-
1
-
-
74449084422
-
Notch signaling and the bone marrow hematopoietic stem cell niche
-
Weber JM and LM Calvi. (2010). Notch signaling and the bone marrow hematopoietic stem cell niche. Bone 46: 281-285
-
(2010)
Bone
, vol.46
, pp. 281-285
-
-
Weber, J.M.1
Calvi, L.M.2
-
2
-
-
81755188452
-
The niche as a target for hematopoietic manipulation and regeneration
-
Lawal RA and LM Calvi. (2011). The niche as a target for hematopoietic manipulation and regeneration. Tissue Eng Part B 17:415-422
-
(2011)
Tissue Eng Part B
, vol.17
, pp. 415-422
-
-
Lawal, R.A.1
Calvi, L.M.2
-
3
-
-
33744765513
-
Osteoblastic activation in the hematopoietic stem cell niche
-
Calvi LM. (2006). Osteoblastic activation in the hematopoietic stem cell niche. Ann N Y Acad Sci 1068:477-488
-
(2006)
Ann N y Acad Sci
, vol.1068
, pp. 477-488
-
-
Calvi, L.M.1
-
4
-
-
34748851341
-
Cell and molecular biology of Notch
-
Fiuza UM and AM Arias. (2007). Cell and molecular biology of Notch. J Endocrinol 194:459-474
-
(2007)
J Endocrinol
, vol.194
, pp. 459-474
-
-
Fiuza, U.M.1
Arias, A.M.2
-
5
-
-
74249112642
-
NOTCHing the bone: Insights into multi-functionality
-
Engin F and B Lee. (2010). NOTCHing the bone: Insights into multi-functionality. Bone 46:274-280
-
(2010)
Bone
, vol.46
, pp. 274-280
-
-
Engin, F.1
Lee, B.2
-
6
-
-
0242268524
-
Osteoblastic cells regulate the haematopoietic stem cell niche
-
Calvi LM, GB Adams, KW Weibrecht, JM Weber, DP Olson, MC Knight, RP Martin, E Schipani, P Divieti, et al. (2003). Osteoblastic cells regulate the haematopoietic stem cell niche. Nature 425:841-846
-
(2003)
Nature
, vol.425
, pp. 841-846
-
-
Calvi, L.M.1
Adams, G.B.2
Weibrecht, K.W.3
Weber, J.M.4
Olson, D.P.5
Knight, M.C.6
Martin, R.P.7
Schipani, E.8
Divieti, P.9
-
7
-
-
0036529989
-
Notch1 activation increases hematopoietic stem cell self-renewal in vivo and favors lymphoid over myeloid lineage outcome
-
Stier S, T Cheng, D Dombkowski, N Carlesso and DT Scadden. (2002). Notch1 activation increases hematopoietic stem cell self-renewal in vivo and favors lymphoid over myeloid lineage outcome. Blood 99:2369-2378
-
(2002)
Blood
, vol.99
, pp. 2369-2378
-
-
Stier, S.1
Cheng, T.2
Dombkowski, D.3
Carlesso, N.4
Scadden, D.T.5
-
8
-
-
76349113345
-
Notch-mediated expansion of human cord blood progenitor cells capable of rapid myeloid reconstitution
-
Delaney C, S Heimfeld, C Brashem-Stein, H Voorhies, RL Manger and ID Bernstein. (2010). Notch-mediated expansion of human cord blood progenitor cells capable of rapid myeloid reconstitution. Nat Med 16:232-236
-
(2010)
Nat Med
, vol.16
, pp. 232-236
-
-
Delaney, C.1
Heimfeld, S.2
Brashem-Stein, C.3
Voorhies, H.4
Manger, R.L.5
Bernstein, I.D.6
-
9
-
-
79959461100
-
Ex vivo expansion of human hematopoietic stem and progenitor cells
-
Dahlberg A, C Delaney and ID Bernstein. (2011). Ex vivo expansion of human hematopoietic stem and progenitor cells. Blood 117:6083-6090
-
(2011)
Blood
, vol.117
, pp. 6083-6090
-
-
Dahlberg, A.1
Delaney, C.2
Bernstein, I.D.3
-
10
-
-
79960476475
-
Notch-3 and Notch-4 signaling rescue from apoptosis human B-ALL cells in contact with human bone marrow-derived mesenchymal stromal cells
-
