mina Hiraoka-Kanie, Jun K. Yamashita, Akiko Nakano, Fumiyo Kita |
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Rok vydání: | 2005 |
Předmět: |
Receptors
CXCR4 Cellular differentiation Cell Separation Biochemistry Genetics Humans Myocytes Cardiac Progenitor cell Molecular Biology Cells Cultured Chemistry Stem Cells Cell Differentiation Anatomy Embryo Mammalian Vascular Endothelial Growth Factor Receptor-2 Embryonic stem cell Cell biology Wnt Proteins Endothelial stem cell Vascular endothelial growth factor B Vascular endothelial growth factor A Hyaluronan Receptors Bone Morphogenetic Proteins Thy-1 Antigens Stromal Cells Stem cell Carrier Proteins Signal Transduction Biotechnology Adult stem cell |
Zdroj: | The FASEB Journal. 19:1534-1536 |
ISSN: | 1530-6860 0892-6638 |
DOI: | 10.1096/fj.04-3540fje |
Popis: | Dissection of cardiomyocyte differentiation process at the cellular level is indispensable in the research for cardiac development and regeneration. Previously, we have established an embryonic stem cell differentiation system that reproduces early vascular development from progenitor cells that express Flk1, a vascular endothelial growth factor receptor, by the combinatory application of 2-dimensional culture and flowcytometry. Here we show that cardiomyocytes can be successfully induced from a single Flk1+ cell on 2-dimensional culture, enabling the direct observation of differentiating cardiomyocytes and the prospective identification of cardiac progenitor potentials. Flk1+ cells could give rise to cardiomyocytes, as well as endothelial cells, from a single cell by the co-culture on OP9 stroma cells in a fusion-independent manner. Among the cell populations in intermediate stages from Flk1+ cells to cardiomyocytes, Flk1+/CXCR4+/vascular endothelial cadherin- cells were cardiac-specific progenitors at the single cell level. Noggin, a bone morphogenetic protein inhibitor, abolished cardiomyocyte differentiation by inhibiting the cardiac progenitor induction. However, wnt inhibitors Dkk-1 or Frizzled-8/Fc chimeric protein augmented, but wnt3a inhibited, cardiomyocyte differentiation. In vitro reproduction of cardiomyocyte differentiation process should be a potent tool for the cellular and molecular elucidation of cardiac development, which would provide various targets for cardiac regeneration. |
Databáze: | OpenAIRE |
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