-
1
-
-
79956334658
-
Heart regeneration
-
Laflamme MA, Murry CE (2011) Heart regeneration. Nature 473(7347):326-335.
-
(2011)
Nature
, vol.473
, Issue.7347
, pp. 326-335
-
-
Laflamme, M.A.1
Murry, C.E.2
-
2
-
-
84872074542
-
The "heart disease and stroke statistics-2013 update" and the need for a national cardiovascular surveillance system
-
National Forum for Heart Disease and Stroke Prevention
-
Sidney S, Rosamond WD, Howard VJ, Luepker RV; National Forum for Heart Disease and Stroke Prevention (2013) The "heart disease and stroke statistics-2013 update" and the need for a national cardiovascular surveillance system. Circulation 127(1):21-23.
-
(2013)
Circulation
, vol.127
, Issue.1
, pp. 21-23
-
-
Sidney, S.1
Rosamond, W.D.2
Howard, V.J.3
Luepker, R.V.4
-
3
-
-
84860686873
-
Induction of myocardial infarction in adult zebrafish using cryoinjury
-
Chablais F, Jazwinska A (2012) Induction of myocardial infarction in adult zebrafish using cryoinjury. J Vis Exp (62):3666.
-
(2012)
J Vis Exp
, vol.62
, pp. 3666
-
-
Chablais, F.1
Jazwinska, A.2
-
4
-
-
79953678403
-
The zebrafish heart regenerates after cryoinjury-induced myocardial infarction
-
Chablais F, Veit J, Rainer G, Jazwinska A (2011) The zebrafish heart regenerates after cryoinjury-induced myocardial infarction. BMC Dev Biol 11:21.
-
(2011)
BMC Dev Biol
, vol.11
, pp. 21
-
-
Chablais, F.1
Veit, J.2
Rainer, G.3
Jazwinska, A.4
-
5
-
-
79955364546
-
Extensive scar formation and regression during heart regeneration after cryoinjury in zebrafish
-
González-Rosa JM, Martín V, Peralta M, Torres M, Mercader N (2011) Extensive scar formation and regression during heart regeneration after cryoinjury in zebrafish. Development 138(9):1663-1674.
-
(2011)
Development
, vol.138
, Issue.9
, pp. 1663-1674
-
-
González-Rosa, J.M.1
Martín, V.2
Peralta, M.3
Torres, M.4
Mercader, N.5
-
6
-
-
84861761564
-
Cryoinjury as a myocardial infarction model for the study of cardiac regeneration in the zebrafish
-
González-Rosa JM, Mercader N (2012) Cryoinjury as a myocardial infarction model for the study of cardiac regeneration in the zebrafish. Nat Protoc 7(4):782-788.
-
(2012)
Nat Protoc
, vol.7
, Issue.4
, pp. 782-788
-
-
González-Rosa, J.M.1
Mercader, N.2
-
7
-
-
0037073890
-
Heart regeneration in zebrafish
-
Poss KD, Wilson LG, Keating MT (2002) Heart regeneration in zebrafish. Science 298(5601):2188-2190.
-
(2002)
Science
, vol.298
, Issue.5601
, pp. 2188-2190
-
-
Poss, K.D.1
Wilson, L.G.2
Keating, M.T.3
-
8
-
-
20244378183
-
Activation of Notch signaling pathway precedes heart regeneration in zebrafish
-
Raya A, et al. (2003) Activation of Notch signaling pathway precedes heart regeneration in zebrafish. Proc Natl Acad Sci USA 100(Suppl 1):11889-11895.
-
(2003)
Proc Natl Acad Sci USA
, vol.100 SUPPL. 1
, pp. 11889-11895
-
-
Raya, A.1
-
9
-
-
79954522898
-
Regeneration of cryoinjury induced necrotic heart lesions in zebrafish is associated with epicardial activation and cardiomyocyte proliferation
-
Schnabel K, Wu CC, Kurth T, Weidinger G (2011) Regeneration of cryoinjury induced necrotic heart lesions in zebrafish is associated with epicardial activation and cardiomyocyte proliferation. PLoS ONE 6(4):e18503.