Kamdje AHN, F Mosna, F Bifari, V Lisi, G Bassi, G Malpeli, M Ricciardi, O Perbellini, MT Scupoli, G Pizzolo and M Krampera. (2011). Notch-3 and Notch-4 signaling rescue from apoptosis human B-ALL cells in contact with human bone marrow-derived mesenchymal stromal cells. Blood 118:380-389
-
(2011)
Blood
, vol.118
, pp. 380-389
-
-
Kamdje, A.H.N.1
Mosna, F.2
Bifari, F.3
Lisi, V.4
Bassi, G.5
Malpeli, G.6
Ricciardi, M.7
Perbellini, O.8
Scupoli, M.T.9
Pizzolo, G.10
Krampera, M.11
-
11
-
-
84860428468
-
Efficient differentiation of embryonic stem cells into mesodermal precursors by BMP, Retinoic Acid and Notch Signalling
-
Torres J, J Prieto, FC Durupt, S Broad and FM Watt. (2012). Efficient differentiation of embryonic stem cells into mesodermal precursors by BMP, Retinoic Acid and Notch Signalling. PLoS One 7:e36405
-
(2012)
PLoS One
, vol.7
-
-
Torres, J.1
Prieto, J.2
Durupt, F.C.3
Broad, S.4
Watt, F.M.5
-
12
-
-
67049173056
-
Notch signaling enhances osteogenic differentiation while inhibiting adipogenesis in primary human bone marrow stromal cells
-
Ugarte F, M Ryser, S Thieme, FA Fierro, K Navratiel, M Bornhauser and S Brenner. (2009). Notch signaling enhances osteogenic differentiation while inhibiting adipogenesis in primary human bone marrow stromal cells. Exp Hematol 37:867-875
-
(2009)
Exp Hematol
, vol.37
, pp. 867-875
-
-
Ugarte, F.1
Ryser, M.2
Thieme, S.3
Fierro, F.A.4
Navratiel, K.5
Bornhauser, M.6
Brenner, S.7
-
13
-
-
40449139405
-
Dimorphic effects of Notch signaling in bone homeostasis
-
Engin FZ, ZQ Yao, T Yang, G Zhou, T Bertin, MM Jiang, YQ Chen, L Wang, H Zheng, et al. (2008). Dimorphic effects of Notch signaling in bone homeostasis. Nat Med 14:299-305
-
(2008)
Nat Med
, vol.14
, pp. 299-305
-
-
Engin, F.Z.1
Yao, Z.Q.2
Yang, T.3
Zhou, G.4
Bertin, T.5
Jiang, M.M.6
Chen, Y.Q.7
Wang, L.8
Zheng, H.9
-
14
-
-
47949130093
-
Notch inhibits osteoblast differentiation and causes osteopenia
-
Zanotti S, A Smerdel-Ramoya, L Stadmeyer, D Durant, F Radtke and E Canalis. (2008). Notch inhibits osteoblast differentiation and causes osteopenia. Endocrinology 149:3890- 3899
-
(2008)
Endocrinology
, vol.149
, pp. 3890-3899
-
-
Zanotti, S.1
Smerdel-Ramoya, A.2
Stadmeyer, L.3
Durant, D.4
Radtke, F.5
Canalis, E.6
-
15
-
-
40449084522
-
Notch signaling maintains bone marrow mesenchymal progenitors by suppressing osteoblast differentiation
-
Hilton MJ, XL Tu, XM Wu, ST Bai, HB Zhao, T Kobayashi, HM Kronenberg, SL Teitelbaum, FP Ross, R Kopan and FX Long. (2008). Notch signaling maintains bone marrow mesenchymal progenitors by suppressing osteoblast differentiation. Nat Med 14:306-314
-
(2008)
Nat Med
, vol.14
, pp. 306-314
-
-
Hilton, M.J.1
Tu, X.L.2
Wu, X.M.3
Bai, S.T.4
Zhao, H.B.5
Kobayashi, T.6
Kronenberg, H.M.7
Teitelbaum, S.L.8
Ross, F.P.9
Kopan, R.10
Long, F.X.11
-
16
-
-
0037424348
-
The Notch ligands, Delta1 and Jagged2, are substrates for presenilin-dependent ''gamma-secretase'' cleavage
-
Ikeuchi T and SS Sisodia. (2003). The Notch ligands, Delta1 and Jagged2, are substrates for presenilin-dependent ''gamma-secretase'' cleavage. J Biol Chem 278:7751-7754
-
(2003)
J Biol Chem
, vol.278
, pp. 7751-7754
-
-
Ikeuchi, T.1
Sisodia, S.S.2
-
17
-
-
0141817915
-
