-
1
-
-
77955334500
-
How to make a heart: the origin and regulation of cardiac progenitor cells
-
Vincent S.D., Buckingham M.E. How to make a heart: the origin and regulation of cardiac progenitor cells. Curr. Top. Dev. Biol. 2010, 90:1-41.
-
(2010)
Curr. Top. Dev. Biol.
, vol.90
, pp. 1-41
-
-
Vincent, S.D.1
Buckingham, M.E.2
-
2
-
-
77955837626
-
Myocardial telocytes: a specific new cellular entity
-
Kostin S. Myocardial telocytes: a specific new cellular entity. J. Cell. Mol. Med. 2010, 14:1917-1921.
-
(2010)
J. Cell. Mol. Med.
, vol.14
, pp. 1917-1921
-
-
Kostin, S.1
-
3
-
-
84880839534
-
Mending broken hearts: cardiac development as a basis for adult heart regeneration and repair
-
Xin M., Olson E.N., Bassel-Duby R. Mending broken hearts: cardiac development as a basis for adult heart regeneration and repair. Nat. Rev. Mol. Cell Biol. 2013, 14:529-541.
-
(2013)
Nat. Rev. Mol. Cell Biol.
, vol.14
, pp. 529-541
-
-
Xin, M.1
Olson, E.N.2
Bassel-Duby, R.3
-
4
-
-
57149146866
-
Features of cardiomyocyte proliferation and its potential for cardiac regeneration
-
van Amerongen M.J., Engel F.B. Features of cardiomyocyte proliferation and its potential for cardiac regeneration. J. Cell. Mol. Med. 2008, 12:2233-2244.
-
(2008)
J. Cell. Mol. Med.
, vol.12
, pp. 2233-2244
-
-
van Amerongen, M.J.1
Engel, F.B.2
-
5
-
-
22744438723
-
Stem cell function, self-renewal, and behavioral heterogeneity of cells from the adult muscle satellite cell niche
-
Collins C.A., Olsen I., Zammit P.S., Heslop L., Petrie A., Partridge T.A., Morgan J.E. Stem cell function, self-renewal, and behavioral heterogeneity of cells from the adult muscle satellite cell niche. Cell 2005, 122:289-301.
-
(2005)
Cell
, vol.122
, pp. 289-301
-
-
Collins, C.A.1
Olsen, I.2
Zammit, P.S.3
Heslop, L.4
Petrie, A.5
Partridge, T.A.6
Morgan, J.E.7
-
6
-
-
70350464337
-
Cellular cardiac regenerative therapy in which patients?
-
Chachques J.C. Cellular cardiac regenerative therapy in which patients?. Expert Rev. Cardiovasc. Ther. 2009, 7:911-919.
-
(2009)
Expert Rev. Cardiovasc. Ther.
, vol.7
, pp. 911-919
-
-
Chachques, J.C.1
-
7
-
-
64249107059
-
Evidence for cardiomyocyte renewal in humans
-
Bergmann O., Bhardwaj R.D., Bernard S., Zdunek S., Barnabe-Heider F., Walsh S., Zupicich J., Alkass K., Buchholz B.A., Druid H., Jovinge S., Frisen J. Evidence for cardiomyocyte renewal in humans. Science 2009, 324:98-102.
-
(2009)
Science
, vol.324
, pp. 98-102
-
-
Bergmann, O.1
Bhardwaj, R.D.2
Bernard, S.3
Zdunek, S.4
Barnabe-Heider, F.5
Walsh, S.6
Zupicich, J.7
Alkass, K.8
Buchholz, B.A.9
Druid, H.10
Jovinge, S.11
Frisen, J.12
-
8
-
-
84872611623
-
Mammalian heart renewal by pre-existing cardiomyocytes
-
Senyo S.E., Steinhauser M.L., Pizzimenti C.L., Yang V.K., Cai L., Wang M., Wu T.D., Guerquin-Kern J.L., Lechene C.P., Lee R.T. Mammalian heart renewal by pre-existing cardiomyocytes. Nature 2013, 493:433-436.
