-
3
-
-
79957747188
-
Co-culture systems for vascularization - Learning from nature
-
Co-culture systems for vascularization-learning from nature. Kirkpatrick CJ, Fuchs S, Unger RE, Adv Drug Deliv Rev 2011 63 291 299
-
(2011)
Adv Drug Deliv Rev
, vol.63
, pp. 291-299
-
-
Kirkpatrick, C.J.1
Fuchs, S.2
Unger, R.E.3
-
4
-
-
51349156152
-
Hyperoxia, endothelial progenitor cell mobilization, and diabetic wound healing
-
Hyperoxia, endothelial progenitor cell mobilization, and diabetic wound healing. Liu Z-J, Velazquez OC, Antioxid Redox Signal 2008 10 1869 1882
-
(2008)
Antioxid Redox Signal
, vol.10
, pp. 1869-1882
-
-
Liu, Z.-J.1
Velazquez, O.C.2
-
5
-
-
0141728458
-
CD34+ blood cells accelerate vascularization and healing of diabetic mouse skin wounds
-
DOI 10.1159/000072701
-
CD34+ blood cells accelerate vascularization and healing of diabetic mouse skin wounds. Sivan-Loukianova E, Awad O, Stepanovic V, Bickenbach J, Schatteman G, J Vasc Res 2003 40 368 377 (Pubitemid 37188106)
-
(2003)
Journal of Vascular Research
, vol.40
, Issue.4
, pp. 368-377
-
-
Sivan-Loukianova, E.1
Awad, O.A.2
Stepanovic, V.3
Bickenbach, J.4
Schatteman, G.C.5
-
6
-
-
33846969572
-
Endothelial progenitor cells in cardiovascular disorders
-
Endothelial progenitor cells in cardiovascular disorders. Shantsila E, Watson T, Lip GY, J Am Coll Cardiol 2007 49 741 752
-
(2007)
J Am Coll Cardiol
, vol.49
, pp. 741-752
-
-
Shantsila, E.1
Watson, T.2
Lip, G.Y.3
-
7
-
-
39149138508
-
Fracture induced mobilization and incorporation of bone marrow-derived endothelial progenitor cells for bone healing
-
DOI 10.1002/jcp.21309
-
Fracture induced mobilization and incorporation of bone marrowderived endothelial progenitor cells for bone healing. Matsumoto T, Mifune Y, Kawamoto A, Kuroda R, Shoji T, Iwasaki H, Suzuki T, Oyamada A, Horii M, Yokoyama A, J Cell Physiol 2008 215 234 242 (Pubitemid 351363208)
-
(2008)
Journal of Cellular Physiology
, vol.215
, Issue.1
, pp. 234-242
-
-
Matsumoto, T.1
Mifune, Y.2
Kawamoto, A.3
Kuroda, R.4
Shoji, T.5
Iwasaki, H.6
Suzuki, T.7
Oyamada, A.8
Horii, M.9
Yokoyama, A.10
Nishimura, H.11
Sang, Y.L.12
Miwa, M.13
Doita, M.14
Kurosaka, M.15
Asahara, T.16
-
8
-
-
56749102789
-
Contribution of outgrowth endothelial cells from human peripheral blood on in vivo vascularization of bone tissue engineered constructs based on starch polycaprolactone scaffolds
-
Contribution of outgrowth endothelial cells from human peripheral blood on in vivo vascularization of bone tissue engineered constructs based on starch polycaprolactone scaffolds. Fuchs S, Ghanaati S, Orth C, Barbeck M, Kolbe M, Hofmann A, Eblenkamp M, Gomes M, Reis RL, Kirkpatrick CJ, Biomaterials 2009 30 526 534
-
(2009)
Biomaterials
, vol.30
, pp. 526-534
-
-
Fuchs, S.1
Ghanaati, S.2
Orth, C.3
Barbeck, M.4
Kolbe, M.5
Hofmann, A.6
Eblenkamp, M.7
Gomes, M.8
Reis, R.L.9
Kirkpatrick, C.J.10
-
9
-
-
54449092814
-
Endothelial cell coculture within tissue-engineered cardiomyocyte sheets enhances neovascularization and improves cardiac function of ischemic hearts
-
Endothelial cell coculture within tissue-engineered cardiomyocyte sheets enhances neovascularization and improves cardiac function of ischemic hearts. Sekine H, Shimizu T, Hobo K, Sekiya S, Yang J, Yamato M, Kurosawa H, Kobayashi E, Okano T, Circulation 2008 118 145 S152
-
(2008)
Circulation
, vol.118
-
-
Sekine, H.1
Shimizu, T.2
Hobo, K.3
Sekiya, S.4
Yang, J.5
Yamato, M.6
Kurosawa, H.7
Kobayashi, E.8
Okano, T.9
-
10
-
-
0036276862
-
Human dermal microvascular endothelial cells form vascular analogs in cultured skin substitutes after grafting to athymic mice
-
DOI 10.1096/fj.01-0868com
-
Human dermal microvascular endothelial cells form vascular analogs in cultured skin substitutes after grafting to athymic mice. Supp DM, Wilson-Landy K, Boyce ST, FASEB J 2002 16 797 804 (Pubitemid 34615128)
-
(2002)
FASEB Journal
, vol.16
, Issue.8
, pp. 797-804
-
-
Supp, D.M.1
Wilson-Landy, K.2
Boyce, S.T.3
-
11
-
-
77953350815
-
Endothelial progenitor cells and mesenchymal stem cells seeded onto β-TCP granules enhance early vascularization and bone healing in a critical-sized bone defect in rats
-
Endothelial progenitor cells and mesenchymal stem cells seeded onto β-TCP granules enhance early vascularization and bone healing in a critical-sized bone defect in rats. Seebach C, Henrich D, Kähling C, Wilhelm K, Tami AE, Alini M, Marzi I, Tissue Eng 2010 16 1961 1970
-
(2010)
Tissue Eng
, vol.16
, pp. 1961-1970
-
-
Seebach, C.1
Henrich, D.2
Kähling, C.3
Wilhelm, K.4
Tami, A.E.5
Alini, M.6
Marzi, I.7
-
13
-
-
0141814720
-
Endothelial cell diversity revealed by global expression profiling
-
DOI 10.1073/pnas.1434429100
-
Endothelial cell diversity revealed by global expression profiling. Chi J-T, Chang HY, Haraldsen G, Jahnsen FL, Troyanskaya OG, Chang DS, Wang Z, Rockson SG, van de Rijn M, Botstein D, Proc Natl Acad Sci U S A 2003 100 10623 10628 (Pubitemid 37140079)
-
(2003)
Proceedings of the National Academy of Sciences of the United States of America
, vol.100
, Issue.19
, pp. 10623-10628
-
-
Chi, J.-T.1
Chang, H.Y.2
Haraldsen, G.3
Jahnsen, F.L.4
Troyanskaya, O.G.5
Chang, D.S.6
Wang, Z.7
Rockson, S.G.8
Van De Rijn, M.9
Botstein, D.10
Brown, P.O.11
-
14
-
-
0033978434
-
Isolation of endothelial cells and their progenitor cells from human peripheral blood
-
Isolation of endothelial cells and their progenitor cells from human peripheral blood. Boyer M, Townsend LE, Vogel LM, Falk J, Reitz-Vick D, Trevor KT, Villalba M, Bendick PJ, Glover JL, Eur J Vasc Surg 2000 31 181 189 (Pubitemid 30067315)
-
(2000)
Journal of Vascular Surgery
, vol.31
, Issue.1 I
, pp. 181-189
-
-
Boyer, M.1
Townsend, L.E.2
Vogel, L.M.3
Falk, J.4
Reitz-Vick, D.5
Trevor, K.T.6
Villalba, M.7
Bendick, P.J.8
Glover, J.L.9
-
15
-
-
0015822275
-
Culture of human endothelial cells derived from umbilical veins. Identification by morphologic and immunologic criteria
-
Culture of human endothelial cells derived from umbilical veins. Identification by morphologic and immunologic criteria. Jaffe EA, Nachman RL, Becker CG, Minick CR, J Clin Invest 1973 52 2745
-
(1973)
J Clin Invest
, vol.52
, pp. 2745
-
-
Jaffe, E.A.1
Nachman, R.L.2
Becker, C.G.3
Minick, C.R.4
-
16
-
-
0028359969
-
Isolation of endothelial cells from human term placental villi using immunomagnetic beads
-
Isolation of endothelial cells from human term placental villi using immunomagnetic beads. Leach L, Bhasin Y, Clark P, Firth J, Placenta 1994 15 355 364 (Pubitemid 24213370)
-
(1994)
Placenta
, vol.15
, Issue.4
, pp. 355-364
-
-
Leach, L.1
Bhasin, Y.2
Clark, P.3
Firth, J.A.4
-
17
-
-
7244242362
-
Identification of a novel hierarchy of endothelial progenitor cells using human peripheral and umbilical cord blood
-
DOI 10.1182/blood-2004-04-1396
-
Identification of a novel hierarchy of endothelial progenitor cells using human peripheral and umbilical cord blood. Ingram DA, Mead LE, Tanaka H, Meade V, Fenoglio A, Mortell K, Pollok K, Ferkowicz MJ, Gilley D, Yoder MC, Blood 2004 104 2752 2760 (Pubitemid 39434958)
-
(2004)
Blood
, vol.104
, Issue.9
, pp. 2752-2760
-
-
Ingram, D.A.1
Mead, L.E.2
Tanaka, H.3
Meade, V.4
Fenoglio, A.5
Mortell, K.6
Pollok, K.7
Ferkowicz, M.J.8
Gilley, D.9
Yoder, M.C.10
-
18
-
-
15944381205
-
Vessel wall-derived endothelial cells rapidly proliferate because they contain a complete hierarchy of endothelial progenitor cells
-
DOI 10.1182/blood-2004-08-3057
-
Vessel wall-derived endothelial cells rapidly proliferate because they contain a complete hierarchy of endothelial progenitor cells. Ingram DA, Mead LE, Moore DB, Woodard W, Fenoglio A, Yoder MC, Blood 2005 105 2783 2786 (Pubitemid 40446270)
-
(2005)
Blood
, vol.105
, Issue.7
, pp. 2783-2786
-
-
Ingram, D.A.1
Mead, L.E.2
Moore, D.B.3
Woodard, W.4
Fenoglio, A.5
Yoder, M.C.6
-
19
-
-
12144287668
-
Human endothelial cells derived from circulating progenitors display specific functional properties compared with mature vessel wall endothelial cells
-
DOI 10.1182/blood-2003-08-2770
-
Human endothelial cells derived from circulating progenitors display specific functional properties compared with mature vessel wall endothelial cells. Bompais H, Chagraoui J, Canron X, Crisan M, Liu XH, Anjo A, Tolla-Le Port C, Leboeuf M, Charbord P, Bikfalvi A, Blood 2004 103 2577 2584 (Pubitemid 38393010)
-
(2004)
Blood
, vol.103
, Issue.7
, pp. 2577-2584
-
-
Bompais, H.1
Chagraoui, J.2
Canron, X.3
Crisan, M.4
Liu, X.H.5
Anjo, A.6
Tolla-Le Port, C.7
Leboeuf, M.8
Charbord, P.9
Bikfalvi, A.10
Uzan, G.11
-
20
-
-
58149114612
-
Endothelial progenitor cells and their potential therapeutic applications
-
Endothelial progenitor cells and their potential therapeutic applications. Khoo CP, Pozzilli P, Alison MR, Regen Med 2008 3 863 876
-
(2008)
Regen Med
, vol.3
, pp. 863-876
-
-
Khoo, C.P.1
Pozzilli, P.2
Alison, M.R.3
-
21
-
-
34547109632
-
In vitro angiogenesis properties of endothelial progenitor cells: A promising tool for vascularization of ex vivo engineered tissues
