Biomedical Engineering Reference
In-Depth Information
Linke A, Müller P, Nurzynska D, et al. Stem cells in the dog heart are self-renewing, clonogenic,
and multipotent and regenerate infarcted myocardium, improving cardiac function. PNAS
2005;102:8966-71.
Lu SJ, Feng Q, Caballero S, et al. Generation of functional hemangioblasts from human embry-
onic stem cells. Nat Methods 2007;4:501-9.
Lushaj EB, Anstadt E, Haworth R, et al. Mesenchymal stromal cells are present in the heart and
promote growth of adult stem cells in vitro. Cytotherapy 2010 Nov 19. [Epub ahead of print].
Menard C, Hagege AA, Agbulut O, et al. Transplantation of cardiac-committed mouse embry-
onic stem cells to infarcted sheep myocardium: a preclinical study. Lancet 2005; 366:
1005-1012.
Menasché P, Alfieri O, Janssens S, et al. The Myoblast Autologous Grafting in Ischemic
Cardiomyopathy (MAGIC) trial: first randomized placebo-controlled study of myoblast trans-
plantation. Circulation 2008;117:1189-200.
Mund JA, Ingram DA, Yoder MC, Case J. Endothelial progenitor cells and cardiovascular
cell-based therapies. Cytotherapy 2009;11:103-113.
Murry CE, Pu WT. Reprogramming fibroblasts into cardiomyocytes. N Engl J Med 2011;
364:177-8.
Napoli C, Williams-Ignarro S, de Nigris F, et al. Beneficial effects of concurrent autologous bone
marrow cell therapy and metabolic intervention in ischemia-induced angiogenesis in the
mouse hindlimb. PNAS 2005;102:17202-6.
Okada M, Payne TR, Zheng B, et al. Myogenic Endothelial Cells Purified From Human Skeletal
Muscle Improve Cardiac Function After Transplantation Into Infarcted Myocardium. J Am
Coll Cardiol 2008;52:1869-1880.
Ott HC, Matthiesen TS, Brechtken J, et al. The adult human heart as a source for stem cells: repair
strategies with embryonic-like progenitor cells. Nat Clin Pract Cardiovasc Med 2007;4 Suppl
1(S1):S27-S39.
Radisic M, Park H, Chen F, et al. Biomimetic Approach to Cardiac Tissue Engineering: Oxygen
Carriers and Channeled Scaffolds. Tissue Eng 2006;12:2077-91.
Rey S, Lee K, Wang CJ, et al. Synergistic effect of HIF-1a gene therapy and HIF-1-activated bone
marrow-derived
angiogenic
cells
in
a
mouse
model
of
limb
ischemia.
PNAS
2009;106:20399-404.
Roche R, Hoareau L, Mounet F, Festy F. Adult stem cells for cardiovascular diseases: the adipose
tissue potential. Expert Opin Biol Ther 2007;7:791-798.
Sadek H, Hannack B, Choe E, et al. Cardiogenic small molecules that enhance myocardial repair
by stem cells. PNAS 2008;105:6063-8.
Schachinger V, Erbs S, Elsässer A, et al. Intracoronary Bone Marrow-Derived Progenitor Cells in
Acute Myocardial Infarction. NEJM 2006;355: 1210-1221.
Schmidt D, Mol A, Odermatt B, et al. Engineering of Biologically Active Living Heart Valve
Leaflets Using Human Umbilical Cord-Derived Progenitor Cells. Tissue Eng 2006;
12: 3223-3232.
Shmelkov SV, Meeus S, Moussazadeh N, et al. Cytokine preconditioning promotes codifferentia-
tion of human fetal liver CD133+ stem cells into angiomyogenic tissue. Circulation
2005;111:1175-83.
Singla DK, Hacker TA, Ma L, et al. Transplantation of embryonic stem cells into the infarcted
mouse heart: formation of multiple cell types. Journal of Molecular and Cellular Cardiology
2006;40:195-200.
Stamm C, Westphal B, Kleine HD, et al. Autologous bone-marrow stem-cell transplantation for
myocardial regeneration. Lancet 2003;361:45-6.
Strauer BE, Brehm M, Zeus T, et al. Regeneration of human infarcted heart muscle by intracoro-
nary autologous bone marrow cell transplantation in chronic coronary artery disease: the IACT
Study. J Am Coll Cardiol 2005;46:1651-8.
Strem BM, Zhu M, Alfonso Z, et al. Expression of Cardiomyocytic Markers on Adipose Tissue-
Derived Cells in a Murine Model of Acute Myocardial Injury. Cytotherapy 2005;7:282-291.
Search WWH ::




Custom Search