-
(2013)
Nature
, vol.493
, pp. 433-436
-
-
Senyo, S.E.1
Steinhauser, M.L.2
Pizzimenti, C.L.3
Yang, V.K.4
Cai, L.5
Wang, M.6
Wu, T.D.7
Guerquin-Kern, J.L.8
Lechene, C.P.9
Lee, R.T.10
-
9
-
-
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., Leri A., Kajstura J., Nadal-Ginard B., Anversa P. 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
Leri, A.11
Kajstura, J.12
Nadal-Ginard, B.13
Anversa, P.14
-
10
-
-
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., Entman M.L., Schneider M.D. 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
Entman, M.L.11
Schneider, M.D.12
-
11
-
-
0042337388
-
Intense myocyte formation from cardiac stem cells in human cardiac hypertrophy
-
Urbanek K., Quaini F., Tasca G., Torella D., Castaldo C., Nadal-Ginard B., Leri A., Kajstura J., Quaini E., Anversa P. Intense myocyte formation from cardiac stem cells in human cardiac hypertrophy. Proc. Natl. Acad. Sci. USA 2003, 100:10440-10445.
-
(2003)
Proc. Natl. Acad. Sci. USA
, vol.100
, pp. 10440-10445
-
-
Urbanek, K.1
Quaini, F.2
Tasca, G.3
Torella, D.4
Castaldo, C.5
Nadal-Ginard, B.6
Leri, A.7
Kajstura, J.8
Quaini, E.9
Anversa, P.10
-
12
-
-
84878757003
-
Concise review: heart regeneration and the role of cardiac stem cells
-
Koudstaal S., Jansen Of Lorkeers S.J., Gaetani R., Gho J.M., van Slochteren F.J., Sluijter J.P., Doevendans P.A., Ellison G.M., Chamuleau S.A. Concise review: heart regeneration and the role of cardiac stem cells. Stem Cells Translational Med. 2013, 2:434-443.
-
(2013)
Stem Cells Translational Med.
, vol.2
, pp. 434-443
-
-
Koudstaal, S.1
Jansen Of Lorkeers, S.J.2
Gaetani, R.3
Gho, J.M.4
van Slochteren, F.J.5
Sluijter, J.P.6
Doevendans, P.A.7
Ellison, G.M.8
Chamuleau, S.A.9
-
14
-
-
53249133042
-
Compensatory growth of healthy cardiac cells in the presence of diseased cells restores tissue homeostasis during heart development
-
Drenckhahn J.D., Schwarz Q.P., Gray S., Laskowski A., Kiriazis H., Ming Z., Harvey R.P., Du X.J., Thorburn D.R., Cox T.C. Compensatory growth of healthy cardiac cells in the presence of diseased cells restores tissue homeostasis during heart development. Dev. Cell 2008, 15:521-533.
-
(2008)
Dev. Cell
, vol.15
, pp. 521-533
-
-
Drenckhahn, J.D.1
Schwarz, Q.P.2
Gray, S.3
Laskowski, A.4
Kiriazis, H.5
Ming, Z.6
Harvey, R.P.7
Du, X.J.8
Thorburn, D.R.9
Cox, T.C.10
-
16
-
-
0035859895
-
Heart regeneration in adult MRL mice
-
Leferovich J.M., Bedelbaeva K., Samulewicz S., Zhang X.M., Zwas D., Lankford E.B., Heber-Katz E. Heart regeneration in adult MRL mice. Proc. Natl. Acad. Sci. USA 2001, 98:9830-9835.
-
(2001)
Proc. Natl. Acad. Sci. USA
, vol.98
, pp. 9830-9835
-
-
Leferovich, J.M.1
Bedelbaeva, K.2
Samulewicz, S.3
Zhang, X.M.4
Zwas, D.5
Lankford, E.B.6
Heber-Katz, E.7
-
17
-
-
37349021485
-
The MRL mouse heart does not recover ventricular function after a myocardial infarction
-
Cimini M., Fazel S., Fujii H., Zhou S., Tang G., Weisel R.D., Li R.K. The MRL mouse heart does not recover ventricular function after a myocardial infarction. Cardiovasc. Pathol. 2008, 17:32-39.
-
(2008)
Cardiovasc. Pathol.
, vol.17
, pp. 32-39
-
-
Cimini, M.1
Fazel, S.2
Fujii, H.3
Zhou, S.4
Tang, G.5
Weisel, R.D.6
Li, R.K.7
-
18
-
-
37449020069
-
The MRL mouse repairs both cryogenic and ischemic myocardial infarcts with scar
-
Grisel P., Meinhardt A., Lehr H.A., Kappenberger L., Barrandon Y., Vassalli G. The MRL mouse repairs both cryogenic and ischemic myocardial infarcts with scar. Cardiovasc. Pathol. 2008, 17:14-22.
-
(2008)
Cardiovasc. Pathol.
