Biomedical Engineering Reference
In-Depth Information
53. Kucia M, Zhang YP, Reac R, Wysoczynski M, Machalinski B, Majka M, Ildstad ST, Ratajczak
JU, Chields CB, Ratajczak MZ (2006) Cells enriched in markers of neural tissue-commited
stem cells reside in the bone marrow and are mobilized into the peripheral blood following
stroke. Leukemia 20:18-28
54. Kucia M, Reca R, Campbell FR, Surma-Zuba E, Majka M, Ratajczak M, Ratajczak MZ
(2006) A population of very small embryonic-like (VSEL) CXR4+ SSEA-1+ Oct4+ stem
cells identified in adult bone marrow. Leukemia 20:857-869
55. Wagers AJ, Sherwood RI, Christensen JL, Weissman IL (2002) Little evidence for develop-
mental plasticity of adult hematopoietic stem cells. Science 297:2256-2259
56. Murry CE, Soonpaa MH, Reinecke H, Nakajima H, Rubart M, Pasumarthi KBS et al (2004)
Haematopoietic stem cells do not transdifferentiate into cardiac myocytes in myocardial
infarction. Nature 428:664-668
57. Ziegelhoeffer T, Fernandez B, Kostin S, Heil M, Voswinckel R, Helisch A et al (2004) Bone
marrow-derived cells do not incorporate into adult growing vasculature. Circ Res
94:230-238
58. Menasche P (2004) Cellular transplantation: hurdles remaining before widespread clinical
use. Curr Opin Cardiol 19:154-161
59. Levy JS, Stroomza M, Melemed E, Offen D (2004) Embryonic and adult stem cells as a
soutce for cell therapy in Parkinson's disease. J Mol Neurosci 24(3):353-386
60. De Copi P, Bartsch G Jr, Minhaj MS, Atala A et al (2007) Isolation of amniotic stem cell lines
with potential for therapy. Nat Biotechnol 25:100-106
61. Kim J, Lee Y, Hwanf KJ, Kwon HC, Kim SK, Cho DJ, Kang SG, You J (2007) Human amni-
otic fluid-derived stem cells have characteristics of multipotent stem cells. Cell Prolif
40(1):75-90
62. Jendelova P, Herynek V, Urdzikova L, Glogarova K, Kroupova J, Anderson B, Vryja V,
Burtain M, Hajek M, Sykova J (2004) Magnetic resonance tracking of transplanted bone
marrow and embryonic stem cells labeled by iron oxide nanoparticles in rat brain and spinal
cord. J Neurosci Res 76:232-243
63. Marshall CT, Lu C, Winstead W, Zhanf X, Xiao M, Harding G, Klueber KM, Roisen FJ
(2006) The therapeutic potential of human olfactory-derived stem cells. Histol Histopathol
21:633-643
64. Lindwall O, Kokaia Z, Martinez-Serrano A (2006) SCs for the treatment of neurological
disorders. Nature 441:1094-1096
65. D'Ippolito G, Sylma D, Howadr GA, Philippe M, Roos BA, Schiller PC (2004) Marrow-
isolated adult multilineage inducible (MIAMI) cells, a unique population of postnatal young
and old human cells with extensive expansion and differentiation potential. J Cell Sci
117:2971-2981
66. Serafini M, Dylla SJ, Oki M, Heremans Y, Tolar J, Jiang Y et al (2007) Hematopoietic recon-
stitution by multipotent adult progenitor cells: precursors to long-term hematopoietic stem
cells. J Exp Med 204(1):129-139
67. Young-sup Y, Wecker A, Heyd L, Park JS, Douglas W, Losordo DW et al (2005) Clonally
expanded novel multipotent stem cells from human bone marrow regenerate myocardium
after myocardial infarction. J Clin Invest 115(2):326-338
68. Balint B (2004) SCs—unselected or selected, unfrozen or cryopreserved: marrow repopula-
tion capacity and plasticity potential in experimental and clinical settings. Maked Med Pregl
58(suppl 63):22-24
69. Pelacho B, Aranguren XL, Mazo M, Abizanda G, Gavira JJ, Clavel C et al (2007) Prosper
plasticity and cardiovascular applications of multipotent adult progenitor cells. Nat Clin Pract
Cardiovasc Med 4(suppl 1):S15-S20
70. Müller P, Pfeiffer P, Koglin J, Schafers HJ, Seeland U, Janzen I et al (2002) Cardiomyocytes
of noncardiac origin in myocardial biopsies of human transplanted hearts. Circulation
106:31-35
71. Poss KD, Wilson LG, Keating MT (2002) Heart regeneration in zebrafish. Science
298:2188-2190
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