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Typus
BauernOpfer
Bearbeiter
Hindemith
Gesichtet
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Untersuchte Arbeit:
Seite: 4, Zeilen: 10-17
Quelle: Jamieson et al 2004
Seite(n): 531, Zeilen: col 1: 1-11
Human cancer stem cells, identified in acute myelogenous leukemia (AML) (Bonnet and Dick, 1997), myeloid blast crisis of chronic myelogenous leukemia (Jamieson et. al., 2004), breast cancer and brain tumors (Al-Hajj et. al., 2003; Singh et. al., 2003) share functional properties with normal stem cells such as self-renewal, high proliferative potential, some differentiation capacity and ability to be serially transplanted (Jamieson et. al., 2004b; Passegue et. al., 2003).

Al-Hajj, M., Wicha, M. S., Benito-Hernandez, A., Morrison, S. J., and Clarke, M. F. (2003). Prospective identification of tumorigenic breast cancer cells. Proc Natl Acad Sci U S A 100, 3983-3988.

Bonnet, D., and Dick, J. E. (1997). Human acute myeloid leukemia is organized as a hierarchy that originates from a primitive hematopoietic cell. Nat Med 3, 730-737.

Jamieson, C. H., Ailles, L. E., Dylla, S. J., Muijtjens, M., Jones, C., Zehnder, J. L., Gotlib, J., Li, K., Manz, M. G., Keating, A., et al. (2004a). Granulocyte-macrophage progenitors as candidate leukemic stem cells in blast-crisis CML. N Engl J Med 351, 657- 667.

Jamieson, C. H., Weissman, I. L., and Passegue, E. (2004b). Chronic versus acute myelogenous leukemia; A question of self-renewal. Cancer Cell 6, 531-533.

Passegue, E., Jamieson, C. H., Ailles, L. E., and Weissman, I. L. (2003). Normal and leukemic hematopoiesis: are leukemias a stem cell disorder or a reacquisition of stem cell characteristics? Proc Natl Acad Sci U S A 100 Suppl 1, 11842-11849.

Singh, S. K., Clarke, I. D., Terasaki, M., Bonn, V. E., Hawkins, C., Squire, J., and Dirks, P. B. (2003) Identification of a cancer stem cell in human brain tumors. Cancer Res 63, 5821-5828.

Human cancer stem cells, identified in acute myelogenous leukemia (Bonnet and Dick, 1997), myeloid blast crisis of chronic myelogenous leukemia (Jamieson et al, 2004), breast cancer (Al-Hajj et al., 2003), and brain tumors (Singh et al., 2003), share functional properties with normal stem cells, such as high proliferative potential, some differentiation capacity, and the ability to be serially transplanted (reviewed in Passegué et al., 2003).

Al-Hajj, M., Wicha, M., Benito-Hernandez, A., Morrison, S., and Clarke, M. (2003). Proc. Natl. Acad. Sci. USA 100, 3983–3988.

Bonnet, D., and Dick, J.E. (1997). Nat. Med. 3, 730–737.

Jamieson, C.H., Ailles, L.E., Dylla, S.J., Muijtjens, M., Jones, C., Zehnder, J.L., Gotlib, J., Li, K., Manz, M.G., Keating, A., et al. (2004). N. Engl. J. Med. 351, 657–667.

Passegué, E., Jamieson, C.H.M., Ailles, L.E., and Weissman, I.L. (2003). Proc. Natl. Acad. Sci. USA 100, 11842–11849.

Singh, S.K., Clarke, I.D., Terasaki, M., Bonn, V.E., Hawkins, C., Squire, J., and Dirks, P.B. (2003). Cancer Res. 63, 5821–5828.

Anmerkungen

The source is mentioned, but it is not clear that the overview of the literature is taken from it. The reader rather assumes that the given source is just one more reference.

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