[1] |
Anderson, H., Patch, T.C., Reddy, P.N. et al. Hematopoietic stem cells develop in the absence of endothelial cadherin 5 expression Blood, 126 (2015),pp. 2811-2820
|
[2] |
Bertrand, J.Y., Chi, N.C., Santoso, B. et al. Haematopoietic stem cells derive directly from aortic endothelium during development Nature, 464 (2010),pp. 108-111
|
[3] |
Breier, G., Breviario, F., Caveda, L. et al. Molecular cloning and expression of murine vascular endothelial-cadherin in early stage development of cardiovascular system Blood, 87 (1996),pp. 630-641
|
[4] |
Carmeliet, P., Lampugnani, M.G., Moons, L. et al. Targeted deficiency or cytosolic truncation of the VE-cadherin gene in mice impairs VEGF-mediated endothelial survival and angiogenesis Cell, 98 (1999),pp. 147-157
|
[5] |
Chen, M.J., Yokomizo, T., Zeigler, B.M. et al. Runx1 is required for the endothelial to haematopoietic cell transition but not thereafter Nature, 457 (2009),pp. 887-891
|
[6] |
Cumano, A., Godin, I. Ontogeny of the hematopoietic system Annu. Rev. Immunol., 25 (2007),pp. 745-785
|
[7] |
Ferkowicz, M.J., Starr, M., Xie, X. et al. CD41 expression defines the onset of primitive and definitive hematopoiesis in the murine embryo Development, 130 (2003),pp. 4393-4403
|
[8] |
Fraser, S.T., Ogawa, M., Yu, R.T. et al. Definitive hematopoietic commitment within the embryonic vascular endothelial-cadherin(+) population Exp. Hematol., 30 (2002),pp. 1070-1078
|
[9] |
Jin, H., Xu, J., Wen, Z. Migratory path of definitive hematopoietic stem/progenitor cells during zebrafish development Blood, 109 (2007),pp. 5208-5214
|
[10] |
Katayama, Y., Hidalgo, A., Peired, A. et al. Integrin alpha4beta7 and its counterreceptor MAdCAM-1 contribute to hematopoietic progenitor recruitment into bone marrow following transplantation Blood, 104 (2004),pp. 2020-2026
|
[11] |
Kissa, K., Herbomel, P. Blood stem cells emerge from aortic endothelium by a novel type of cell transition Nature, 464 (2010),pp. 112-115
|
[12] |
Larson, J.D., Wadman, S.A., Chen, E. et al. Expression of VE-cadherin in zebrafish embryos: a new tool to evaluate vascular development Dev. Dyn., 231 (2004),pp. 204-213
|
[13] |
Mikkola, H.K., Orkin, S.H. The journey of developing hematopoietic stem cells Development, 133 (2006),pp. 3733-3744
|
[14] |
Montero-Balaguer, M., Swirsding, K., Orsenigo, F. et al. Stable vascular connections and remodeling require full expression of VE-cadherin in zebrafish embryos PLoS One, 4 (2009),p. e5772
|
[15] |
Murayama, E., Kissa, K., Zapata, A. et al. Tracing hematopoietic precursor migration to successive hematopoietic organs during zebrafish development Immunity, 25 (2006),pp. 963-975
|
[16] |
Orkin, S.H., Zon, L.I. Hematopoiesis: an evolving paradigm for stem cell biology Cell, 132 (2008),pp. 631-644
|
[17] |
Sauteur, L., Krudewig, A., Herwig, L. et al. Cell Rep., 9 (2014),pp. 504-513
|
[18] |
Taoudi, S., Morrison, A.M., Inoue, H. et al. Progressive divergence of definitive haematopoietic stem cells from the endothelial compartment does not depend on contact with the foetal liver Development, 132 (2005),pp. 4179-4191
|
[19] |
Vittet, D., Buchou, T., Schweitzer, A. et al. Targeted null-mutation in the vascular endothelial-cadherin gene impairs the organization of vascular-like structures in embryoid bodies Proc. Natl. Acad. Sci. U. S. A., 94 (1997),pp. 6273-6278
|
[20] |
Zhang, Y., Jin, H., Li, L. et al. cMyb regulates hematopoietic stem/progenitor cell mobilization during zebrafish hematopoiesis Blood, 118 (2011),pp. 4093-4101
|