-
1
-
-
30444439050
-
Human embryonic stem cell stability.
-
Hoffman LM, Carpenter MK. Human embryonic stem cell stability. Stem Cell Rev 2005, 1:139-144.
-
(2005)
Stem Cell Rev
, vol.1
, pp. 139-144
-
-
Hoffman, L.M.1
Carpenter, M.K.2
-
4
-
-
13944262937
-
Understanding the odd science of aging.
-
Kirkwood TB. Understanding the odd science of aging. Cell 2005, 120:437-447.
-
(2005)
Cell
, vol.120
, pp. 437-447
-
-
Kirkwood, T.B.1
-
5
-
-
79959354999
-
Mitochondria and the autophagy-inflammation-cell death axis in organismal aging.
-
Green DR, Galluzzi L, Kroemer G. Mitochondria and the autophagy-inflammation-cell death axis in organismal aging. Science 2011, 333:1109-1112.
-
(2011)
Science
, vol.333
, pp. 1109-1112
-
-
Green, D.R.1
Galluzzi, L.2
Kroemer, G.3
-
6
-
-
79954632356
-
The role of mitochondria in Drosophila aging.
-
Cho J, Hur JH, Walker DW. The role of mitochondria in Drosophila aging. Exp Gerontol 2011, 46:331-334.
-
(2011)
Exp Gerontol
, vol.46
, pp. 331-334
-
-
Cho, J.1
Hur, J.H.2
Walker, D.W.3
-
7
-
-
75149165994
-
Update on the oxidative stress theory of aging: does oxidative stress play a role in aging or healthy aging?
-
Salmon AB, Richardson A, Perez VI. Update on the oxidative stress theory of aging: does oxidative stress play a role in aging or healthy aging? Free Radic Biol Med 2010, 48:642-655.
-
(2010)
Free Radic Biol Med
, vol.48
, pp. 642-655
-
-
Salmon, A.B.1
Richardson, A.2
Perez, V.I.3
-
9
-
-
79251490712
-
Ageing and protein aggregation-mediated disorders: from invertebrates to mammals.
-
Dillin A, Cohen E. Ageing and protein aggregation-mediated disorders: from invertebrates to mammals. Philos Trans R Soc Lond B Biol Sci 2011, 366:94-98.
-
(2011)
Philos Trans R Soc Lond B Biol Sci
, vol.366
, pp. 94-98
-
-
Dillin, A.1
Cohen, E.2
-
10
-
-
79551583056
-
Hepcidin and disorders of iron metabolism.
-
Ganz T, Nemeth E. Hepcidin and disorders of iron metabolism. Annu Rev Med 62:347-360.
-
Annu Rev Med
, vol.62
, pp. 347-360
-
-
Ganz, T.1
Nemeth, E.2
-
11
-
-
75749146169
-
Coexistence of quiescent and active adult stem cells in mammals.
-
Li L, Clevers H. Coexistence of quiescent and active adult stem cells in mammals. Science 2010, 327:542-545.
-
(2010)
Science
, vol.327
, pp. 542-545
-
-
Li, L.1
Clevers, H.2
-
12
-
-
68549136908
-
Stem cells and their niches: integrated units that maintain Drosophila tissues.
-
Spradling AC, Nystul T, Lighthouse D, Morris L, Fox D, Cox R, Tootle T, Frederick R, Skora A. Stem cells and their niches: integrated units that maintain Drosophila tissues. Cold Spring Harb Symp Quant Biol 2008, 73:49-57.
-
(2008)
Cold Spring Harb Symp Quant Biol
, vol.73
, pp. 49-57
-
-
Spradling, A.C.1
Nystul, T.2
Lighthouse, D.3
Morris, L.4
Fox, D.5
Cox, R.6
Tootle, T.7
Frederick, R.8
Skora, A.9
-
13
-
-
41549135942
-
FoxO transcription factors in the maintenance of cellular homeostasis during aging.
-
Salih DA, Brunet A. FoxO transcription factors in the maintenance of cellular homeostasis during aging. Curr Opin Cell Biol 2008, 20:126-136.
-
(2008)
Curr Opin Cell Biol
, vol.20
, pp. 126-136
-
-
Salih, D.A.1
Brunet, A.2
-
14
-
-
77956205122
-
The distinct metabolic profile of hematopoietic stem cells reflects their location in a hypoxic niche.
-
Simsek T, Kocabas F, Zheng J, Deberardinis RJ, Mahmoud AI, Olson EN, Schneider JW, Zhang CC, Sadek HA. The distinct metabolic profile of hematopoietic stem cells reflects their location in a hypoxic niche. Cell Stem Cell 2010, 7:380-390.
-
(2010)
Cell Stem Cell
, vol.7
, pp. 380-390
-
-
Simsek, T.1
Kocabas, F.2
Zheng, J.3
Deberardinis, R.J.4
Mahmoud, A.I.5
Olson, E.N.6
Schneider, J.W.7
Zhang, C.C.8
Sadek, H.A.9
-
15
-
-
65449125480
-
Chaperoning stem cells: a role for heat shock proteins in the modulation of stem cell self-renewal and differentiation?
-
Prinsloo E, Setati MM, Longshaw VM, Blatch GL. Chaperoning stem cells: a role for heat shock proteins in the modulation of stem cell self-renewal and differentiation? Bioessays 2009, 31:370-377.
-
(2009)
Bioessays
, vol.31
, pp. 370-377
-
-
Prinsloo, E.1
Setati, M.M.2
Longshaw, V.M.3
Blatch, G.L.4
-
17
-
-
77951224759
-
ABCG2: a potential marker of stem cells and novel target in stem cell and cancer therapy.
-
Ding XW, Wu JH, Jiang CP. ABCG2: a potential marker of stem cells and novel target in stem cell and cancer therapy. Life Sci 2010, 86:631-637.
-
(2010)
Life Sci
, vol.86
, pp. 631-637
-
-
Ding, X.W.1
Wu, J.H.2
Jiang, C.P.3
-
18
-
-
0037198062
-
Genetics of cellular senescence.
-
Tominaga K, Olgun A, Smith JR, Pereira-Smith OM. Genetics of cellular senescence. Mech Ageing Dev 2002, 123:927-936.
-
(2002)
Mech Ageing Dev
, vol.123
, pp. 927-936
-
-
Tominaga, K.1
Olgun, A.2
Smith, J.R.3
Pereira-Smith, O.M.4
-
19
-
-
13944270339
-
Senescent cells, tumor suppression, and organismal aging: good citizens, bad neighbors.
-
Campisi J. Senescent cells, tumor suppression, and organismal aging: good citizens, bad neighbors. Cell 2005, 120:513-522.
-
(2005)
Cell
, vol.120
, pp. 513-522
-
-
Campisi, J.1
-
20
-
-
67749122294
-
Stress-induced premature senescence of endothelial cells: a perilous state between recovery and point of no return.
-
Goligorsky MS, Chen J, Patschan S. Stress-induced premature senescence of endothelial cells: a perilous state between recovery and point of no return. Curr Opin Hematol 2009, 16:215-219.
-
(2009)
Curr Opin Hematol
, vol.16
, pp. 215-219
-
-
Goligorsky, M.S.1
Chen, J.2
Patschan, S.3
-
21
-
-
49749145668
-
Senescence of activated stellate cells limits liver fibrosis.
-
Krizhanovsky V, Yon M, Dickins RA, Hearn S, Simon J, Miething C, Yee H, Zender L, Lowe SW. Senescence of activated stellate cells limits liver fibrosis. Cell 2008, 134:657-667.
-
(2008)
Cell
, vol.134
, pp. 657-667
-
-
Krizhanovsky, V.1
Yon, M.2
Dickins, R.A.3
Hearn, S.4
Simon, J.5
Miething, C.6
Yee, H.7
Zender, L.8
Lowe, S.W.9
-
22
-
-
79960375714
-
Epigenetic regulation of aging stem cells.
-
Pollina EA, Brunet A. Epigenetic regulation of aging stem cells. Oncogene 2011, 30:3105-3126.