-
(2011)
PLoS ONE
, vol.6
, Issue.4
-
-
Schnabel, K.1
Wu, C.C.2
Kurth, T.3
Weidinger, G.4
-
10
-
-
79960778952
-
The regenerative capacity of zebrafish reverses cardiac failure caused by genetic cardiomyocyte depletion
-
Wang J, et al. (2011) The regenerative capacity of zebrafish reverses cardiac failure caused by genetic cardiomyocyte depletion. Development 138(16):3421-3430.
-
(2011)
Development
, vol.138
, Issue.16
, pp. 3421-3430
-
-
Wang, J.1
-
11
-
-
84872465403
-
Hypoxia/reoxygenation cardiac injury and regeneration in zebrafish adult heart
-
Parente V, et al. (2013) Hypoxia/reoxygenation cardiac injury and regeneration in zebrafish adult heart. PLoS ONE 8(1):e53748.
-
(2013)
PLoS ONE
, vol.8
, Issue.1
-
-
Parente, V.1
-
12
-
-
77950201708
-
Primary contribution to zebrafish heart regeneration by gata4 (+) cardiomyocytes
-
Kikuchi K, et al. (2010) Primary contribution to zebrafish heart regeneration by gata4 (+) cardiomyocytes. Nature 464(7288):601-605.
-
(2010)
Nature
, vol.464
, Issue.7288
, pp. 601-605
-
-
Kikuchi, K.1
-
13
-
-
77950200829
-
Zebrafish heart regeneration occurs by cardiomyocyte dedifferentiation and proliferation
-
Jopling C, et al. (2010) Zebrafish heart regeneration occurs by cardiomyocyte dedifferentiation and proliferation. Nature 464(7288):606-609.
-
(2010)
Nature
, vol.464
, Issue.7288
, pp. 606-609
-
-
Jopling, C.1
-
14
-
-
79952065525
-
Transient regenerative potential of the neonatal mouse heart
-
Porrello ER, et al. (2011) Transient regenerative potential of the neonatal mouse heart. Science 331(6020):1078-1080.
-
(2011)
Science
, vol.331
, Issue.6020
, pp. 1078-1080
-
-
Porrello, E.R.1
-
15
-
-
84877775012
-
Meis1 regulates postnatal cardiomyocyte cell cycle arrest
-
Mahmoud AI, et al. (2013) Meis1 regulates postnatal cardiomyocyte cell cycle arrest. Nature 497(7448):249-253.
-
(2013)
Nature
, vol.497
, Issue.7448
, pp. 249-253
-
-
Mahmoud, A.I.1
-
16
-
-
84871992154
-
Regulation of neonatal and adult mammalian heart regeneration by the miR-15 family
-
Porrello ER, et al. (2013) Regulation of neonatal and adult mammalian heart regeneration by the miR-15 family. Proc Natl Acad Sci USA 110(1):187-192.
-
(2013)
Proc Natl Acad Sci USA
, vol.110
, Issue.1
, pp. 187-192
-
-
Porrello, E.R.1
-
17
-
-
84855369318
-
Cardiomyocyte renewal in humans
-
author reply e19-e21
-
Bergmann O, et al. (2012) Cardiomyocyte renewal in humans. Circ Res 110(1):e17-e18; author reply e19-e21.
-
(2012)
Circ Res
, vol.110
, Issue.1
-
-
Bergmann, O.1
-
18
-
-
64249107059
-
Evidence for cardiomyocyte renewal in humans
-
Bergmann O, et al. (2009) Evidence for cardiomyocyte renewal in humans. Science 324(5923):98-102.
-
(2009)
Science
, vol.324
, Issue.5923
, pp. 98-102
-
-
Bergmann, O.1
-
19
-
-
84872611623
-
Mammalian heart renewal by pre-existing cardiomyocytes
-
Senyo SE, et al. (2013) Mammalian heart renewal by pre-existing cardiomyocytes. Nature 493(7432):433-436.
-
(2013)
Nature
, vol.493
, Issue.7432
, pp. 433-436
-
-
Senyo, S.E.1
-
20
-
-
84857004535
-
Coordinating tissue interactions: Notch signaling in cardiac development and disease
-
de la Pompa JL, Epstein JA (2012) Coordinating tissue interactions: Notch signaling in cardiac development and disease. Dev Cell 22(2):244-254.
