ExLibris header image
SFX Logo
Title: Haematopoietic stem cells derive directly from aortic endothelium during development
Source:

Nature [0028-0836] Bertrand, J Y yr:2010


Collapse list of basic services Basic
Full text
Full text available via Nature
GO
Document delivery
Request document via Library/Bibliothek GO
Users interested in this article also expressed an interest in the following:
1. Herbomel, P. "Blood stem cells emerge from aortic endothelium by a novel type of cell transition." Nature 464.7285 (2010): 112-115. Link to Full Text for this item Link to SFX for this item
2. Boisset,, Jean-Charles, C. "In vivo imaging of haematopoietic cells emerging from the mouse aortic endothelium." Nature 464.7285 (2010): 116-120. Link to Full Text for this item Link to SFX for this item
3. de Bruijn, M. "Visualizing Blood Cell Emergence from Aortic Endothelium." Cell stem cell 6.4 (2010): 289-290. Link to SFX for this item
4. Bonnet, D. "Haematopoietic stem cells." The Journal of pathology 197.4 (2002): 430-40. Link to Full Text for this item Link to SFX for this item
5. Clements, Wilson K. "A somitic Wnt16/Notch pathway specifies haematopoietic stem cells." Nature 474.7350 (2011): 220-224. Link to Full Text for this item Link to SFX for this item
6. Schulz, C. "A Lineage of Myeloid Cells Independent of Myb and Hematopoietic Stem Cells." Science 336.6077 (2012): 86-90. Link to SFX for this item
7. Boisset, J. "On the origin of hematopoietic stem cells : Progress and controversy." Stem cell research 8.1: 1-13. Link to SFX for this item
8. Lewis, A. "Autologous stem cells derived from the peripheral blood compared to standard bone marrow transplant; time to engraftment: a systematic review." International journal of nursing studies 42.5 (2005): 589-596. Link to SFX for this item
9. Lam, Enid Yi Ni Y. "Live imaging of Runx1 expression in the dorsal aorta tracks the emergence of blood progenitors from endothelial cells." Blood 116.6 (2010): 909-914. Link to SFX for this item
10. Gering, M. "Hedgehog signaling is required for adult blood stem cell formation in zebrafish embryos." Developmental cell 8.3 (2005): 389-400. Link to SFX for this item
11. Cheng, T. "Hematopoietic stem cell quiescence maintained by p21cip1/waf1." Science 287.5459 (2000): 1804-8. Link to SFX for this item
12. Bonde, J. "Recent advances in hematopoietic stem cell biology." Current opinion in hematology 11.6: 392-398. Link to SFX for this item
13. Yin, T. "The stem cell niches in bone." The journal of clinical investigation 116.5 (2006): 1195-1201. Link to Full Text for this item Link to SFX for this item
14. Wilkinson, Robert N. "Hedgehog signaling via a calcitonin receptor-like receptor can induce arterial differentiation independently of VEGF signaling in zebrafish." Blood 120.2 (2012): 477-488. Link to SFX for this item
15. Park, In-kyung K. "Bmi-1 is required for maintenance of adult self-renewing haematopoietic stem cells." Nature 423.6937 (2003): 302-5. Link to Full Text for this item Link to SFX for this item
16. Zhou, Hanying n. "Wnt and Notch signaling pathways selectively regulating hematopoiesis." Annals of hematology 89.8 (2010): 749-757. Link to Full Text for this item Link to SFX for this item
17. Durand, C. "Embryonic beginnings of adult hematopoietic stem cells." Haematologica 90.1 (2004): 100-8. Link to SFX for this item
18. Valbuena, Gustavo H. "The endothelium as a target for infections." Annual review of pathology 1.1 (2006): 171-98. Link to Full Text for this item Link to SFX for this item
19. Caplan, Arnold I. "Adult mesenchymal stem cells for tissue engineering versus regenerative medicine." Journal of cellular physiology 213.2 (2007): 341-347. Link to Full Text for this item Link to SFX for this item
20. Curley, James P. "Genes, brains and mammalian social bonds." Trends in ecology & evolution 20.10: 561-567. Link to SFX for this item
View More...
View Less...
Select All Clear All

Expand list of advanced services Advanced