-
DOI 10.1089/ten.2006.0369
-
In vitro angiogenesis properties of endothelial progenitor cells: a promising tool for vascularization of ex vivo engineered tissues. Finkenzeller G, Torio-Padron N, Momeni A, Mehlhorn AT, Stark GB, Tissue Eng 2007 13 1413 1420 (Pubitemid 47105750)
-
(2007)
Tissue Engineering
, vol.13
, Issue.7
, pp. 1413-1420
-
-
Finkenzeller, G.1
Torio-Padron, N.2
Momeni, A.3
Mehlhorn, A.T.4
Stark, G.B.5
-
22
-
-
33847348148
-
Redefining endothelial progenitor cells via clonal analysis and hematopoietic stem/progenitor cell principals
-
DOI 10.1182/blood-2006-08-043471
-
Redefining endothelial progenitor cells via clonal analysis and hematopoietic stem/progenitor cell principals. Yoder MC, Mead LE, Prater D, Krier TR, Mroueh KN, Li F, Krasich R, Temm CJ, Prchal JT, Ingram DA, Blood 2007 109 1801 1809 (Pubitemid 46348173)
-
(2007)
Blood
, vol.109
, Issue.5
, pp. 1801-1809
-
-
Yoder, M.C.1
Mead, L.E.2
Prater, D.3
Krier, T.R.4
Mroueh, K.N.5
Li, F.6
Krasich, R.7
Temm, C.J.8
Prchal, J.T.9
Ingram, D.A.10
-
23
-
-
23944518957
-
Unresolved questions, changing definitions, and novel paradigms for defining endothelial progenitor cells
-
DOI 10.1182/blood-2005-04-1509
-
Unresolved questions, changing definitions, and novel paradigms for defining endothelial progenitor cells. Ingram DA, Caplice NM, Yoder MC, Blood 2005 106 1525 1531 (Pubitemid 41208561)
-
(2005)
Blood
, vol.106
, Issue.5
, pp. 1525-1531
-
-
Ingram, D.A.1
Caplice, N.M.2
Yoder, M.C.3
-
24
-
-
0037434561
-
Circulating endothelial progenitor cells, vascular function, and cardiovascular risk
-
DOI 10.1056/NEJMoa022287
-
Circulating endothelial progenitor cells, vascular function, and cardiovascular risk. Hill JM, Zalos G, Halcox JP, Schenke WH, Waclawiw MA, Quyyumi AA, Finkel T, N Engl J Med 2003 348 593 600 (Pubitemid 36204953)
-
(2003)
New England Journal of Medicine
, vol.348
, Issue.7
, pp. 593-600
-
-
Hill, J.M.1
Zalos, G.2
Halcox, J.P.J.3
Schenke, W.H.4
Waclawiw, M.A.5
Quyyumi, A.A.6
Finkel, T.7
-
25
-
-
17644433975
-
Number and migratory activity of circulating endothelial progenitor cells inversely correlate with risk factors for coronary artery disease
-
Number and migratory activity of circulating endothelial progenitor cells inversely correlate with risk factors for coronary artery disease. Vasa M, Fichtlscherer S, Aicher A, Adler K, Urbich C, Martin H, Zeiher AM, Dimmeler S, Circ Res 2001 89 1 e7
-
(2001)
Circ Res
, vol.89
-
-
Vasa, M.1
Fichtlscherer, S.2
Aicher, A.3
Adler, K.4
Urbich, C.5
Martin, H.6
Zeiher, A.M.7
Dimmeler, S.8
-
26
-
-
0033989026
-
Origins of circulating endothelial cells and endothelial outgrowth from blood
-
Origins of circulating endothelial cells and endothelial outgrowth from blood. Lin Y, Weisdorf DJ, Solovey A, Hebbel RP, J Clin Invest 2000 105 71 77 (Pubitemid 30036389)
-
(2000)
Journal of Clinical Investigation
, vol.105
, Issue.1
, pp. 71-77
-
-
Lin, Y.1
Weisdorf, D.J.2
Solovey, A.3
Hebbel, R.P.4
-
27
-
-
51649099800
-
Assessing identity, phenotype, and fate of endothelial progenitor cells
-
Assessing identity, phenotype, and fate of endothelial progenitor cells. Hirschi KK, Ingram DA, Yoder MC, Arterioscler Thromb Vasc Biol 2008 28 1584 1595
-
(2008)
Arterioscler Thromb Vasc Biol
, vol.28
, pp. 1584-1595
-
-
Hirschi, K.K.1
Ingram, D.A.2
Yoder, M.C.3
-
28
-
-
0038129710
-
+ hematopoietic stem cells
-
Biology and plasticity of CD133+ hematopoietic stem cells. Handgretinger R, Gordon PR, Leimig T, Chen X, Bühring HJ, Niethammer D, Kuci S, Ann N Y Acad Sci 2003 996 141 151 (Pubitemid 36706596)
-
(2003)
Annals of the New York Academy of Sciences
, vol.996
, pp. 141-151
-
-
Handgretinger, R.1
Gordon, P.R.2
Leimig, T.3
Chen, X.4
Buhring, H.-J.5
Niethammer, D.6
Kuci, S.7
-
29
-
-
12944253116
-
+ cells identifies a population of functional endothelial precursors
-
Expression of VEGFR-2 and AC133 by circulating human CD34+ cells identifies a population of functional endothelial precursors. Peichev M, Naiyer AJ, Pereira D, Zhu Z, Lane WJ, Williams M, Oz MC, Hicklin DJ, Witte L, Moore MA, Blood 2000 95 952 958 (Pubitemid 30062717)
-
(2000)
Blood
, vol.95
, Issue.3
, pp. 952-958
-
-
Peichev, M.1
Naiyer, A.J.2
Pereira, D.3
Zhu, Z.4
Lane, W.J.5
Williams, M.6
Oz, M.C.7
Hicklin, D.J.8
Witte, L.9
Moore, M.A.S.10
Rafii, S.11
-
30
-
-
34250361965
-
+ cells are not endothelial progenitor cells but distinct, primitive hematopoietic progenitors
-
DOI 10.1016/j.exphem.2007.04.002, PII S0301472X07002251
-
Human CD34AC133VEGFR-2 cells are not endothelial progenitor cells but distinct, primitive hematopoietic progenitors. Case J, Mead LE, Bessler WK, Prater D, White HA, Saadatzadeh MR, Bhavsar JR, Yoder MC, Haneline LS, Ingram DA, Exp Hematol 2007 35 1109 1118 (Pubitemid 46921310)
-
(2007)
Experimental Hematology
, vol.35
, Issue.7
, pp. 1109-1118
-
-
Case, J.1
Mead, L.E.2
Bessler, W.K.3
Prater, D.4
White, H.A.5
Saadatzadeh, M.R.6
Bhavsar, J.R.7
Yoder, M.C.8
Haneline, L.S.9
Ingram, D.A.10
-
31
-
-
84874300952
-
Late outgrowth endothelial cells resemble mature endothelial cells and are not derived from bone marrow
-
Late outgrowth endothelial cells resemble mature endothelial cells and are not derived from bone marrow. Tura O, Skinner EM, Barclay GR, Samuel K, Gallagher RC, Brittan M, Hadoke PW, Newby DE, Turner ML, Mills NL, Stem Cells 2013 31 338 348
-
(2013)
Stem Cells
, vol.31
, pp. 338-348
-
-
Tura, O.1
Skinner, E.M.2
Barclay, G.R.3
Samuel, K.4
Gallagher, R.C.5
Brittan, M.6
Hadoke, P.W.7
Newby, D.E.8
Turner, M.L.9
Mills, N.L.10
-
32
-
-
38749090588
-
Strikingly Different Angiogenic Properties of Endothelial Progenitor Cell Subpopulations. Insights From a Novel Human Angiogenesis Assay
-
DOI 10.1016/j.jacc.2007.09.059, PII S0735109707036789
-
Strikingly Different Angiogenic Properties of Endothelial Progenitor Cell SubpopulationsInsights From a Novel Human Angiogenesis Assay. Sieveking DP, Buckle A, Celermajer DS, Ng MK, J Am Coll Cardiol 2008 51 660 668 (Pubitemid 351186872)
-
(2008)
Journal of the American College of Cardiology
, vol.51
, Issue.6
, pp. 660-668
-
-
Sieveking, D.P.1
Buckle, A.2
Celermajer, D.S.3
Ng, M.K.C.4
-
33
-
-
21844469734
-
Detection of circulating endothelial cells and endothelial progenitor cells by flow cytometry
-
DOI 10.1002/cyto.b.20040
-
Detection of circulating endothelial cells and endothelial progenitor cells by flow cytometry. Khan SS, Solomon MA, McCoy JP, Cytometry B Clin Cytom 2005 64 1 8 (Pubitemid 40960406)
-
(2005)
Cytometry Part B - Clinical Cytometry
, vol.64
, Issue.1
, pp. 1-8
-
-
Khan, S.S.1
Solomon, M.A.2
McCoy Jr., J.P.3
-
34
-
-
84886523948
-
Prospective surface marker-based isolation and expansion of fetal endothelial colony-forming cells from human term placenta
-
Prospective surface marker-based isolation and expansion of fetal endothelial colony-forming cells from human term placenta. Fau PJ, Seppanen E, Fau SE, Chong MSK, Chong Ms F, Yeo JSL, Yeo Js F, Teo EYL, Teo Ey F, Chan JKY, Chan Jk F, Fisk NM, Fisk Nm F, Khosrotehrani K, Khosrotehrani K, Stem Cells Trans Med 2013 2 839 847
-
(2013)
Stem Cells Trans Med
, vol.2
, pp. 839-847
-
-
Fau, P.J.1
Seppanen, E.2
Fau, S.E.3
Chong, M.S.K.4
Chong Ms, F.5
Yeo, J.S.L.6
Yeo Js, F.7
Teo, E.Y.L.8
Teo Ey, F.9
Chan, J.K.Y.10
Chan Jk, F.11
Fisk, N.M.12
Fisk Nm, F.13
Khosrotehrani, K.14
Khosrotehrani, K.15
-
35
-
-
33845522237
-
Ex vivo expansion of umbilical cord blood stem cells for transplantation: Growing knowledge from the hematopoietic niche
-
DOI 10.1038/sj.bmt.1705538, PII 1705538
-
Ex vivo expansion of umbilical cord blood stem cells for transplantation: growing knowledge from the hematopoietic niche. Hofmeister C, Zhang J, Knight K, Le P, Stiff P, Bone Marrow Transplant 2007 39 11 23 (Pubitemid 44921650)
-
(2007)
Bone Marrow Transplantation
, vol.39
, Issue.1
, pp. 11-23
-
-
Hofmeister, C.C.1
Zhang, J.2
Knight, K.L.3
Le, P.4
Stiff, P.J.5
-
36
-
-
39149092060
-
Clinical scale ex vivo expansion of cord blood-derived outgrowth endothelial progenitor cells is associated with high incidence of karyotype aberrations
-
Clinical scale ex vivo expansion of cord blood-derived outgrowth endothelial progenitor cells is associated with high incidence of karyotype aberrations. Corselli M, Parodi A, Mogni M, Sessarego N, Kunkl A, Dagna-Bricarelli F, Ibatici A, Pozzi S, Bacigalupo A, Frassoni F, Exp Hematol 2008 36 340 349
-
(2008)
Exp Hematol
, vol.36
, pp. 340-349
-
-
Corselli, M.1
Parodi, A.2
Mogni, M.3
Sessarego, N.4
Kunkl, A.5
Dagna-Bricarelli, F.6
Ibatici, A.7
Pozzi, S.8
Bacigalupo, A.9
Frassoni, F.10
-
37
-
-
1542328965
-
Plasticity of adult stem cells
-
DOI 10.1016/S0092-8674(04)00208-9, PII S0092867404002089
-
Plasticity of adult stem cells. Wagers AJ, Weissman IL, Cell 2004 116 639 648 (Pubitemid 38326723)
-
(2004)
Cell
, vol.116
, Issue.5
, pp. 639-648
-
-
Wagers, A.J.1
Weissman, I.L.2
-
38
-
-
2942523981
-
Mesenchymal stem cells can be differentiated into endothelial cells in vitro
-