-
(2012)
Dev Cell
, vol.22
, Issue.2
, pp. 244-254
-
-
De La Pompa, J.L.1
Epstein, J.A.2
-
21
-
-
0037218811
-
Growth suppression of pre-T acute lymphoblastic leukemia cells by inhibition of notch signaling
-
Weng AP, et al. (2003) Growth suppression of pre-T acute lymphoblastic leukemia cells by inhibition of notch signaling. Mol Cell Biol 23(2):655-664.
-
(2003)
Mol Cell Biol
, vol.23
, Issue.2
, pp. 655-664
-
-
Weng, A.P.1
-
22
-
-
0037238008
-
Mind bomb is a ubiquitin ligase that is essential for efficient activation of Notch signaling by Delta
-
Itoh M, et al. (2003) Mind bomb is a ubiquitin ligase that is essential for efficient activation of Notch signaling by Delta. Dev Cell 4(1):67-82.
-
(2003)
Dev Cell
, vol.4
, Issue.1
, pp. 67-82
-
-
Itoh, M.1
-
23
-
-
12644280833
-
Mutations affecting neurogenesis and brain morphology in the zebrafish
-
Jiang YJ, et al. (1996) Mutations affecting neurogenesis and brain morphology in the zebrafish, Danio rerio. Development 123:205-216.
-
(1996)
Danio Rerio. Development
, vol.123
, pp. 205-216
-
-
Jiang, Y.J.1
-
24
-
-
0033045352
-
Her4, a zebrafish homologue of the Drosophila neurogenic gene E(spl), is a target of NOTCH signalling
-
Takke C, Dornseifer P, v Weizsäcker E, Campos-Ortega JA (1999) her4, a zebrafish homologue of the Drosophila neurogenic gene E(spl), is a target of NOTCH signalling. Development 126(9):1811-1821.
-
(1999)
Development
, vol.126
, Issue.9
, pp. 1811-1821
-
-
Takke, C.1
Dornseifer, P.V.2
Weizsäcker, E.3
Campos-Ortega, J.A.4
-
25
-
-
0043062774
-
Hey genes in cardiovascular development
-
Fischer A, Gessler M (2003) Hey genes in cardiovascular development. Trends Cardiovasc Med 13(6):221-226.
-
(2003)
Trends Cardiovasc Med
, vol.13
, Issue.6
, pp. 221-226
-
-
Fischer, A.1
Gessler, M.2
-
26
-
-
0035829517
-
Gridlock signalling pathway fashions the first embryonic artery
-
Zhong TP, Childs S, Leu JP, Fishman MC (2001) Gridlock signalling pathway fashions the first embryonic artery. Nature 414(6860):216-220.
-
(2001)
Nature
, vol.414
, Issue.6860
, pp. 216-220
-
-
Zhong, T.P.1
Childs, S.2
Leu, J.P.3
Fishman, M.C.4
-
27
-
-
79959427955
-
Tcf21+ epicardial cells adopt non-myocardial fates during zebrafish heart development and regeneration
-
Kikuchi K, et al. (2011) tcf21+ epicardial cells adopt non-myocardial fates during zebrafish heart development and regeneration. Development 138(14):2895-2902.
-
(2011)
Development
, vol.138
, Issue.14
, pp. 2895-2902
-
-
Kikuchi, K.1
-
28
-
-
78049235110
-
PDGF signaling is required for epicardial function and blood vessel formation in regenerating zebrafish hearts
-
Kim J, et al. (2010) PDGF signaling is required for epicardial function and blood vessel formation in regenerating zebrafish hearts. Proc Natl Acad Sci USA 107(40): 17206-17210.
-
(2010)
Proc Natl Acad Sci USA
, vol.107
, Issue.40
, pp. 17206-17210
-
-
Kim, J.1
-
29
-
-
33750483609
-
A dynamic epicardial injury response supports progenitor cell activity during zebrafish heart regeneration
-
Lepilina A, et al. (2006) A dynamic epicardial injury response supports progenitor cell activity during zebrafish heart regeneration. Cell 127(3):607-619.