-
(2011)
Oncogene
, vol.30
, pp. 3105-3126
-
-
Pollina, E.A.1
Brunet, A.2
-
23
-
-
78650459376
-
Telomere, DNA damage, and oxidative stress in stem cell aging.
-
Zhang J, Ju Z. Telomere, DNA damage, and oxidative stress in stem cell aging. Birth Defects Res C Embryo Today 2010, 90:297-307.
-
(2010)
Birth Defects Res C Embryo Today
, vol.90
, pp. 297-307
-
-
Zhang, J.1
Ju, Z.2
-
24
-
-
79960945131
-
Somatic oxidative bioenergetics transitions into pluripotency-dependent glycolysis to facilitate nuclear reprogramming.
-
Folmes CD, Nelson TJ, Martinez-Fernandez A, Arrell DK, Lindor JZ, Dzeja PP, Ikeda Y, Perez-Terzic C, Terzic A. Somatic oxidative bioenergetics transitions into pluripotency-dependent glycolysis to facilitate nuclear reprogramming. Cell Metab 2011, 14:264-271.
-
(2011)
Cell Metab
, vol.14
, pp. 264-271
-
-
Folmes, C.D.1
Nelson, T.J.2
Martinez-Fernandez, A.3
Arrell, D.K.4
Lindor, J.Z.5
Dzeja, P.P.6
Ikeda, Y.7
Perez-Terzic, C.8
Terzic, A.9
-
25
-
-
79751536458
-
Inflammatory signals regulate hematopoietic stem cells.
-
Baldridge MT, King KY, Goodell MA. Inflammatory signals regulate hematopoietic stem cells. Trends Immunol 2011, 32:57-65.
-
(2011)
Trends Immunol
, vol.32
, pp. 57-65
-
-
Baldridge, M.T.1
King, K.Y.2
Goodell, M.A.3
-
26
-
-
77957996047
-
Innate immunity as orchestrator of stem cell mobilization.
-
Ratajczak MZ, Kim CH, Wojakowski W, Janowska-Wieczorek A, Kucia M, Ratajczak J. Innate immunity as orchestrator of stem cell mobilization. Leukemia 2010, 24:1667-1675.
-
(2010)
Leukemia
, vol.24
, pp. 1667-1675
-
-
Ratajczak, M.Z.1
Kim, C.H.2
Wojakowski, W.3
Janowska-Wieczorek, A.4
Kucia, M.5
Ratajczak, J.6
-
27
-
-
70350066457
-
Muscle regeneration: cellular and molecular events.
-
Karalaki M, Fili S, Philippou A, Koutsilieris M. Muscle regeneration: cellular and molecular events. In Vivo 2009, 23:779-796.
-
(2009)
In Vivo
, vol.23
, pp. 779-796
-
-
Karalaki, M.1
Fili, S.2
Philippou, A.3
Koutsilieris, M.4
-
28
-
-
78049370987
-
Oxidative stress, inflammation, and cancer: how are they linked?
-
Reuter S, Gupta SC, Chaturvedi MM, Aggarwal BB. Oxidative stress, inflammation, and cancer: how are they linked? Free Radic Biol Med 2010, 49:1603-1616.
-
(2010)
Free Radic Biol Med
, vol.49
, pp. 1603-1616
-
-
Reuter, S.1
Gupta, S.C.2
Chaturvedi, M.M.3
Aggarwal, B.B.4
-
29
-
-
79952370202
-
The cancer stem cell: premises, promises and challenges.
-
Clevers H. The cancer stem cell: premises, promises and challenges. Nat Med 2011, 17:313-319.
-
(2011)
Nat Med
, vol.17
, pp. 313-319
-
-
Clevers, H.1
-
30
-
-
79955513612
-
Manifestations and mechanisms of stem cell aging.
-
Liu L, Rando TA. Manifestations and mechanisms of stem cell aging. J Cell Biol 2011, 193:257-266.
-
(2011)
J Cell Biol
, vol.193
, pp. 257-266
-
-
Liu, L.1
Rando, T.A.2
-
31
-
-
80051967142
-
Stem cell effects in radiation risk.
-
Prise KM, Saran A. Stem cell effects in radiation risk. Stem Cells 2011, 29:1315-1321.
-
(2011)
Stem Cells
, vol.29
, pp. 1315-1321
-
-
Prise, K.M.1
Saran, A.2
-
32
-
-
67349114222
-
Programmed cell death pathways and current antitumor targets.
-
Tan ML, Ooi JP, Ismail N, Moad AI, Muhammad TS. Programmed cell death pathways and current antitumor targets. Pharm Res 2009, 26:1547-1560.
-
(2009)
Pharm Res
, vol.26
, pp. 1547-1560
-
-
Tan, M.L.1
Ooi, J.P.2
Ismail, N.3
Moad, A.I.4
Muhammad, T.S.5
-
33
-
-
79959637828
-
Pro-senescence therapy for cancer treatment.
-
Nardella C, Clohessy JG, Alimonti A, Pandolfi PP. Pro-senescence therapy for cancer treatment. Nat Rev Cancer 2011, 11:503-511.
-
(2011)
Nat Rev Cancer
, vol.11
, pp. 503-511
-
-
Nardella, C.1
Clohessy, J.G.2
Alimonti, A.3
Pandolfi, P.P.4
-
34
-
-
78650589408
-
Energy metabolism in adult neural stem cell fate.
-
Rafalski VA, Brunet A. Energy metabolism in adult neural stem cell fate. Prog Neurobiol 2011, 93:182-203.
-
(2011)
Prog Neurobiol
, vol.93
, pp. 182-203
-
-
Rafalski, V.A.1
Brunet, A.2
-
35
-
-
78649519914
-
Metabolic regulation of stem cell behavior and implications for aging.
-
Jasper H, Jones DL. Metabolic regulation of stem cell behavior and implications for aging. Cell Metab 12:561-565.
-
Cell Metab
, vol.12
, pp. 561-565
-
-
Jasper, H.1
Jones, D.L.2
-
36
-
-
79960824262
-
Directed stem cell differentiation by fluid mechanical forces.
-
Adamo L, Garcia-Cardena G. Directed stem cell differentiation by fluid mechanical forces. Antioxid Redox Signal 2011, 15:1463-1473.
-
(2011)
Antioxid Redox Signal
, vol.15
, pp. 1463-1473
-
-
Adamo, L.1
Garcia-Cardena, G.2
-
37
-
-
64849094619
-
Mechanically induced osteogenic differentiation-the role of RhoA, ROCKII and cytoskeletal dynamics.
-
Arnsdorf EJ, Tummala P, Kwon RY, Jacobs CR. Mechanically induced osteogenic differentiation-the role of RhoA, ROCKII and cytoskeletal dynamics. J Cell Sci 2009, 122:546-553.
-
(2009)
J Cell Sci
, vol.122
, pp. 546-553
-
-
Arnsdorf, E.J.1
Tummala, P.2
Kwon, R.Y.3
Jacobs, C.R.4
-
38
-
-
67649920749
-
Growth factors, matrices, and forces combine and control stem cells.
-
Discher DE, Mooney DJ, Zandstra PW. Growth factors, matrices, and forces combine and control stem cells. Science 2009, 324:1673-1677.
-
(2009)
Science
, vol.324
, pp. 1673-1677
-
-
Discher, D.E.1
Mooney, D.J.2
Zandstra, P.W.3
-
39
-
-
79251540221
-
Stiffness gradients mimicking in vivo tissue variation regulate mesenchymal stem cell fate.
-
Tse JR, Engler AJ. Stiffness gradients mimicking in vivo tissue variation regulate mesenchymal stem cell fate. PLoS One 2011, 6:e15978.
-
(2011)
PLoS One
, vol.6
-
-
Tse, J.R.1
Engler, A.J.2
-
40
-
-
33747152561
-
Matrix elasticity directs stem cell lineage specification.
-
Engler AJ, Sen S, Sweeney HL, Discher DE. Matrix elasticity directs stem cell lineage specification. Cell 2006, 126:677-689.
