-
1
-
-
67449098531
-
Intrinsic cells: Mesothelial cells-Central players in regulating inflammation and resolution.
-
Yung, S.; Chan, T.M. Intrinsic cells: Mesothelial cells-Central players in regulating inflammation and resolution. Perit Dial. Int. 2009, 29 (Suppl. 2), S21-S27.
-
(2009)
Perit Dial. Int.
, vol.29
, pp. S21-S27
-
-
Yung, S.1
Chan, T.M.2
-
2
-
-
84870621228
-
Identification and prospective isolation of a mesothelial precursor lineage giving rise to smooth muscle cells and fibroblasts for mammalian internal organs, and their vasculature
-
Rinkevich, Y.; Mori, T.; Sahoo, D.; Xu, P.X.; Bermingham, J.R., Jr.; Weissman, I.L. Identification and prospective isolation of a mesothelial precursor lineage giving rise to smooth muscle cells and fibroblasts for mammalian internal organs, and their vasculature. Nat. Cell. Biol 2012, 14, 1251-1260.
-
(2012)
Nat. Cell. Biol
, vol.14
, pp. 1251-1260
-
-
Rinkevich, Y.1
Mori, T.2
Sahoo, D.3
Xu, P.X.4
Bermingham, J.R.5
Weissman, I.L.6
-
3
-
-
33750483609
-
A dynamic epicardial injury response supports progenitor cell activity during zebrafish heart regeneration
-
Lepilina, A.; Coon, A.N.; Kikuchi, K.; Holdway, J.E.; Roberts, R.W.; Burns, C.G.; Poss, K.D. A dynamic epicardial injury response supports progenitor cell activity during zebrafish heart regeneration. Cell 2006, 127, 607-619.
-
(2006)
Cell
, vol.127
, pp. 607-619
-
-
Lepilina, A.1
Coon, A.N.2
Kikuchi, K.3
Holdway, J.E.4
Roberts, R.W.5
Burns, C.G.6
Poss, K.D.7
-
4
-
-
79955498411
-
Adult mouse epicardium modulates myocardial injury by secreting paracrine factors
-
Zhou, B.; Honor, L.B.; He, H.; Ma, Q.; Oh, J.H.; Butterfield, C.; Lin, R.Z.; Melero-Martin, J.M.; Dolmatova, E.; Duffy, H.S.; et al. Adult mouse epicardium modulates myocardial injury by secreting paracrine factors. JCI 2011, 121, 1894-1904.
-
(2011)
JCI
, vol.121
, pp. 1894-1904
-
-
Zhou, B.1
Honor, L.B.2
He, H.3
Ma, Q.4
Oh, J.H.5
Butterfield, C.6
Lin, R.Z.7
Melero-Martin, J.M.8
Dolmatova, E.9
Duffy, H.S.10
-
5
-
-
79959819263
-
De novo cardiomyocytes from within the activated adult heart after injury
-
Smart, N.; Bollini, S.; Dube, K.N.; Vieira, J.M.; Zhou, B.; Davidson, S.; Yellon, D.; Riegler, J.; Price, A.N.; Lythgoe, M.F.; et al. De novo cardiomyocytes from within the activated adult heart after injury. Nature 2011, 474, 640-644.
-
(2011)
Nature
, vol.474
, pp. 640-644
-
-
Smart, N.1
Bollini, S.2
Dube, K.N.3
Vieira, J.M.4
Zhou, B.5
Davidson, S.6
Yellon, D.7
Riegler, J.8
Price, A.N.9
Lythgoe, M.F.10
-
6
-
-
77955323254
-
Revealing new mouse epicardial cell markers through transcriptomics
-
Bochmann, L.; Sarathchandra, P.; Mori, F.; Lara-Pezzi, E.; Lazzaro, D.; Rosenthal, N. Revealing new mouse epicardial cell markers through transcriptomics. PLoS ONE 2010, 5, e11429.
-
(2010)
PLoS ONE
, vol.5
, pp. e11429
-
-
Bochmann, L.1
Sarathchandra, P.2
Mori, F.3
Lara-Pezzi, E.4
Lazzaro, D.5
Rosenthal, N.6
-
7
-
-
66149116841
-
A right-sided pathway involving fgf8/snai1 controls asymmetric development of the proepicardium in the chick embryo
-
Schlueter, J.; Brand, T. A right-sided pathway involving fgf8/snai1 controls asymmetric development of the proepicardium in the chick embryo. Proc. Natl. Acad. Sci. USA 2009, 106, 7485-7490.
-
(2009)
Proc. Natl. Acad. Sci. USA
, vol.106
, pp. 7485-7490
-
-
Schlueter, J.1
Brand, T.2
-
8
-
-
84873536071
-
Epithelial to mesenchymal transition as a portal to stem cell characters embedded in gene networks
-
Asli, N.S.; Harvey, R.P. Epithelial to mesenchymal transition as a portal to stem cell characters embedded in gene networks. BioEssays 2013, 35, 191-200.
-
(2013)
BioEssays
, vol.35
, pp. 191-200
-
-
Asli, N.S.1
Harvey, R.P.2
-
9
-
-
36148934515
-
Induction of proepicardial marker gene expression by the liver bud
-
Ishii, Y.; Langberg, J.D.; Hurtado, R.; Lee, S.; Mikawa, T. Induction of proepicardial marker gene expression by the liver bud. Development 2007, 134, 3627-3637.
-
(2007)
Development
, vol.134
, pp. 3627-3637
-
-
Ishii, Y.1
Langberg, J.D.2
Hurtado, R.3
Lee, S.4
Mikawa, T.5
-
10
-
-
77954216121
-
Tbx5 and bmp signaling are essential for proepicardium specification in zebrafish
-
Liu, J.; Stainier, D.Y. Tbx5 and bmp signaling are essential for proepicardium specification in zebrafish. Circ. Res. 2010, 106, 1818-1828.
-
(2010)
Circ. Res.
, vol.106
, pp. 1818-1828
-
-
Liu, J.1
Stainier, D.Y.2
-
11
-
-
40349083820
-
Epicardial development in lamprey supports an evolutionary origin of the vertebrate epicardium from an ancestral pronephric external glomerulus
-
Pombal, M.A.; Carmona, R.; Megias, M.; Ruiz, A.; Perez-Pomares, J.M.; Munoz-Chapuli, R. Epicardial development in lamprey supports an evolutionary origin of the vertebrate epicardium from an ancestral pronephric external glomerulus. Evol. Dev. 2008, 10, 210-216.
-
(2008)
Evol. Dev.
, vol.10
, pp. 210-216
-
-
Pombal, M.A.1
Carmona, R.2
Megias, M.3
Ruiz, A.4
Perez-Pomares, J.M.5
Munoz-Chapuli, R.6
-
12
-
-
50849113097
-
Nkx2-5- and isl1-expressing cardiac progenitors contribute to proepicardium
-
Zhou, B.; von Gise, A.; Ma, Q.; Rivera-Feliciano, J.; Pu, W.T. Nkx2-5- and isl1-expressing cardiac progenitors contribute to proepicardium. BBRC 2008, 375, 450-453.