, vol.17
, pp. 14-22
-
-
Grisel, P.1
Meinhardt, A.2
Lehr, H.A.3
Kappenberger, L.4
Barrandon, Y.5
Vassalli, G.6
-
19
-
-
37349042978
-
Absence of regeneration in the MRL/MpJ mouse heart following infarction or cryoinjury
-
Robey T.E., Murry C.E. Absence of regeneration in the MRL/MpJ mouse heart following infarction or cryoinjury. Cardiovasc. Pathol. 2008, 17:6-13.
-
(2008)
Cardiovasc. Pathol.
, vol.17
, pp. 6-13
-
-
Robey, T.E.1
Murry, C.E.2
-
20
-
-
79952065525
-
Transient regenerative potential of the neonatal mouse heart
-
Porrello E.R., Mahmoud A.I., Simpson E., Hill J.A., Richardson J.A., Olson E.N., Sadek H.A. Transient regenerative potential of the neonatal mouse heart. Science 2011, 331:1078-1080.
-
(2011)
Science
, vol.331
, pp. 1078-1080
-
-
Porrello, E.R.1
Mahmoud, A.I.2
Simpson, E.3
Hill, J.A.4
Richardson, J.A.5
Olson, E.N.6
Sadek, H.A.7
-
21
-
-
84874805183
-
Complete cardiac regeneration in a mouse model of myocardial infarction
-
Haubner B.J., Adamowicz-Brice M., Khadayate S., Tiefenthaler V., Metzler B., Aitman T., Penninger J.M. Complete cardiac regeneration in a mouse model of myocardial infarction. Aging 2012, 4:966-977.
-
(2012)
Aging
, vol.4
, pp. 966-977
-
-
Haubner, B.J.1
Adamowicz-Brice, M.2
Khadayate, S.3
Tiefenthaler, V.4
Metzler, B.5
Aitman, T.6
Penninger, J.M.7
-
22
-
-
80051478843
-
Genome evolution and meiotic maps by massively parallel DNA sequencing: spotted gar, an outgroup for the teleost genome duplication
-
Amores A., Catchen J., Ferrara A., Fontenot Q., Postlethwait J.H. Genome evolution and meiotic maps by massively parallel DNA sequencing: spotted gar, an outgroup for the teleost genome duplication. Genetics 2011, 188:799-808.
-
(2011)
Genetics
, vol.188
, pp. 799-808
-
-
Amores, A.1
Catchen, J.2
Ferrara, A.3
Fontenot, Q.4
Postlethwait, J.H.5
-
23
-
-
32644473851
-
In vivo cell biology: following the zebrafish trend
-
Beis D., Stainier D.Y. In vivo cell biology: following the zebrafish trend. Trends Cell Biol. 2006, 16:105-112.
-
(2006)
Trends Cell Biol.
, vol.16
, pp. 105-112
-
-
Beis, D.1
Stainier, D.Y.2
-
25
-
-
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
-
26
-
-
77950200829
-
Zebrafish heart regeneration occurs by cardiomyocyte dedifferentiation and proliferation
-
Jopling C., Sleep E., Raya M., Marti M., Raya A., Belmonte J.C. Zebrafish heart regeneration occurs by cardiomyocyte dedifferentiation and proliferation. Nature 2010, 464:606-609.
-
(2010)
Nature
, vol.464
, pp. 606-609
-
-
Jopling, C.1
Sleep, E.2
Raya, M.3
Marti, M.4
Raya, A.5
Belmonte, J.C.6
-
27
-
-
77950201708
-
Primary contribution to zebrafish heart regeneration by gata4(+) cardiomyocytes
-
Kikuchi K., Holdway J.E., Werdich A.A., Anderson R.M., Fang Y., Egnaczyk G.F., Evans T., Macrae C.A., Stainier D.Y., Poss K.D. Primary contribution to zebrafish heart regeneration by gata4(+) cardiomyocytes. Nature 2010, 464:601-605.
-
(2010)
Nature
, vol.464
, pp. 601-605
-
-
Kikuchi, K.1
Holdway, J.E.2
Werdich, A.A.3
Anderson, R.M.4
Fang, Y.5
Egnaczyk, G.F.6
Evans, T.7
Macrae, C.A.8
Stainier, D.Y.9
Poss, K.D.10
-
28
-
-
79960778952
-
The regenerative capacity of zebrafish reverses cardiac failure caused by genetic cardiomyocyte depletion
-
Wang J., Panakova D., Kikuchi K., Holdway J.E., Gemberling M., Burris J.S., Singh S.P., Dickson A.L., Lin Y.F., Sabeh M.K., Werdich A.A., Yelon D., Macrae C.A., Poss K.D. The regenerative capacity of zebrafish reverses cardiac failure caused by genetic cardiomyocyte depletion. Development 2011, 138:3421-3430.