-
(2006)
Cell
, vol.126
, pp. 677-689
-
-
Engler, A.J.1
Sen, S.2
Sweeney, H.L.3
Discher, D.E.4
-
41
-
-
19944400789
-
Quantification of self-renewal capacity in single hematopoietic stem cells from normal and Lnk-deficient mice.
-
Ema H, Sudo K, Seita J, Matsubara A, Morita Y, Osawa M, Takatsu K, Takaki S, Nakauchi H. Quantification of self-renewal capacity in single hematopoietic stem cells from normal and Lnk-deficient mice. Dev Cell 2005, 8:907-914.
-
(2005)
Dev Cell
, vol.8
, pp. 907-914
-
-
Ema, H.1
Sudo, K.2
Seita, J.3
Matsubara, A.4
Morita, Y.5
Osawa, M.6
Takatsu, K.7
Takaki, S.8
Nakauchi, H.9
-
42
-
-
0029796633
-
Long-term lymphohematopoietic reconstitution by a single CD34-low/negative hematopoietic stem cell.
-
Osawa M, Hanada K, Hamada H, Nakauchi H. Long-term lymphohematopoietic reconstitution by a single CD34-low/negative hematopoietic stem cell. Science 1996, 273:242-245.
-
(1996)
Science
, vol.273
, pp. 242-245
-
-
Osawa, M.1
Hanada, K.2
Hamada, H.3
Nakauchi, H.4
-
43
-
-
58149496504
-
Stem cells and aging in the hematopoietic system.
-
Warren LA, Rossi DJ. Stem cells and aging in the hematopoietic system. Mech Ageing Dev 2009, 130:46-53.
-
(2009)
Mech Ageing Dev
, vol.130
, pp. 46-53
-
-
Warren, L.A.1
Rossi, D.J.2
-
44
-
-
0020534157
-
Long-term erythropoietic repopulating ability of old, young, and fetal stem cells.
-
Harrison DE. Long-term erythropoietic repopulating ability of old, young, and fetal stem cells. J Exp Med 1983, 157:1496-1504.
-
(1983)
J Exp Med
, vol.157
, pp. 1496-1504
-
-
Harrison, D.E.1
-
45
-
-
0018349312
-
Mouse erythropoietic stem cell lines function normally 100 months: loss related to number of transplantations.
-
Harrison DE. Mouse erythropoietic stem cell lines function normally 100 months: loss related to number of transplantations. Mech Ageing Dev 1979, 9:427-433.
-
(1979)
Mech Ageing Dev
, vol.9
, pp. 427-433
-
-
Harrison, D.E.1
-
46
-
-
34548417118
-
Limiting factors in murine hematopoietic stem cell assays.
-
Purton LE, Scadden DT. Limiting factors in murine hematopoietic stem cell assays. Cell Stem Cell 2007, 1:263-270.
-
(2007)
Cell Stem Cell
, vol.1
, pp. 263-270
-
-
Purton, L.E.1
Scadden, D.T.2
-
47
-
-
52049087829
-
Hematopoietic stem cells and the aging hematopoietic system.
-
Gazit R, Weissman IL, Rossi DJ. Hematopoietic stem cells and the aging hematopoietic system. Semin Hematol 2008, 45:218-224.
-
(2008)
Semin Hematol
, vol.45
, pp. 218-224
-
-
Gazit, R.1
Weissman, I.L.2
Rossi, D.J.3
-
48
-
-
79960989834
-
Stem cell quiescence.
-
Li L, Bhatia R. Stem cell quiescence. Clin Cancer Res 2011, 17:4936-4941.
-
(2011)
Clin Cancer Res
, vol.17
, pp. 4936-4941
-
-
Li, L.1
Bhatia, R.2
-
49
-
-
79955020013
-
Stress erythropoiesis: new signals and new stress progenitor cells.
-
Paulson RF, Shi L, Wu DC. Stress erythropoiesis: new signals and new stress progenitor cells. Curr Opin Hematol 18:139-145.
-
Curr Opin Hematol
, vol.18
, pp. 139-145
-
-
Paulson, R.F.1
Shi, L.2
Wu, D.C.3
-
50
-
-
56549128268
-
Hematopoietic stem cells reversibly switch from dormancy to self-renewal during homeostasis and repair.
-
Wilson A, Laurenti E, Oser G, van der Wath RC, Blanco-Bose W, Jaworski M, Offner S, Dunant CF, Eshkind L, Bockamp E, et al. Hematopoietic stem cells reversibly switch from dormancy to self-renewal during homeostasis and repair. Cell 2008, 135:1118-1129.
-
(2008)
Cell
, vol.135
, pp. 1118-1129
-
-
Wilson, A.1
Laurenti, E.2
Oser, G.3
van der Wath, R.C.4
Blanco-Bose, W.5
Jaworski, M.6
Offner, S.7
Dunant, C.F.8
Eshkind, L.9
Bockamp, E.10
-
51
-
-
1142275269
-
Age-related changes in lymphocyte development and function.
-
Linton PJ, Dorshkind K. Age-related changes in lymphocyte development and function. Nat Immunol 2004, 5:133-139.
-
(2004)
Nat Immunol
, vol.5
, pp. 133-139
-
-
Linton, P.J.1
Dorshkind, K.2
-
52
-
-
0035496909
-
Donor characteristics as risk factors in recipients after transplantation of bone marrow from unrelated donors: the effect of donor age.
-
Kollman C, Howe CW, Anasetti C, Antin JH, Davies SM, Filipovich AH, Hegland J, Kamani N, Kernan NA, King R, et al. Donor characteristics as risk factors in recipients after transplantation of bone marrow from unrelated donors: the effect of donor age. Blood 2001, 98:2043-2051.
-
(2001)
Blood
, vol.98
, pp. 2043-2051
-
-
Kollman, C.1
Howe, C.W.2
Anasetti, C.3
Antin, J.H.4
Davies, S.M.5
Filipovich, A.H.6
Hegland, J.7
Kamani, N.8
Kernan, N.A.9
King, R.10
-
53
-
-
21544467270
-
Cell intrinsic alterations underlie hematopoietic stem cell aging.
-
Rossi DJ, Bryder D, Zahn JM, Ahlenius H, Sonu R, Wagers AJ, Weissman IL. Cell intrinsic alterations underlie hematopoietic stem cell aging. Proc Natl Acad Sci U S A 2005, 102:9194-9199.
-
(2005)
Proc Natl Acad Sci U S A
, vol.102
, pp. 9194-9199
-
-
Rossi, D.J.1
Bryder, D.2
Zahn, J.M.3
Ahlenius, H.4
Sonu, R.5
Wagers, A.J.6
Weissman, I.L.7
-
54
-
-
34147099672
-
Age-dependent increase in side population distribution within hematopoiesis: implications for our understanding of the mechanism of aging.
-
Pearce DJ, Anjos-Afonso F, Ridler CM, Eddaoudi A, Bonnet D. Age-dependent increase in side population distribution within hematopoiesis: implications for our understanding of the mechanism of aging. Stem Cells 2007, 25:828-835.
-
(2007)
Stem Cells
, vol.25
, pp. 828-835
-
-
Pearce, D.J.1
Anjos-Afonso, F.2
Ridler, C.M.3
Eddaoudi, A.4
Bonnet, D.5
-
56
-
-
45449106783
-
Replicative stress, stem cells and aging.
-
Ruzankina Y, Asare A, Brown EJ. Replicative stress, stem cells and aging. Mech Ageing Dev 2008, 129:460-466.
-
(2008)
Mech Ageing Dev
, vol.129
, pp. 460-466
-
-
Ruzankina, Y.1
Asare, A.2
Brown, E.J.3
-
57
-
-
67649402297
-
Aging in the lympho-hematopoietic stem cell compartment.
-
Geiger H, Rudolph KL. Aging in the lympho-hematopoietic stem cell compartment. Trends Immunol 2009, 30:360-365.