Mesenchymal stem cells can be differentiated into endothelial cells in vitro. Oswald J, Boxberger S, Jørgensen B, Feldmann S, Ehninger G, Bornhäuser M, Werner C, Stem Cells 2004 22 377 384 (Pubitemid 38736621)
-
(2004)
Stem Cells
, vol.22
, Issue.3
, pp. 377-384
-
-
Oswald, J.1
Boxberger, S.2
Jorgensen, B.3
Feldmann, S.4
Ehninger, G.5
Bornhauser, M.6
Werner, C.7
-
39
-
-
84867123663
-
Endothelial differentiation of mesenchymal stromal cells
-
Endothelial differentiation of mesenchymal stromal cells. Portalska KJ, Leferink A, Groen N, Fernandes H, Moroni L, van Blitterswijk C, de Boer J, PLoS One 2012 7 46842
-
(2012)
PLoS One
, vol.7
, pp. 546842
-
-
Portalska, K.J.1
Leferink, A.2
Groen, N.3
Fernandes, H.4
Moroni, L.5
Van Blitterswijk, C.6
De Boer, J.7
-
40
-
-
19444372143
-
Human adipose tissue-derived stem cells differentiate into endothelial cells in vitro and improve postnatal neovascularization in vivo
-
DOI 10.1016/j.bbrc.2005.04.135, PII S0006291X05009009
-
Human adipose tissue-derived stem cells differentiate into endothelial cells in vitro and improve postnatal neovascularization in vivo. Cao Y, Sun Z, Liao L, Meng Y, Han Q, Zhao RC, Biochem Biophys Res Commun 2005 332 370 379 (Pubitemid 40724988)
-
(2005)
Biochemical and Biophysical Research Communications
, vol.332
, Issue.2
, pp. 370-379
-
-
Cao, Y.1
Sun, Z.2
Liao, L.3
Meng, Y.4
Han, Q.5
Zhao, R.C.6
-
41
-
-
53249151581
-
Urine derived cells are a potential source for urological tissue reconstruction
-
Urine derived cells are a potential source for urological tissue reconstruction. Zhang Y, McNeill E, Tian H, Soker S, Andersson K-E, Yoo JJ, Atala A, J Urol 2008 180 2226 2233
-
(2008)
J Urol
, vol.180
, pp. 2226-2233
-
-
Zhang, Y.1
McNeill, E.2
Tian, H.3
Soker, S.4
Andersson, K.-E.5
Yoo, J.J.6
Atala, A.7
-
42
-
-
84905396334
-
Urine-Derived Stem Cells: Biological Characterization and Potential Clinical Applications
-
New York: Springer
-
Urine-Derived Stem Cells: Biological Characterization and Potential Clinical Applications. Liu G, Deng C, Zhang Y, Stem Cells: Current Challenges and New Directions New York: Springer 2013 19 28
-
(2013)
Stem Cells: Current Challenges and New Directions
, pp. 19-28
-
-
Liu, G.1
Deng, C.2
Zhang, Y.3
-
43
-
-
84880935018
-
Multipotential differentiation of human urinederived stem cells: Potential for therapeutic applications in urology
-
Multipotential differentiation of human urinederived stem cells: Potential for therapeutic applications in urology. Bharadwaj S, Liu G, Shi Y, Wu R, Yang B, He T, Fan Y, Lu X, Zhou X, Liu H, Stem Cells 2013 31 1840 1856
-
(2013)
Stem Cells
, vol.31
, pp. 1840-1856
-
-
Bharadwaj, S.1
Liu, G.2
Shi, Y.3
Wu, R.4
Yang, B.5
He, T.6
Fan, Y.7
Lu, X.8
Zhou, X.9
Liu, H.10
-
45
-
-
77950800100
-
Totipotency, pluripotency and nuclear reprogramming
-
Berlin: Springer
-
Totipotency, pluripotency and nuclear reprogramming. Mitalipov S, Wolf D, Engineering of stem cells Berlin: Springer 2009 185 199
-
(2009)
Engineering of Stem Cells
, pp. 185-199
-
-
Mitalipov, S.1
Wolf, D.2
-
46
-
-
77953963342
-
Derivation of endothelial cells from human embryonic stem cells by directed differentiation analysis of microRNA and angiogenesis in vitro and in vivo
-
Derivation of endothelial cells from human embryonic stem cells by directed differentiation analysis of microRNA and angiogenesis in vitro and in vivo. Kane NM, Meloni M, Spencer HL, Craig MA, Strehl R, Milligan G, Houslay MD, Mountford JC, Emanueli C, Baker AH, Arterioscler Thromb Vasc Biol 2010 30 1389 1397
-
(2010)
Arterioscler Thromb Vasc Biol
, vol.30
, pp. 1389-1397
-
-
Kane, N.M.1
Meloni, M.2
Spencer, H.L.3
Craig, M.A.4
Strehl, R.5
Milligan, G.6
Houslay, M.D.7
Mountford, J.C.8
Emanueli, C.9
Baker, A.H.10
-
47
-
-
0037007042
-
Endothelial cells derived from human embryonic stem cells
-
DOI 10.1073/pnas.032074999
-
Endothelial cells derived from human embryonic stem cells. Levenberg S, Golub JS, Amit M, Itskovitz-Eldor J, Langer R, Proc Natl Acad Sci 2002 99 4391 4396 (Pubitemid 34285995)
-
(2002)
Proceedings of the National Academy of Sciences of the United States of America
, vol.99
, Issue.7
, pp. 4391-4396
-
-
Levenberg, S.1
Golub, J.S.2
Amit, M.3
Itskovitz-Eldor, J.4
Langer, R.5
-
48
-
-
35148856081
-
Pathway for differentiation of human embryonic stem cells to vascular cell components and their potential for vascular regeneration
-
DOI 10.1161/ATVBAHA.107.143149
-
Pathway for differentiation of human embryonic stem cells to vascular cell components and their potential for vascular regeneration. Sone M, Itoh H, Yamahara K, Yamashita JK, Yurugi-Kobayashi T, Nonoguchi A, Suzuki Y, Chao T-H, Sawada N, Fukunaga Y, Arterioscler Thromb Vasc Biol 2007 27 2127 2134 (Pubitemid 350287240)
-
(2007)
Arteriosclerosis, Thrombosis, and Vascular Biology
, vol.27
, Issue.10
, pp. 2127-2134
-
-
Sone, M.1
Itoh, H.2
Yamahara, K.3
Yamashita, J.K.4
Yurugi-Kobayashi, T.5
Nonoguchi, A.6
Suzuki, Y.7
Chao, T.-H.8
Sawada, N.9
Fukunaga, Y.10
Miyashita, K.11
Park, K.12
Oyamada, N.13
Sawada, N.14
Taura, D.15
Tamura, N.16
Kondo, Y.17
Nito, S.18
Suemori, H.19
Nakatsuji, N.20
Nishikawa, S.-I.21
Nakao, K.22
more..
-
50
-
-
33748756703
-
Embryonic stem cell-derived endothelial cells may lack complete functional maturation in vitro
-
DOI 10.1159/000094791
-
Embryonic stem cell-derived endothelial cells may lack complete functional maturation in vitro. McCloskey KE, Smith DA, Jo H, Nerem RM, J Vasc Res 2006 43 411 421 (Pubitemid 44402080)
-
(2006)
Journal of Vascular Research
, vol.43
, Issue.5
, pp. 411-421
-
-
McCloskey, K.E.1
Smith, D.A.2
Jo, H.3
Nerem, R.M.4
-
51
-
-
67349108858
-
Teratoma formation by human embryonic stem cells: Evaluation of essential parameters for future safety studies
-
Teratoma formation by human embryonic stem cells: evaluation of essential parameters for future safety studies. Hentze H, Soong PL, Wang ST, Phillips BW, Putti TC, Dunn N, Stem Cell Res 2009 2 198 210
-
(2009)
Stem Cell Res
, vol.2
, pp. 198-210
-
-
Hentze, H.1
Soong, P.L.2
Wang, S.T.3
Phillips, B.W.4
Putti, T.C.5
Dunn, N.6
-
53
-
-
0033517123
-
STAT3 activation is sufficient to maintain an undifferentiated state of mouse embryonic stem cells
-
DOI 10.1093/emboj/18.15.4261
-
STAT3 activation is sufficient to maintain an undifferentiated state of mouse embryonic stem cells. Matsuda T, Nakamura T, Nakao K, Arai T, Katsuki M, Heike T, Yokota T, EMBO J 1999 18 4261 4269 (Pubitemid 29364128)
-
(1999)
EMBO Journal
, vol.18
, Issue.15
, pp. 4261-4269
-
-
Matsuda, T.1
Nakamura, T.2
Nakao, K.3
Arai, T.4
Katsuki, M.5
Heike, T.6
Yokota, T.7
-
54
-
-
0037806031
-
The homeoprotein nanog is required for maintenance of pluripotency in mouse epiblast and ES cells
-
DOI 10.1016/S0092-8674(03)00393-3
-
The homeoprotein Nanog is required for maintenance of pluripotency in mouse epiblast and ES cells. Mitsui K, Tokuzawa Y, Itoh H, Segawa K, Murakami M, Takahashi K, Maruyama M, Maeda M, Yamanaka S, Cell 2003 113 631 642 (Pubitemid 36694188)
-
(2003)
Cell
, vol.113
, Issue.5
, pp. 631-642
-
-
Mitsui, K.1
Tokuzawa, Y.2
Itoh, H.3
Segawa, K.4
Murakami, M.5
Takahashi, K.6
Maruyama, M.7
Maeda, M.8
Yamanaka, S.9
-
55
-
-
0037227099
-
Multipotent cell lineages in early mouse development depend on SOX2 function
-
DOI 10.1101/gad.224503
-
Multipotent cell lineages in early mouse development depend on SOX2 function. Avilion AA, Nicolis SK, Pevny LH, Perez L, Vivian N, Lovell-Badge R, Genes Dev 2003 17 126 140 (Pubitemid 36062514)
-
(2003)
Genes and Development
, vol.17
, Issue.1
, pp. 126-140
-
-
Avilion, A.A.1
Nicolis, S.K.2
Pevny, L.H.3
Perez, L.4
Vivian, N.5
Lovell-Badge, R.6
-
56
-
-
0034028901
-
Quantitative expression of Oct-3/4 defines differentiation, dedifferentiation or self-renewal of ES cells
-
DOI 10.1038/74199
-
Quantitative expression of Oct-3/4 defines differentiation, dedifferentiation or self-renewal of ES cells. Niwa H, Miyazaki J-i, Smith AG, Nat Genet 2000 24 372 376 (Pubitemid 30187435)
-
(2000)
Nature Genetics
, vol.24
, Issue.4
, pp. 372-376
-
-
Niwa, H.1
Miyazaki, J.-I.2
Smith, A.G.3
-
57
-
-
16844364151
-
LIF/STAT3 controls ES cell self-renewal and pluripotency by a Myc-dependent mechanism
-
DOI 10.1242/dev.01670
-
LIF/STAT3 controls ES cell self-renewal and pluripotency by a Myc-dependent mechanism. Cartwright P, McLean C, Sheppard A, Rivett D, Jones K, Dalton S, Development 2005 132 885 896 (Pubitemid 40484924)
-
(2005)
Development
, vol.132
, Issue.5
, pp. 885-896
-
-
Cartwright, P.1
McLean, C.2
Sheppard, A.3
Rivett, D.4
Jones, K.5
Dalton, S.6
-
58
-
-
40249093059
-
A core Klf circuitry regulates self-renewal of embryonic stem cells
-
DOI 10.1038/ncb1698, PII NCB1698
-
A core Klf circuitry regulates self-renewal of embryonic stem cells. Jiang J, Chan Y-S, Loh Y-H, Cai J, Tong G-Q, Lim C-A, Robson P, Zhong S, Ng H-H, Nat Cell Biol 2008 10 353 360 (Pubitemid 351331023)
-
(2008)
Nature Cell Biology
, vol.10
, Issue.3
, pp. 353-360
-
-
Jiang, J.1
Chan, Y.-S.2
Loh, Y.-H.3
Cai, J.4