-
(2008)
BBRC
, vol.375
, pp. 450-453
-
-
Zhou, B.1
von Gise, A.2
Ma, Q.3
Rivera-Feliciano, J.4
Pu, W.T.5
-
13
-
-
33745270061
-
Bmp and fgf regulate the differentiation of multipotential pericardial mesoderm into the myocardial or epicardial lineage
-
Kruithof, B.P.; van Wijk, B.; Somi, S.; Kruithof-de Julio, M.; Perez Pomares, J.M.; Weesie, F.; Wessels, A.; Moorman, A.F.; van den Hoff, M.J. Bmp and fgf regulate the differentiation of multipotential pericardial mesoderm into the myocardial or epicardial lineage. Dev. Biol. 2006, 295, 507-522.
-
(2006)
Dev. Biol.
, vol.295
, pp. 507-522
-
-
Kruithof, B.P.1
van Wijk, B.2
Somi, S.3
Kruithof-de Julio, M.4
Perez Pomares, J.M.5
Weesie, F.6
Wessels, A.7
Moorman, A.F.8
van den Hoff, M.J.9
-
14
-
-
84887196768
-
A subpopulation of proepicardial cells is derived from the somatic mesoderm in the chick embryo
-
Schlueter, J.; Brand, T. A subpopulation of proepicardial cells is derived from the somatic mesoderm in the chick embryo. Circ. Res. 2013, 113, 1106-1108.
-
(2013)
Circ. Res.
, vol.113
, pp. 1106-1108
-
-
Schlueter, J.1
Brand, T.2
-
15
-
-
33746970417
-
Bmp is an important regulator of proepicardial identity in the chick embryo
-
Schlueter, J.; Manner, J.; Brand, T. Bmp is an important regulator of proepicardial identity in the chick embryo. Dev. Biol. 2006, 295, 546-558.
-
(2006)
Dev. Biol.
, vol.295
, pp. 546-558
-
-
Schlueter, J.1
Manner, J.2
Brand, T.3
-
16
-
-
28844438924
-
T-box transcription factors and their roles in regulatory hierarchies in the developing heart
-
Stennard, F.A.; Harvey, R.P. T-box transcription factors and their roles in regulatory hierarchies in the developing heart. Development 2005, 132, 4897-4910.
-
(2005)
Development
, vol.132
, pp. 4897-4910
-
-
Stennard, F.A.1
Harvey, R.P.2
-
17
-
-
65249137151
-
Tbx18 and the fate of epicardial progenitors
-
discussion E9-E10
-
Christoffels, V.M.; Grieskamp, T.; Norden, J.; Mommersteeg, M.T.; Rudat, C.; Kispert, A. Tbx18 and the fate of epicardial progenitors. Nature 2009, 458, E8-E9; discussion E9-E10.
-
(2009)
Nature
, vol.458
, pp. E8-E9
-
-
Christoffels, V.M.1
Grieskamp, T.2
Norden, J.3
Mommersteeg, M.T.4
Rudat, C.5
Kispert, A.6
-
18
-
-
33847344204
-
An nkx2-5/bmp2/smad1 negative feedback loop controls heart progenitor specification and proliferation
-
Prall, O.W.; Menon, M.K.; Solloway, M.J.; Watanabe, Y.; Zaffran, S.; Bajolle, F.; Biben, C.; McBride, J.J.; Robertson, B.R.; Chaulet, H.; et al. An nkx2-5/bmp2/smad1 negative feedback loop controls heart progenitor specification and proliferation. Cell 2007, 128, 947-959.
-
(2007)
Cell
, vol.128
, pp. 947-959
-
-
Prall, O.W.1
Menon, M.K.2
Solloway, M.J.3
Watanabe, Y.4
Zaffran, S.5
Bajolle, F.6
Biben, C.7
McBride, J.J.8
Robertson, B.R.9
Chaulet, H.10
-
20
-
-
4344565788
-
Gata4 is essential for formation of the proepicardium and regulates cardiogenesis
-
Watt, A.J.; Battle, M.A.; Li, J.; Duncan, S.A. Gata4 is essential for formation of the proepicardium and regulates cardiogenesis. Proc. Natl. Acad. Sci USA 2004, 101, 12573-12578.
-
(2004)
Proc. Natl. Acad. Sci USA
, vol.101
, pp. 12573-12578
-
-
Watt, A.J.1
Battle, M.A.2
Li, J.3
Duncan, S.A.4
-
21
-
-
84869442474
-
Tbx18 function in epicardial development
-
Greulich, F.; Farin, H.F.; Schuster-Gossler, K.; Kispert, A. Tbx18 function in epicardial development. Cardiovasc. Res. 2012, 96, 476-483.
-
(2012)
Cardiovasc. Res.
, vol.96
, pp. 476-483
-
-
Greulich, F.1
Farin, H.F.2
Schuster-Gossler, K.3
Kispert, A.4
-
22
-
-
84885857490
-
Tbx18 regulates development of the epicardium and coronary vessels
-
Wu, S.P.; Dong, X.R.; Regan, J.N.; Su, C.; Majesky, M.W. Tbx18 regulates development of the epicardium and coronary vessels. Dev. Biol. 2013, 383, 307-320.
-
(2013)
Dev. Biol.
, vol.383
, pp. 307-320
-
-
Wu, S.P.1
Dong, X.R.2
Regan, J.N.3
Su, C.4
Majesky, M.W.5
-
23
-
-
0029964385
-
Pericardial mesoderm generates a population of coronary smooth muscle cells migrating into the heart along with ingrowth of the epicardial organ
-
Mikawa, T.; Gourdie, R.G. Pericardial mesoderm generates a population of coronary smooth muscle cells migrating into the heart along with ingrowth of the epicardial organ. Dev. Biol. 1996, 174, 221-232.
-
(1996)
Dev. Biol.
, vol.174
, pp. 221-232
-
-
Mikawa, T.1
Gourdie, R.G.2
-
24
-
-
77955588202
-
Bmp signals promote proepicardial protrusion necessary for recruitment of coronary vessel and epicardial progenitors to the heart
-
Ishii, Y.; Garriock, R.J.; Navetta, A.M.; Coughlin, L.E.; Mikawa, T. Bmp signals promote proepicardial protrusion necessary for recruitment of coronary vessel and epicardial progenitors to the heart. Dev. Cell. 2010, 19, 307-316.
-
(2010)
Dev. Cell.
, vol.19
, pp. 307-316
-
-
Ishii, Y.1
Garriock, R.J.2
Navetta, A.M.3
Coughlin, L.E.4
Mikawa, T.5
-
25
-
-
4844220912
-
A role for tbx5 in proepicardial cell migration during cardiogenesis
-
Hatcher, C.J.; Diman, N.Y.; Kim, M.S.; Pennisi, D.; Song, Y.; Goldstein, M.M.; Mikawa, T.; Basson, C.T. A role for tbx5 in proepicardial cell migration during cardiogenesis. Physiol. Genomics 2004, 18, 129-140.
-
(2004)
Physiol. Genomics
, vol.18
, pp. 129-140
-
-
Hatcher, C.J.1
Diman, N.Y.2
Kim, M.S.3
Pennisi, D.4
Song, Y.5
Goldstein, M.M.6
Mikawa, T.7
Basson, C.T.8
-
26
-
-
0036771662
-
The epicardium and epicardial-derived cells: Multiple functions in cardiac development
-
Munoz-Chapuli, R.; Macias, D.; Gonzalez-Iriarte, M.; Carmona, R.; Atencia, G.; Perez-Pomares, J.M. The epicardium and epicardial-derived cells: Multiple functions in cardiac development. Rev. Eep. Cardiol. 2002, 55, 1070-1082.