-
(2011)
Development
, vol.138
, pp. 3421-3430
-
-
Wang, J.1
Panakova, D.2
Kikuchi, K.3
Holdway, J.E.4
Gemberling, M.5
Burris, J.S.6
Singh, S.P.7
Dickson, A.L.8
Lin, Y.F.9
Sabeh, M.K.10
Werdich, A.A.11
Yelon, D.12
Macrae, C.A.13
Poss, K.D.14
-
29
-
-
84879688282
-
In vivo cardiac reprogramming contributes to zebrafish heart regeneration
-
Zhang R., Han P., Yang H., Ouyang K., Lee D., Lin Y.F., Ocorr K., Kang G., Chen J., Stainier D.Y., Yelon D., Chi N.C. In vivo cardiac reprogramming contributes to zebrafish heart regeneration. Nature 2013.
-
(2013)
Nature
-
-
Zhang, R.1
Han, P.2
Yang, H.3
Ouyang, K.4
Lee, D.5
Lin, Y.F.6
Ocorr, K.7
Kang, G.8
Chen, J.9
Stainier, D.Y.10
Yelon, D.11
Chi, N.C.12
-
30
-
-
79953678403
-
The zebrafish heart regenerates after cryoinjury-induced myocardial infarction
-
Chablais F., Veit J., Rainer G., Jazwinska A. The zebrafish heart regenerates after cryoinjury-induced myocardial infarction. BMC Dev. Biol. 2011, 11:21.
-
(2011)
BMC Dev. Biol.
, vol.11
, pp. 21
-
-
Chablais, F.1
Veit, J.2
Rainer, G.3
Jazwinska, A.4
-
31
-
-
79955364546
-
Extensive scar formation and regression during heart regeneration after cryoinjury in zebrafish
-
Gonzalez-Rosa J.M., Martin V., Peralta M., Torres M., Mercader N. Extensive scar formation and regression during heart regeneration after cryoinjury in zebrafish. Development 2011, 138:1663-1674.
-
(2011)
Development
, vol.138
, pp. 1663-1674
-
-
Gonzalez-Rosa, J.M.1
Martin, V.2
Peralta, M.3
Torres, M.4
Mercader, N.5
-
32
-
-
79954522898
-
Regeneration of cryoinjury induced necrotic heart lesions in zebrafish is associated with epicardial activation and cardiomyocyte proliferation
-
Schnabel K., Wu C.C., Kurth T., Weidinger G. Regeneration of cryoinjury induced necrotic heart lesions in zebrafish is associated with epicardial activation and cardiomyocyte proliferation. PloS One 2011, 6:e18503.
-
(2011)
PloS One
, vol.6
-
-
Schnabel, K.1
Wu, C.C.2
Kurth, T.3
Weidinger, G.4
-
33
-
-
84855767225
-
The giant danio (D. aequipinnatus) as a model of cardiac remodeling and regeneration
-
Lafontant P.J., Burns A.R., Grivas J.A., Lesch M.A., Lala T.D., Reuter S.P., Field L.J., Frounfelter T.D. The giant danio (D. aequipinnatus) as a model of cardiac remodeling and regeneration. Anat. Rec. 2012, 295:234-248.
-
(2012)
Anat. Rec.
, vol.295
, pp. 234-248
-
-
Lafontant, P.J.1
Burns, A.R.2
Grivas, J.A.3
Lesch, M.A.4
Lala, T.D.5
Reuter, S.P.6
Field, L.J.7
Frounfelter, T.D.8
-
34
-
-
0036346608
-
Plasticity and reprogramming of differentiated cells in amphibian regeneration
-
Brockes J.P., Kumar A. Plasticity and reprogramming of differentiated cells in amphibian regeneration. Nat. Rev. Mol. Cell Biol. 2002, 3:566-574.
-
(2002)
Nat. Rev. Mol. Cell Biol.
, vol.3
, pp. 566-574
-
-
Brockes, J.P.1
Kumar, A.2
-
35
-
-
0345760088
-
Lens and retina regeneration: transdifferentiation, stem cells and clinical applications
-
Tsonis P.A., Del Rio-Tsonis K. Lens and retina regeneration: transdifferentiation, stem cells and clinical applications. Exp. Eye Res. 2004, 78:161-172.
-
(2004)
Exp. Eye Res.