Tong, G.-Q.5
Lim, C.-A.6
Robson, P.7
Zhong, S.8
Ng, H.-H.9
-
59
-
-
33747195353
-
Induction of Pluripotent Stem Cells from Mouse Embryonic and Adult Fibroblast Cultures by Defined Factors
-
DOI 10.1016/j.cell.2006.07.024, PII S0092867406009767
-
Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors. Takahashi K, Yamanaka S, Cell 2006 126 663 676 (Pubitemid 44233629)
-
(2006)
Cell
, vol.126
, Issue.4
, pp. 663-676
-
-
Takahashi, K.1
Yamanaka, S.2
-
60
-
-
77958569435
-
Induced pluripotency: History, mechanisms, and applications
-
Induced pluripotency: history, mechanisms, and applications. Stadtfeld M, Hochedlinger K, Genes Dev 2010 24 2239 2263
-
(2010)
Genes Dev
, vol.24
, pp. 2239-2263
-
-
Stadtfeld, M.1
Hochedlinger, K.2
-
61
-
-
65249102249
-
Hematopoietic and endothelial differentiation of human induced pluripotent stem cells
-
Hematopoietic and endothelial differentiation of human induced pluripotent stem cells. Choi KD, Yu J, SmugaOtto K, Salvagiotto G, Rehrauer W, Vodyanik M, Thomson J, Slukvin I, Stem Cells 2009 27 559 567
-
(2009)
Stem Cells
, vol.27
, pp. 559-567
-
-
Choi, K.D.1
Yu, J.2
Smugaotto, K.3
Salvagiotto, G.4
Rehrauer, W.5
Vodyanik, M.6
Thomson, J.7
Slukvin, I.8
-
62
-
-
84881114127
-
Generation of functionally competent and durable engineered blood vessels from human induced pluripotent stem cells
-
Generation of functionally competent and durable engineered blood vessels from human induced pluripotent stem cells. Samuel R, Daheron L, Liao S, Vardam T, Kamoun WS, Batista A, Buecker C, Schäfer R, Han X, Au P, Proc Natl Acad Sci 2013 110 12774 12779
-
(2013)
Proc Natl Acad Sci
, vol.110
, pp. 12774-12779
-
-
Samuel, R.1
Daheron, L.2
Liao, S.3
Vardam, T.4
Kamoun, W.S.5
Batista, A.6
Buecker, C.7
Schäfer, R.8
Han, X.9
Au, P.10
-
63
-
-
77955449906
-
Epigenetic memory in induced pluripotent stem cells
-
Epigenetic memory in induced pluripotent stem cells. Kim K, Doi A, Wen B, Ng K, Zhao R, Cahan P, Kim J, Aryee M, Ji H, Ehrlich L, Nature 2010 467 285 290
-
(2010)
Nature
, vol.467
, pp. 285-290
-
-
Kim, K.1
Doi, A.2
Wen, B.3
Ng, K.4
Zhao, R.5
Cahan, P.6
Kim, J.7
Aryee, M.8
Ji, H.9
Ehrlich, L.10
-
64
-
-
50149108172
-
The promise of human induced pluripotent stem cells for research and therapy
-
The promise of human induced pluripotent stem cells for research and therapy. S-i N, Goldstein RA, Nierras CR, Nat Rev Mol Cell Biol 2008 9 725 729
-
(2008)
Nat Rev Mol Cell Biol
, vol.9
, pp. 725-729
-
-
Goldstein, R.A.1
Nierras, C.R.2
-
65
-
-
67249129599
-
Mural cell associated VEGF is required for organotypic vessel formation
-
Mural cell associated VEGF is required for organotypic vessel formation. Evensen L, Micklem DR, Blois A, Berge SV, Aarsæther N, Littlewood-Evans A, Wood J, Lorens JB, PLoS One 2009 4 5798
-
(2009)
PLoS One
, vol.4
, pp. 55798
-
-
Evensen, L.1
Micklem, D.R.2
Blois, A.3
Berge, S.V.4
Aarsæther, N.5
Littlewood-Evans, A.6
Wood, J.7
Lorens, J.B.8
-
66
-
-
49349091231
-
The effect of human osteoblasts on proliferation and neo-vessel formation of human umbilical vein endothelial cells in a long-term 3D co-culture on polyurethane scaffolds
-
The effect of human osteoblasts on proliferation and neo-vessel formation of human umbilical vein endothelial cells in a long-term 3D co-culture on polyurethane scaffolds. Hofmann A, Ritz U, Verrier S, Eglin D, Alini M, Fuchs S, Kirkpatrick CJ, Rommens PM, Biomaterials 2008 29 4217 4226
-
(2008)
Biomaterials
, vol.29
, pp. 4217-4226
-
-
Hofmann, A.1
Ritz, U.2
Verrier, S.3
Eglin, D.4
Alini, M.5
Fuchs, S.6
Kirkpatrick, C.J.7
Rommens, P.M.8
-
67
-
-
0141961737
-
Induction of tube formation by angiopoietin-1 in endothelial cell/fibroblast co-culture is dependent on endogenous VEGF
-
DOI 10.1111/j.1349-7006.2003.tb01519.x
-
Induction of tube formation by angiopoietin1 in endothelial cell/fibroblast coculture is dependent on endogenous VEGF. Saito M, Hamasaki M, Shibuya M, Cancer Sci 2003 94 782 790 (Pubitemid 37258776)
-
(2003)
Cancer Science
, vol.94
, Issue.9
, pp. 782-790
-
-
Saito, M.1
Hamasaki, M.2
Shibuya, M.3
-
68
-
-
34447249326
-
Tissue-like self-assembly in cocultures of endothelial cells and osteoblasts and the formation of microcapillary-like structures on three-dimensional porous biomaterials
-
DOI 10.1016/j.biomaterials.2007.05.032, PII S0142961207004474
-
Tissue-like self-assembly in cocultures of endothelial cells and osteoblasts and the formation of microcapillary-like structures on three-dimensional porous biomaterials. Unger RE, Sartoris A, Peters K, Motta A, Migliaresi C, Kunkel M, Bulnheim U, Rychly J, Kirkpatrick CJ, Biomaterials 2007 28 3965 3976 (Pubitemid 47048370)
-
(2007)
Biomaterials
, vol.28
, Issue.27
, pp. 3965-3976
-
-
Unger, R.E.1
Sartoris, A.2
Peters, K.3
Motta, A.4
Migliaresi, C.5
Kunkel, M.6
Bulnheim, U.7
Rychly, J.8
James Kirkpatrick, C.9
-
69
-
-
67650438906
-
Crosstalk between osteoblasts and endothelial cells co-cultured on a polycaprolactone-starch scaffold and the in vitro development of vascularization
-
Crosstalk between osteoblasts and endothelial cells co-cultured on a polycaprolactone-starch scaffold and the in vitro development of vascularization. Santos MI, Unger RE, Sousa RA, Reis RL, Kirkpatrick CJ, Biomaterials 2009 30 4407 4415
-
(2009)
Biomaterials
, vol.30
, pp. 4407-4415
-
-
Santos, M.I.1
Unger, R.E.2
Sousa, R.A.3
Reis, R.L.4
Kirkpatrick, C.J.5
-
70
-
-
0026101589
-
Chondrocytes inhibit endothelial sprout formation in vitro: Evidence for involvement of a transforming growth factor-beta
-
Chondrocytes inhibit endothelial sprout formation in vitro: Evidence for involvement of a transforming growth factorbeta. Pepper MS, Montesano R, Vassalli JD, Orci L, J Cell Physiol 1991 146 170 179 (Pubitemid 21910038)
-
(1991)
Journal of Cellular Physiology
, vol.146
, Issue.1
, pp. 170-179
-
-
Pepper, M.S.1
Montesano, R.2
Vassalli, J.-D.3
Orci, L.4
-
71
-
-
0028063762
-
Inhibition of tubular morphogenesis in human microvascular endothelial cells by co-culture with chondrocytes and involvement of transforming growth factor β: A model for avascularity in human cartilage
-
Inhibition of tubular morphogenesis in human microvascular endothelial cells by co-culture with chondrocytes and involvement of transforming growth factor β: a model for avascularity in human cartilage. Tada K, Fukunaga T, Wakabayashi Y, Masumi S, Sato Y, Izumi H, Kohno K, Kumano M, Biochimica et Biophysica Acta (BBA)-General Subjects 1994 1201 135 142
-
(1994)
Biochimica et Biophysica Acta (BBA)-General Subjects
, vol.1201
, pp. 135-142
-
-
Tada, K.1
Fukunaga, T.2
Wakabayashi, Y.3
Masumi, S.4
Sato, Y.5
Izumi, H.6
Kohno, K.7
Kumano, M.8
-
72
-
-
0033027015
-
Inhibition of vascular endothelial cell morphogenesis in cultures by Limbal epithelial cells
-
Inhibition of vascular endothelial cell morphogenesis in cultures by limbal epithelial cells. Ma DH-K, Tsai RJ-F, Chu W-K, Kao C-H, Chen J-K, Invest Ophthalmol Vis Sci 1999 40 1822 1828 (Pubitemid 29297161)
-
(1999)
Investigative Ophthalmology and Visual Science
, vol.40
, Issue.8
, pp. 1822-1828
-
-
Ma, D.H.-K.1
Tsai, R.J.-F.2
Chu, W.-K.3
Kao, C.-H.4
Chen, J.-K.5
-
74
-
-
0038376002
-
Molecular regulation of vessel maturation
-
DOI 10.1038/nm0603-685
-
Molecular regulation of vessel maturation. Jain RK, Nat Med 2003 9 685 693 (Pubitemid 36749217)
-
(2003)
Nature Medicine
, vol.9
, Issue.6
, pp. 685-693
-
-
Jain, R.K.1
-
75
-
-
0036829020
-
Molecular basis of endothelial cell morphogenesis in three-dimensional extracellular matrices
-
DOI 10.1002/ar.10159
-
Molecular basis of endothelial cell morphogenesis in threedimensional extracellular matrices. Davis GE, Bayless KJ, Mavila A, Anat Rec 2002 268 252 275 (Pubitemid 35246845)
-
(2002)
Anatomical Record
, vol.268
, Issue.3
, pp. 252-275
-
-
Davis, G.E.1
Bayless, K.J.2
Mavila, A.3
-
76
-
-
66249146049
-
Complexity in biomaterials for tissue engineering
-
Complexity in biomaterials for tissue engineering. Place ES, Evans ND, Stevens MM, Nat Mater 2009 8 457 470
-
(2009)
Nat Mater
, vol.8
, pp. 457-470
-
-
Place, E.S.1
Evans, N.D.2
Stevens, M.M.3
-
77
-
-
33749542764
-
Coregulation of vascular tube stabilization by endothelial cell TIMP-2 and pericyte TIMP-3
-
DOI 10.1083/jcb.200603176
-
Coregulation of vascular tube stabilization by endothelial cell TIMP-2 and pericyte TIMP-3. Saunders WB, Bohnsack BL, Faske JB, Anthis NJ, Bayless KJ, Hirschi KK, Davis GE, J Cell Biol 2006 175 179 191 (Pubitemid 44537209)
-
(2006)
Journal of Cell Biology
, vol.175
, Issue.1
, pp. 179-191
-
-
Saunders, W.B.1
Bohnsack, B.L.2
Faske, J.B.3
Anthis, N.J.4
Bayless, K.J.5
Hirschi, K.K.6
Davis, G.E.7
-
78
-
-
84855995604
-
Endothelial cell-pericyte interactions stimulate basement membrane matrix assembly: Influence on vascular tube remodeling, maturation, and stabilization
-
Endothelial cell-pericyte interactions stimulate basement membrane matrix assembly: influence on vascular tube remodeling, maturation, and stabilization. Stratman AN, Davis GE, Microsc Microanal 2012 18 68 80