-
(2002)
Rev. Eep. Cardiol.
, vol.55
, pp. 1070-1082
-
-
Munoz-Chapuli, R.1
Macias, D.2
Gonzalez-Iriarte, M.3
Carmona, R.4
Atencia, G.5
Perez-Pomares, J.M.6
-
27
-
-
0034711517
-
Epicardial outgrowth inhibition leads to compensatory mesothelial outflow tract collar and abnormal cardiac septation and coronary formation
-
Gittenberger-de Groot, A.C.; Vrancken Peeters, M.P.; Bergwerff, M.; Mentink, M.M.; Poelmann, R.E. Epicardial outgrowth inhibition leads to compensatory mesothelial outflow tract collar and abnormal cardiac septation and coronary formation. Circ. Res. 2000, 87, 969-971.
-
(2000)
Circ. Res.
, vol.87
, pp. 969-971
-
-
Gittenberger-de Groot, A.C.1
Vrancken Peeters, M.P.2
Bergwerff, M.3
Mentink, M.M.4
Poelmann, R.E.5
-
28
-
-
0344921402
-
Ets-1 and ets-2 transcription factors are essential for normal coronary and myocardial development in chicken embryos
-
Lie-Venema, H.; Gittenberger-de Groot, A.C.; van Empel, L.J.; Boot, M.J.; Kerkdijk, H.; de Kant, E.; DeRuiter, M.C. Ets-1 and ets-2 transcription factors are essential for normal coronary and myocardial development in chicken embryos. Circ. Res. 2003, 92, 749-756.
-
(2003)
Circ. Res.
, vol.92
, pp. 749-756
-
-
Lie-Venema, H.1
Gittenberger-de Groot, A.C.2
van Empel, L.J.3
Boot, M.J.4
Kerkdijk, H.5
de Kant, E.6
DeRuiter, M.C.7
-
29
-
-
0346690330
-
The epicardium and epicardially derived cells (EPDCs) as cardiac stem cells
-
Wessels, A.; Perez-Pomares, J.M. The epicardium and epicardially derived cells (EPDCs) as cardiac stem cells. Anat. Rec. 2004, 276, 43-57.
-
(2004)
Anat. Rec.
, vol.276
, pp. 43-57
-
-
Wessels, A.1
Perez-Pomares, J.M.2
-
30
-
-
73349108404
-
Wt1 is required for cardiovascular progenitor cell formation through transcriptional control of snail and e-cadherin
-
Martinez-Estrada, O.M.; Lettice, L.A.; Essafi, A.; Guadix, J.A.; Slight, J.; Velecela, V.; Hall, E.; Reichmann, J.; Devenney, P.S.; Hohenstein, P.; et al. Wt1 is required for cardiovascular progenitor cell formation through transcriptional control of snail and e-cadherin. Nat. Genet. 2010, 42, 89-93.
-
(2010)
Nat. Genet.
, vol.42
, pp. 89-93
-
-
Martinez-Estrada, O.M.1
Lettice, L.A.2
Essafi, A.3
Guadix, J.A.4
Slight, J.5
Velecela, V.6
Hall, E.7
Reichmann, J.8
Devenney, P.S.9
Hohenstein, P.10
-
31
-
-
77957146326
-
The embryonic epicardium: An essential element of cardiac development
-
Carmona, R.; Guadix, J.A.; Cano, E.; Ruiz-Villalba, A.; Portillo-Sanchez, V.; Perez-Pomares, J.M.; Munoz-Chapuli, R. The embryonic epicardium: An essential element of cardiac development. J. Cell. Mol. Med. 2010, 14, 2066-2072.
-
(2010)
J. Cell. Mol. Med.
, vol.14
, pp. 2066-2072
-
-
Carmona, R.1
Guadix, J.A.2
Cano, E.3
Ruiz-Villalba, A.4
Portillo-Sanchez, V.5
Perez-Pomares, J.M.6
Munoz-Chapuli, R.7
-
32
-
-
0033020504
-
Smooth muscle cells and fibroblasts of the coronary arteries derive from epithelial-mesenchymal transformation of the epicardium
-
Vrancken Peeters, M.P.; Gittenberger-de Groot, A.C.; Mentink, M.M.; Poelmann, R.E. Smooth muscle cells and fibroblasts of the coronary arteries derive from epithelial-mesenchymal transformation of the epicardium. Anat. Embryol. (Berl.) 1999, 199, 367-378.
-
(1999)
Anat. Embryol. (Berl.)
, vol.199
, pp. 367-378
-
-
Vrancken Peeters, M.P.1
Gittenberger-de Groot, A.C.2
Mentink, M.M.3
Poelmann, R.E.4
-
33
-
-
0026595763
-
Clonal analysis of cardiac morphogenesis in the chicken embryo using a replication-defective retrovirus: I
-
Mikawa, T.; Borisov, A.; Brown, A.M.; Fischman, D.A. Clonal analysis of cardiac morphogenesis in the chicken embryo using a replication-defective retrovirus: I. Formation of the ventricular myocardium. Dev. Dyn. 1992, 193, 11-23.
-
(1992)
Formation of the ventricular myocardium. Dev. Dyn.
, vol.193
, pp. 11-23
-
-
Mikawa, T.1
Borisov, A.2
Brown, A.M.3
Fischman, D.A.4
-
34
-
-
77950237662
-
Coronary arteries form by developmental reprogramming of venous cells
-
Red-Horse, K.; Ueno, H.; Weissman, I.L.; Krasnow, M.A. Coronary arteries form by developmental reprogramming of venous cells. Nature 2010, 464, 549-553.
-
(2010)
Nature
, vol.464
, pp. 549-553
-
-
Red-Horse, K.1
Ueno, H.2
Weissman, I.L.3
Krasnow, M.A.4
-
35
-
-
84870043996
-
Endocardial cells form the coronary arteries by angiogenesis through myocardial-endocardial VEGF signaling
-
Wu, B.; Zhang, Z.; Lui, W.; Chen, X.; Wang, Y.; Chamberlain, A.A.; Moreno-Rodriguez, R.A.; Markwald, R.R.; O'Rourke, B.P.; Sharp, D.J.; et al. Endocardial cells form the coronary arteries by angiogenesis through myocardial-endocardial VEGF signaling. Cell 2012, 151, 1083-1096.
-
(2012)
Cell
, vol.151
, pp. 1083-1096
-
-
Wu, B.1
Zhang, Z.2
Lui, W.3
Chen, X.4
Wang, Y.5
Chamberlain, A.A.6
Moreno-Rodriguez, R.A.7
Markwald, R.R.8
O'Rourke, B.P.9
Sharp, D.J.10
-
36
-
-
46449089721
-
A myocardial lineage derives from tbx18 epicardial cells
-
Cai, C.L.; Martin, J.C.; Sun, Y.; Cui, L.; Wang, L.; Ouyang, K.; Yang, L.; Bu, L.; Liang, X.; Zhang, X.; et al. A myocardial lineage derives from tbx18 epicardial cells. Nature 2008, 454, 104-108.