, vol.78
, pp. 161-172
-
-
Tsonis, P.A.1
Del Rio-Tsonis, K.2
-
36
-
-
0015993323
-
Response of the adult newt ventricle to injury
-
Oberpriller J.O., Oberpriller J.C. Response of the adult newt ventricle to injury. J. Exp. Zool. 1974, 187:249-253.
-
(1974)
J. Exp. Zool.
, vol.187
, pp. 249-253
-
-
Oberpriller, J.O.1
Oberpriller, J.C.2
-
37
-
-
0016193606
-
Regeneration of the ventricular myocardium in amphibians
-
Becker R.O., Chapin S., Sherry R. Regeneration of the ventricular myocardium in amphibians. Nature 1974, 248:145-147.
-
(1974)
Nature
, vol.248
, pp. 145-147
-
-
Becker, R.O.1
Chapin, S.2
Sherry, R.3
-
38
-
-
0017826407
-
Repair and reorganization of minced cardiac muscle in the adult newt (Notophthalmus viridescens)
-
Bader D., Oberpriller J.O. Repair and reorganization of minced cardiac muscle in the adult newt (Notophthalmus viridescens). J. Morphol. 1978, 155:349-357.
-
(1978)
J. Morphol.
, vol.155
, pp. 349-357
-
-
Bader, D.1
Oberpriller, J.O.2
-
39
-
-
0036089980
-
Cell cycle reentry of ventricular and atrial cardiomyocytes and cells within the epicardium following amputation of the ventricular apex in the axolotl, Amblystoma mexicanum: confocal microscopic immunofluorescent image analysis of bromodeoxyuridine-labeled nuclei
-
Flink I.L. Cell cycle reentry of ventricular and atrial cardiomyocytes and cells within the epicardium following amputation of the ventricular apex in the axolotl, Amblystoma mexicanum: confocal microscopic immunofluorescent image analysis of bromodeoxyuridine-labeled nuclei. Anat. Embryol. 2002, 205:235-244.
-
(2002)
Anat. Embryol.
, vol.205
, pp. 235-244
-
-
Flink, I.L.1
-
40
-
-
33845708407
-
Re-programming of newt cardiomyocytes is induced by tissue regeneration
-
Laube F., Heister M., Scholz C., Borchardt T., Braun T. Re-programming of newt cardiomyocytes is induced by tissue regeneration. J. Cell Sci. 2006, 119:4719-4729.
-
(2006)
J. Cell Sci.
, vol.119
, pp. 4719-4729
-
-
Laube, F.1
Heister, M.2
Scholz, C.3
Borchardt, T.4
Braun, T.5
-
41
-
-
84879335696
-
Reconstitution of the myocardium in regenerating newt hearts is preceded by transient deposition of extracellular matrix components
-
Piatkowski T., Muhlfeld C., Borchardt T., Braun T. Reconstitution of the myocardium in regenerating newt hearts is preceded by transient deposition of extracellular matrix components. Stem Cells Dev. 2013, 22:1921-1931.
-
(2013)
Stem Cells Dev.
, vol.22
, pp. 1921-1931
-
-
Piatkowski, T.1
Muhlfeld, C.2
Borchardt, T.3
Braun, T.4
-
42
-
-
77954609855
-
Functional and structural regeneration in the axolotl heart (Ambystoma mexicanum) after partial ventricular amputation
-
Cano-Martinez A., Vargas-Gonzalez A., Guarner-Lans V., Prado-Zayago E., Leon-Oleda M., Nieto-Lima B. Functional and structural regeneration in the axolotl heart (Ambystoma mexicanum) after partial ventricular amputation. Arch. Cardiol. Mex. 2010, 80:79-86.
-
(2010)
Arch. Cardiol. Mex.
, vol.80
, pp. 79-86
-
-
Cano-Martinez, A.1
Vargas-Gonzalez, A.2
Guarner-Lans, V.3
Prado-Zayago, E.4
Leon-Oleda, M.5
Nieto-Lima, B.6
-
43
-
-
79955507001
-
Recapitulation of developmental cardiogenesis governs the morphological and functional regeneration of adult newt hearts following injury
-
Witman N., Murtuza B., Davis B., Arner A., Morrison J.I. Recapitulation of developmental cardiogenesis governs the morphological and functional regeneration of adult newt hearts following injury. Dev. Biol. 2011, 354:67-76.
-
(2011)
Dev. Biol.
, vol.354
, pp. 67-76
-
-
Witman, N.1
Murtuza, B.2
Davis, B.3
Arner, A.4
Morrison, J.I.5
-
44
-
-
38949168086
-
Islet1 cardiovascular progenitors: a single source for heart lineages?