-
(2012)
Microsc Microanal
, vol.18
, pp. 68-80
-
-
Stratman, A.N.1
Davis, G.E.2
-
79
-
-
84869760954
-
Human Endothelial Progenitor Cells Induce Extracellular Signal-Regulated Kinase-Dependent Differentiation of Mesenchymal Stem Cells into Smooth Muscle Cells upon Cocultivation
-
Human Endothelial Progenitor Cells Induce Extracellular Signal-Regulated Kinase-Dependent Differentiation of Mesenchymal Stem Cells into Smooth Muscle Cells upon Cocultivation. Goerke SM, Plaha J, Hager S, Strassburg S, Torio-Padron N, Stark GB, Finkenzeller G, Tissue Eng 2012 18 2395 2405
-
(2012)
Tissue Eng
, vol.18
, pp. 2395-2405
-
-
Goerke, S.M.1
Plaha, J.2
Hager, S.3
Strassburg, S.4
Torio-Padron, N.5
Stark, G.B.6
Finkenzeller, G.7
-
80
-
-
47149102903
-
Bone marrow-derived mesenchymal stem cells facilitate engineering of long-lasting functional vasculature
-
Bone marrow-derived mesenchymal stem cells facilitate engineering of long-lasting functional vasculature. Au P, Tam J, Fukumura D, Jain RK, Blood 2008 111 4551 4558
-
(2008)
Blood
, vol.111
, pp. 4551-4558
-
-
Au, P.1
Tam, J.2
Fukumura, D.3
Jain, R.K.4
-
81
-
-
42349106691
-
Effect of mechanical boundary conditions on orientation of angiogenic microvessels
-
DOI 10.1093/cvr/cvn055
-
Effect of mechanical boundary conditions on orientation of angiogenic microvessels. Krishnan L, Underwood CJ, Maas S, Ellis BJ, Kode TC, Hoying JB, Weiss JA, Cardiovasc Res 2008 78 324 332 (Pubitemid 351556109)
-
(2008)
Cardiovascular Research
, vol.78
, Issue.2
, pp. 324-332
-
-
Krishnan, L.1
Underwood, C.J.2
Maas, S.3
Ellis, B.J.4
Kode, T.C.5
Hoying, J.B.6
Weiss, J.A.7
-
82
-
-
67651121845
-
Endothelial cell lumen and vascular guidance tunnel formation requires MT1-MMP-dependent proteolysis in 3-dimensional collagen matrices
-
Endothelial cell lumen and vascular guidance tunnel formation requires MT1-MMP-dependent proteolysis in 3-dimensional collagen matrices. Stratman AN, Saunders WB, Sacharidou A, Koh W, Fisher KE, Zawieja DC, Davis MJ, Davis GE, Blood 2009 114 237 247
-
(2009)
Blood
, vol.114
, pp. 237-247
-
-
Stratman, A.N.1
Saunders, W.B.2
Sacharidou, A.3
Koh, W.4
Fisher, K.E.5
Zawieja, D.C.6
Davis, M.J.7
Davis, G.E.8
-
83
-
-
79960077120
-
Assessing the permeability of engineered capillary networks in a 3D culture
-
Assessing the permeability of engineered capillary networks in a 3D culture. Grainger SJ, Putnam AJ, PLoS One 2011 6 22086
-
(2011)
PLoS One
, vol.6
, pp. 522086
-
-
Grainger, S.J.1
Putnam, A.J.2
-
84
-
-
41949131865
-
Long-term in vivo imaging of human angiogenesis: Critical role of bone marrow-derived mesenchymal stem cells for the generation of durable blood vessels
-
Long-term in vivo imaging of human angiogenesis: Critical role of bone marrow-derived mesenchymal stem cells for the generation of durable blood vessels. Sanz L, Santos-Valle P, Alonso-Camino V, Salas C, Serrano A, Vicario JL, Cuesta ÁM, Compte M, Sánchez-Martín D, Álvarez-Vallina L, Microvasc Res 2008 75 308 314
-
(2008)
Microvasc Res
, vol.75
, pp. 308-314
-
-
Sanz, L.1
Santos-Valle, P.2
Alonso-Camino, V.3
Salas, C.4
Serrano, A.5
Vicario, J.L.6
Cuesta, Á.7
Compte, M.8
Sánchez-Martín, D.9
Álvarez-Vallina, L.10
-
85
-
-
0020029612
-
Ulex europaeus I lectin as a marker for vascular endothelium in human tissues
-
Ulex europaeus I lectin as a marker for vascular endothelium in human tissues. Holthöfer H, Virtanen I, Kariniemi A, Hormia M, Linder E, Miettinen A, Lab Invest 1982 47 60 66 (Pubitemid 12098898)
-
(1982)
Laboratory Investigation
, vol.47
, Issue.1
, pp. 60-66
-
-
Holthofer, H.1
Virtanen, I.2
Kariniemi, A.L.3
-
86
-
-
79955143077
-
Optimization of microCT imaging and blood vessel diameter quantitation of preclinical specimen vasculature with radiopaque polymer injection medium
-
Optimization of microCT imaging and blood vessel diameter quantitation of preclinical specimen vasculature with radiopaque polymer injection medium. Vasquez SX, Gao F, Su F, Grijalva V, Pope J, Martin B, Stinstra J, Masner M, Shah N, Weinstein DM, PLoS One 2011 6 19099
-
(2011)
PLoS One
, vol.6
, pp. 519099
-
-
Vasquez, S.X.1
Gao, F.2
Su, F.3
Grijalva, V.4
Pope, J.5
Martin, B.6
Stinstra, J.7
Masner, M.8
Shah, N.9
Weinstein, D.M.10
-
87
-
-
47249142043
-
Angiofil®-mediated visualization of the vascular system by microcomputed tomography: A feasibility study
-
DOI 10.1002/jemt.20585
-
Angiofil®mediated visualization of the vascular system by microcomputed tomography: A feasibility study. Grabherr S, Hess A, Karolczak M, Thali MJ, Friess SD, Kalender WA, Dirnhofer R, Djonov V, Microsc Res Tech 2008 71 551 556 (Pubitemid 351991101)
-
(2008)
Microscopy Research and Technique
, vol.71
, Issue.7
, pp. 551-556
-
-
Grabherr, S.1
Hess, A.2
Karolczak, M.3
Thali, M.J.4
Friess, S.D.5
Kalender, W.A.6
Dirnhofer, R.7
Djonov, V.8
-
88
-
-
33748670788
-
Subcellular imaging in the live mouse
-
Subcellular imaging in the live mouse. Hoffman RM, Yang M, Nat Protoc 2006 1 775 782
-
(2006)
Nat Protoc
, vol.1
, pp. 775-782
-
-
Hoffman, R.M.1
Yang, M.2
-
89
-
-
0036405345
-
Advances in in vivo bioluminescence imaging of gene expression
-
DOI 10.1146/annurev.bioeng.4.111901.093336
-
Advances in in vivo bioluminescence imaging of gene expression. Contag CH, Bachmann MH, Annu Rev Biomed Eng 2002 4 235 260 (Pubitemid 35217421)
-
(2002)
Annual Review of Biomedical Engineering
, vol.4
, pp. 235-260
-
-
Contag, C.H.1
Bachmann, M.H.2
-
90
-
-
79953800449
-
Molecular basis for endothelial lumen formation and tubulogenesis during vasculogenesis and angiogenic sprouting
-
Molecular basis for endothelial lumen formation and tubulogenesis during vasculogenesis and angiogenic sprouting. Davis GE, Stratman AN, Sacharidou A, Koh W, Int Rev Cell Mol Biol 2011 288 101
-
(2011)
Int Rev Cell Mol Biol
, vol.288
, pp. 101
-
-
Davis, G.E.1
Stratman, A.N.2
Sacharidou, A.3
Koh, W.4
-
91
-
-
19644367664
-
Synthetic biomaterials as instructive extracellular microenvironments for morphogenesis in tissue engineering
-
DOI 10.1038/nbt1055
-
Synthetic biomaterials as instructive extracellular microenvironments for morphogenesis in tissue engineering. Lutolf M, Hubbell J, Nat Biotechnol 2005 23 47 55 (Pubitemid 41724624)
-
(2005)
Nature Biotechnology
, vol.23
, Issue.1
, pp. 47-55
-
-
Lutolf, M.P.1
Hubbell, J.A.2
-
92
-
-
2942751900
-
The relative magnitudes of endothelial force generation and matrix stiffness modulate capillary morphogenesis in vitro
-
DOI 10.1016/j.yexcr.2004.03.035, PII S0014482704001752
-
The relative magnitudes of endothelial force generation and matrix stiffness modulate capillary morphogenesis in vitro. Sieminski A, Hebbel RP, Gooch KJ, Exp Cell Res 2004 297 574 584 (Pubitemid 38798416)
-
(2004)
Experimental Cell Research
, vol.297
, Issue.2
, pp. 574-584
-
-
Sieminski, A.L.1
Hebbel, R.P.2
Gooch, K.J.3
-
93
-
-
84891692782
-
A self-assembling peptide matrix used to control stiffness and binding site density supports the formation of microvascular networks in three dimensions
-
A self-assembling peptide matrix used to control stiffness and binding site density supports the formation of microvascular networks in three dimensions. Stevenson M, Piristine H, Hogrebe N, Nocera T, Boehm M, Reen R, Koelling K, Agarwal G, Sarang-Sieminski A, Gooch K, Acta Biomater 2013 9 7651 7661
-
(2013)
Acta Biomater
, vol.9
, pp. 7651-7661
-
-
Stevenson, M.1
Piristine, H.2
Hogrebe, N.3
Nocera, T.4
Boehm, M.5
Reen, R.6
Koelling, K.7
Agarwal, G.8
Sarang-Sieminski, A.9
Gooch, K.10
-
94
-
-
34547096994
-
Effects of the mechanical properties of collagen gel on the in vitro formation of microvessel networks by endothelial cells
-
DOI 10.1089/ten.2006.0333
-
Effects of the mechanical properties of collagen gel on the in vitro formation of microvessel networks by endothelial cells. Yamamura N, Sudo R, Ikeda M, Tanishita K, Tissue Eng 2007 13 1443 1453 (Pubitemid 47105753)
-
(2007)
Tissue Engineering
, vol.13
, Issue.7
, pp. 1443-1453
-
-
Yamamura, N.1
Sudo, R.2
Ikeda, M.3
Tanishita, K.4
-
95
-
-
77957695890
-
Vascular endothelial growth factor and substrate mechanics regulate in vitro tubulogenesis of endothelial progenitor cells
-
Vascular endothelial growth factor and substrate mechanics regulate in vitro tubulogenesis of endothelial progenitor cells. HanjayaPutra D, Yee J, Ceci D, Truitt R, Yee D, Gerecht S, J Cell Mol Med 2010 14 2436 2447
-
(2010)
J Cell Mol Med
, vol.14
, pp. 2436-2447
-
-
Hanjayaputra, D.1
Yee, J.2
Ceci, D.3
Truitt, R.4
Yee, D.5
Gerecht, S.6
-
96
-
-
84887027812
-
Evaluation of Multifunctional Polysaccharide Hydrogels with Varying Stiffness for Bone Tissue Engineering
-
Evaluation of Multifunctional Polysaccharide Hydrogels with Varying Stiffness for Bone Tissue Engineering. Pandit V, Zuidema J, Venuto KN, Macione J, Dai G, Gilbert RJ, Kotha S, Tissue Eng 2013 19 2452
-
(2013)
Tissue Eng
, vol.19
, pp. 2452
-
-
Pandit, V.1
Zuidema, J.2
Venuto, K.N.3
MacIone, J.4
Dai, G.5
Gilbert, R.J.6
Kotha, S.7
-
97
-
-
77952319494
