-
1
-
-
57849109837
-
Malignant astrocytomas originate from neural stem/progenitor cells in a somatic tumor suppressor mouse model
-
Alcantara Llaguno S, Chen J, Kwon CH, Jackson EL, Li Y, Burns DK, Alvarez-Buylla A, Parada LF (2009) Malignant astrocytomas originate from neural stem/progenitor cells in a somatic tumor suppressor mouse model. Cancer Cell 15: 45-56
-
(2009)
Cancer Cell
, vol.15
, pp. 45-56
-
-
Alcantara Llaguno, S.1
Chen, J.2
Kwon, C.H.3
Jackson, E.L.4
Li, Y.5
Burns, D.K.6
Alvarez-Buylla, A.7
Parada, L.F.8
-
2
-
-
33846237601
-
HEDGEHOG-GLI1 signaling regulates human glioma growth, cancer stem cell self-renewal, and tumorigenicity
-
Clement V, Sanchez P, De Tribolet N, Radovanovic I, Ruiz i Altaba A (2007) HEDGEHOG-GLI1 signaling regulates human glioma growth, cancer stem cell self-renewal, and tumorigenicity. Curr Biol 17: 165-172
-
(2007)
Curr Biol
, vol.17
, pp. 165-172
-
-
Clement, V.1
Sanchez, P.2
De Tribolet, N.3
Radovanovic, I.4
Ruiz, I.5
Altaba, A.6
-
3
-
-
0030866154
-
Altered neural cell fates and medulloblastoma in mouse patched mutants
-
Goodrich LV, Milenkovic L, Higgins KM, Scott MP (1997) Altered neural cell fates and medulloblastoma in mouse patched mutants. Science 277: 1109-1113
-
(1997)
Science
, vol.277
, pp. 1109-1113
-
-
Goodrich, L.V.1
Milenkovic, L.2
Higgins, K.M.3
Scott, M.P.4
-
4
-
-
75649109727
-
Combinations of genetic mutations in the adult neural stem cell compartment determine brain tumour phenotypes
-
Jacques TS, Swales A, Brzozowski MJ, Henriquez NV, Linehan JM, Mirzadeh Z, C OM, Naumann H, Alvarez-Buylla A, Brandner S (2010) Combinations of genetic mutations in the adult neural stem cell compartment determine brain tumour phenotypes. EMBO J 29: 222-235
-
(2010)
EMBO J
, vol.29
, pp. 222-235
-
-
Jacques, T.S.1
Swales, A.2
Brzozowski, M.J.3
Henriquez, N.V.4
Linehan, J.M.5
Mirzadeh, Z.6
Om, C.7
Naumann, H.8
Alvarez-Buylla, A.9
Brandner, S.10
-
5
-
-
66149167315
-
Functional evidence that the self-renewal gene NANOG regulates human tumor development
-
Jeter CR, Badeaux M, Choy G, Chandra D, Patrawala L, Liu C, Calhoun-Davis T, Zaehres H, Daley GQ, Tang DG (2009) Functional evidence that the self-renewal gene NANOG regulates human tumor development. Stem Cells 27: 993-1005
-
(2009)
Stem Cells
, vol.27
, pp. 993-1005
-
-
Jeter, C.R.1
Badeaux, M.2
Choy, G.3
Chandra, D.4
Patrawala, L.5
Liu, C.6
Calhoun-Davis, T.7
Zaehres, H.8
Daley, G.Q.9
Tang, D.G.10
-
6
-
-
22844437215
-
Isolation of neural stem cells from the postnatal cerebellum
-
Lee A, Kessler JD, Read TA, Kaiser C, Corbeil D, Huttner WB, Johnson JE, Wechsler-Reya RJ (2005) Isolation of neural stem cells from the postnatal cerebellum. Nat Neurosci 8: 723-729
-
(2005)
Nat Neurosci
, vol.8
, pp. 723-729
-
-
Lee, A.1
Kessler, J.D.2
Read, T.A.3
Kaiser, C.4
Corbeil, D.5
Huttner, W.B.6
Johnson, J.E.7
Wechsler-Reya, R.J.8
-
7
-
-
0037806031
-
The homeoprotein Nanog is required for maintenance of pluripotency in mouse epiblast and ES cells
-
Mitsui K, Tokuzawa Y, Itoh H, Segawa K, Murakami M, Takahashi K, Maruyama M, Maeda M, Yamanaka S (2003) The homeoprotein Nanog is required for maintenance of pluripotency in mouse epiblast and ES cells. Cell 113: 631-642
-
(2003)
Cell
, vol.113
, pp. 631-642
-
-
Mitsui, K.1
Tokuzawa, Y.2
Itoh, H.3
Segawa, K.4
Murakami, M.5
Takahashi, K.6
Maruyama, M.7
Maeda, M.8
Yamanaka, S.9
-
8
-
-
13344282140
-
Sonic hedgehog controls stem cell behavior in the postnatal and adult brain
-