-
(2009)
Trends Immunol
, vol.30
, pp. 360-365
-
-
Geiger, H.1
Rudolph, K.L.2
-
58
-
-
33845892109
-
Cdkn1a deletion improves stem cell function and lifespan of mice with dysfunctional telomeres without accelerating cancer formation.
-
Choudhury AR, Ju Z, Djojosubroto MW, Schienke A, Lechel A, Schaetzlein S, Jiang H, Stepczynska A, Wang C, Buer J, et al. Cdkn1a deletion improves stem cell function and lifespan of mice with dysfunctional telomeres without accelerating cancer formation. Nat Genet 2007, 39:99-105.
-
(2007)
Nat Genet
, vol.39
, pp. 99-105
-
-
Choudhury, A.R.1
Ju, Z.2
Djojosubroto, M.W.3
Schienke, A.4
Lechel, A.5
Schaetzlein, S.6
Jiang, H.7
Stepczynska, A.8
Wang, C.9
Buer, J.10
-
60
-
-
77956251480
-
Hematopoietic stem cell quiescence promotes error-prone DNA repair and mutagenesis.
-
Mohrin M, Bourke E, Alexander D, Warr MR, Barry-Holson K, Le Beau MM, Morrison CG, Passegue E. Hematopoietic stem cell quiescence promotes error-prone DNA repair and mutagenesis. Cell Stem Cell 7:174-185.
-
Cell Stem Cell
, vol.7
, pp. 174-185
-
-
Mohrin, M.1
Bourke, E.2
Alexander, D.3
Warr, M.R.4
Barry-Holson, K.5
Le Beau, M.M.6
Morrison, C.G.7
Passegue, E.8
-
61
-
-
79955941129
-
Maintenance of genomic integrity in hematopoietic stem cells.
-
Naka K, Hirao A. Maintenance of genomic integrity in hematopoietic stem cells. Int J Hematol 2011, 93:434-439.
-
(2011)
Int J Hematol
, vol.93
, pp. 434-439
-
-
Naka, K.1
Hirao, A.2
-
62
-
-
77954910364
-
Role of the polycomb group proteins in hematopoietic stem cells.
-
Konuma T, Oguro H, Iwama A. Role of the polycomb group proteins in hematopoietic stem cells. Dev Growth Differ 2010, 52:505-516.
-
(2010)
Dev Growth Differ
, vol.52
, pp. 505-516
-
-
Konuma, T.1
Oguro, H.2
Iwama, A.3
-
63
-
-
0033552813
-
The oncogene and Polycomb-group gene bmi-1 regulates cell proliferation and senescence through the ink4a locus.
-
Jacobs JJ, Kieboom K, Marino S, DePinho RA, van Lohuizen M. The oncogene and Polycomb-group gene bmi-1 regulates cell proliferation and senescence through the ink4a locus. Nature 1999, 397:164-168.
-
(1999)
Nature
, vol.397
, pp. 164-168
-
-
Jacobs, J.J.1
Kieboom, K.2
Marino, S.3
DePinho, R.A.4
van Lohuizen, M.5
-
64
-
-
67349156082
-
Bmi1 regulates mitochondrial function and the DNA damage response pathway.
-
Liu J, Cao L, Chen J, Song S, Lee IH, Quijano C, Liu H, Keyvanfar K, Chen H, Cao LY, et al. Bmi1 regulates mitochondrial function and the DNA damage response pathway. Nature 2009, 459:387-392.
-
(2009)
Nature
, vol.459
, pp. 387-392
-
-
Liu, J.1
Cao, L.2
Chen, J.3
Song, S.4
Lee, I.H.5
Quijano, C.6
Liu, H.7
Keyvanfar, K.8
Chen, H.9
Cao, L.Y.10
-
65
-
-
33749172559
-
Stem-cell ageing modified by the cyclin-dependent kinase inhibitor p16INK4a.
-
Janzen V, Forkert R, Fleming HE, Saito Y, Waring MT, Dombkowski DM, Cheng T, DePinho RA, Sharpless NE, Scadden DT. Stem-cell ageing modified by the cyclin-dependent kinase inhibitor p16INK4a. Nature 2006, 443:421-426.
-
(2006)
Nature
, vol.443
, pp. 421-426
-
-
Janzen, V.1
Forkert, R.2
Fleming, H.E.3
Saito, Y.4
Waring, M.T.5
Dombkowski, D.M.6
Cheng, T.7
DePinho, R.A.8
Sharpless, N.E.9
Scadden, D.T.10
-
66
-
-
79960077503
-
Reactive oxygen species and hematopoietic stem cell senescence.
-
Shao L, Li H, Pazhanisamy SK, Meng A, Wang Y, Zhou D. Reactive oxygen species and hematopoietic stem cell senescence. Int J Hematol 94:24-32.
-
Int J Hematol
, vol.94
, pp. 24-32
-
-
Shao, L.1
Li, H.2
Pazhanisamy, S.K.3
Meng, A.4
Wang, Y.5
Zhou, D.6
-
68
-
-
70350685238
-
Oxidative stress regulation of stem and progenitor cells.
-
Pervaiz S, Taneja R, Ghaffari S. Oxidative stress regulation of stem and progenitor cells. Antioxid Redox Signal 2009, 11:2777-2789.
-
(2009)
Antioxid Redox Signal
, vol.11
, pp. 2777-2789
-
-
Pervaiz, S.1
Taneja, R.2
Ghaffari, S.3
-
69
-
-
70350734315
-
Erythropoiesis: model systems, molecular regulators, and developmental programs.
-
Tsiftsoglou AS, Vizirianakis IS, Strouboulis J. Erythropoiesis: model systems, molecular regulators, and developmental programs. IUBMB Life 2009, 61:800-830.
-
(2009)
IUBMB Life
, vol.61
, pp. 800-830
-
-
Tsiftsoglou, A.S.1
Vizirianakis, I.S.2
Strouboulis, J.3
-
70
-
-
35548936968
-
A low level of reactive oxygen species selects for primitive hematopoietic stem cells that may reside in the low-oxygenic niche.
-
Jang YY, Sharkis SJ. A low level of reactive oxygen species selects for primitive hematopoietic stem cells that may reside in the low-oxygenic niche. Blood 2007, 110:3056-3063.
-
(2007)
Blood
, vol.110
, pp. 3056-3063
-
-
Jang, Y.Y.1
Sharkis, S.J.2
-
71
-
-
73949121249
-
The hematopoietic stem cell niche: low in oxygen but a nice place to be.
-
Eliasson P, Jonsson JI. The hematopoietic stem cell niche: low in oxygen but a nice place to be. J Cell Physiol 2010, 222:17-22.
-
(2010)
J Cell Physiol
, vol.222
, pp. 17-22
-
-
Eliasson, P.1
Jonsson, J.I.2
-
72
-
-
37449021071
-
Bone marrow long label-retaining cells reside in the sinusoidal hypoxic niche.
-
Kubota Y, Takubo K, Suda T. Bone marrow long label-retaining cells reside in the sinusoidal hypoxic niche. Biochem Biophys Res Commun 2008, 366:335-339.
-
(2008)
Biochem Biophys Res Commun
, vol.366
, pp. 335-339
-
-
Kubota, Y.1
Takubo, K.2
Suda, T.3
-
73
-
-
34447616779
-
Oxygen saturation in the bone marrow of healthy volunteers.
-
Harrison JS, Rameshwar P, Chang V, Bandari P. Oxygen saturation in the bone marrow of healthy volunteers. Blood 2002, 99:394.
-
(2002)
Blood
, vol.99
, pp. 394
-
-
Harrison, J.S.1
Rameshwar, P.2
Chang, V.3
Bandari, P.4
-
74
-
-
34248359065
-
Distribution of hematopoietic stem cells in the bone marrow according to regional hypoxia.
-
Parmar K, Mauch P, Vergilio JA, Sackstein R, Down JD. Distribution of hematopoietic stem cells in the bone marrow according to regional hypoxia. Proc Natl Acad Sci U S A 2007, 104:5431-5436.