-
Laugwitz K.L., Moretti A., Caron L., Nakano A., Chien K.R. Islet1 cardiovascular progenitors: a single source for heart lineages?. Development 2008, 135:193-205.
-
(2008)
Development
, vol.135
, pp. 193-205
-
-
Laugwitz, K.L.1
Moretti, A.2
Caron, L.3
Nakano, A.4
Chien, K.R.5
-
45
-
-
63349089606
-
Cardiac interstitial cells express GATA4 and control dedifferentiation and cell cycle re-entry of adult cardiomyocytes
-
Zaglia T., Dedja A., Candiotto C., Cozzi E., Schiaffino S., Ausoni S. Cardiac interstitial cells express GATA4 and control dedifferentiation and cell cycle re-entry of adult cardiomyocytes. J. Mol. Cell. Cardiol. 2009, 46:653-662.
-
(2009)
J. Mol. Cell. Cardiol.
, vol.46
, pp. 653-662
-
-
Zaglia, T.1
Dedja, A.2
Candiotto, C.3
Cozzi, E.4
Schiaffino, S.5
Ausoni, S.6
-
46
-
-
84863106462
-
Zebrafish models in cardiac development and congenital heart birth defects
-
Tu S., Chi N.C. Zebrafish models in cardiac development and congenital heart birth defects. Differentiation 2012, 84:4-16.
-
(2012)
Differentiation
, vol.84
, pp. 4-16
-
-
Tu, S.1
Chi, N.C.2
-
47
-
-
84876798186
-
The zebrafish reference genome sequence and its relationship to the human genome
-
Howe K., Clark M.D., Torroja C.F., Torrance J., Berthelot C., Muffato M., Collins J.E., Humphray S., McLaren K., Matthews L., McLaren S., Sealy I., Caccamo M., Churcher C., Scott C., Barrett J.C., Koch R., Rauch G.J., White S., Chow W., Kilian B., Quintais L.T., Guerra-Assuncao J.A., Zhou Y., Gu Y., Yen J., Vogel J.H., Eyre T., Redmond S., Banerjee R., Chi J.X., Fu B.Y., Langley E., Maguire S.F., Laird G.K., Lloyd D., Kenyon E., Donaldson S., Sehra H., Almeida-King J., Loveland J., Trevanion S., Jones M., Quail M., Willey D., Hunt A., Burton J., Sims S., McLay K., Plumb B., Davis J., Clee C., Oliver K., Clark R., Riddle C., Eliott D., Threadgold G., Harden G., Ware D., Mortimer B., Kerry G., Heath P., Phillimore B., Tracey A., Corby N., Dunn M., Johnson C., Wood J., Clark S., Pelan S., Griffiths G., Smith M., Glithero R., Howden P., Barker N., Stevens C., Harley J., Holt K., Panagiotidis G., Lovell J., Beasley H., Henderson C., Gordon D., Auger K., Wright D., Collins J., Raisen C., Dyer L., Leung K., Robertson L., Ambridge K., Leongamornlert D., McGuire S., Gilderthorp R., Griffiths C., Manthravadi D., Nichol S., Barker G., Whitehead S., Kay M., Brown J., Murnane C., Gray E., Humphries M., Sycamore N., Barker D., Saunders D., Wallis J., Babbage A., Hammond S., Mashreghi-Mohammadi M., Barr L., Martin S., Wray P., Ellington A., Matthews N., Ellwood M., Woodmansey R., Clark G., Cooper J., Tromans A., Grafham D., Skuce C., Pandian R., Andrews R., Harrison E., Kimberley A., Garnett J., Fosker N., Hall R., Garner P., Kelly D., Bird C., Palmer S., Gehring I., Berger A., Dooley C.M., Ersan-Urun Z., Eser C., Geiger H., Geisler M., Karotki L., Kirn A., Konantz J., Konantz M., Oberlander M., Rudolph-Geiger S., Teucke M., Osoegawa K., Zhu B.L., Rapp A., Widaa S., Langford C., Yang F.T., Carter N.P., Harrow J., Ning Z.M., Herrero J., Searle S.M.J., Enright A., Geisler R., Plasterk R.H.A., Lee C., Westerfield M., de Jong P.J., Zon L.I., Postlethwait J.H., Nusslein-Volhard C., Hubbard T.J.P., Crollius H.R., Rogers J., Stemple D.L. The zebrafish reference genome sequence and its relationship to the human genome. Nature 2013, 496:498-503.