-
(2008)
Nature
, vol.454
, pp. 104-108
-
-
Cai, C.L.1
Martin, J.C.2
Sun, Y.3
Cui, L.4
Wang, L.5
Ouyang, K.6
Yang, L.7
Bu, L.8
Liang, X.9
Zhang, X.10
-
37
-
-
46449138664
-
Epicardial progenitors contribute to the cardiomyocyte lineage in the developing heart
-
Zhou, B.; Ma, Q.; Rajagopal, S.; Wu, S.M.; Domian, I.; Rivera-Feliciano, J.; Jiang, D.; von Gise, A.; Ikeda, S.; Chien, K.R.; et al. Epicardial progenitors contribute to the cardiomyocyte lineage in the developing heart. Nature 2008, 454, 109-113.
-
(2008)
Nature
, vol.454
, pp. 109-113
-
-
Zhou, B.1
Ma, Q.2
Rajagopal, S.3
Wu, S.M.4
Domian, I.5
Rivera-Feliciano, J.6
Jiang, D.7
von Gise, A.8
Ikeda, S.9
Chien, K.R.10
-
38
-
-
84861394103
-
The BHLH transcription factor tcf21 is required for lineage-specific EMT of cardiac fibroblast progenitors
-
Acharya, A.; Baek, S.T.; Huang, G.; Eskiocak, B.; Goetsch, S.; Sung, C.Y.; Banfi, S.; Sauer, M.F.; Olsen, G.S.; Duffield, J.S.; et al. The BHLH transcription factor tcf21 is required for lineage-specific EMT of cardiac fibroblast progenitors. Development 2012, 139, 2139-2149.
-
(2012)
Development
, vol.139
, pp. 2139-2149
-
-
Acharya, A.1
Baek, S.T.2
Huang, G.3
Eskiocak, B.4
Goetsch, S.5
Sung, C.Y.6
Banfi, S.7
Sauer, M.F.8
Olsen, G.S.9
Duffield, J.S.10
-
39
-
-
29444451293
-
Epicardial retinoid x receptor alpha is required for myocardial growth and coronary artery formation
-
Merki, E.; Zamora, M.; Raya, A.; Kawakami, Y.; Wang, J.; Zhang, X.; Burch, J.; Kubalak, S.W.; Kaliman, P.; Izpisua Belmonte, J.C.; et al. Epicardial retinoid x receptor alpha is required for myocardial growth and coronary artery formation. Proc. Natl. Acad. Sci. USA 2005, 102, 18455-18460.
-
(2005)
Proc. Natl. Acad. Sci. USA
, vol.102
, pp. 18455-18460
-
-
Merki, E.1
Zamora, M.2
Raya, A.3
Kawakami, Y.4
Wang, J.5
Zhang, X.6
Burch, J.7
Kubalak, S.W.8
Kaliman, P.9
Izpisua Belmonte, J.C.10
-
40
-
-
84863229669
-
Distinct compartments of the proepicardial organ give rise to coronary vascular endothelial cells
-
Katz, T.C.; Singh, M.K.; Degenhardt, K.; Rivera-Feliciano, J.; Johnson, R.L.; Epstein, J.A.; Tabin, C.J. Distinct compartments of the proepicardial organ give rise to coronary vascular endothelial cells. Dev. Cell. 2012, 22, 639-650.
-
(2012)
Dev. Cell.
, vol.22
, pp. 639-650
-
-
Katz, T.C.1
Singh, M.K.2
Degenhardt, K.3
Rivera-Feliciano, J.4
Johnson, R.L.5
Epstein, J.A.6
Tabin, C.J.7
-
41
-
-
84863655597
-
Wt1 and epicardial fate mapping
-
Rudat, C.; Kispert, A. Wt1 and epicardial fate mapping. Circ. Res. 2012, 111, 165-169.
-
(2012)
Circ. Res.
, vol.111
, pp. 165-169
-
-
Rudat, C.1
Kispert, A.2
-
42
-
-
84870005647
-
Genetic Cre-loxp assessment of epicardial cell fate using wt1-driven cre alleles
-
Zhou, B.; Pu, W.T. Genetic Cre-loxp assessment of epicardial cell fate using wt1-driven cre alleles. Circ. Res. 2012, 111, e276-e280.
-
(2012)
Circ. Res.
, vol.111
, pp. e276-e280
-
-
Zhou, B.1
Pu, W.T.2
-
43
-
-
80052717107
-
Tracing cells for tracking cell lineage and clonal behavior
-
Buckingham, M.E.; Meilhac, S.M. Tracing cells for tracking cell lineage and clonal behavior. Dev. Cell. 2011, 21, 394-409.
-
(2011)
Dev. Cell.
, vol.21
, pp. 394-409
-
-
Buckingham, M.E.1
Meilhac, S.M.2
-
44
-
-
80052023057
-
Developmental patterns and characteristics of epicardial cell markers tbx18 and wt1 in murine embryonic heart
-
Zeng, B.; Ren, X.F.; Cao, F.; Zhou, X.Y.; Zhang, J. Developmental patterns and characteristics of epicardial cell markers tbx18 and wt1 in murine embryonic heart. J. Biomed. Sci. 2011, 18, doi:10.1186/1423-0127-18-67.
-
(2011)
J. Biomed. Sci.
, vol.18
-
-
Zeng, B.1
Ren, X.F.2
Cao, F.3
Zhou, X.Y.4
Zhang, J.5
-
45
-
-
18244416832
-
Does the subepicardial mesenchyme contribute myocardioblasts to the myocardium of the chick embryo heart? A quail-chick chimera study tracing the fate of the epicardial primordium
-
Manner, J. Does the subepicardial mesenchyme contribute myocardioblasts to the myocardium of the chick embryo heart? A quail-chick chimera study tracing the fate of the epicardial primordium. Anat. Rec. 1999, 255, 212-226.
-
(1999)
Anat. Rec.
, vol.255
, pp. 212-226
-
-
Manner, J.1
-
46
-
-
70149105663
-
Epicardium and myocardium separate from a common precursor pool by crosstalk between bone morphogenetic protein- and fibroblast growth factor-signaling pathways
-
van Wijk, B.; van den Berg, G.; Abu-Issa, R.; Barnett, P.; van der Velden, S.; Schmidt, M.; Ruijter, J.M.; Kirby, M.L.; Moorman, A.F.; van den Hoff, M.J. Epicardium and myocardium separate from a common precursor pool by crosstalk between bone morphogenetic protein- and fibroblast growth factor-signaling pathways. Circ. Res. 2009, 105, 431-441.
-
(2009)
Circ. Res.
, vol.105
, pp. 431-441
-
-
van Wijk, B.1
van den Berg, G.2
Abu-Issa, R.3
Barnett, P.4
van der Velden, S.5
Schmidt, M.6
Ruijter, J.M.7
Kirby, M.L.8
Moorman, A.F.9
van den Hoff, M.J.10
-
47
-
-
63549141609
-
Thymosin beta4 mediated pkc activation is essential to initiate the embryonic coronary developmental program and epicardial progenitor cell activation in adult mice in vivo
-
Bock-Marquette, I.; Shrivastava, S.; Pipes, G.C.; Thatcher, J.E.; Blystone, A.; Shelton, J.M.; Galindo, C.L.; Melegh, B.; Srivastava, D.; Olson, E.N.; et al. Thymosin beta4 mediated pkc activation is essential to initiate the embryonic coronary developmental program and epicardial progenitor cell activation in adult mice in vivo. J. Mol. Cell. Cardiol. 2009, 46, 728-738.