-
The effect of 3D hydrogel scaffold modulus on osteoblast differentiation and mineralization revealed by combinatorial screening
-
The effect of 3D hydrogel scaffold modulus on osteoblast differentiation and mineralization revealed by combinatorial screening. Chatterjee K, Lin-Gibson S, Wallace WE, Parekh SH, Lee YJ, Cicerone MT, Young MF, Simon CG Jr, Biomaterials 2010 31 5051 5062
-
(2010)
Biomaterials
, vol.31
, pp. 5051-5062
-
-
Chatterjee, K.1
Lin-Gibson, S.2
Wallace, W.E.3
Parekh, S.H.4
Lee, Y.J.5
Cicerone, M.T.6
Young, M.F.7
Simon Jr., G.C.8
-
98
-
-
77049085561
-
Formation of human capillaries in vitro: The engineering of prevascularized matrices
-
Formation of human capillaries in vitro: the engineering of prevascularized matrices. Montaño I, Schiestl C, Schneider J, Pontiggia L, Luginbühl J, Biedermann T, Böttcher-Haberzeth S, Braziulis E, Meuli M, Reichmann E, Tissue Eng Part A 2009 16 269 282
-
(2009)
Tissue Eng Part A
, vol.16
, pp. 269-282
-
-
Montaño, I.1
Schiestl, C.2
Schneider, J.3
Pontiggia, L.4
Luginbühl, J.5
Biedermann, T.6
Böttcher-Haberzeth, S.7
Braziulis, E.8
Meuli, M.9
Reichmann, E.10
-
99
-
-
77953025978
-
Cell-laden microengineered gelatin methacrylate hydrogels
-
Cell-laden microengineered gelatin methacrylate hydrogels. Nichol JW, Koshy ST, Bae H, Hwang CM, Yamanlar S, Khademhosseini A, Biomaterials 2010 31 5536 5544
-
(2010)
Biomaterials
, vol.31
, pp. 5536-5544
-
-
Nichol, J.W.1
Koshy, S.T.2
Bae, H.3
Hwang, C.M.4
Yamanlar, S.5
Khademhosseini, A.6
-
100
-
-
0036312911
-
Microfabrication technology for vascularized tissue engineering
-
DOI 10.1023/A:1016040212127
-
Microfabrication technology for vascularized tissue engineering. Borenstein JT, Terai H, King KR, Weinberg E, Kaazempur-Mofrad M, Vacanti J, Biomed Microdevices 2002 4 167 175 (Pubitemid 34823408)
-
(2002)
Biomedical Microdevices
, vol.4
, Issue.3
, pp. 167-175
-
-
Borenstein, J.T.1
Terai, H.2
King, K.R.3
Weinberg, E.J.4
Kaazempur-Mofrad, M.R.5
Vacanti, J.P.6
-
101
-
-
84866355664
-
Rapid casting of patterned vascular networks for perfusable engineered three-dimensional tissues
-
Rapid casting of patterned vascular networks for perfusable engineered three-dimensional tissues. Miller JS, Stevens KR, Yang MT, Baker BM, Nguyen D-HT, Cohen DM, Toro E, Chen AA, Galie PA, Yu X, Nat Mater 2012 11 768 774
-
(2012)
Nat Mater
, vol.11
, pp. 768-774
-
-
Miller, J.S.1
Stevens, K.R.2
Yang, M.T.3
Baker, B.M.4
Nguyen, D.-H.5
Cohen, D.M.6
Toro, E.7
Chen, A.A.8
Galie, P.A.9
Yu, X.10
-
102
-
-
79951775415
-
An overview of tissue and whole organ decellularization processes
-
An overview of tissue and whole organ decellularization processes. Crapo PM, Gilbert TW, Badylak SF, Biomaterials 2011 32 3233 3243
-
(2011)
Biomaterials
, vol.32
, pp. 3233-3243
-
-
Crapo, P.M.1
Gilbert, T.W.2
Badylak, S.F.3
-
103
-
-
84898057987
-
Immunogenicity in xenogeneic scaffold generation: Antigen removal versus decellularization
-
Immunogenicity in xenogeneic scaffold generation: Antigen removal versus decellularization. Wong ML, Griffiths LG, Acta Biomater 2014 10 1806 1816
-
(2014)
Acta Biomater
, vol.10
, pp. 1806-1816
-
-
Wong, M.L.1
Griffiths, L.G.2
-
104
-
-
22544477857
-
Cell sheet engineering: Recreating tissues without biodegradable scaffolds
-
DOI 10.1016/j.biomaterials.2005.04.061, PII S0142961205003832
-
Cell sheet engineering: recreating tissues without biodegradable scaffolds. Yang J, Yamato M, Kohno C, Nishimoto A, Sekine H, Fukai F, Okano T, Biomaterials 2005 26 6415 6422 (Pubitemid 41021737)
-
(2005)
Biomaterials
, vol.26
, Issue.33
, pp. 6415-6422
-
-
Yang, J.1
Yamato, M.2
Kohno, C.3
Nishimoto, A.4
Sekine, H.5
Fukai, F.6
Okano, T.7
-
105
-
-
0002673318
-
Thermoresponsive polymeric surfaces; Control of attachment and detachment of cultured cells
-
Thermoresponsive polymeric surfaces; control of attachment and detachment of cultured cells. Yamada N, Okano T, Sakai H, Karikusa F, Sawasaki Y, Sakurai Y, Makromol Chem Rapid Comm 1990 11 571 576
-
(1990)
Makromol Chem Rapid Comm
, vol.11
, pp. 571-576
-
-
Yamada, N.1
Okano, T.2
Sakai, H.3
Karikusa, F.4
Sawasaki, Y.5
Sakurai, Y.6
-
106
-
-
0034896860
-
Thermo-responsive culture dishes allow the intact harvest of multilayered keratinocyte sheets without dispase by reducing temperature
-
DOI 10.1089/10763270152436517
-
Thermo-responsive culture dishes allow the intact harvest of multilayered keratinocyte sheets without dispase by reducing temperature. Yamato M, Utsumi M, Kushida A, Konno C, Kikuchi A, Okano T, Tissue Eng 2001 7 473 480 (Pubitemid 32734778)
-
(2001)
Tissue Engineering
, vol.7
, Issue.4
, pp. 473-480
-
-
Yamato, M.1
Utsumi, M.2
Kushida, A.3
Konno, C.4
Kikuchi, A.5
Okano, T.6
-
107
-
-
0037409862
-
Cell sheet engineering for myocardial tissue reconstruction
-
DOI 10.1016/S0142-9612(03)00110-8
-
Cell sheet engineering for myocardial tissue reconstruction. Shimizu T, Yamato M, Kikuchi A, Okano T, Biomaterials 2003 24 2309 2316 (Pubitemid 36434050)
-
(2003)
Biomaterials
, vol.24
, Issue.13
, pp. 2309-2316
-
-
Shimizu, T.1
Yamato, M.2
Kikuchi, A.3
Okano, T.4
-
108
-
-
77649270111
-
Pre-vascularization of in vitro three-dimensional tissues created by cell sheet engineering
-
Pre-vascularization of in vitro three-dimensional tissues created by cell sheet engineering. Asakawa N, Shimizu T, Tsuda Y, Sekiya S, Sasagawa T, Yamato M, Fukai F, Okano T, Biomaterials 2010 31 3903 3909
-
(2010)
Biomaterials
, vol.31
, pp. 3903-3909
-
-
Asakawa, N.1
Shimizu, T.2
Tsuda, Y.3
Sekiya, S.4
Sasagawa, T.5
Yamato, M.6
Fukai, F.7
Okano, T.8
-
109
-
-
84859579818
-
Fabrication of functional three-dimensional tissues by stacking cell sheets in vitro
-
Fabrication of functional three-dimensional tissues by stacking cell sheets in vitro. Haraguchi Y, Shimizu T, Sasagawa T, Sekine H, Sakaguchi K, Kikuchi T, Sekine W, Sekiya S, Yamato M, Umezu M, Nat Protoc 2012 7 850 858
-
(2012)
Nat Protoc
, vol.7
, pp. 850-858
-
-
Haraguchi, Y.1
Shimizu, T.2
Sasagawa, T.3
Sekine, H.4
Sakaguchi, K.5
Kikuchi, T.6
Sekine, W.7
Sekiya, S.8
Yamato, M.9
Umezu, M.10
-
110
-
-
77954384307
-
The rapid anastomosis between prevascularized networks on silk fibroin scaffolds generated in vitro with cocultures of human microvascular endothelial and osteoblast cells and the host vasculature
-
The rapid anastomosis between prevascularized networks on silk fibroin scaffolds generated in vitro with cocultures of human microvascular endothelial and osteoblast cells and the host vasculature. Unger RE, Ghanaati S, Orth C, Sartoris A, Barbeck M, Halstenberg S, Motta A, Migliaresi C, Kirkpatrick CJ, Biomaterials 2010 31 6959 6967
-
(2010)
Biomaterials
, vol.31
, pp. 6959-6967
-
-
Unger, R.E.1
Ghanaati, S.2
Orth, C.3
Sartoris, A.4
Barbeck, M.5
Halstenberg, S.6
Motta, A.7
Migliaresi, C.8
Kirkpatrick, C.J.9
-
111
-
-
84876167953
-
Copolymer cell/scaffold constructs for bone tissue engineering: Coculture of low ratios of human endothelial and osteoblastlike cells in a dynamic culture system
-
Copolymer cell/scaffold constructs for bone tissue engineering: Coculture of low ratios of human endothelial and osteoblastlike cells in a dynamic culture system. Xing Z, Xue Y, FinneWistrand A, Yang ZQ, Mustafa K, J Biomed Mater Res 2013 101 1113 1120
-
(2013)
J Biomed Mater Res
, vol.101
, pp. 1113-1120
-
-
Xing, Z.1
Xue, Y.2
Finnewistrand, A.3
Yang, Z.Q.4
Mustafa, K.5
-
112
-
-
80052345868
-
The three-dimensional vascularization of growth factor-releasing hybrid scaffold of poly (ε-caprolactone)/collagen fibers and hyaluronic acid hydrogel
-
The three-dimensional vascularization of growth factor-releasing hybrid scaffold of poly (ε-caprolactone)/collagen fibers and hyaluronic acid hydrogel. Ekaputra AK, Prestwich GD, Cool SM, Hutmacher DW, Biomaterials 2011 32 8108 8117
-
(2011)
Biomaterials
, vol.32
, pp. 8108-8117
-
-
Ekaputra, A.K.1
Prestwich, G.D.2
Cool, S.M.3
Hutmacher, D.W.4
-
113
-
-
84861143986
-
Functional human vascular network generated in photocrosslinkable gelatin methacrylate hydrogels
-
Functional human vascular network generated in photocrosslinkable gelatin methacrylate hydrogels. Chen YC, Lin RZ, Qi H, Yang Y, Bae H, MeleroMartin JM, Khademhosseini A, Adv Funct Mater 2012 22 2027 2039
-
(2012)
Adv Funct Mater
, vol.22
, pp. 2027-2039
-
-
Chen, Y.C.1
Lin, R.Z.2
Qi, H.3
Yang, Y.4
Bae, H.5
Meleromartin, J.M.6
Khademhosseini, A.7
-
114
-
-
79551526801
-
Three-dimensional co-cultures of osteoblasts and endothelial cells in DegraPol foam: Histological and high-field magnetic resonance imaging analyses of pre-engineered capillary networks in bone grafts
-
Three-dimensional co-cultures of osteoblasts and endothelial cells in DegraPol foam: histological and high-field magnetic resonance imaging analyses of pre-engineered capillary networks in bone grafts. Buschmann J, Welti M, Hemmi S, Neuenschwander P, Baltes C, Giovanoli P, Rudin M, Calcagni M, Tissue Eng 2010 17 291 299
-
(2010)
Tissue Eng
, vol.17
, pp. 291-299
-
-
Buschmann, J.1
