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Andrew, T. A. and Owen, J. J (1978). Studies on the earliest sites of B cell differentiation in the mouse embryo. Dev. Comp. Immunol 2, 339-346.[Medline]

Auerbach, R., Huang, H. and Lu, L. S (1996). Hematopoietic stem cells in the mouse embryonic yolk sac. Stem Cells 14, 269-280.[Medline]

Bechtold, T. E., Smith, P. B. and Turpen, J. B (1992). Differential stem cell contributions to thymocyte succession during development of Xenopus laevis. J. Immunol 148, 2975-2982.[Abstract]

Bloom, W. and Bartelmez, G. W (1940). Hematopoiesis in young human embryos. Am. J. Anat 67, 21-53.

Cumano, A., Dieterlen-Lievre, F. and Godin, I (1996). Lymphoid potential, probed before circulation in mouse, is restricted to caudal intraembryonic splanchnopleura. Cell 86, 907-916.[Medline]

Dieterlen-Lievre, F (1975). On the origin of haemopoietic stem cells in the avian embryo: an experimental approach. J. Embryol. Exp. Morphol 33, 607-619.[Medline]

DiGiusto, D., Chen, S., Combs, J., Webb, S., Namikawa, R., Tsukamoto, A., Chen, B. P. and Galy, A. H. M (1994). Human fetal bone marrow early progenitors for T, B, and myeloid cells are found exclusively in the population expressing high levels of CD34. Blood 84, 421-432.[Abstract/Free Full Text]

Galmiche, M. C., Koteliansky, V. E., Briere, J., Herve, P. and Charbord, P (1993). Stromal cells from human long-term marrow cultures are mesenchymal cells that differentiate following a vascular smooth muscle differentiation pathway. Blood 82, 66-76.[Abstract/Free Full Text]

Garcia-Porrero, J. A., Godin, I. E. and Dieterlen-Lievre, F (1995). Potential intraembryonic hemogenic sites at pre-liver stages in the mouse. Anat. Embryol 192, 427-435.

Godin, I. E., Garcia-Porrero, J. A., Coutinho, A., Dieterlen-Lievre, F. and Marcos, M. A (1993). Para-aortic splanchnopleura from early mouse embryos contains B1a cell progenitors. Nature 364, 67-69.[Medline]

Godin, I., Dieterlen-Lievre, F. and Cumano, A (1995). Emergence of multipotent hemopoietic cells in the yolk sac and paraaortic splanchnopleura in mouse embryos, beginning at 8. 5 days postcoitus. Proc. Natl. Acad. Sci. USA 92, 773-777.[Abstract/Free Full Text]

Huyhn, A., Dommergues, M., Izac, B., Croisille, L., Katz, A., Vainchenker, W. and Coulombel, L (1995). Characterization of hematopoietic progenitors from human yolk sacs and embryos. Blood 86, 4474-4485.[Abstract/Free Full Text]

Kau, C. L. and Turpen, J. B (1983). Dual contribution of embryonic ventral blood island and dorsal lateral plate mesoderm during ontogeny of hemopoietic cells in Xenopus laevis. J. Immunol 131, 2262-2266.[Abstract]

Kessel, J. and Fabian, B. C (1985). Graded morphogenetic patterns during the development of the extraembryonic blood system and coelom of the chick blastoderm: a scanning electron microscope and light microscope study. Am. J. Anat 173, 99-112.

Labastie, M. C., Cortes, F., Romeo, P. H., Dulac, C. and Peault, B (1998). Molecular identity of hematopoietic precursor cells emerging in the human embryo. Blood, 92, 3624-3635.[Abstract/Free Full Text]

Lassila, O., Eskola, J., Toivanen, P., Martin, C. and Dieterlen-Lievre, F (1978). The origin of lymphoid stem cells studied in chick yolk sac-embryo chimaeras. Nature 272, 353-354.[Medline]

Maeno, M., Tadate, A. and Katagiri, C (1985). The localisation of precursor cells for larval and adult hematopoietic cells of Xenopus laevis in two regions of embryos. Dev. Growth Diff 27, 137-148.

Medvinsky, A. L., Samoylina, N. L., Muller, A. M. and Dzierzak, E. A (1993). An early pre-liver intraembryonic source of CFU-S in the developing mouse. Nature 364, 64-67.[Medline]

Medvinsky, A. and Dzierzak, E (1996). Definitive hematopoiesis is autonomously initiated by the AGM region. Cell 86, 897-906.[Medline]

Migliaccio, G., Migliaccio, A. R., Petti, S., Mavilio, F., Russo, G., Lazzaro, D., Testa, U., Marinucci, M. and Peschle, C (1986). Human embryonic hemopoiesis. Kinetics of progenitors and precursors underlying the yolk sacliver transition. J. Clin. Invest 78, 51-60.

Moore, M. A. S. and Owen, J. J. T (1967). Stem cell migration in developing myeloid and lymphoid systems. Lancet 2, 658-659.

Moore, M. A. S. and Metcalf, D (1970). Ontogeny of the hematopoietic system: yolk sac origin of in vivo and in vitro colony forming cells in the developing mouse embryo. Br. J. Haematol 18, 279-296.[Medline]

Muller, A. M., Medvinsky, A., Strouboulis, J., Grosveld, F. and Dzierzak, E (1994). Development of hematopoietic stem cell activity in the mouse embryo. Immunity 1, 291-301.[Medline]

Nishikawa, S., Nishikawa, S., Kawamoto, H., Yoshida, H., Kizumoto, M., Kataoka, H. and Katsura, Y (1998). In vitro generation of lymphohematopoietic cells from endothelial cells purified from murine embryos. Immunity 8, 761-769.[Medline]

Ohneda, O., Fennie, C., Zheng, Z., Donahue, C., La, H., Villacorta, R., Cairns, B. and Lasky, L. A (1998). Hematopoietic stem cell maintenance and differentiation are supported by embryonic aorta-gonad-mesonephros region-derived endothelium. Blood 92, 908-919.[Abstract/Free Full Text]

Palacios, R. and Imhof, B. A (1996). Primitive lymphohematopoietic precursor cell lines generated in culture from day 7 early-mid-primitive streak stage mouse embryo. EMBO J 15, 6869-6876.[Medline]

Tavian, M., Coulombel, L., Luton, D., San Clemente, H., Dieterlen-Lievre, F. and Peault, B (1996). Aorta-associated CD34+hematopoietic cells in the early human embryo. Blood 87, 67-72.[Abstract/Free Full Text]

Uchida, N., Yang, Z., Combs, J., Pourquie, O., Nguyen, M., Ramanathan, R., Fu, J., Welply, A., Chen, S., Weddell, G., Sharma, A. K., Leiby, K. R., Karagogeos, D., Hill, B., Humeau, L., Stallcup, W. B., Hoffman, R., Tsukamoto, A. S., Gearing, D. P. and Peault, B (1997). The characterization, molecular cloning, and expression of a novel hematopoietic cell antigen from CD34+human bone marrow cells. Blood 89, 2706-2716.[Abstract/Free Full Text]

Yoder, M. C., Hiatt, K., Dutt, P., Mukherjee, P., Bodine, D. M. and Orlic, D (1997). Characterization of definitive lymphohematopoeitic stem cells in the day 9 murine yolk sac. Immunity 7, 335-344.[Medline]

Young, J. C., DiGiusto, D. and Backer, M. P (1996). In vitro characterization of fetal hematopoietic stem cells: Range and kinetics of cell production from individual stem cells. Biotechnology and Bioengineering 50, 465-478.


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