-
(2009)
J. Mol. Cell. Cardiol.
, vol.46
, pp. 728-738
-
-
Bock-Marquette, I.1
Shrivastava, S.2
Pipes, G.C.3
Thatcher, J.E.4
Blystone, A.5
Shelton, J.M.6
Galindo, C.L.7
Melegh, B.8
Srivastava, D.9
Olson, E.N.10
-
48
-
-
0037650119
-
The complex life of wt1
-
Wagner, K.D.; Wagner, N.; Schedl, A. The complex life of wt1. JCS 2003, 116, 1653-1658.
-
(2003)
JCS
, vol.116
, pp. 1653-1658
-
-
Wagner, K.D.1
Wagner, N.2
Schedl, A.3
-
49
-
-
82755170946
-
Adult cardiac-resident msc-like stem cells with a proepicardial origin
-
Chong, J.J.; Chandrakanthan, V.; Xaymardan, M.; Asli, N.S.; Li, J.; Ahmed, I.; Heffernan, C.; Menon, M.K.; Scarlett, C.J.; Rashidianfar, A.; et al. Adult cardiac-resident msc-like stem cells with a proepicardial origin. Cell. Stem Cell. 2011, 9, 527-540.
-
(2011)
Cell. Stem Cell.
, vol.9
, pp. 527-540
-
-
Chong, J.J.1
Chandrakanthan, V.2
Xaymardan, M.3
Asli, N.S.4
Li, J.5
Ahmed, I.6
Heffernan, C.7
Menon, M.K.8
Scarlett, C.J.9
Rashidianfar, A.10
-
50
-
-
79954793035
-
Notch signaling regulates smooth muscle differentiation of epicardium-derived cells
-
Grieskamp, T.; Rudat, C.; Ludtke, T.H.; Norden, J.; Kispert, A. Notch signaling regulates smooth muscle differentiation of epicardium-derived cells. Circ. Res. 2011, 108, 813-823.
-
(2011)
Circ. Res.
, vol.108
, pp. 813-823
-
-
Grieskamp, T.1
Rudat, C.2
Ludtke, T.H.3
Norden, J.4
Kispert, A.5
-
51
-
-
79959427955
-
Tcf21+ epicardial cells adopt non-myocardial fates during zebrafish heart development and regeneration
-
Kikuchi, K.; Gupta, V.; Wang, J.; Holdway, J.E.; Wills, A.A.; Fang, Y.; Poss, K.D. Tcf21+ epicardial cells adopt non-myocardial fates during zebrafish heart development and regeneration. Development 2011, 138, 2895-2902.
-
(2011)
Development
, vol.138
, pp. 2895-2902
-
-
Kikuchi, K.1
Gupta, V.2
Wang, J.3
Holdway, J.E.4
Wills, A.A.5
Fang, Y.6
Poss, K.D.7
-
52
-
-
0345516018
-
Epicardium-derived cells contribute a novel population to the myocardial wall and the atrioventricular cushions
-
Gittenberger-de Groot, A.C.; Vrancken Peeters, M.P.; Mentink, M.M.; Gourdie, R.G.; Poelmann, R.E. Epicardium-derived cells contribute a novel population to the myocardial wall and the atrioventricular cushions. Circ. Res. 1998, 82, 1043-1052.
-
(1998)
Circ. Res.
, vol.82
, pp. 1043-1052
-
-
Gittenberger-de Groot, A.C.1
Vrancken Peeters, M.P.2
Mentink, M.M.3
Gourdie, R.G.4
Poelmann, R.E.5
-
53
-
-
84866146027
-
Pan-epicardial lineage tracing reveals that epicardium derived cells give rise to myofibroblasts and perivascular cells during zebrafish heart regeneration
-
Gonzalez-Rosa, J.M.; Peralta, M.; Mercader, N. Pan-epicardial lineage tracing reveals that epicardium derived cells give rise to myofibroblasts and perivascular cells during zebrafish heart regeneration. Dev. Biol. 2012, 370, 173-186.
-
(2012)
Dev. Biol.
, vol.370
, pp. 173-186
-
-
Gonzalez-Rosa, J.M.1
Peralta, M.2
Mercader, N.3
-
54
-
-
0026767366
-
Retroviral analysis of cardiac morphogenesis: Discontinuous formation of coronary vessels
-
Mikawa, T.; Fischman, D.A. Retroviral analysis of cardiac morphogenesis: Discontinuous formation of coronary vessels. Proc. Natl. Acad. Sci. USA 1992, 89, 9504-9508.
-
(1992)
Proc. Natl. Acad. Sci. USA
, vol.89
, pp. 9504-9508
-
-
Mikawa, T.1
Fischman, D.A.2
-
55
-
-
10744228523
-
Adult cardiac stem cells are multipotent and support myocardial regeneration
-
Beltrami, A.P.; Barlucchi, L.; Torella, D.; Baker, M.; Limana, F.; Chimenti, S.; Kasahara, H.; Rota, M.; Musso, E.; Urbanek, K.; et al. Adult cardiac stem cells are multipotent and support myocardial regeneration. Cell. 2003, 114, 763-776.
-
(2003)
Cell.
, vol.114
, pp. 763-776
-
-
Beltrami, A.P.1
Barlucchi, L.2
Torella, D.3
Baker, M.4
Limana, F.5
Chimenti, S.6
Kasahara, H.7
Rota, M.8
Musso, E.9
Urbanek, K.10
-
56
-
-
13544272476
-
Postnatal isl1+ cardioblasts enter fully differentiated cardiomyocyte lineages
-
Laugwitz, K.L.; Moretti, A.; Lam, J.; Gruber, P.; Chen, Y.; Woodard, S.; Lin, L.Z.; Cai, C.L.; Lu, M.M.; Reth, M.; et al. Postnatal isl1+ cardioblasts enter fully differentiated cardiomyocyte lineages. Nature 2005, 433, 647-653.
-
(2005)
Nature
, vol.433
, pp. 647-653
-
-
Laugwitz, K.L.1
Moretti, A.2
Lam, J.3
Gruber, P.4
Chen, Y.5
Woodard, S.6
Lin, L.Z.7
Cai, C.L.8
Lu, M.M.9
Reth, M.10
-
57
-
-
0142027772
-
Cardiac progenitor cells from adult myocardium: Homing, differentiation, and fusion after infarction
-
Oh, H.; Bradfute, S.B.; Gallardo, T.D.; Nakamura, T.; Gaussin, V.; Mishina, Y.; Pocius, J.; Michael, L.H.; Behringer, R.R.; Garry, D.J.; et al. Cardiac progenitor cells from adult myocardium: Homing, differentiation, and fusion after infarction. Proc. Natl. Acad. Sci. USA 2003, 100, 12313-12318.