-
(2007)
Proc Natl Acad Sci U S A
, vol.104
, pp. 5431-5436
-
-
Parmar, K.1
Mauch, P.2
Vergilio, J.A.3
Sackstein, R.4
Down, J.D.5
-
75
-
-
77956217067
-
Regulation of the HIF-1alpha level is essential for hematopoietic stem cells.
-
Takubo K, Goda N, Yamada W, Iriuchishima H, Ikeda E, Kubota Y, Shima H, Johnson RS, Hirao A, Suematsu M, et al. Regulation of the HIF-1alpha level is essential for hematopoietic stem cells. Cell Stem Cell 2010, 7:391-402.
-
(2010)
Cell Stem Cell
, vol.7
, pp. 391-402
-
-
Takubo, K.1
Goda, N.2
Yamada, W.3
Iriuchishima, H.4
Ikeda, E.5
Kubota, Y.6
Shima, H.7
Johnson, R.S.8
Hirao, A.9
Suematsu, M.10
-
76
-
-
77950860807
-
Hypoxia mediates low cell-cycle activity and increases the proportion of long-term-reconstituting hematopoietic stem cells during in vitro culture.
-
Eliasson P, Rehn M, Hammar P, Larsson P, Sirenko O, Flippin LA, Cammenga J, Jonsson JI. Hypoxia mediates low cell-cycle activity and increases the proportion of long-term-reconstituting hematopoietic stem cells during in vitro culture. Exp Hematol 2010, 38:301-310.
-
(2010)
Exp Hematol
, vol.38
, pp. 301-310
-
-
Eliasson, P.1
Rehn, M.2
Hammar, P.3
Larsson, P.4
Sirenko, O.5
Flippin, L.A.6
Cammenga, J.7
Jonsson, J.I.8
-
77
-
-
70349446465
-
Reactive oxygen species prime Drosophila haematopoietic progenitors for differentiation.
-
Owusu-Ansah E, Banerjee U. Reactive oxygen species prime Drosophila haematopoietic progenitors for differentiation. Nature 2009, 461:537-541.
-
(2009)
Nature
, vol.461
, pp. 537-541
-
-
Owusu-Ansah, E.1
Banerjee, U.2
-
78
-
-
34547660196
-
FoxO transcription factors and stem cell homeostasis: insights from the hematopoietic system.
-
Tothova Z, Gilliland DG. FoxO transcription factors and stem cell homeostasis: insights from the hematopoietic system. Cell Stem Cell 2007, 1:140-152.
-
(2007)
Cell Stem Cell
, vol.1
, pp. 140-152
-
-
Tothova, Z.1
Gilliland, D.G.2
-
79
-
-
34249882777
-
Foxo3a is essential for maintenance of the hematopoietic stem cell pool.
-
Miyamoto K, Araki KY, Naka K, Arai F, Takubo K, Yamazaki S, Matsuoka S, Miyamoto T, Ito K, Ohmura M, et al. Foxo3a is essential for maintenance of the hematopoietic stem cell pool. Cell Stem Cell 2007, 1:101-112.
-
(2007)
Cell Stem Cell
, vol.1
, pp. 101-112
-
-
Miyamoto, K.1
Araki, K.Y.2
Naka, K.3
Arai, F.4
Takubo, K.5
Yamazaki, S.6
Matsuoka, S.7
Miyamoto, T.8
Ito, K.9
Ohmura, M.10
-
80
-
-
33846419112
-
FoxOs are critical mediators of hematopoietic stem cell resistance to physiologic oxidative stress.
-
Tothova Z, Kollipara R, Huntly BJ, Lee BH, Castrillon DH, Cullen DE, McDowell EP, Lazo-Kallanian S, Williams IR, Sears C, et al. FoxOs are critical mediators of hematopoietic stem cell resistance to physiologic oxidative stress. Cell 2007, 128:325-339.
-
(2007)
Cell
, vol.128
, pp. 325-339
-
-
Tothova, Z.1
Kollipara, R.2
Huntly, B.J.3
Lee, B.H.4
Castrillon, D.H.5
Cullen, D.E.6
McDowell, E.P.7
Lazo-Kallanian, S.8
Williams, I.R.9
Sears, C.10
-
81
-
-
33645730667
-
Reactive oxygen species act through p38 MAPK to limit the lifespan of hematopoietic stem cells.
-
Ito K, Hirao A, Arai F, Takubo K, Matsuoka S, Miyamoto K, Ohmura M, Naka K, Hosokawa K, Ikeda Y, et al. Reactive oxygen species act through p38 MAPK to limit the lifespan of hematopoietic stem cells. Nat Med 2006, 12:446-451.
-
(2006)
Nat Med
, vol.12
, pp. 446-451
-
-
Ito, K.1
Hirao, A.2
Arai, F.3
Takubo, K.4
Matsuoka, S.5
Miyamoto, K.6
Ohmura, M.7
Naka, K.8
Hosokawa, K.9
Ikeda, Y.10
-
82
-
-
74949112463
-
Repairing skeletal muscle: regenerative potential of skeletal muscle stem cells.
-
Tedesco FS, Dellavalle A, Diaz-Manera J, Messina G, Cossu G. Repairing skeletal muscle: regenerative potential of skeletal muscle stem cells. J Clin Invest 120:11-19.
-
J Clin Invest
, vol.120
, pp. 11-19
-
-
Tedesco, F.S.1
Dellavalle, A.2
Diaz-Manera, J.3
Messina, G.4
Cossu, G.5
-
83
-
-
37549039009
-
A temporal switch from notch to Wnt signaling in muscle stem cells is necessary for normal adult myogenesis.
-
Brack AS, Conboy IM, Conboy MJ, Shen J, Rando TA. A temporal switch from notch to Wnt signaling in muscle stem cells is necessary for normal adult myogenesis. Cell Stem Cell 2008, 2:50-59.
-
(2008)
Cell Stem Cell
, vol.2
, pp. 50-59
-
-
Brack, A.S.1
Conboy, I.M.2
Conboy, M.J.3
Shen, J.4
Rando, T.A.5
-
84
-
-
84867410773
-
Skeletal muscle stem cells: effects of aging and metabolism on muscle regenerative function.
-
Epub ahead of print; September 29, 2011).
-
Jang YC, Sinha M, Cerletti M, Dall'osso C, Wagers AJ. Skeletal muscle stem cells: effects of aging and metabolism on muscle regenerative function. Cold Spring Harb Symp Quant Biol (Epub ahead of print; September 29, 2011).
-
Cold Spring Harb Symp Quant Biol
-
-
Jang, Y.C.1
Sinha, M.2
Cerletti, M.3
Dall'osso, C.4
Wagers, A.J.5
-
85
-
-
13944261231
-
Rejuvenation of aged progenitor cells by exposure to a young systemic environment.
-
Conboy IM, Conboy MJ, Wagers AJ, Girma ER, Weissman IL, Rando TA. Rejuvenation of aged progenitor cells by exposure to a young systemic environment. Nature 2005, 433:760-764.
-
(2005)
Nature
, vol.433
, pp. 760-764
-
-
Conboy, I.M.1
Conboy, M.J.2
Wagers, A.J.3
Girma, E.R.4
Weissman, I.L.5
Rando, T.A.6
-
86
-
-
63049105702
-
Antioxidant levels represent a major determinant in the regenerative capacity of muscle stem cells.
-
Urish KL, Vella JB, Okada M, Deasy BM, Tobita K, Keller BB, Cao B, Piganelli JD, Huard J. Antioxidant levels represent a major determinant in the regenerative capacity of muscle stem cells. Mol Biol Cell 2009, 20:509-520.
-
(2009)
Mol Biol Cell
, vol.20
, pp. 509-520
-
-
Urish, K.L.1
Vella, J.B.2
Okada, M.3
Deasy, B.M.4
Tobita, K.5
Keller, B.B.6
Cao, B.7
Piganelli, J.D.8
Huard, J.9
-
87
-
-
78650893176
-
Drosophila melanogaster as a model for human intestinal infection and pathology.