The Notch ligands, Jagged and Delta, are sequentially processed by alpha-secretase and presenilin/gamma-secretase and release signaling fragments
-
LaVoie MJ and DJ Selkoe. (2003). The Notch ligands, Jagged and Delta, are sequentially processed by alpha-secretase and presenilin/gamma-secretase and release signaling fragments. J Biol Chem 278:34427-34437
-
(2003)
J Biol Chem
, vol.278
, pp. 34427-34437
-
-
Lavoie, M.J.1
Selkoe, D.J.2
-
18
-
-
79955953941
-
The Notch ligand Delta-like 1 integrates inputs from TGFbeta/Activin and Wnt pathways
-
Bordonaro M, S Tewari, W Atamna and DL Lazarova. (2011). The Notch ligand Delta-like 1 integrates inputs from TGFbeta/Activin and Wnt pathways. Exp Cell Res 317: 1368-1381
-
(2011)
Exp Cell Res
, vol.317
, pp. 1368-1381
-
-
Bordonaro, M.1
Tewari, S.2
Atamna, W.3
Lazarova, D.L.4
-
19
-
-
49549114293
-
Introducing a single-cell-derived human mesenchymal stem cell line expressing hTERT after lentiviral gene transfer
-
Bocker W, Z Yin, I Drosse, F Haasters, O Rossmann, M Wierer, C Popov, M Locher,WMutschler, D Docheva andM Schieker. (2008). Introducing a single-cell-derived human mesenchymal stem cell line expressing hTERT after lentiviral gene transfer. J Cell Mol Med 12:1347-1359
-
(2008)
J Cell Mol Med
, vol.12
, pp. 1347-1359
-
-
Bocker, W.1
Yin, Z.2
Drosse, I.3
Haasters, F.4
Rossmann, O.5
Wierer, M.6
Popov, C.7
Locher, M.8
Mutschler, W.9
Docheva, D.10
Schieker, M.11
-
20
-
-
30344464717
-
Equal potency of gammaretroviral and lentiviral SIN vectors for expression of O-6- methylguanine-DNA methyltransferase in hematopoietic cells
-
Schambach A, J Bohne, S Chandra, E Will, GP Margison, DA Williams and C Baum. (2006). Equal potency of gammaretroviral and lentiviral SIN vectors for expression of O-6- methylguanine-DNA methyltransferase in hematopoietic cells. Mol Ther 13:391-400
-
(2006)
Mol Ther
, vol.13
, pp. 391-400
-
-
Schambach, A.1
Bohne, J.2
Chandra, S.3
Will, E.4
Margison, G.P.5
Williams, D.A.6
Baum, C.7
-
21
-
-
0031710033
-
A third-generation lentivirus vector with a conditional packaging system
-
Dull T, R Zufferey, M Kelly, RJ Mandel, M Nguyen, D Trono and L Naldini. (1998). A third-generation lentivirus vector with a conditional packaging system. J Virol 72:8463-8471
-
(1998)
J Virol
, vol.72
, pp. 8463-8471
-
-
Dull, T.1
Zufferey, R.2
Kelly, M.3
Mandel, R.J.4
Nguyen, M.5
Trono, D.6
Naldini, L.7
-
22
-
-
4444328365
-
Mastermind critically regulates Notch-mediated lymphoid cell fate decisions
-
Maillard I, AP Weng, AC Carpenter, CG Rodriguez, H Sai, LW Xu, D Allman, JC Aster and WS Pear. (2004). Mastermind critically regulates Notch-mediated lymphoid cell fate decisions. Blood 104:1696-1702
-
(2004)
Blood
, vol.104
, pp. 1696-1702
-
-
Maillard, I.1
Weng, A.P.2
Carpenter, A.C.3
Rodriguez, C.G.4
Sai, H.5
Xu, L.W.6
Allman, D.7
Aster, J.C.8
Pear, W.S.9
-
23
-
-
0038610845
-
The Notch ligand Delta1 is sequentially cleaved by an ADAM protease and gamma-secretase
-
Six E, D Ndiaye, Y Laabi, C Brou, N Gupta-Rossi, A Israel and F Logeat. (2003). The Notch ligand Delta1 is sequentially cleaved by an ADAM protease and gamma-secretase. Proc Natl Acad Sci U S A 100:7638-7643
-
(2003)
Proc Natl Acad Sci U S A
, vol.100