-
(2003)
Proc. Natl. Acad. Sci. USA
, vol.100
, pp. 12313-12318
-
-
Oh, H.1
Bradfute, S.B.2
Gallardo, T.D.3
Nakamura, T.4
Gaussin, V.5
Mishina, Y.6
Pocius, J.7
Michael, L.H.8
Behringer, R.R.9
Garry, D.J.10
-
58
-
-
0347623124
-
Persistent expression of the atp-binding cassette transporter, abcg2, identifies cardiac sp cells in the developing and adult heart
-
Martin, C.M.; Meeson, A.P.; Robertson, S.M.; Hawke, T.J.; Richardson, J.A.; Bates, S.; Goetsch, S.C.; Gallardo, T.D.; Garry, D.J. Persistent expression of the atp-binding cassette transporter, abcg2, identifies cardiac sp cells in the developing and adult heart. Dev. Biol. 2004, 265, 262-275.
-
(2004)
Dev. Biol.
, vol.265
, pp. 262-275
-
-
Martin, C.M.1
Meeson, A.P.2
Robertson, S.M.3
Hawke, T.J.4
Richardson, J.A.5
Bates, S.6
Goetsch, S.C.7
Gallardo, T.D.8
Garry, D.J.9
-
59
-
-
78951485016
-
Immunohistochemical and flow cytometric analysis of long-term label-retaining cells in the adult heart
-
Meinhardt, A.; Spicher, A.; Roehrich, M.E.; Glauche, I.; Vogt, P.; Vassalli, G. Immunohistochemical and flow cytometric analysis of long-term label-retaining cells in the adult heart. Stem Cells Dev. 2011, 20, 211-222.
-
(2011)
Stem Cells Dev.
, vol.20
, pp. 211-222
-
-
Meinhardt, A.1
Spicher, A.2
Roehrich, M.E.3
Glauche, I.4
Vogt, P.5
Vassalli, G.6
-
60
-
-
84858019974
-
Intracoronary cardiosphere-derived cells for heart regeneration after myocardial infarction (CADUCEUS): A prospective, randomised phase 1 trial
-
Makkar, R.R.; Smith, R.R.; Cheng, K.; Malliaras, K.; Thomson, L.E.; Berman, D.; Czer, L.S.; Marban, L.; Mendizabal, A.; Johnston, P.V.; et al. Intracoronary cardiosphere-derived cells for heart regeneration after myocardial infarction (CADUCEUS): A prospective, randomised phase 1 trial. Lancet 2012, 379, 895-904.
-
(2012)
Lancet
, vol.379
, pp. 895-904
-
-
Makkar, R.R.1
Smith, R.R.2
Cheng, K.3
Malliaras, K.4
Thomson, L.E.5
Berman, D.6
Czer, L.S.7
Marban, L.8
Mendizabal, A.9
Johnston, P.V.10
-
61
-
-
82255175382
-
Cardiac stem cells in patients with ischaemic cardiomyopathy (SCIPIO): Initial results of a randomised phase 1 trial
-
Bolli, R.; Chugh, A.R.; D'Amario, D.; Loughran, J.H.; Stoddard, M.F.; Ikram, S.; Beache, G.M.; Wagner, S.G.; Leri, A.; Hosoda, T.; et al. Cardiac stem cells in patients with ischaemic cardiomyopathy (SCIPIO): Initial results of a randomised phase 1 trial. Lancet 2011, 378, 1847-1857.
-
(2011)
Lancet
, vol.378
, pp. 1847-1857
-
-
Bolli, R.1
Chugh, A.R.2
D'Amario, D.3
Loughran, J.H.4
Stoddard, M.F.5
Ikram, S.6
Beache, G.M.7
Wagner, S.G.8
Leri, A.9
Hosoda, T.10
-
62
-
-
33745843261
-
Cardioprotective c-kit+ cells are from the bone marrow and regulate the myocardial balance of angiogenic cytokines
-
Fazel, S.; Cimini, M.; Chen, L.; Li, S.; Angoulvant, D.; Fedak, P.; Verma, S.; Weisel, R.D.; Keating, A.; Li, R.K. Cardioprotective c-kit+ cells are from the bone marrow and regulate the myocardial balance of angiogenic cytokines. JCI 2006, 116, 1865-1877.
-
(2006)
JCI
, vol.116
, pp. 1865-1877
-
-
Fazel, S.1
Cimini, M.2
Chen, L.3
Li, S.4
Angoulvant, D.5
Fedak, P.6
Verma, S.7
Weisel, R.D.8
Keating, A.9
Li, R.K.10
-
63
-
-
84857924153
-
Cardiomyogenesis in the developing heart is regulated by c-kit-positive cardiac stem cells
-
Ferreira-Martins, J.; Ogorek, B.; Cappetta, D.; Matsuda, A.; Signore, S.; D'Amario, D.; Kostyla, J.; Steadman, E.; Ide-Iwata, N.; Sanada, F.; et al. Cardiomyogenesis in the developing heart is regulated by c-kit-positive cardiac stem cells. Circ. Res. 2012, 110, 701-715.
-
(2012)
Circ. Res.
, vol.110
, pp. 701-715
-
-
Ferreira-Martins, J.1
Ogorek, B.2
Cappetta, D.3
Matsuda, A.4
Signore, S.5
D'Amario, D.6
Kostyla, J.7
Steadman, E.8
Ide-Iwata, N.9
Sanada, F.10
-
64
-
-
33845442108
-
Developmental origin of a bipotential myocardial and smooth muscle cell precursor in the mammalian heart
-
Wu, S.M.; Fujiwara, Y.; Cibulsky, S.M.; Clapham, D.E.; Lien, C.L.; Schultheiss, T.M.; Orkin, S.H. Developmental origin of a bipotential myocardial and smooth muscle cell precursor in the mammalian heart. Cell 2006, 127, 1137-1150.
-
(2006)
Cell
, vol.127
, pp. 1137-1150
-
-
Wu, S.M.1
Fujiwara, Y.2
Cibulsky, S.M.3
Clapham, D.E.4
Lien, C.L.5
Schultheiss, T.M.6
Orkin, S.H.7
-
65
-
-
84989485234
-
The development of fibroblast colonies in monolayer cultures of guinea-pig bone marrow and spleen cells
-
Friedenstein, A.J.; Chailakhjan, R.K.; Lalykina, K.S. The development of fibroblast colonies in monolayer cultures of guinea-pig bone marrow and spleen cells. Cell. Tissue Kinet 1970, 3, 393-403.
-
(1970)
Cell. Tissue Kinet
, vol.3
, pp. 393-403
-
-
Friedenstein, A.J.1
Chailakhjan, R.K.2
Lalykina, K.S.3
-
66
-
-
80052709751
-
Comprehensive transcriptome and immunophenotype analysis of renal and cardiac MSC-like populations supports strong congruence with bone marrow MSC despite maintenance of distinct identities
-
Pelekanos, R.A.; Li, J.; Gongora, M.; Chandrakanthan, V.; Scown, J.; Suhaimi, N.; Brooke, G.; Christensen, M.E.; Doan, T.; Rice, A.M.; et al. Comprehensive transcriptome and immunophenotype analysis of renal and cardiac MSC-like populations supports strong congruence with bone marrow MSC despite maintenance of distinct identities. Stem Cell. Res. 2012, 8, 58-73.
-
(2012)
Stem Cell. Res.
, vol.8
, pp. 58-73
-
-
Pelekanos, R.A.1
Li, J.2
Gongora, M.3
Chandrakanthan, V.4
Scown, J.5
Suhaimi, N.6
Brooke, G.7
Christensen, M.E.8
Doan, T.9
Rice, A.M.10
-
67
-
-
84872088799
-
The meaning, the sense and the significance: Translating the science of mesenchymal stem cells into medicine
-
Bianco, P.; Cao, X.; Frenette, P.S.; Mao, J.J.; Robey, P.G.; Simmons, P.J.; Wang, C.Y. The meaning, the sense and the significance: Translating the science of mesenchymal stem cells into medicine. Nat. Med. 2013, 19, 35-42.