-
(2006)
Cell
, vol.127
, Issue.3
, pp. 607-619
-
-
Lepilina, A.1
-
30
-
-
84866146027
-
Pan-epicardial lineage tracing reveals that epicardium derived cells give rise to myofibroblasts and perivascular cells during zebrafish heart regeneration
-
González-Rosa JM, Peralta M, Mercader N (2012) Pan-epicardial lineage tracing reveals that epicardium derived cells give rise to myofibroblasts and perivascular cells during zebrafish heart regeneration. Dev Biol 370(2):173-186.
-
(2012)
Dev Biol
, vol.370
, Issue.2
, pp. 173-186
-
-
González-Rosa, J.M.1
Peralta, M.2
Mercader, N.3
-
31
-
-
79952527330
-
Retinoic acid production by endocardium and epicardium is an injury response essential for zebrafish heart regeneration
-
Kikuchi K, et al. (2011) Retinoic acid production by endocardium and epicardium is an injury response essential for zebrafish heart regeneration. Dev Cell 20(3):397-404.
-
(2011)
Dev Cell
, vol.20
, Issue.3
, pp. 397-404
-
-
Kikuchi, K.1
-
32
-
-
41149162273
-
Foxn4 directly regulates tbx2b expression and atrioventricular canal formation
-
Chi NC, et al. (2008) Foxn4 directly regulates tbx2b expression and atrioventricular canal formation. Genes Dev 22(6):734-739.
-
(2008)
Genes Dev
, vol.22
, Issue.6
, pp. 734-739
-
-
Chi, N.C.1
-
33
-
-
78650724551
-
Ubiquitous transgene expression and Cre-based recombination driven by the ubiquitin promoter in zebrafish
-
Mosimann C, et al. (2011) Ubiquitous transgene expression and Cre-based recombination driven by the ubiquitin promoter in zebrafish. Development 138(1): 169-177.
-
(2011)
Development
, vol.138
, Issue.1
, pp. 169-177
-
-
Mosimann, C.1
-
34
-
-
0033054017
-
Use of the Gal4-UAS technique for targeted gene expression in the zebrafish
-
Scheer N, Campos-Ortega JA (1999) Use of the Gal4-UAS technique for targeted gene expression in the zebrafish. Mech Dev 80(2):153-158.
-
(1999)
Mech Dev
, vol.80
, Issue.2
, pp. 153-158
-
-
Scheer, N.1
Campos-Ortega, J.A.2
-
35
-
-
0035028574
-
An instructive function for Notch in promoting gliogenesis in the zebrafish retina
-
Scheer N, Groth A, Hans S, Campos-Ortega JA (2001) An instructive function for Notch in promoting gliogenesis in the zebrafish retina. Development 128(7):1099-1107.
-
(2001)
Development
, vol.128
, Issue.7
, pp. 1099-1107
-
-
Scheer, N.1
Groth, A.2
Hans, S.3
Campos-Ortega, J.A.4
-
36
-
-
84879688282
-
In vivo cardiac reprogramming contributes to zebrafish heart regeneration
-
Zhang R, et al. (2013) In vivo cardiac reprogramming contributes to zebrafish heart regeneration. Nature 498(7455):497-501.
-
(2013)
Nature
, vol.498
, Issue.7455
, pp. 497-501
-
-
Zhang, R.1
-
37
-
-
84860720014
-
The regenerative capacity of the zebrafish heart is dependent on TGF? Signaling
-
Chablais F, Jazwinska A (2012) The regenerative capacity of the zebrafish heart is dependent on TGF? signaling. Development 139(11):1921-1930.
-
(2012)
Development
, vol.139
, Issue.11
, pp. 1921-1930
-
-
Chablais, F.1
Jazwinska, A.2
-
38
-
-
84872081347
-
In vivo monitoring of cardiomyocyte proliferation to identify chemical modifiers of heart regeneration
-
Choi WY, et al. (2013) In vivo monitoring of cardiomyocyte proliferation to identify chemical modifiers of heart regeneration. Development 140(3):660-666.
