Page 165 - Human Umbilical Cord Mesenchymal Stem Cells
P. 165
The Wharton's Jelly Is an Ideal Source of Stem Cells
54. Dalous J, Larghero J, Baud O. Transplantation of umbilical cord-derived mesenchymal stem cells as a
novel strategy to protect the central nervous system: technical aspects, preclinical studies, and clinical
perspectives. Pediatric research. 2012; 71(4 Pt 2):482–90. Epub 2012/03/21. doi: 10.1038/pr.2011.67
PMID: 22430384.
55. Mitchell KE, Weiss ML, Mitchell BM, Martin P, Davis D, Morales L, et al. Matrix cells from Wharton's
jelly form neurons and glia. Stem cells. 2003; 21(1):50–60. doi: 10.1634/stemcells.21-1-50 PMID:
12529551.
56. Pereira WC, Khushnooma I, Madkaikar M, Ghosh K. Reproducible methodology for the isolation of
mesenchymal stem cells from human umbilical cord and its potential for cardiomyocyte generation.
Journal of tissue engineering and regenerative medicine. 2008; 2(7):394–9. Epub 2008/07/11. doi: 10.
1002/term.107 PMID: 18615777.
57. Yan Y, Xu W, Qian H, Si Y, Zhu W, Cao H, et al. Mesenchymal stem cells from human umbilical cords
ameliorate mouse hepatic injury in vivo. Liver international: official journal of the International Associa-
tion for the Study of the Liver. 2009; 29(3):356–65. Epub 2009/01/15. doi: 10.1111/j.1478-3231.2008.
01855.x PMID: 19141029.
58. Yoon JH, Roh EY, Shin S, Jung NH, Song EY, Lee DS, et al. Introducing pulsed low-intensity ultra-
sound to culturing human umbilical cord-derived mesenchymal stem cells. Biotechnology letters. 2009;
31(3):329–35. Epub 2008/11/06. doi: 10.1007/s10529-008-9872-5 PMID: 18985278.
59. Qiao C, Xu W, Zhu W, Hu J, Qian H, Yin Q, et al. Human mesenchymal stem cells isolated from the um-
bilical cord. Cell biology international. 2008; 32(1):8–15. doi: 10.1016/j.cellbi.2007.08.002 PMID:
17904875.
60. Chen MY, Lie PC, Li ZL, Wei X. Endothelial differentiation of Wharton's jelly-derived mesenchymal
stem cells in comparison with bone marrow-derived mesenchymal stem cells. Experimental hematolo-
gy. 2009; 37(5):629–40. Epub 2009/04/21. doi: 10.1016/j.exphem.2009.02.003 PMID: 19375653.
61. Majore I, Moretti P, Stahl F, Hass R, Kasper C. Growth and differentiation properties of mesenchymal
stromal cell populations derived from whole human umbilical cord. Stem cell reviews. 2011; 7(1):17–
31. doi: 10.1007/s12015-010-9165-y PMID: 20596801.
62. Zhang YN, Lie PC, Wei X. Differentiation of mesenchymal stromal cells derived from umbilical cord
Wharton's jelly into hepatocyte-like cells. Cytotherapy. 2009; 11(5):548–58. doi: 10.1080/
14653240903051533 PMID: 19657806.
63. Chao KC, Chao KF, Fu YS, Liu SH. Islet-like clusters derived from mesenchymal stem cells in Whar-
ton's Jelly of the human umbilical cord for transplantation to control type 1 diabetes. PloS one. 2008;
3(1):e1451. doi: 10.1371/journal.pone.0001451 PMID: 18197261; PubMed Central PMCID:
PMC2180192.
64. Wu KH, Zhou B, Lu SH, Feng B, Yang SG, Du WT, et al. In vitro and in vivo differentiation of human um-
bilical cord derived stem cells into endothelial cells. Journal of cellular biochemistry. 2007; 100(3):608–
16. doi: 10.1002/jcb.21078 PMID: 16960877.
65. Conconi MT, Burra P, Di Liddo R, Calore C, Turetta M, Bellini S, et al. CD105(+) cells from Wharton's
jelly show in vitro and in vivo myogenic differentiative potential. International journal of molecular medi-
cine. 2006; 18(6):1089–96. PMID: 17089012.
66. Weiss ML, Anderson C, Medicetty S, Seshareddy KB, Weiss RJ, VanderWerff I, et al. Immune proper-
ties of human umbilical cord Wharton's jelly-derived cells. Stem cells. 2008; 26(11):2865–74. doi: 10.
1634/stemcells.2007-1028 PMID: 18703664.
67. Weiss ML, Mitchell KE, Hix JE, Medicetty S, El-Zarkouny SZ, Grieger D, et al. Transplantation of por-
cine umbilical cord matrix cells into the rat brain. Experimental neurology. 2003; 182(2):288–99. PMID:
12895440.
68. Medicetty S, Bledsoe AR, Fahrenholtz CB, Troyer D, Weiss ML. Transplantation of pig stem cells into
rat brain: proliferation during the first 8 weeks. Experimental neurology. 2004; 190(1):32–41. doi: 10.
1016/j.expneurol.2004.06.023 PMID: 15473978.
69. Ayuzawa R, Doi C, Rachakatla RS, Pyle MM, Maurya DK, Troyer D, et al. Naive human umbilical cord
matrix derived stem cells significantly attenuate growth of human breast cancer cells in vitro and in vivo.
Cancer letters. 2009; 280(1):31–7. Epub 2009/03/17. doi: 10.1016/j.canlet.2009.02.011 PMID:
19285791; PubMed Central PMCID: PMCPmc2914472.
70. Ganta C, Chiyo D, Ayuzawa R, Rachakatla R, Pyle M, Andrews G, et al. Rat umbilical cord stem cells
completely abolish rat mammary carcinomas with no evidence of metastasis or recurrence 100 days
post-tumor cell inoculation. Cancer research. 2009; 69(5):1815–20. Epub 2009/02/27. doi: 10.1158/
0008-5472.can-08-2750 PMID: 19244122.
71. Matsuzuka T, Rachakatla RS, Doi C, Maurya DK, Ohta N, Kawabata A, et al. Human umbilical cord ma-
trix-derived stem cells expressing interferon-beta gene significantly attenuate bronchioloalveolar
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