Welti, M.2
Hemmi, S.3
Neuenschwander, P.4
Baltes, C.5
Giovanoli, P.6
Rudin, M.7
Calcagni, M.8
-
115
-
-
77953953888
-
Discrepancies between metabolic activity and DNA content as tool to assess cell proliferation in cancer research
-
Discrepancies between metabolic activity and DNA content as tool to assess cell proliferation in cancer research. Quent V, Loessner D, Friis T, Reichert JC, Hutmacher DW, J Cell Mol Med 2010 14 1003 1013
-
(2010)
J Cell Mol Med
, vol.14
, pp. 1003-1013
-
-
Quent, V.1
Loessner, D.2
Friis, T.3
Reichert, J.C.4
Hutmacher, D.W.5
-
116
-
-
78649693511
-
The proliferation and differentiation of osteoblasts in co-culture with human umbilical vein endothelial cells: An improved analysis using fluorescence-activated cell sorting
-
The proliferation and differentiation of osteoblasts in co-culture with human umbilical vein endothelial cells: an improved analysis using fluorescence-activated cell sorting. Zhang Y, Schedle A, Matejka M, Rausch-Fan X, Andrukhov O, Cell Mol Biol Lett 2010 15 517 529
-
(2010)
Cell Mol Biol Lett
, vol.15
, pp. 517-529
-
-
Zhang, Y.1
Schedle, A.2
Matejka, M.3
Rausch-Fan, X.4
Andrukhov, O.5
-
117
-
-
0000870179
-
An endothelial cell growth factor from bovine hypothalamus: Identification and partial characterization
-
DOI 10.1073/pnas.76.11.5674
-
An endothelial cell growth factor from bovine hypothalamus: identification and partial characterization. Maciag T, Cerundolo J, Ilsley S, Kelley P, Forand R, Proc Natl Acad Sci 1979 76 5674 5678 (Pubitemid 10168670)
-
(1979)
Proceedings of the National Academy of Sciences of the United States of America
, vol.76
, Issue.11
, pp. 5674-5678
-
-
Maciag, T.1
Cerundolo, J.2
Ilsley, S.3
-
118
-
-
0034091827
-
Human macrovascular endothelial cells: Optimization of culture conditions
-
DOI 10.1290/1071-2690(2000)036<0125:HMECOO>2.3.CO;2
-
Human macrovascular endothelial cells: optimization of culture conditions. Terramani TT, Eton D, Bui PA, Wang Y, Weaver FA, Yu H, In Vitro Cell Dev Biol-Anim 2000 36 125 132 (Pubitemid 30141620)
-
(2000)
Vitro Cellular and Developmental Biology - Animal
, vol.36
, Issue.2
, pp. 125-132
-
-
Terramani, T.T.1
Eton, D.2
Bui, P.A.3
Wang, Y.4
Weaver, F.A.5
Yu, H.6
-
119
-
-
0042704747
-
VEGF differentially activates STAT3 in microvascular endothelial cells
-
VEGF differentially activates STAT3 in microvascular endothelial cells. Bartoli M, PLATT D, Lemtalsi T, Gu X, Brooks SE, Marrero MB, Caldwell RB, FASEB J 2003 17 1562 1564
-
(2003)
FASEB J
, vol.17
, pp. 1562-1564
-
-
Bartoli, M.1
Platt, D.2
Lemtalsi, T.3
Gu, X.4
Brooks, S.E.5
Marrero, M.B.6
Caldwell, R.B.7
-
120
-
-
0031850964
-
Endothelial cells from diverse tissues exhibit differences in growth and morphology
-
DOI 10.1006/mvre.1997.2045
-
Endothelial cells from diverse tissues exhibit differences in growth and morphology. Craig LE, Spelman JP, Strandberg JD, Zink MC, Microvasc Res 1998 55 65 76 (Pubitemid 28368414)
-
(1998)
Microvascular Research
, vol.55
, Issue.1
, pp. 65-76
-
-
Craig, L.E.1
Spelman, J.P.2
Strandberg, J.D.3
Zink, M.C.4
-
121
-
-
0034666724
-
SDF-1 activity on microvascular endothelial cells: Consequences on angiogenesis in in vitro and in vivo models
-
DOI 10.1016/S0049-3848(00)00292-9, PII S0049384800002929
-
SDF-1 activity on microvascular endothelial cells: consequences on angiogenesis in in vitro and in vivo models. Mirshahi F, Pourtau J, Li H, Muraine M, Trochon V, Legrand E, Vannier J-P, Soria J, Vasse M, Soria C, Thromb Res 2000 99 587 594 (Pubitemid 30642740)
-
(2000)
Thrombosis Research
, vol.99
, Issue.6
, pp. 587-594
-
-
Mirshahi, F.1
Pourtau, J.2
Li, H.3
Muraine, M.4
Trochon, V.5
Legrand, E.6
Vannier, J.-P.7
Soria, J.8
Vasse, M.9
Soria, C.10
-
122
-
-
0038069208
-
Heterogeneity of microvascular endothelial cells isolated from human term placenta and macrovascular umbilical vein endothelial cells
-
DOI 10.1078/0171-9335-00306
-
Heterogeneity of microvascular endothelial cells isolated from human term placenta and macrovascular umbilical vein endothelial cells. Lang I, Pabst MA, Hiden U, Blaschitz A, Dohr G, Hahn T, Desoye G, Eur J Cell Biol 2003 82 163 173 (Pubitemid 36546617)
-
(2003)
European Journal of Cell Biology
, vol.82
, Issue.4
, pp. 163-173
-
-
Lang, I.1
Pabst, M.A.2
Hiden, U.3
Blaschitz, A.4
Dohr, G.5
Hahn, T.6
Desoye, G.7
-
123
-
-
34547162587
-
Concise review: No breakthroughs for human mesenchymal and embryonic stem cell culture: Conditioned medium, feeder layer, or feeder-free; medium with fetal calf serum, human serum, or enriched plasma; serum-free, serum replacement nonconditioned medium, or ad hoc formula? All that glitters is not gold!
-
DOI 10.1634/stemcells.2007-0127
-
Concise Review: No Breakthroughs for Human Mesenchymal and Embryonic Stem Cell Culture: Conditioned Medium, Feeder Layer, or FeederFree; Medium with Fetal Calf Serum, Human Serum, or Enriched Plasma; SerumFree, Serum Replacement Nonconditioned Medium, or Ad Hoc Formula? All That Glitters Is Not Gold! Mannello F, Tonti GA, Stem Cells 2007 25 1603 1609 (Pubitemid 47121836)
-
(2007)
Stem Cells
, vol.25
, Issue.7
, pp. 1603-1609
-
-
Mannello, F.1
Tonti, G.A.2
-
124
-
-
1542495520
-
Alternatives to the use of fetal bovine serum: Serum-free cell culture
-
Alternatives to the use of fetal bovine serum: serum-free cell culture. Gstraunthaler G, Altex 2003 20 275 281
-
(2003)
Altex
, vol.20
, pp. 275-281
-
-
Gstraunthaler, G.1
-
125
-
-
0034722911
-
Effect of serum on human bone marrow stromal cells: Ex vivo expansion and in vivo bone formation
-
Effect of serum on human bone marrow stromal cells: ex vivo expansion and in vivo bone formation. Kuznetsov SA, Mankani MH, Robey PG, Transplantation 2000 70 1780 1787 (Pubitemid 32064834)
-
(2000)
Transplantation
, vol.70
, Issue.12
, pp. 1780-1787
-
-
Kuznetsov, S.A.1
Mankani, M.H.2
Robey, P.G.3
-
126
-
-
77954169755
-
Optimization of the culturing conditions of human umbilical cord bloodderived endothelial colonyforming cells under xenofree conditions applying a transcriptomic approach
-
Optimization of the culturing conditions of human umbilical cord bloodderived endothelial colonyforming cells under xenofree conditions applying a transcriptomic approach. Zeisberger SM, Zoller S, Riegel M, Chen S, Krenning G, Harmsen MC, Sachinidis A, Zisch AH, Genes Cells 2010 15 671 687
-
(2010)
Genes Cells
, vol.15
, pp. 671-687
-
-
Zeisberger, S.M.1
Zoller, S.2
Riegel, M.3
Chen, S.4
Krenning, G.5
Harmsen, M.C.6
Sachinidis, A.7
Zisch, A.H.8
-
127
-
-
79959281084
-
Human umbilical cord blood plasma can replace fetal bovine serum for in vitro expansion of functional human endothelial colony-forming cells
-
Human umbilical cord blood plasma can replace fetal bovine serum for in vitro expansion of functional human endothelial colony-forming cells. Huang L, Critser PJ, Grimes BR, Yoder MC, Cytotherapy 2011 13 712 721
-
(2011)
Cytotherapy
, vol.13
, pp. 712-721
-
-
Huang, L.1
Critser, P.J.2
Grimes, B.R.3
Yoder, M.C.4
-
128
-
-
0036740948
-
Serum factors involved in human microvascular endothelial cell morphogenesis
-
Serum factors involved in human microvascular endothelial cell morphogenesis. Harvey K, Siddiqui RA, Sliva D, Garcia JG, English D, J Lab Clin Med 2002 140 188 198
-
(2002)
J Lab Clin Med
, vol.140
, pp. 188-198
-
-
Harvey, K.1
Siddiqui, R.A.2
Sliva, D.3
Garcia, J.G.4
English, D.5
-
129
-
-
69249203626
-
Humanized large-scale expanded endothelial colony-forming cells function in vitro and in vivo
-
Humanized large-scale expanded endothelial colony-forming cells function in vitro and in vivo. Reinisch A, Hofmann NA, Obenauf AC, Kashofer K, Rohde E, Schallmoser K, Flicker K, Lanzer G, Linkesch W, Speicher MR, Blood 2009 113 6716 6725
-
(2009)
Blood
, vol.113
, pp. 6716-6725
-
-
Reinisch, A.1
Hofmann, N.A.2
Obenauf, A.C.3
Kashofer, K.4
Rohde, E.5
Schallmoser, K.6
Flicker, K.7
Lanzer, G.8
Linkesch, W.9
Speicher, M.R.10
-
130
-
-
84905369640
-
Human endothelial colonyforming cells expanded with an improved protocol are a useful endothelial cell source for scaffoldbased tissue engineering
-
Human endothelial colonyforming cells expanded with an improved protocol are a useful endothelial cell source for scaffoldbased tissue engineering. Denecke B, Horsch LD, Radtke S, Fischer JC, Horn PA, Giebel B, J Tissue Eng Regen Med 2013
-
(2013)
J Tissue Eng Regen Med
-
-
Denecke, B.1
Horsch, L.D.2
Radtke, S.3
Fischer, J.C.4
Horn, P.A.5
Giebel, B.6
-
131
-
-
66249089152
-
Microfabricated poly (ethylene glycol) templates enable rapid screening of triculture conditions for cardiac tissue engineering
-
Microfabricated poly (ethylene glycol) templates enable rapid screening of triculture conditions for cardiac tissue engineering. Iyer RK, Chiu LL, Radisic M, J Biomed Mater Res 2009 89 616 631
-
(2009)
J Biomed Mater Res
, vol.89
, pp. 616-631
-
-
Iyer, R.K.1
Chiu, L.L.2
Radisic, M.3
-
132
-
-
84864937746
-