-
Apidianakis Y, Rahme LG. Drosophila melanogaster as a model for human intestinal infection and pathology. Dis Model Mech 4:21-30.
-
Dis Model Mech
, vol.4
, pp. 21-30
-
-
Apidianakis, Y.1
Rahme, L.G.2
-
88
-
-
31444452338
-
Evidence that stem cells reside in the adult Drosophila midgut epithelium.
-
Micchelli CA, Perrimon N. Evidence that stem cells reside in the adult Drosophila midgut epithelium. Nature 2006, 439:475-479.
-
(2006)
Nature
, vol.439
, pp. 475-479
-
-
Micchelli, C.A.1
Perrimon, N.2
-
89
-
-
31444444485
-
The adult Drosophila posterior midgut is maintained by pluripotent stem cells.
-
Ohlstein B, Spradling A. The adult Drosophila posterior midgut is maintained by pluripotent stem cells. Nature 2006, 439:470-474.
-
(2006)
Nature
, vol.439
, pp. 470-474
-
-
Ohlstein, B.1
Spradling, A.2
-
90
-
-
52949093944
-
JNK activity in somatic stem cells causes loss of tissue homeostasis in the aging Drosophila gut.
-
Biteau B, Hochmuth CE, Jasper H. JNK activity in somatic stem cells causes loss of tissue homeostasis in the aging Drosophila gut. Cell Stem Cell 2008, 3:442-455.
-
(2008)
Cell Stem Cell
, vol.3
, pp. 442-455
-
-
Biteau, B.1
Hochmuth, C.E.2
Jasper, H.3
-
91
-
-
79551610653
-
Redox regulation by Keap1 and Nrf2 controls intestinal stem cell proliferation in Drosophila.
-
Hochmuth CE, Biteau B, Bohmann D, Jasper H. Redox regulation by Keap1 and Nrf2 controls intestinal stem cell proliferation in Drosophila. Cell Stem Cell 2011, 8:188-199.
-
(2011)
Cell Stem Cell
, vol.8
, pp. 188-199
-
-
Hochmuth, C.E.1
Biteau, B.2
Bohmann, D.3
Jasper, H.4
-
92
-
-
78650977190
-
EGFR/Ras/MAPK signaling mediates adult midgut epithelial homeostasis and regeneration in Drosophila.
-
Jiang H, Grenley MO, Bravo MJ, Blumhagen RZ, Edgar BA. EGFR/Ras/MAPK signaling mediates adult midgut epithelial homeostasis and regeneration in Drosophila. Cell Stem Cell 2011, 8:84-95.
-
(2011)
Cell Stem Cell
, vol.8
, pp. 84-95
-
-
Jiang, H.1
Grenley, M.O.2
Bravo, M.J.3
Blumhagen, R.Z.4
Edgar, B.A.5
-
93
-
-
79959238013
-
Microenvironmental regulation of stem cells in intestinal homeostasis and cancer.
-
Medema JP, Vermeulen L. Microenvironmental regulation of stem cells in intestinal homeostasis and cancer. Nature 2011, 474:318-326.
-
(2011)
Nature
, vol.474
, pp. 318-326
-
-
Medema, J.P.1
Vermeulen, L.2
-
94
-
-
62849112584
-
Older individuals appear to acquire mitotically older colorectal cancers.
-
Woo YJ, Siegmund KD, Tavare S, Shibata D. Older individuals appear to acquire mitotically older colorectal cancers. J Pathol 2009, 217:483-488.
-
(2009)
J Pathol
, vol.217
, pp. 483-488
-
-
Woo, Y.J.1
Siegmund, K.D.2
Tavare, S.3
Shibata, D.4
-
95
-
-
76249101972
-
Age-associated mitochondrial DNA mutations lead to small but significant changes in cell proliferation and apoptosis in human colonic crypts.
-
Nooteboom M, Johnson R, Taylor RW, Wright NA, Lightowlers RN, Kirkwood TB, Mathers JC, Turnbull DM, Greaves LC. Age-associated mitochondrial DNA mutations lead to small but significant changes in cell proliferation and apoptosis in human colonic crypts. Aging Cell 2010, 9:96-99.
-
(2010)
Aging Cell
, vol.9
, pp. 96-99
-
-
Nooteboom, M.1
Johnson, R.2
Taylor, R.W.3
Wright, N.A.4
Lightowlers, R.N.5
Kirkwood, T.B.6
Mathers, J.C.7
Turnbull, D.M.8
Greaves, L.C.9
-
96
-
-
9644274090
-
Intrinsic ageing of gut epithelial stem cells.
-
Kirkwood TB. Intrinsic ageing of gut epithelial stem cells. Mech Ageing Dev 2004, 125:911-915.
-
(2004)
Mech Ageing Dev
, vol.125
, pp. 911-915
-
-
Kirkwood, T.B.1
-
97
-
-
71549167579
-
Regulation of adult neurogenesis by stress, sleep disruption, exercise and inflammation: implications for depression and antidepressant action.
-
Lucassen PJ, Meerlo P, Naylor AS, van Dam AM, Dayer AG, Fuchs E, Oomen CA, Czeh B. Regulation of adult neurogenesis by stress, sleep disruption, exercise and inflammation: implications for depression and antidepressant action. Eur Neuropsychopharmacol 20:1-17.
-
Eur Neuropsychopharmacol
, vol.20
, pp. 1-17
-
-
Lucassen, P.J.1
Meerlo, P.2
Naylor, A.S.3
van Dam, A.M.4
Dayer, A.G.5
Fuchs, E.6
Oomen, C.A.7
Czeh, B.8
-
98
-
-
80051786375
-
Hypoxia in the regulation of neural stem cells.
-
De Filippis L, Delia D. Hypoxia in the regulation of neural stem cells. Cell Mol Life Sci 2011, 68:2831-2844.
-
(2011)
Cell Mol Life Sci
, vol.68
, pp. 2831-2844
-
-
De Filippis, L.1
Delia, D.2
-
99
-
-
77957584397
-
O2 regulates stem cells through Wnt/beta-catenin signalling.
-
Mazumdar J, O'Brien WT, Johnson RS, LaManna JC, Chavez JC, Klein PS, Simon MC. O2 regulates stem cells through Wnt/beta-catenin signalling. Nat Cell Biol 2010, 12:1007-1013.
-
(2010)
Nat Cell Biol
, vol.12
, pp. 1007-1013
-
-
Mazumdar, J.1
O'Brien, W.T.2
Johnson, R.S.3
LaManna, J.C.4
Chavez, J.C.5
Klein, P.S.6
Simon, M.C.7
-
100
-
-
70350506802
-
FoxO3 regulates neural stem cell homeostasis.
-
Renault VM, Rafalski VA, Morgan AA, Salih DA, Brett JO, Webb AE, Villeda SA, Thekkat PU, Guillerey C, Denko NC, et al. FoxO3 regulates neural stem cell homeostasis. Cell Stem Cell 2009, 5:527-539.
-
(2009)
Cell Stem Cell
, vol.5
, pp. 527-539
-
-
Renault, V.M.1
Rafalski, V.A.2
Morgan, A.A.3
Salih, D.A.4
Brett, J.O.5
Webb, A.E.6
Villeda, S.A.7
Thekkat, P.U.8
Guillerey, C.9
Denko, N.C.10
-
101
-
-
70350497348
-
FoxOs cooperatively regulate diverse pathways governing neural stem cell homeostasis.
-
Paik JH, Ding Z, Narurkar R, Ramkissoon S, Muller F, Kamoun WS, Chae SS, Zheng H, Ying H, Mahoney J, et al. FoxOs cooperatively regulate diverse pathways governing neural stem cell homeostasis. Cell Stem Cell 2009, 5:540-553.
-
(2009)
Cell Stem Cell
, vol.5
, pp. 540-553
-
-
Paik, J.H.1
Ding, Z.2
Narurkar, R.3
Ramkissoon, S.4
Muller, F.5
Kamoun, W.S.6
Chae, S.S.7
Zheng, H.8
Ying, H.9
Mahoney, J.10
-
102
-
-
80053185358
-
Optimizing the osteogenic potential of adult stem cells for skeletal regeneration.