Palma V, Lim DA, Dahmane N, Sanchez P, Brionne TC, Herzberg CD, Gitton Y, Carleton A, Alvarez-Buylla A, Ruiz i Altaba A (2005) Sonic hedgehog controls stem cell behavior in the postnatal and adult brain. Development 132: 335-344
-
(2005)
Development
, vol.132
, pp. 335-344
-
-
Palma, V.1
Lim, D.A.2
Dahmane, N.3
Sanchez, P.4
Brionne, T.C.5
Herzberg, C.D.6
Gitton, Y.7
Carleton, A.8
Alvarez-Buylla, A.9
Ruiz, I.10
Altaba, A.11
-
9
-
-
77955362243
-
Hedgehog controls neural stem cells through p53-independent regulation of Nanog
-
Po A, Ferretti E, Miele E, De Smaele E, Paganelli A, Canettieri G, Coni S, Di Marcotullio L, Biffoni M, Massimi L, Di Rocco C, Screpanti I, Gulino A (2010) Hedgehog controls neural stem cells through p53-independent regulation of Nanog. EMBO J 29: 2646-2658
-
(2010)
EMBO J
, vol.29
, pp. 2646-2658
-
-
Po, A.1
Ferretti, E.2
Miele, E.3
De Smaele, E.4
Paganelli, A.5
Canettieri, G.6
Coni, S.7
Di Marcotullio, L.8
Biffoni, M.9
Massimi, L.10
Di Rocco, C.11
Screpanti, I.12
Gulino, A.13
-
10
-
-
77950091343
-
Cerebellar stem cells act as medulloblastoma-initiating cells in a mouse model and a neural stem cell signature characterizes a subset of human medulloblastomas
-
Sutter R, Shakhova O, Bhagat H, Behesti H, Sutter C, Penkar S, Santuccione A, Bernays R, Heppner FL, Schuller U, Grotzer M, Moch H, Schraml P, Marino S (2010) Cerebellar stem cells act as medulloblastoma-initiating cells in a mouse model and a neural stem cell signature characterizes a subset of human medulloblastomas. Oncogene 29: 1845-1856
-
(2010)
Oncogene
, vol.29
, pp. 1845-1856
-
-
Sutter, R.1
Shakhova, O.2
Bhagat, H.3
Behesti, H.4
Sutter, C.5
Penkar, S.6
Santuccione, A.7
Bernays, R.8
Heppner, F.L.9
Schuller, U.10
Grotzer, M.11
Moch, H.12
Schraml, P.13
Marino, S.14
-
11
-
-
48449101742
-
Medulloblastoma can be initiated by deletion of patched in lineage-restricted progenitors or stem cells
-
Yang ZJ, Ellis T, Markant SL, Read TA, Kessler JD, Bourboulas M, Schuller U, Machold R, Fishell G, Rowitch DH, Wainwright BJ, Wechsler-Reya RJ (2008) Medulloblastoma can be initiated by deletion of patched in lineage-restricted progenitors or stem cells. Cancer Cell 14: 135-145
-
(2008)
Cancer Cell
, vol.14
, pp. 135-145
-
-
Yang, Z.J.1
Ellis, T.2
Markant, S.L.3
Read, T.A.4
Kessler, J.D.5
Bourboulas, M.6
Schuller, U.7
MacHold, R.8
Fishell, G.9
Rowitch, D.H.10
Wainwright, B.J.11
Wechsler-Reya, R.J.12
-
12
-
-
77955428416
-
NANOG regulates glioma stem cells and is essential in vivo acting in a cross-functional network with GLI1 and p53
-
Zbinden M, Duquet A, Lorente-Trigos A, Ngwabyt S-N, Borges I, Ruiz I Altaba A (2010) NANOG regulates glioma stem cells and is essential in vivo acting in a cross-functional network with GLI1 and p53. EMBO J 29: 2659-2674
-
(2010)
EMBO J
, vol.29
, pp. 2659-2674
-
-
Zbinden, M.1
Duquet, A.2
Lorente-Trigos, A.3
Ngwabyt, S.-N.4
Borges, I.5
Ruiz Altaba, I.A.6
-
13
-
-
54549095950
-
P53 and Pten control neural and glioma stem/progenitor cell renewal and differentiation
-
Zheng H, Ying H, Yan H, Kimmelman AC, Hiller DJ, Chen AJ, Perry SR, Tonon G, Chu GC, Ding Z, Stommel JM, Dunn KL,Wiedemeyer R, You MJ, Brennan C, Wang YA, Ligon KL, Wong WH, Chin L, DePinho RA (2008) p53 and Pten control neural and glioma stem/progenitor cell renewal and differentiation. Nature 455: 1129-1133
-
(2008)
Nature
, vol.455
, pp. 1129-1133
-
-
Zheng, H.1
Ying, H.2
Yan, H.3
Kimmelman, A.C.4
Hiller, D.J.5
Chen, A.J.6
Perry, S.R.7
Tonon, G.8
Chu, G.C.9
Ding, Z.10
Stommel, J.M.11
Dunn Klwiedemeyer, R.12
You, M.J.13
Brennan, C.14
Wang, Y.A.15
Ligon, K.L.16
Wong, W.H.17
Chin, L.18
Depinho, R.A.19
|