Biofabrication enables efficient interrogation and optimization of sequential culture of endothelial cells, fibroblasts and cardiomyocytes for formation of vascular cords in cardiac tissue engineering
-
Biofabrication enables efficient interrogation and optimization of sequential culture of endothelial cells, fibroblasts and cardiomyocytes for formation of vascular cords in cardiac tissue engineering. Iyer RK, Chiu LL, Vunjak-Novakovic G, Radisic M, Biofabrication 2012 4 035002
-
(2012)
Biofabrication
, vol.4
, pp. 035002
-
-
Iyer, R.K.1
Chiu, L.L.2
Vunjak-Novakovic, G.3
Radisic, M.4
-
133
-
-
69949152311
-
Vascularization strategies for tissue engineering
-
Vascularization strategies for tissue engineering. Lovett M, Lee K, Edwards A, Kaplan DL, Tissue Eng 2009 15 353 370
-
(2009)
Tissue Eng
, vol.15
, pp. 353-370
-
-
Lovett, M.1
Lee, K.2
Edwards, A.3
Kaplan, D.L.4
-
134
-
-
0031569409
-
Oxygen regulates vascular endothelial growth factor-mediated vasculogenesis and tubulogenesis
-
DOI 10.1006/dbio.1997.8513
-
Oxygen regulates vascular endothelial growth factor-mediated vasculogenesis and tubulogenesis. Tufro-McReddie A, Norwood V, Aylor K, Botkin S, Carey R, Gomez R, Dev Biol 1997 183 139 149 (Pubitemid 27148643)
-
(1997)
Developmental Biology
, vol.183
, Issue.2
, pp. 139-149
-
-
Tufro-McReddie, A.1
Norwood, V.F.2
Aylor, K.W.3
Botkin, S.J.4
Carey, R.M.5
Gomez, R.A.6
-
135
-
-
77951698149
-
Hypoxia-inducible factor-1-dependent mechanisms of vascularization and vascular remodelling
-
Hypoxia-inducible factor-1-dependent mechanisms of vascularization and vascular remodelling. Rey S, Semenza GL, Cardiovasc Res 2010 86 236 242
-
(2010)
Cardiovasc Res
, vol.86
, pp. 236-242
-
-
Rey, S.1
Semenza, G.L.2
-
136
-
-
0026485002
-
Vascular endothelial growth factor induced by hypoxia may mediate hypoxia-initiated angiogenesis
-
Vascular endothelial growth factor induced by hypoxia may mediate hypoxia-initiated angiogenesis. Shweiki D, Itin A, Soffer D, Keshet E, Nature 1992 359 843 845
-
(1992)
Nature
, vol.359
, pp. 843-845
-
-
Shweiki, D.1
Itin, A.2
Soffer, D.3
Keshet, E.4
-
137
-
-
37249087341
-
The interactions between brain microvascular endothelial cells and mesenchymal stem cells under hypoxic conditions
-
DOI 10.1016/j.mvr.2007.06.003, PII S0026286207000787
-
The interactions between brain microvascular endothelial cells and mesenchymal stem cells under hypoxic conditions. Liu K, Chi L, Guo L, Liu X, Luo C, Zhang S, He G, Microvasc Res 2008 75 59 67 (Pubitemid 350266737)
-
(2008)
Microvascular Research
, vol.75
, Issue.1
, pp. 59-67
-
-
Liu, K.1
Chi, L.2
Guo, L.3
Liu, X.4
Luo, C.5
Zhang, S.6
He, G.7
-
138
-
-
48749086529
-
Hypoxia promotes chondrogenesis in rat mesenchymal stem cells: A role for AKT and hypoxiainducible factor (HIF)1
-
Hypoxia promotes chondrogenesis in rat mesenchymal stem cells: A role for AKT and hypoxiainducible factor (HIF)1 Kanichai M, Ferguson D, Prendergast PJ, Campbell VA, J Cell Physiol 2008 216 708 715
-
(2008)
J Cell Physiol
, vol.216
, pp. 708-715
-
-
Kanichai, M.1
Ferguson, D.2
Prendergast, P.J.3
Campbell, V.A.4
-
139
-
-
84870885699
-
Hypoxia inhibits the differentiation of mesenchymal stem cells into osteoblasts by activation of Notch signaling
-
Hypoxia inhibits the differentiation of mesenchymal stem cells into osteoblasts by activation of Notch signaling. Xu N, Liu H, Qu F, Fan J, Mao K, Yin Y, Liu J, Geng Z, Wang Y, Exp Mol Pathol 2012 9 33 39
-
(2012)
Exp Mol Pathol
, vol.9
, pp. 33-39
-
-
Xu, N.1
Liu, H.2
Qu, F.3
Fan, J.4
Mao, K.5
Yin, Y.6
Liu, J.7
Geng, Z.8
Wang, Y.9
-
140
-
-
78650472917
-
Effect of endothelial cells on bone regeneration using poly (Llactideco1, 5dioxepan2one) scaffolds
-
Effect of endothelial cells on bone regeneration using poly (Llactideco1, 5dioxepan2one) scaffolds. Xing Z, Xue Y, Dånmark S, Schander K, Østvold S, Arvidson K, Hellem S, FinneWistrand A, Albertsson AC, Mustafa K, J Biomed Mater Res 2011 96 349 357
-
(2011)
J Biomed Mater Res
, vol.96
, pp. 349-357
-
-
Xing, Z.1
Xue, Y.2
Dånmark, S.3
Schander, K.4
Østvold, S.5
Arvidson, K.6
Hellem, S.7
Finnewistrand, A.8
Albertsson, A.C.9
Mustafa, K.10
-
141
-
-
84874747360
-
Contrasting Effects of Vasculogenic Induction Upon Biaxial Bioreactor Stimulation of Mesenchymal Stem Cells and Endothelial Progenitor Cells Cocultures in Three-Dimensional Scaffolds under in Vitro and in Vivo Paradigms for Vascularized Bone Tissue Engineering
-
Contrasting Effects of Vasculogenic Induction Upon Biaxial Bioreactor Stimulation of Mesenchymal Stem Cells and Endothelial Progenitor Cells Cocultures in Three-Dimensional Scaffolds Under In Vitro and In Vivo Paradigms for Vascularized Bone Tissue Engineering. Liu Y, Teoh S-H, Chong MS, Yeow C-H, Kamm RD, Choolani M, Chan JK, Tissue Eng 2012 19 893 904
-
(2012)
Tissue Eng
, vol.19
, pp. 893-904
-
-
Liu, Y.1
Teoh, S.-H.2
Chong, M.S.3
Yeow, C.-H.4
Kamm, R.D.5
Choolani, M.6
Chan, J.K.7
-
143
-
-
77956802838
-
Vascular endothelial growth factor molecular and biological aspects
-
Vascular endothelial growth factor molecular and biological aspects. Ferrara N, Gerber HP, Advances Organ Biol 1999 7 25 57
-
(1999)
Advances Organ Biol
, vol.7
, pp. 25-57
-
-
Ferrara, N.1
Gerber, H.P.2
-
144
-
-
67650665277
-
Influence of adult mesenchymal stem cells on in vitro vascular formation
-
Influence of adult mesenchymal stem cells on in vitro vascular formation. Sorrell JM, Baber MA, Caplan AI, Tissue Eng Part A 2009 15 1751 1761
-
(2009)
Tissue Eng Part A
, vol.15
, pp. 1751-1761
-
-
Sorrell, J.M.1
Baber, M.A.2
Caplan, A.I.3
-
145
-
-
84902537549
-
Mesenchymal stem/stromal cells as a pharmacological and therapeutic approach to accelerate angiogenesis
-
Mesenchymal stem/stromal cells as a pharmacological and therapeutic approach to accelerate angiogenesis. Bronckaers A, Hilkens P, Martens W, Gervois P, Ratajczak J, Struys T, Lambrichts I, Pharmacol Ther 2014 143 181 196
-
(2014)
Pharmacol Ther
, vol.143
, pp. 181-196
-
-
Bronckaers, A.1
Hilkens, P.2
Martens, W.3
Gervois, P.4
Ratajczak, J.5
Struys, T.6
Lambrichts, I.7
-
146
-
-
0037350079
-
Cardiac myofibroblasts: A novel source of vascular endothelial growth factor (VEGF) and its receptors Flt-1 and KDR
-
DOI 10.1016/S0022-2828(03)00006-3
-
Cardiac myofibroblasts: a novel source of vascular endothelial growth factor (VEGF) and its receptors Flt-1 and KDR. Chintalgattu V, Nair DM, Katwa LC, J Mol Cell Cardiol 2003 35 277 286 (Pubitemid 36379171)
-
(2003)
Journal of Molecular and Cellular Cardiology
, vol.35
, Issue.3
, pp. 277-286
-
-
Chintalgattu, V.1
Nair, D.M.2
Katwa, L.C.3
-
147
-
-
79956328903
-
Molecular mechanisms and clinical applications of angiogenesis
-
Molecular mechanisms and clinical applications of angiogenesis. Carmeliet P, Jain RK, Nature 2011 473 298 307
-
(2011)
Nature
, vol.473
, pp. 298-307
-
-
Carmeliet, P.1
Jain, R.K.2
-
148
-
-
0030480322
-
Requisite role of angiopoietin-1, a ligand for the TIE2 receptor, during embryonic angiogenesis
-
DOI 10.1016/S0092-8674(00)81813-9
-
Requisite role of angiopoietin-1, a ligand for the TIE2 receptor, during embryonic angiogenesis. Suri C, Jones PF, Patan S, Bartunkova S, Maisonpierre PC, Davis S, Sato TN, Yancopoulos GD, Cell 1996 87 1171 1180 (Pubitemid 27010101)
-
(1996)
Cell
, vol.87
, Issue.7
, pp. 1171-1180
-
-
Suri, C.1
Jones, P.F.2
Patan, S.3
Bartunkova, S.4
Maisonpierre, P.C.5
Davis, S.6
Sato, T.N.7
Yancopoulos, G.D.8
-
149
-
-
0032560058
-
Angiopoietin-1 induces sprouting angiogenesis in vitro
-
Angiopoietin-1 induces sprouting angiogenesis in vitro. Koblizek TI, Weiss C, Yancopoulos GD, Deutsch U, Risau W, Current Biol 1998 8 529 532 (Pubitemid 28203073)
-
(1998)
Current Biology
, vol.8
, Issue.9
, pp. 529-532
-
-
Koblizek, T.I.1
Weiss, C.2
Yancopoulos, G.D.3
Deutsch, U.4
Risau, W.5
-
150
-
-
0142172456
-
Role of chemokines in angiogenesis: CXCL12/SDF-1 and CXCR4 interaction, a key regulator of endothelial cell responses
-
DOI 10.1038/sj.mn.7800200
-
Role of chemokines in angiogenesis: CXCL12/SDF1 and CXCR4 interaction, a key regulator of endothelial cell responses. Salcedo R, Oppenheim JJ, Microcirculation 2003 10 359 370 (Pubitemid 39004262)
-
(2003)
Microcirculation
, vol.10
, Issue.3-4
, pp. 359-370
-
-
Salcedo, R.1
Oppenheim, J.J.2
-
151
-
-
0027772233
-
Platelet-derived growth factor indirectly stimulates angiogenesis in vitro
-
Platelet-derived growth factor indirectly stimulates angiogenesis in vitro. Sato N, Beitz J, Kato J, Yamamoto M, Clark J, Calabresi P, Raymond A, Frackelton A Jr, Am J Pathol 1993 142 1119
-
(1993)
Am J Pathol
, vol.142
, pp. 1119
-
-
Sato, N.1
Beitz, J.2
Kato, J.3
Yamamoto, M.4
Clark, J.5
Calabresi, P.6
Raymond, A.7
Frackelton Jr., A.8
-
153
-
-
65249173169
-
Endothelial-mural cell signaling in vascular development and angiogenesis
-
Endothelial-mural cell signaling in vascular development and angiogenesis. Gaengel K, Genové G, Armulik A, Betsholtz C, Arterioscler Thromb Vasc Biol 2009 29 630 638
-
(2009)
Arterioscler Thromb Vasc Biol
, vol.29
, pp. 630-638
-
-
Gaengel, K.1
Genové, G.2
Armulik, A.3
Betsholtz, C.4
|