Infantile hemangioma is a benign endothelial tumor composed of disorganized blood vessels. It exhibits a unique life cycle of rapid postnatal growth followed by slow regression to a fibrofatty residuum. Here, we have reported the isolation of multipotential stem cells from hemangioma tissue that give rise to hemangioma-like lesions in immunodeficient mice. Cells were isolated based on expression of the stem cell marker CD133 and expanded from single cells as clonal populations. The CD133-selected cells generated human blood vessels 7 days after implantation in immunodeficient mice. Cell retrieval experiments showed the cells could again form vessels when transplanted into secondary recipients. The human vessels expressed GLUT-1 and merosin, immunodiagnostic markers for infantile hemangioma. Two months after implantation, the number of blood vessels diminished and human adipocytes became evident. Lentiviral expression of GFP was used to confirm that the hemangioma-derived cells formed the blood vessels and adipocytes in the immunodeficient mice. Thus, when transplanted into immunodeficient mice, hemangioma-derived cells recapitulated the unique evolution of infantile hemangioma — the formation of blood vessels followed by involution to fatty tissue. In summary, this study identifies a stem cell as the cellular origin of infantile hemangioma and describes for what we believe is the first time an animal model for this common tumor of infancy.
Zia A. Khan, Elisa Boscolo, Arnaud Picard, Sarah Psutka, Juan M. Melero-Martin, Tatianna C. Bartch, John B. Mulliken, Joyce Bischoff
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Nature Medicine | 2011 |
Isolation, characterization, and in vitro propagation of infantile hemangioma stem cells and an in vivo mouse model
D Xu, TM O, A Shartava, TC Fowles, J Yang, LM Fink, DC Ward, MC Mihm, M Waner, Y Ma |
Journal of Hematology & Oncology | 2011 |
Expression of HES and HEY genes in infantile hemangiomas
O Adepoju, A Wong, A Kitajewski, K Tong, E Boscolo, J Bischoff, J Kitajewski, JK Wu |
Vascular cell | 2011 |
Recapitulation of Fibromatosis Nodule by Multipotential Stem Cells in Immunodeficient Mice
JP Wang, YJ Hui, ST Wang, HH Yu, YC Huang, ER Chiang, CL Liu, TH Chen, SC Hung |
PloS one | 2011 |
Hemangiomas revisited: the useful, the unusual and the new: Part 1: overview and clinical and imaging characteristics
R Restrepo, R Palani, LF Cervantes, AM Duarte, I Amjad, NR Altman |
Pediatric Radiology | 2011 |
A switch in Notch gene expression parallels stem cell to endothelial transition in infantile hemangioma
JK Wu, O Adepoju, DD Silva, K Baribault, E Boscolo, J Bischoff, J Kitajewski |
Angiogenesis | 2010 |
Corticosteroid suppression of VEGF-A in infantile hemangioma-derived stem cells
S Greenberger, E Boscolo, I Adini, JB Mulliken, J Bischoff |
The New England journal of medicine | 2010 |
Targeting NF-κB in infantile hemangioma-derived stem cells reduces VEGF-A expression
S Greenberger, I Adini, E Boscolo, JB Mulliken, J Bischoff |
Angiogenesis | 2010 |
Spontaneous immortalization of human dermal microvascular endothelial cells
M Jiang, Y Min, L Debusk, S Fernandez, DW Strand, SW Hayward, PC Lin |
World journal of stem cells | 2010 |
Pulmonary surfactant: an immunological perspective
ZC Chroneos, Z Sever-Chroneos, VL Shepherd |
Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology | 2009 |
A Potential Role for Notch Signaling in the Pathogenesis and Regulation of Hemangiomas
JK Wu, JK Kitajewski |
Journal of Craniofacial Surgery | 2009 |
Vasculogenesis in infantile hemangioma
E Boscolo, J Bischoff |
Angiogenesis | 2009 |
Progenitor cells in infantile hemangioma
J Bischoff |
The Journal of craniofacial surgery | 2009 |
From germline towards somatic mutations in the pathophysiology of vascular anomalies
N Limaye, LM Boon, M Vikkula |
Human Molecular Genetics | 2009 |
Tumor endothelial cells have features of adult stem cells
Dudley AC, Klagsbrun M |
Cell cycle (Georgetown, Tex.) | 2009 |