, pp. 7638-7643
-
-
Six, E.1
Ndiaye, D.2
Laabi, Y.3
Brou, C.4
Gupta-Rossi, N.5
Israel, A.6
Logeat, F.7
-
24
-
-
33847637224
-
The Delta intracellular domain mediates TGF-beta/Activin signaling through binding to Smads and has an important bi-directional function in the Notch-Delta signaling pathway
-
Hiratochi M, H Nagase, Y Kuramochi, CS Koh, T Ohkawara and K Nakayama. (2007). The Delta intracellular domain mediates TGF-beta/Activin signaling through binding to Smads and has an important bi-directional function in the Notch-Delta signaling pathway. Nucleic Acids Res 35:912-922
-
(2007)
Nucleic Acids Res
, vol.35
, pp. 912-922
-
-
Hiratochi, M.1
Nagase, H.2
Kuramochi, Y.3
Koh, C.S.4
Ohkawara, T.5
Nakayama, K.6
-
25
-
-
26844491357
-
The intracellular domain of Notch ligand Delta1 induces cell growth arrest
-
Kolev V, D Kacer, R Trifonova, D Small, M Duarte, R Soldi, I Graziani, O Sideleva, B Larman, T Maciag and I Prudovsky. (2005). The intracellular domain of Notch ligand Delta1 induces cell growth arrest. FEBS Lett 579:5798-5802
-
(2005)
FEBS Lett
, vol.579
, pp. 5798-5802
-
-
Kolev, V.1
Kacer, D.2
Trifonova, R.3
Small, D.4
Duarte, M.5
Soldi, R.6
Graziani, I.7
Sideleva, O.8
Larman, B.9
Maciag, T.10
Prudovsky, I.11
-
26
-
-
11144357258
-
ESE-1 is a novel transcriptional mediator of angiopoietin-1 expression in the setting of inflammation
-
Brown C, J Gaspar, A Pettit, R Lee, XS Gu, H Wang, C Manning, C Voland, SR Goldring, MB Goldring, et al. (2004). ESE-1 is a novel transcriptional mediator of angiopoietin-1 expression in the setting of inflammation. J Biol Chem 279:12794-12803
-
(2004)
J Biol Chem
, vol.279
, pp. 12794-12803
-
-
Brown, C.1
Gaspar, J.2
Pettit, A.3
Lee, R.4
Gu, X.S.5
Wang, H.6
Manning, C.7
Voland, C.8
Goldring, S.R.9
Goldring, M.B.10
-
27
-
-
48249114442
-
Elucidation of the signaling network of COX-2 induction in sheared chondrocytes: COX-2 is induced via a Rac/ MEKK1/MKK7/JNK2/c-Jun-C/EBP beta-dependent pathway
-
Healy ZR, F Zhu, JD Stull and K Konstantopoulos. (2008). Elucidation of the signaling network of COX-2 induction in sheared chondrocytes: COX-2 is induced via a Rac/ MEKK1/MKK7/JNK2/c-Jun-C/EBP beta-dependent pathway. Am J Physiol Cell Physiol 294:C1146-C1157
-
(2008)
Am J Physiol Cell Physiol
, vol.294
-
-
Healy, Z.R.1
Zhu, F.2
Stull, J.D.3
Konstantopoulos, K.4
-
28
-
-
70350132643
-
Shear stress inhibits homocysteine- induced stromal cell-derived factor-1 expression in endothelial cells
-
Sung ML, CC Wu, HI Chang, CK Yen, HJ Chen, JC Cheng, S Chien and CN Chen. (2009). Shear stress inhibits homocysteine- induced stromal cell-derived factor-1 expression in endothelial cells. Circ Res 105:755-763
-
(2009)
Circ Res
, vol.105
, pp. 755-763
-
-
Sung, M.L.1
Wu, C.C.2
Chang, H.I.3
Yen, C.K.4
Chen, H.J.5
Cheng, J.C.6
Chien, S.7
Chen, C.N.8
-
29
-
-
33646749900
-
Identification and expression of novel isoforms of human stromal cell-derived factor 1
-
Yu L, J Cecil, SB Peng, J Schrementi, S Kovacevic, D Paul, EW Su and J Wang. (2006). Identification and expression of novel isoforms of human stromal cell-derived factor 1. Gene 374:174-179
-
(2006)
Gene
, vol.374
, pp. 174-179
-
-
Yu, L.1
Cecil, J.2
Peng, S.B.3
