4.7 Article

Human chondrogenic paraxial mesoderm, directed specification and prospective isolation from pluripotent stem cells

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SCIENTIFIC REPORTS
卷 2, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/srep00455

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  1. Brown Foundation Institute of Molecular Medicine UTHSC (Startup Fund)
  2. Rolanette and Berdon Lawrence Bone Disease Program of Texas Research Award
  3. Grants-in-Aid for Scientific Research [24591507] Funding Source: KAKEN

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Directed specification and prospective isolation of chondrogenic paraxial mesoderm progeny from human pluripotent stem ( PS) cells have not yet been achieved. Here we report the successful generation of KDR(-)PDGFR alpha(+) progeny expressing paraxial mesoderm genes and the mesendoderm reporter MIXL1-GFP in a chemically defined medium containing the canonical WNT signaling activator, BMP-inhibitor, and the Nodal/Activin/TGF beta signaling controller. Isolated (GFP(+)) KDR(-)PDGFR alpha(+) mesoderm cells were sensitive to sequential addition of the three chondrogenic factors PDGF, TGF beta and BMP. Under these conditions, the cells showed robust chondrogenic activity in micromass culture, and generated a hyaline-like translucent cartilage particle in serum-free medium. In contrast, both STRO1(+) mesenchymal stem/stromal cells from adult human marrow and mesenchymal cells spontaneously arising from hPS cells showed a relatively weaker chondrogenic response in vitro, and formed more of the fibrotic cartilage particles. Thus, hPS cell-derived KDR(-)PDGFR alpha(+) paraxial mesoderm-like cells have potential in engineered cartilage formation and cartilage repair.

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