-
(2013)
Nat. Med.
, vol.19
, pp. 35-42
-
-
Bianco, P.1
Cao, X.2
Frenette, P.S.3
Mao, J.J.4
Robey, P.G.5
Simmons, P.J.6
Wang, C.Y.7
-
68
-
-
84881095160
-
Clonal precursor of bone, cartilage, and hematopoietic niche stromal cells
-
Chan, C.K.; Lindau, P.; Jiang, W.; Chen, J.Y.; Zhang, L.F.; Chen, C.C.; Seita, J.; Sahoo, D.; Kim, J.B.; Lee, A.; et al. Clonal precursor of bone, cartilage, and hematopoietic niche stromal cells. Proc. Natl. Acad. Sci. USA 2013, 110, 12643-12648.
-
(2013)
Proc. Natl. Acad. Sci. USA
, vol.110
, pp. 12643-12648
-
-
Chan, C.K.1
Lindau, P.2
Jiang, W.3
Chen, J.Y.4
Zhang, L.F.5
Chen, C.C.6
Seita, J.7
Sahoo, D.8
Kim, J.B.9
Lee, A.10
-
69
-
-
78649647544
-
A mesoderm-derived precursor for mesenchymal stem and endothelial cells
-
Vodyanik, M.A.; Yu, J.; Zhang, X.; Tian, S.; Stewart, R.; Thomson, J.A.; Slukvin, I.I. A mesoderm-derived precursor for mesenchymal stem and endothelial cells. Cell Stem Cell 2010, 7, 718-729.
-
(2010)
Cell Stem Cell
, vol.7
, pp. 718-729
-
-
Vodyanik, M.A.1
Yu, J.2
Zhang, X.3
Tian, S.4
Stewart, R.5
Thomson, J.A.6
Slukvin, I.I.7
-
70
-
-
0014403633
-
Transplantation of marrow to extramedullary sites
-
Tavassoli, M.; Crosby, W.H. Transplantation of marrow to extramedullary sites. Science 1968, 161, 54-56.
-
(1968)
Science
, vol.161
, pp. 54-56
-
-
Tavassoli, M.1
Crosby, W.H.2
-
71
-
-
0038583861
-
Evolutionary divergence of platelet-derived growth factor alpha receptor signaling mechanisms
-
Hamilton, T.G.; Klinghoffer, R.A.; Corrin, P.D.; Soriano, P. Evolutionary divergence of platelet-derived growth factor alpha receptor signaling mechanisms. J. Mol. Cell. Biol. 2003, 23, 4013-4025.
-
(2003)
J. Mol. Cell. Biol.
, vol.23
, pp. 4013-4025
-
-
Hamilton, T.G.1
Klinghoffer, R.A.2
Corrin, P.D.3
Soriano, P.4
-
73
-
-
79958799319
-
Epicardial-derived cell epithelial-tomesenchymal transition and fate specification require PDGF receptor signaling
-
Smith, C.L.; Baek, S.T.; Sung, C.Y.; Tallquist, M.D. Epicardial-derived cell epithelial-tomesenchymal transition and fate specification require PDGF receptor signaling. Circ. Res. 2011, 108, e15-26.
-
(2011)
Circ. Res.
, vol.108
, pp. e15-26
-
-
Smith, C.L.1
Baek, S.T.2
Sung, C.Y.3
Tallquist, M.D.4
-
75
-
-
84885099905
-
Mesenchymal stromal cells: Sensors and switchers of inflammation
-
Bernardo, M.E.; Fibbe, W.E. Mesenchymal stromal cells: Sensors and switchers of inflammation. Cell. Stem Cell. 2013, 13, 392-402.
-
(2013)
Cell. Stem Cell.
, vol.13
, pp. 392-402
-
-
Bernardo, M.E.1
Fibbe, W.E.2
-
76
-
-
59649110883
-
Cardiac fibroblasts regulate myocardial proliferation through beta1 integrin signaling
-
Ieda, M.; Tsuchihashi, T.; Ivey, K.N.; Ross, R.S.; Hong, T.T.; Shaw, R.M.; Srivastava, D. Cardiac fibroblasts regulate myocardial proliferation through beta1 integrin signaling. Dev. Cell. 2009, 16, 233-244.
-
(2009)
Dev. Cell.
, vol.16
, pp. 233-244
-
-
Ieda, M.1
Tsuchihashi, T.2
Ivey, K.N.3
Ross, R.S.4
Hong, T.T.5
Shaw, R.M.6
Srivastava, D.7
-
77
-
-
84882684464
-
Tissue-resident mesenchymal stem/progenitor cells in skeletal muscle: Collaborators or saboteurs?
-
Judson, R.N.; Zhang, R.H.; Rossi, F.M. Tissue-resident mesenchymal stem/progenitor cells in skeletal muscle: Collaborators or saboteurs? FEBS J. 2013, 280, 4100-4108.
-
(2013)
FEBS J
, vol.280
, pp. 4100-4108
-
-
Judson, R.N.1
Zhang, R.H.2
Rossi, F.M.3
-
78
-
-
84869093394
-
Characteristics of pericardial interstitial cells and their implications in pericardial fibrocalcification
-
Liu, X.; Tan, M.; Gong, D.; Han, L.; Lu, F.; Huang, S.; Xu, Z. Characteristics of pericardial interstitial cells and their implications in pericardial fibrocalcification. J. Mol. Cell. Cardiol. 2012, 53, 780-789.
-
(2012)
J. Mol. Cell. Cardiol.
, vol.53
, pp. 780-789
-
-
Liu, X.1
Tan, M.2
Gong, D.3
Han, L.4
Lu, F.5
Huang, S.6
Xu, Z.7
-
79
-
-
84878469136
-
Heart repair by cardiac reprogramming
-
Nam, Y.J.; Song, K.; Olson, E.N. Heart repair by cardiac reprogramming. Nat. Med. 2013, 19, 413-415.
-
(2013)
Nat. Med.
, vol.19
, pp. 413-415
-
-
Nam, Y.J.1
Song, K.2
Olson, E.N.3
-
80
-
-
38849197532
-
Regulated addition of new myocardial and epicardial cells fosters homeostatic cardiac growth and maintenance in adult zebrafish
-
Wills, A.A.; Holdway, J.E.; Major, R.J.; Poss, K.D. Regulated addition of new myocardial and epicardial cells fosters homeostatic cardiac growth and maintenance in adult zebrafish. Development 2008, 135, 183-192.
-
(2008)
Development
, vol.135
, pp. 183-192
-
-
Wills, A.A.1
Holdway, J.E.2
Major, R.J.3
Poss, K.D.4
-
81
-
-
84874187437
-
The hypoxic epicardial and subepicardial microenvironment
-
Kocabas, F.; Mahmoud, A.I.; Sosic, D.; Porrello, E.R.; Chen, R.; Garcia, J.A.; DeBerardinis, R.J.; Sadek, H.A. The hypoxic epicardial and subepicardial microenvironment. Cardiovasc. Transl. Res. 2012, 5, 654-665.