Schrementi, J.4
Kovacevic, S.5
Paul, D.6
Su, E.W.7
Wang, J.8
-
30
-
-
55749107812
-
The origins of the identification and isolation of hematopoietic stem cells, and their capability to induce donor-specific transplantation tolerance and treat autoimmune diseases
-
Weissman IL and JA Shizuru. (2008). The origins of the identification and isolation of hematopoietic stem cells, and their capability to induce donor-specific transplantation tolerance and treat autoimmune diseases. Blood 112:3543-3553
-
(2008)
Blood
, vol.112
, pp. 3543-3553
-
-
Weissman, I.L.1
Shizuru, J.A.2
-
31
-
-
0346639232
-
Identification and isolation of hematopoietic stem cells
-
Wognum AW, AC Eaves and TE Thomas. (2003). Identification and isolation of hematopoietic stem cells. Arch Med Res 34:461-475
-
(2003)
Arch Med Res
, vol.34
, pp. 461-475
-
-
Wognum, A.W.1
Eaves, A.C.2
Thomas, T.E.3
-
32
-
-
33344468146
-
Selection based on CD133 and high aldehyde dehydrogenase activity isolates long-term reconstituting human hematopoietic stem cells
-
Hess DA, L Wirthlin, TP Craft, PE Herrbrich, SA Hohm, R Lahey, WC Eades, MH Creer and JA Nolta. (2006). Selection based on CD133 and high aldehyde dehydrogenase activity isolates long-term reconstituting human hematopoietic stem cells. Blood 107:2162-2169
-
(2006)
Blood
, vol.107
, pp. 2162-2169
-
-
Hess, D.A.1
Wirthlin, L.2
Craft, T.P.3
Herrbrich, P.E.4
Hohm, S.A.5
Lahey, R.6
Eades, W.C.7
Creer, M.H.8
Nolta, J.A.9
-
33
-
-
84055213189
-
Notch signaling in acute lymphoblastic leukemia: Any role for stromal microenvironment?
-
Kamdje AHN and M Krampera. (2011). Notch signaling in acute lymphoblastic leukemia: Any role for stromal microenvironment? Blood 118:6506-6514
-
(2011)
Blood
, vol.118
, pp. 6506-6514
-
-
Kamdje, A.H.N.1
Krampera, M.2
-
34
-
-
80052642526
-
The intracellular domain of Jagged-1 interacts with Notch1 intracellular domain and promotes its degradation through Fbw7 E3 ligase
-
Kim MY, J Jung, JS Mo, EJ Ann, JS Ahn, JH Yoon and HS Park. (2011). The intracellular domain of Jagged-1 interacts with Notch1 intracellular domain and promotes its degradation through Fbw7 E3 ligase. Exp Cell Res 317:2438-2446
-
(2011)
Exp Cell Res
, vol.317
, pp. 2438-2446
-
-
Kim, M.Y.1
Jung, J.2
Mo, J.S.3
Ann, E.J.4
Ahn, J.S.5
Yoon, J.H.6
Park, H.S.7
-
35
-
-
80052631506
-
Regulation of Notch1 signaling by Delta-like ligand 1 intracellular domain through physical interaction
-
Jung J, JS Mo, MY Kim, EJ Ann, JH Yoon and HS Park. (2011). Regulation of Notch1 signaling by Delta-like ligand 1 intracellular domain through physical interaction. Mol Cells 32:161-165
-
(2011)
Mol Cells
, vol.32
, pp. 161-165
-
-
Jung, J.1
Mo, J.S.2
Kim, M.Y.3
Ann, E.J.4
Yoon, J.H.5
Park, H.S.6
-
36
-
-
33845445939
-
Maintenance of the hematopoietic stem cell pool by CXCL12-CXCR4 chemokine signaling in bone marrow stromal cell niches
-
Sugiyama T, H Kohara, M Noda and T Nagasawa. (2006). Maintenance of the hematopoietic stem cell pool by CXCL12-CXCR4 chemokine signaling in bone marrow stromal cell niches. Immunity 25:977-988
-
(2006)
Immunity
, vol.25
, pp. 977-988
-
-
Sugiyama, T.1
Kohara, H.2
Noda, M.3
Nagasawa, T.4
-
37
-
-
78751559016
-