-
(2013)
Development
, vol.140
, Issue.3
, pp. 660-666
-
-
Choi, W.Y.1
-
39
-
-
33847203944
-
Notch signaling is essential for ventricular chamber development
-
Grego-Bessa J, et al. (2007) Notch signaling is essential for ventricular chamber development. Dev Cell 12(3):415-429.
-
(2007)
Dev Cell
, vol.12
, Issue.3
, pp. 415-429
-
-
Grego-Bessa, J.1
-
40
-
-
43449104712
-
Activation of Notch-mediated protective signaling in the myocardium
-
Gude NA, et al. (2008) Activation of Notch-mediated protective signaling in the myocardium. Circ Res 102(9):1025-1035.
-
(2008)
Circ Res
, vol.102
, Issue.9
, pp. 1025-1035
-
-
Gude, N.A.1
-
41
-
-
77649090010
-
Distinct roles for cell-Autonomous Notch signaling in cardiomyocytes of the embryonic and adult heart
-
Kratsios P, et al. (2010) Distinct roles for cell-Autonomous Notch signaling in cardiomyocytes of the embryonic and adult heart. Circ Res 106(3):559-572.
-
(2010)
Circ Res
, vol.106
, Issue.3
, pp. 559-572
-
-
Kratsios, P.1
-
42
-
-
78649267032
-
Activation of Notch signaling in cardiomyocytes during postinfarction remodeling
-
Oie E, et al. (2010) Activation of Notch signaling in cardiomyocytes during postinfarction remodeling. Scand Cardiovasc J 44(6):359-366.
-
(2010)
Scand Cardiovasc J
, vol.44
, Issue.6
, pp. 359-366
-
-
Oie, E.1
-
43
-
-
79251625088
-
A dynamic notch injury response activates epicardium and contributes to fibrosis repair
-
Russell JL, et al. (2011) A dynamic notch injury response activates epicardium and contributes to fibrosis repair. Circ Res 108(1):51-59.
-
(2011)
Circ Res
, vol.108
, Issue.1
, pp. 51-59
-
-
Russell, J.L.1
-
44
-
-
59649083972
-
Control of the adaptive response of the heart to stress via the Notch1 receptor pathway
-
Croquelois A, et al. (2008) Control of the adaptive response of the heart to stress via the Notch1 receptor pathway. J Exp Med 205(13):3173-3185.
-
(2008)
J Exp Med
, vol.205
, Issue.13
, pp. 3173-3185
-
-
Croquelois, A.1
-
45
-
-
84906653542
-
The Notch pathway controls fibrotic and regenerative repair in the adult heart
-
Nemir M, et al. (2012) The Notch pathway controls fibrotic and regenerative repair in the adult heart. Eur Heart J, 10.1093/eurheartj/ehs269.
-
(2012)
Eur Heart J
, vol.10
, pp. 1093-1269
-
-
Nemir, M.1
-
46
-
-
53749089803
-
Notch activates cell cycle reentry and progression in quiescent cardiomyocytes
-
Campa VM, et al. (2008) Notch activates cell cycle reentry and progression in quiescent cardiomyocytes. J Cell Biol 183(1):129-141.
-
(2008)
J Cell Biol
, vol.183
, Issue.1
, pp. 129-141
-
-
Campa, V.M.1
-
47
-
-
53849117806
-
Notch1 signaling stimulates proliferation of immature cardiomyocytes
-
Collesi C, Zentilin L, Sinagra G, Giacca M (2008) Notch1 signaling stimulates proliferation of immature cardiomyocytes. J Cell Biol 183(1):117-128.
-
(2008)
J Cell Biol
, vol.183
, Issue.1
, pp. 117-128
-
-
Collesi, C.1
Zentilin, L.2
Sinagra, G.3
Giacca, M.4
-
48
-
-
55749112329
-
Notch1 regulates the fate of cardiac progenitor cells
-
Boni A, et al. (2008) Notch1 regulates the fate of cardiac progenitor cells. Proc Natl Acad Sci USA 105(40):15529-15534.
-
(2008)
Proc Natl Acad Sci USA
, vol.105
, Issue.40
, pp. 15529-15534
-
-
Boni, A.1
|