-
Lim JY, Loiselle AE, Lee JS, Zhang Y, Salvi JD, Donahue HJ. Optimizing the osteogenic potential of adult stem cells for skeletal regeneration. J Orthop Res 2001, 29:1627-1633.
-
(2001)
J Orthop Res
, vol.29
, pp. 1627-1633
-
-
Lim, J.Y.1
Loiselle, A.E.2
Lee, J.S.3
Zhang, Y.4
Salvi, J.D.5
Donahue, H.J.6
-
103
-
-
77958504055
-
Hair follicle is a target of stress hormone and autoimmune reactions.
-
Ito T. Hair follicle is a target of stress hormone and autoimmune reactions. J Dermatol Sci 60:67-73.
-
J Dermatol Sci
, vol.60
, pp. 67-73
-
-
Ito, T.1
-
104
-
-
66449086247
-
Genotoxic stress abrogates renewal of melanocyte stem cells by triggering their differentiation.
-
Inomata K, Aoto T, Binh NT, Okamoto N, Tanimura S, Wakayama T, Iseki S, Hara E, Masunaga T, Shimizu H, et al. Genotoxic stress abrogates renewal of melanocyte stem cells by triggering their differentiation. Cell 2009, 137:1088-1099.
-
(2009)
Cell
, vol.137
, pp. 1088-1099
-
-
Inomata, K.1
Aoto, T.2
Binh, N.T.3
Okamoto, N.4
Tanimura, S.5
Wakayama, T.6
Iseki, S.7
Hara, E.8
Masunaga, T.9
Shimizu, H.10
-
105
-
-
70349123829
-
The tumor suppressor p53 regulates polarity of self-renewing divisions in mammary stem cells.
-
Cicalese A, Bonizzi G, Pasi CE, Faretta M, Ronzoni S, Giulini B, Brisken C, Minucci S, Di Fiore PP, Pelicci PG. The tumor suppressor p53 regulates polarity of self-renewing divisions in mammary stem cells. Cell 2009, 138:1083-1095.
-
(2009)
Cell
, vol.138
, pp. 1083-1095
-
-
Cicalese, A.1
Bonizzi, G.2
Pasi, C.E.3
Faretta, M.4
Ronzoni, S.5
Giulini, B.6
Brisken, C.7
Minucci, S.8
Di Fiore, P.P.9
Pelicci, P.G.10
-
106
-
-
78650968849
-
The p53 tumor suppressor protein regulates hematopoietic stem cell fate.
-
Asai T, Liu Y, Bae N, Nimer SD. The p53 tumor suppressor protein regulates hematopoietic stem cell fate. J Cell Physiol 2011, 226:2215-2221.
-
(2011)
J Cell Physiol
, vol.226
, pp. 2215-2221
-
-
Asai, T.1
Liu, Y.2
Bae, N.3
Nimer, S.D.4
-
107
-
-
69349094006
-
A p53-mediated DNA damage response limits reprogramming to ensure iPS cell genomic integrity.
-
Marion RM, Strati K, Li H, Murga M, Blanco R, Ortega S, Fernandez-Capetillo O, Serrano M, Blasco MA. A p53-mediated DNA damage response limits reprogramming to ensure iPS cell genomic integrity. Nature 2009, 460:1149-1153.
-
(2009)
Nature
, vol.460
, pp. 1149-1153
-
-
Marion, R.M.1
Strati, K.2
Li, H.3
Murga, M.4
Blanco, R.5
Ortega, S.6
Fernandez-Capetillo, O.7
Serrano, M.8
Blasco, M.A.9
-
108
-
-
79251548626
-
Forkhead homeobox type O transcription factors in the responses to oxidative stress.
-
Storz P. Forkhead homeobox type O transcription factors in the responses to oxidative stress. Antioxid Redox Signal 14:593-605.
-
Antioxid Redox Signal
, vol.14
, pp. 593-605
-
-
Storz, P.1
-
109
-
-
78650175195
-
Stem cell dynamics in response to nutrient availability.
-
McLeod CJ, Wang L, Wong C, Jones DL. Stem cell dynamics in response to nutrient availability. Curr Biol 2010, 20:2100-2105.
-
(2010)
Curr Biol
, vol.20
, pp. 2100-2105
-
-
McLeod, C.J.1
Wang, L.2
Wong, C.3
Jones, D.L.4
-
110
-
-
33748850636
-
Activation of the canonical Wnt pathway leads to loss of hematopoietic stem cell repopulation and multilineage differentiation block.
-
Kirstetter P, Anderson K, Porse BT, Jacobsen SE, Nerlov C. Activation of the canonical Wnt pathway leads to loss of hematopoietic stem cell repopulation and multilineage differentiation block. Nat Immunol 2006, 7:1048-1056.
-
(2006)
Nat Immunol
, vol.7
, pp. 1048-1056
-
-
Kirstetter, P.1
Anderson, K.2
Porse, B.T.3
Jacobsen, S.E.4
Nerlov, C.5
-
111
-
-
33748859509
-
Hematopoietic stem cell and multilineage defects generated by constitutive beta-catenin activation.
-
Scheller M, Huelsken J, Rosenbauer F, Taketo MM, Birchmeier W, Tenen DG, Leutz A. Hematopoietic stem cell and multilineage defects generated by constitutive beta-catenin activation. Nat Immunol 2006, 7:1037-1047.
-
(2006)
Nat Immunol
, vol.7
, pp. 1037-1047
-
-
Scheller, M.1
Huelsken, J.2
Rosenbauer, F.3
Taketo, M.M.4
Birchmeier, W.5
Tenen, D.G.6
Leutz, A.7
-
112
-
-
77949385724
-
Redox regulation of Wnt signalling via nucleoredoxin.
-
Funato Y, Miki H. Redox regulation of Wnt signalling via nucleoredoxin. Free Radic Res 2010, 44:379-388.
-
(2010)
Free Radic Res
, vol.44
, pp. 379-388
-
-
Funato, Y.1
Miki, H.2
-
113
-
-
53949090765
-
NF-kappaB signaling pathway and its therapeutic implications in human diseases.
-
Sarkar FH, Li Y, Wang Z, Kong D. NF-kappaB signaling pathway and its therapeutic implications in human diseases. Int Rev Immunol 2008, 27:293-319.
-
(2008)
Int Rev Immunol
, vol.27
, pp. 293-319
-
-
Sarkar, F.H.1
Li, Y.2
Wang, Z.3
Kong, D.4
-
114
-
-
70349338871
-
Stem cells, stress, metabolism and cancer: a drama in two Octs.
-
Kang J, Shakya A, Tantin D. Stem cells, stress, metabolism and cancer: a drama in two Octs. Trends Biochem Sci 2009, 34:491-499.
-
(2009)
Trends Biochem Sci
, vol.34
, pp. 491-499
-
-
Kang, J.1
Shakya, A.2
Tantin, D.3
-
115
-
-
66749182718
-
Hemodynamic forces, vascular oxidative stress, and regulation of BMP-2/4 expression.
-
Csiszar A, Lehoux S, Ungvari Z. Hemodynamic forces, vascular oxidative stress, and regulation of BMP-2/4 expression. Antioxid Redox Signal 2009, 11:1683-1697.
-
(2009)
Antioxid Redox Signal
, vol.11
, pp. 1683-1697
-
-
Csiszar, A.1
Lehoux, S.2
Ungvari, Z.3
-
116
-
-
47949122432
-
Adult stem cell maintenance and tissue regeneration in the ageing context: the role for A-type lamins as intrinsic modulators of ageing in adult stem cells and their niches.
-
Pekovic V, Hutchison CJ. Adult stem cell maintenance and tissue regeneration in the ageing context: the role for A-type lamins as intrinsic modulators of ageing in adult stem cells and their niches. J Anat 2008, 213:5-25.