Loss of Cxcl12/Sdf-1 in adult mice decreases the quiescent state of hematopoietic stem/progenitor cells and alters the pattern of hematopoietic regeneration after myelosuppression
-
Tzeng YS, H Li, YL Kang, WC Chen, WC Cheng and DM Lai. (2011). Loss of Cxcl12/Sdf-1 in adult mice decreases the quiescent state of hematopoietic stem/progenitor cells and alters the pattern of hematopoietic regeneration after myelosuppression. Blood 117:429-439
-
(2011)
Blood
, vol.117
, pp. 429-439
-
-
Tzeng, Y.S.1
Li, H.2
Kang, Y.L.3
Chen, W.C.4
Cheng, W.C.5
Lai, D.M.6
-
38
-
-
11144356195
-
Overexpression of CXCR4 on human CD34 (+) progenitors increases their proliferation, migration, and NOD/SCID repopulation
-
Kahn J, T Byk, L Jansson-Sjostrand, I Petit, S Shivtiel, A Nagler, I Hardan, V Deutsch, Z Gazit, et al. (2004). Overexpression of CXCR4 on human CD34 (+) progenitors increases their proliferation, migration, and NOD/SCID repopulation. Blood 103:2942-2949
-
(2004)
Blood
, vol.103
, pp. 2942-2949
-
-
Kahn, J.1
Byk, T.2
Jansson-Sjostrand, L.3
Petit, I.4
Shivtiel, S.5
Nagler, A.6
Hardan, I.7
Deutsch, V.8
Gazit, Z.9
-
39
-
-
0036800296
-
The essential roles of the chemokine SDF-1 and its receptor CXCR4 in human stem cell homing and repopulation of transplanted immune-deficient NOD/SCID and NOD/SCID/B2m(null) mice
-
Lapidot T and O Kollet. (2002). The essential roles of the chemokine SDF-1 and its receptor CXCR4 in human stem cell homing and repopulation of transplanted immune-deficient NOD/SCID and NOD/SCID/B2m(null) mice. Leukemia 16:1992-2003
-
(2002)
Leukemia
, vol.16
, pp. 1992-2003
-
-
Lapidot, T.1
Kollet, O.2
-
40
-
-
4544271598
-
Ex vivo expansion of cord blood mononuclear cells on mesenchymal stem cells
-
McNiece I, J Harrington, J Turney, J Kellner and EJ Shpall. (2004). Ex vivo expansion of cord blood mononuclear cells on mesenchymal stem cells. Cytotherapy 6:311-317
-
(2004)
Cytotherapy
, vol.6
, pp. 311-317
-
-
McNiece, I.1
Harrington, J.2
Turney, J.3
Kellner, J.4
Shpall, E.J.5
-
41
-
-
77950639113
-
Hematopoietic stem cells in co-culture with mesenchymal stromal cells - Modeling the niche compartments in vitro
-
Jing DH, AV Fonseca, N Alakel, FA Fierro, K Muller, M Bornhauser, G Ehninger, D Corbeil and R Ordemann. (2010). Hematopoietic stem cells in co-culture with mesenchymal stromal cells - modeling the niche compartments in vitro. Haematologica 95:542-550
-
(2010)
Haematologica
, vol.95
, pp. 542-550
-
-
Jing, D.H.1
Fonseca, A.V.2
Alakel, N.3
Fierro, F.A.4
Muller, K.5
Bornhauser, M.6
Ehninger, G.7
Corbeil, D.8
Ordemann, R.9
-
42
-
-
79952597009
-
Mesenchymal stem cells in ex vivo cord blood expansion
-
Robinson SN, PJ Simmons, C Harold, LG Wallace, H Yang, AM Alousi, JM de Lima and EJ Shpall. (2011). Mesenchymal stem cells in ex vivo cord blood expansion. Best Pract Res Clin Haematol 24:83-92
-
(2011)
Best Pract Res Clin Haematol
, vol.24
, pp. 83-92
-
-
Robinson, S.N.1
Simmons, P.J.2
Harold, C.3
Wallace, L.G.4
Yang, H.5
Alousi, A.M.6
De Lima, J.M.7
Shpall, E.J.8
-
43
-
-
32844456680
-
Superior ex vivo cord blood expansion following co-culture with bone marrow-derived mesenchymal stem cells
-