-
(2012)
Cardiovasc. Transl. Res.
, vol.5
, pp. 654-665
-
-
Kocabas, F.1
Mahmoud, A.I.2
Sosic, D.3
Porrello, E.R.4
Chen, R.5
Garcia, J.A.6
DeBerardinis, R.J.7
Sadek, H.A.8
-
82
-
-
77953943963
-
Cardiomyocyte precursors and telocytes in epicardial stem cell niche: Electron microscope images
-
Gherghiceanu, M.; Popescu, L.M. Cardiomyocyte precursors and telocytes in epicardial stem cell niche: Electron microscope images. J. Cell. Mol. Med. 2010, 14, 871-877.
-
(2010)
J. Cell. Mol. Med.
, vol.14
, pp. 871-877
-
-
Gherghiceanu, M.1
Popescu, L.M.2
-
83
-
-
82555193327
-
Epithelial-to-mesenchymal transformation alters electrical conductivity of human epicardial cells
-
Bax, N.A.; Pijnappels, D.A.; van Oorschot, A.A.; Winter, E.M.; de Vries, A.A.; van Tuyn, J.; Braun, J.; Maas, S.; Schalij, M.J.; Atsma, D.E.; et al. Epithelial-to-mesenchymal transformation alters electrical conductivity of human epicardial cells. J. Cell. Mol. Med. 2011, 15, 2675-2683.
-
(2011)
J. Cell. Mol. Med.
, vol.15
, pp. 2675-2683
-
-
Bax, N.A.1
Pijnappels, D.A.2
van Oorschot, A.A.3
Winter, E.M.4
de Vries, A.A.5
van Tuyn, J.6
Braun, J.7
Maas, S.8
Schalij, M.J.9
Atsma, D.E.10
-
84
-
-
33846918187
-
Epicardial cells of human adults can undergo an epithelial-to-mesenchymal transition and obtain characteristics of smooth muscle cells in vitro
-
van Tuyn, J.; Atsma, D.E.; Winter, E.M.; van der Velde-van Dijke, I.; Pijnappels, D.A.; Bax, N.A.; Knaan-Shanzer, S.; Gittenberger-de Groot, A.C.; Poelmann, R.E.; van der Laarse, A.; et al. Epicardial cells of human adults can undergo an epithelial-to-mesenchymal transition and obtain characteristics of smooth muscle cells in vitro. Stem Cells 2007, 25, 271-278.
-
(2007)
Stem Cells
, vol.25
, pp. 271-278
-
-
van Tuyn, J.1
Atsma, D.E.2
Winter, E.M.3
van der Velde-van Dijke, I.4
Pijnappels, D.A.5
Bax, N.A.6
Knaan-Shanzer, S.7
Gittenberger-de Groot, A.C.8
Poelmann, R.E.9
van der Laarse, A.10
-
85
-
-
78651482281
-
Localization and origin of cardiac cd117-positive cells: Identification of a population of epicardially-derived cells in adult human heart
-
Di Meglio, F.; Castaldo, C.; Nurzynska, D.; Miraglia, R.; Romano, V.; Russolillo, V.; Giuseppina, L.; Vosa, C.; Montagnani, S. Localization and origin of cardiac cd117-positive cells: Identification of a population of epicardially-derived cells in adult human heart. Ital. J. Anat Embryol. 2010, 115, 71-78.
-
(2010)
Ital. J. Anat Embryol.
, vol.115
, pp. 71-78
-
-
Di Meglio, F.1
Castaldo, C.2
Nurzynska, D.3
Miraglia, R.4
Romano, V.5
Russolillo, V.6
Giuseppina, L.7
Vosa, C.8
Montagnani, S.9
-
86
-
-
77954729235
-
Epicardium-derived cells (EPDCs) in development, cardiac disease and repair of ischemia
-
Gittenberger-de Groot, A.C.; Winter, E.M.; Poelmann, R.E. Epicardium-derived cells (EPDCs) in development, cardiac disease and repair of ischemia. J. Mol. Cell. Med. 2010, 14, 1056-1060.
-
(2010)
J. Mol. Cell. Med.
, vol.14
, pp. 1056-1060
-
-
Gittenberger-de Groot, A.C.1
Winter, E.M.2
Poelmann, R.E.3
-
87
-
-
77649272521
-
Myocardial infarction induces embryonic reprogramming of epicardial c-kit(+) cells: Role of the pericardial fluid
-
Limana, F.; Bertolami, C.; Mangoni, A.; Di Carlo, A.; Avitabile, D.; Mocini, D.; Iannelli, P.; De Mori, R.; Marchetti, C.; Pozzoli, O.; et al. Myocardial infarction induces embryonic reprogramming of epicardial c-kit(+) cells: Role of the pericardial fluid. J. Mol. Cell. Cardiol. 2010, 48, 609-618.
-
(2010)
J. Mol. Cell. Cardiol.
, vol.48
, pp. 609-618
-
-
Limana, F.1
Bertolami, C.2
Mangoni, A.3
Di Carlo, A.4
Avitabile, D.5
Mocini, D.6
Iannelli, P.7
De Mori, R.8
Marchetti, C.9
Pozzoli, O.10
-
88
-
-
33846243239
-
Thymosin beta4 induces adult epicardial progenitor mobilization and neovascularization
-
Smart, N.; Risebro, C.A.; Melville, A.A.; Moses, K.; Schwartz, R.J.; Chien, K.R.; Riley, P.R. Thymosin beta4 induces adult epicardial progenitor mobilization and neovascularization. Nature 2007, 445, 177-182.
-
(2007)
Nature
, vol.445
, pp. 177-182
-
-
Smart, N.1
Risebro, C.A.2
Melville, A.A.3
Moses, K.4
Schwartz, R.J.5
Chien, K.R.6
Riley, P.R.7
-
89
-
-
84055214880
-
Thymosin beta 4 treatment after myocardial infarction does not reprogram epicardial cells into cardiomyocytes
-
Zhou, B.; Honor, L.B.; Ma, Q.; Oh, J.H.; Lin, R.Z.; Melero-Martin, J.M.; von Gise, A.; Zhou, P.; Hu, T.; He, L.; et al. Thymosin beta 4 treatment after myocardial infarction does not reprogram epicardial cells into cardiomyocytes. J. Mol. Cell. Cardiol. 2012, 52, 43-47.
-
(2012)
J. Mol. Cell. Cardiol.
, vol.52
, pp. 43-47
-
-
Zhou, B.1
Honor, L.B.2
Ma, Q.3
Oh, J.H.4
Lin, R.Z.5
Melero-Martin, J.M.6
von Gise, A.7
Zhou, P.8
Hu, T.9
He, L.10
-
90
-
-
79251625088
-
A dynamic notch injury response activates epicardium and contributes to fibrosis repair
-
Russell, J.L.; Goetsch, S.C.; Gaiano, N.R.; Hill, J.A.; Olson, E.N.; Schneider, J.W. A dynamic notch injury response activates epicardium and contributes to fibrosis repair. Circ. Res. 2011, 108, 51-59.
-
(2011)
Circ. Res.
, vol.108
, pp. 51-59
-
-
Russell, J.L.1
Goetsch, S.C.2
Gaiano, N.R.3
Hill, J.A.4
Olson, E.N.5
Schneider, J.W.6
|