-
(2008)
J Anat
, vol.213
, pp. 5-25
-
-
Pekovic, V.1
Hutchison, C.J.2
-
117
-
-
79960997489
-
The Hippo pathway in organ size control, tissue regeneration and stem cell self-renewal.
-
Zhao B, Tumaneng K, Guan KL. The Hippo pathway in organ size control, tissue regeneration and stem cell self-renewal. Nat Cell Biol 2011, 13:877-883.
-
(2011)
Nat Cell Biol
, vol.13
, pp. 877-883
-
-
Zhao, B.1
Tumaneng, K.2
Guan, K.L.3
-
118
-
-
34247618721
-
Concise review: regulation of embryonic stem cell lineage commitment by mitogen-activated protein kinases.
-
Binetruy B, Heasley L, Bost F, Caron L, Aouadi M. Concise review: regulation of embryonic stem cell lineage commitment by mitogen-activated protein kinases. Stem Cells 2007, 25:1090-1095.
-
(2007)
Stem Cells
, vol.25
, pp. 1090-1095
-
-
Binetruy, B.1
Heasley, L.2
Bost, F.3
Caron, L.4
Aouadi, M.5
-
119
-
-
79955594241
-
FoxO1: a molecule for all seasons.
-
Kousteni S. FoxO1: a molecule for all seasons. J Bone Miner Res 2011, 26:912-917.
-
(2011)
J Bone Miner Res
, vol.26
, pp. 912-917
-
-
Kousteni, S.1
-
120
-
-
80052490840
-
FOXO1 is an essential regulator of pluripotency in human embryonic stem cells.
-
Zhang X, Yalcin S, Lee DF, Yeh TY, Lee SM, Su J, Mungamuri SK, Rimmele P, Kennedy M, Sellers R, et al. FOXO1 is an essential regulator of pluripotency in human embryonic stem cells. Nat Cell Biol 2011, 13:1092-1099.
-
(2011)
Nat Cell Biol
, vol.13
, pp. 1092-1099
-
-
Zhang, X.1
Yalcin, S.2
Lee, D.F.3
Yeh, T.Y.4
Lee, S.M.5
Su, J.6
Mungamuri, S.K.7
Rimmele, P.8
Kennedy, M.9
Sellers, R.10
-
121
-
-
34250844410
-
Biological stress response terminology: integrating the concepts of adaptive response and preconditioning stress within a hormetic dose-response framework.
-
Calabrese EJ, Bachmann KA, Bailer AJ, Bolger PM, Borak J, Cai L, Cedergreen N, Cherian MG, Chiueh CC, Clarkson TW, et al. Biological stress response terminology: integrating the concepts of adaptive response and preconditioning stress within a hormetic dose-response framework. Toxicol Appl Pharmacol 2007, 222:122-128.
-
(2007)
Toxicol Appl Pharmacol
, vol.222
, pp. 122-128
-
-
Calabrese, E.J.1
Bachmann, K.A.2
Bailer, A.J.3
Bolger, P.M.4
Borak, J.5
Cai, L.6
Cedergreen, N.7
Cherian, M.G.8
Chiueh, C.C.9
Clarkson, T.W.10
-
122
-
-
77958607949
-
Stress for stress tolerance? A fundamentally new approach in mammalian embryology.
-
Pribenszky C, Vajta G, Molnar M, Du Y, Lin L, Bolund L, Yovich J. Stress for stress tolerance? A fundamentally new approach in mammalian embryology. Biol Reprod 2010, 83:690-697.
-
(2010)
Biol Reprod
, vol.83
, pp. 690-697
-
-
Pribenszky, C.1
Vajta, G.2
Molnar, M.3
Du, Y.4
Lin, L.5
Bolund, L.6
Yovich, J.7
-
123
-
-
77953610377
-
Gender dimorphisms in progenitor and stem cell function in cardiovascular disease.
-
Herrmann JL, Abarbanell AM, Weil BR, Manukyan MC, Poynter JA, Wang Y, Coffey AC, Meldrum DR. Gender dimorphisms in progenitor and stem cell function in cardiovascular disease. J Cardiovasc Transl Res 2010, 3:103-113.
-
(2010)
J Cardiovasc Transl Res
, vol.3
, pp. 103-113
-
-
Herrmann, J.L.1
Abarbanell, A.M.2
Weil, B.R.3
Manukyan, M.C.4
Poynter, J.A.5
Wang, Y.6
Coffey, A.C.7
Meldrum, D.R.8
-
124
-
-
82455188255
-
Sex, the underestimated potential determining factor in brain tissue repair strategy.
-
Lecanu L. Sex, the underestimated potential determining factor in brain tissue repair strategy. Stem Cells Dev 2011, 20:2031-2035.
-
(2011)
Stem Cells Dev
, vol.20
, pp. 2031-2035
-
-
Lecanu, L.1
-
125
-
-
80053321749
-
Progesterone and 17beta-estradiol increase differentiation of mouse embryonic stem cells to motor neurons.
-
Lopez-Gonzalez R, Camacho-Arroyo I, Velasco I. Progesterone and 17beta-estradiol increase differentiation of mouse embryonic stem cells to motor neurons. IUBMB Life 2011, 63:930-939.
-
(2011)
IUBMB Life
, vol.63
, pp. 930-939
-
-
Lopez-Gonzalez, R.1
Camacho-Arroyo, I.2
Velasco, I.3
-
126
-
-
34247119156
-
A role for cell sex in stem cell-mediated skeletal muscle regeneration: female cells have higher muscle regeneration efficiency.
-
Deasy BM, Lu A, Tebbets JC, Feduska JM, Schugar RC, Pollett JB, Sun B, Urish KL, Gharaibeh BM, Cao B, et al. A role for cell sex in stem cell-mediated skeletal muscle regeneration: female cells have higher muscle regeneration efficiency. J Cell Biol 2007, 177:73-86.
-
(2007)
J Cell Biol
, vol.177
, pp. 73-86
-
-
Deasy, B.M.1
Lu, A.2
Tebbets, J.C.3
Feduska, J.M.4
Schugar, R.C.5
Pollett, J.B.6
Sun, B.7
Urish, K.L.8
Gharaibeh, B.M.9
Cao, B.10
-
127
-
-
41149111020
-
Sex differences in muscle-derived stem cells and skeletal muscle.
-
Deasy BM, Schugar RC, Huard J. Sex differences in muscle-derived stem cells and skeletal muscle. Crit Rev Eukaryot Gene Expr 2008, 18:173-188.
-
(2008)
Crit Rev Eukaryot Gene Expr
, vol.18
, pp. 173-188
-
-
Deasy, B.M.1
Schugar, R.C.2
Huard, J.3
-
128
-
-
33746896640
-
Sex-specific regulation of aging and apoptosis.
-
Tower J. Sex-specific regulation of aging and apoptosis. Mech Ageing Dev 2006, 127:705-718.
-
(2006)
Mech Ageing Dev
, vol.127
, pp. 705-718
-
-
Tower, J.1
-
129
-
-
77958062011
-
Stress and sex versus immunity and inflammation.
-
Chrousos GP. Stress and sex versus immunity and inflammation. Sci Signal 3:pe36.
-
Sci Signal
, vol.3
-
-
Chrousos, G.P.1
-
130
-
-
77953417589
-
Drosophila melanogaster p53 has developmental stage-specific and sex-specific effects on adult life span indicative of sexual antagonistic pleiotropy.
-
Waskar M, Landis GN, Shen J, Curtis C, Tozer K, Abdueva D, Skvortsov D, Tavare S, Tower J. Drosophila melanogaster p53 has developmental stage-specific and sex-specific effects on adult life span indicative of sexual antagonistic pleiotropy. Aging (Albany NY) 2009, 1:903-936.
-
(2009)
Aging (Albany NY)
, vol.1
, pp. 903-936
-
-
Waskar, M.1
Landis, G.N.2
Shen, J.3
Curtis, C.4
Tozer, K.5
Abdueva, D.6
Skvortsov, D.7
Tavare, S.8
Tower, J.9
|