-
(2013)
Nature
, vol.496
, pp. 498-503
-
-
Howe, K.1
Clark, M.D.2
Torroja, C.F.3
Torrance, J.4
Berthelot, C.5
Muffato, M.6
Collins, J.E.7
Humphray, S.8
McLaren, K.9
Matthews, L.10
McLaren, S.11
Sealy, I.12
Caccamo, M.13
Churcher, C.14
Scott, C.15
Barrett, J.C.16
Koch, R.17
Rauch, G.J.18
White, S.19
Chow, W.20
Kilian, B.21
Quintais, L.T.22
Guerra-Assuncao, J.A.23
Zhou, Y.24
Gu, Y.25
Yen, J.26
Vogel, J.H.27
Eyre, T.28
Redmond, S.29
Banerjee, R.30
Chi, J.X.31
Fu, B.Y.32
Langley, E.33
Maguire, S.F.34
Laird, G.K.35
Lloyd, D.36
Kenyon, E.37
Donaldson, S.38
Sehra, H.39
Almeida-King, J.40
Loveland, J.41
Trevanion, S.42
Jones, M.43
Quail, M.44
Willey, D.45
Hunt, A.46
Burton, J.47
Sims, S.48
McLay, K.49
Plumb, B.50
Davis, J.51
Clee, C.52
Oliver, K.53
Clark, R.54
Riddle, C.55
Eliott, D.56
Threadgold, G.57
Harden, G.58
Ware, D.59
Mortimer, B.60
Kerry, G.61
Heath, P.62
Phillimore, B.63
Tracey, A.64
Corby, N.65
Dunn, M.66
Johnson, C.67
Wood, J.68
Clark, S.69
Pelan, S.70
Griffiths, G.71
Smith, M.72
Glithero, R.73
Howden, P.74
Barker, N.75
Stevens, C.76
Harley, J.77
Holt, K.78
Panagiotidis, G.79
Lovell, J.80
Beasley, H.81
Henderson, C.82
Gordon, D.83
Auger, K.84
Wright, D.85
Collins, J.86
Raisen, C.87
Dyer, L.88
Leung, K.89
Robertson, L.90
Ambridge, K.91
Leongamornlert, D.92
McGuire, S.93
Gilderthorp, R.94
Griffiths, C.95
Manthravadi, D.96
Nichol, S.97
Barker, G.98
Whitehead, S.99
more..
-
48
-
-
84873470474
-
Molecular genetic system for regenerative studies using newts
-
Hayashi T., Yokotani N., Tane S., Matsumoto A., Myouga A., Okamoto M., Takeuchi T. Molecular genetic system for regenerative studies using newts. Dev. Growth Differ. 2013, 55:229-236.
-
(2013)
Dev. Growth Differ.
, vol.55
, pp. 229-236
-
-
Hayashi, T.1
Yokotani, N.2
Tane, S.3
Matsumoto, A.4
Myouga, A.5
Okamoto, M.6
Takeuchi, T.7
-
49
-
-
31544451827
-
A germline GFP transgenic axolotl and its use to track cell fate: dual origin of the fin mesenchyme during development and the fate of blood cells during regeneration
-
Sobkow L., Epperlein H.H., Herklotz S., Straube W.L., Tanaka E.M. A germline GFP transgenic axolotl and its use to track cell fate: dual origin of the fin mesenchyme during development and the fate of blood cells during regeneration. Dev. Biol. 2006, 290:386-397.
-
(2006)
Dev. Biol.
, vol.290
, pp. 386-397
-
-
Sobkow, L.1
Epperlein, H.H.2
Herklotz, S.3
Straube, W.L.4
Tanaka, E.M.5
-
50
-
-
84876083730
-
A reference transcriptome and inferred proteome for the salamander Notophthalmus viridescens
-
Abdullayev I., Kirkham M., Bjorklund A.K., Simon A., Sandberg R. A reference transcriptome and inferred proteome for the salamander Notophthalmus viridescens. Exp. Cell Res. 2013, 319:1187-1197.
-
(2013)
Exp. Cell Res.
, vol.319
, pp. 1187-1197
-
-
Abdullayev, I.1
Kirkham, M.2
Bjorklund, A.K.3
Simon, A.4
Sandberg, R.5
-
51
-
-
84862165230
-
Newt-omics: a comprehensive repository for omics data from the newt Notophthalmus viridescens
-
Bruckskotten M., Looso M., Reinhardt R., Braun T., Borchardt T. Newt-omics: a comprehensive repository for omics data from the newt Notophthalmus viridescens. Nucleic Acids Res. 2012, 40:D895-D900.