Robinson SN, J Ng, T Niu, H Yang, JD McMannis, S Karandish, I Kaur, P Fu, M Del Angel, et al. (2006). Superior ex vivo cord blood expansion following co-culture with bone marrow-derived mesenchymal stem cells. Bone Marrow Transplant 37:359-366
-
(2006)
Bone Marrow Transplant
, vol.37
, pp. 359-366
-
-
Robinson, S.N.1
Ng, J.2
Niu, T.3
Yang, H.4
McMannis, J.D.5
Karandish, S.6
Kaur, I.7
Fu, P.8
Del Angel, M.9
-
44
-
-
0034141444
-
Chemokine SDF-1 enhances circulating CD34 (+) cell proliferation in synergy with cytokines: Possible role in progenitor survival
-
Lataillade JJ, D Clay, C Dupuy, S Rigal, C Jasmin, P Bourin and MC Bousse-Kerdiles. (2000). Chemokine SDF-1 enhances circulating CD34 (+) cell proliferation in synergy with cytokines: possible role in progenitor survival. Blood 95:756-768
-
(2000)
Blood
, vol.95
, pp. 756-768
-
-
Lataillade, J.J.1
Clay, D.2
Dupuy, C.3
Rigal, S.4
Jasmin, C.5
Bourin, P.6
Bousse-Kerdiles, M.C.7
-
45
-
-
0034532698
-
Immobilization of Notch ligand, Delta-1, is required for induction of Notch signaling
-
Varnum-Finney B, LZ Wu, M Yu, C Brashem-Stein, S Staats, D Flowers, JD Griffin and ID Bernstein. (2000). Immobilization of Notch ligand, Delta-1, is required for induction of Notch signaling. J Cell Sci 113:4313-4318
-
(2000)
J Cell Sci
, vol.113
, pp. 4313-4318
-
-
Varnum-Finney, B.1
Wu, L.Z.2
Yu, M.3
Brashem-Stein, C.4
Staats, S.5
Flowers, D.6
Griffin, J.D.7
Bernstein, I.D.8
-
46
-
-
0037370834
-
Combined effects of Notch signaling and cytokines induce a multiple log increase in precursors with lymphoid and myeloid reconstituting ability
-
Varnum-Finney B, C Brashem-Stein and ID Bernstein. (2003). Combined effects of Notch signaling and cytokines induce a multiple log increase in precursors with lymphoid and myeloid reconstituting ability. Blood 101:1784-1789
-
(2003)
Blood
, vol.101
, pp. 1784-1789
-
-
Varnum-Finney, B.1
Brashem-Stein, C.2
Bernstein, I.D.3
-
47
-
-
0032904239
-
Notch1-induced delay of human hematopoietic progenitor cell differentiation is associated with altered cell cycle kinetics
-
Carlesso N, JC Aster, J Sklar and DT Scadden. (1999). Notch1-induced delay of human hematopoietic progenitor cell differentiation is associated with altered cell cycle kinetics. Blood 93:838-848
-
(1999)
Blood
, vol.93
, pp. 838-848
-
-
Carlesso, N.1
Aster, J.C.2
Sklar, J.3
Scadden, D.T.4
-
48
-
-
0032101002
-
The Notch ligand, Jagged-1, influences the development of primitive hematopoietic precursor cells
-
Varnum-Finney B, LE Purton, M Yu, C Brashem-Stein, D Flowers, S Staats, KA Moore, I Le Roux, R Mann, et al. (1998). The Notch ligand, Jagged-1, influences the development of primitive hematopoietic precursor cells. Blood 91:4084-4091
-
(1998)
Blood
, vol.91
, pp. 4084-4091
-
-
Varnum-Finney, B.1
Purton, L.E.2
Yu, M.3
Brashem-Stein, C.4
Flowers, D.5
Staats, S.6
Moore, K.A.7
Le Roux, I.8
Mann, R.9
-
49
-
-
78650632700
-
Combination of HOXB4 and Delta-1 ligand improves expansion of cord blood cells
-
Watts KL, C Delaney, RK Humphries, ID Bernstein and HP Kiem. (2010). Combination of HOXB4 and Delta-1 ligand improves expansion of cord blood cells. Blood 116:5859- 5866
-
(2010)
Blood
, vol.116
, pp. 5859-5866
-
-
Watts, K.L.1
Delaney, C.2
Humphries, R.K.3
Bernstein, I.D.4
Kiem, H.P.5
|