-
(2012)
Nucleic Acids Res.
, vol.40
-
-
Bruckskotten, M.1
Looso, M.2
Reinhardt, R.3
Braun, T.4
Borchardt, T.5
-
52
-
-
29544440896
-
Sal-Site: integrating new and existing ambystomatid salamander research and informational resources
-
Smith J.J., Putta S., Walker J.A., Kump D.K., Samuels A.K., Monaghan J.R., Weisrock D.W., Staben C., Voss S.R. Sal-Site: integrating new and existing ambystomatid salamander research and informational resources. BMC Genomics 2005, 6:181.
-
(2005)
BMC Genomics
, vol.6
, pp. 181
-
-
Smith, J.J.1
Putta, S.2
Walker, J.A.3
Kump, D.K.4
Samuels, A.K.5
Monaghan, J.R.6
Weisrock, D.W.7
Staben, C.8
Voss, S.R.9
-
53
-
-
84871442001
-
Functional screening identifies miRNAs inducing cardiac regeneration
-
Eulalio A., Mano M., Dal Ferro M., Zentilin L., Sinagra G., Zacchigna S., Giacca M. Functional screening identifies miRNAs inducing cardiac regeneration. Nature 2012, 492:376-381.
-
(2012)
Nature
, vol.492
, pp. 376-381
-
-
Eulalio, A.1
Mano, M.2
Dal Ferro, M.3
Zentilin, L.4
Sinagra, G.5
Zacchigna, S.6
Giacca, M.7
-
54
-
-
84861642380
-
MicroRNA-mediated in vitro and in vivo direct reprogramming of cardiac fibroblasts to cardiomyocytes
-
Jayawardena T.M., Egemnazarov B., Finch E.A., Zhang L., Payne J.A., Pandya K., Zhang Z., Rosenberg P., Mirotsou M., Dzau V.J. MicroRNA-mediated in vitro and in vivo direct reprogramming of cardiac fibroblasts to cardiomyocytes. Circ. Res. 2012, 110:1465-1473.
-
(2012)
Circ. Res.
, vol.110
, pp. 1465-1473
-
-
Jayawardena, T.M.1
Egemnazarov, B.2
Finch, E.A.3
Zhang, L.4
Payne, J.A.5
Pandya, K.6
Zhang, Z.7
Rosenberg, P.8
Mirotsou, M.9
Dzau, V.J.10
-
55
-
-
84871992154
-
Regulation of neonatal and adult mammalian heart regeneration by the miR-15 family
-
Porrello E.R., Mahmoud A.I., Simpson E., Johnson B.A., Grinsfelder D., Canseco D., Mammen P.P., Rothermel B.A., Olson E.N., Sadek H.A. Regulation of neonatal and adult mammalian heart regeneration by the miR-15 family. Proc. Natl. Acad. Sci. USA 2013, 110:187-192.
-
(2013)
Proc. Natl. Acad. Sci. USA
, vol.110
, pp. 187-192
-
-
Porrello, E.R.1
Mahmoud, A.I.2
Simpson, E.3
Johnson, B.A.4
Grinsfelder, D.5
Canseco, D.6
Mammen, P.P.7
Rothermel, B.A.8
Olson, E.N.9
Sadek, H.A.10
-
56
-
-
84859989029
-
Regulation of zebrafish heart regeneration by miR-133
-
Yin V.P., Lepilina A., Smith A., Poss K.D. Regulation of zebrafish heart regeneration by miR-133. Dev. Biol. 2012, 365:319-327.
-
(2012)
Dev. Biol.
, vol.365
, pp. 319-327
-
-
Yin, V.P.1
Lepilina, A.2
Smith, A.3
Poss, K.D.4
-
57
-
-
77950871771
-
MicroRNA-1 and -499 regulate differentiation and proliferation in human-derived cardiomyocyte progenitor cells
-
Sluijter J.P., van Mil A., van Vliet P., Metz C.H., Liu J., Doevendans P.A., Goumans M.J. MicroRNA-1 and -499 regulate differentiation and proliferation in human-derived cardiomyocyte progenitor cells. Arterioscler. Thromb. Vasc. Biol. 2010, 30:859-868.
-
(2010)
Arterioscler. Thromb. Vasc. Biol.
, vol.30
, pp. 859-868
-
-
Sluijter, J.P.1
van Mil, A.2
van Vliet, P.3
Metz, C.H.4
Liu, J.5
Doevendans, P.A.6
Goumans, M.J.7
|