Challenges in identifying the best source of stem cells …

Posted: October 25, 2015 at 2:44 am

Effat MA: Pathophysiology of ischemic heart disease: an overview.

AACN Clin Issues 1995, 6:369-74. PubMedAbstract | PublisherFullText

Chi NC, Karliner JS: Molecular determinants of responses to myocardial ischemia/reperfusion injury: focus on hypoxia-inducible and heat shock factors.

Cardiovasc Res 2004, 61:437-47. PubMedAbstract | PublisherFullText

Frangogiannis NG: The immune system and cardiac repair.

Pharmacol Res 2008, 58:88-111. PubMedAbstract | PublisherFullText

Ghadge SK, Muhlstedt S, Ozcelik C, Bader M: SDF-1alpha as a therapeutic stem cell homing factor in myocardial infarction.

Pharmacol Therapeut 2011, 129:97-108.

Hartwell D, Colquitt J, Loveman E, Clegg AJ, Brodin H, Waugh N, et al.: Clinical effectiveness and cost-effectiveness of immediate angioplasty for acute myocardial infarction: systematic review and economic evaluation.

Health Technol Assess 2005, 9:1-99.

Evans RW: Socioeconomic aspects of heart transplantation.

Curr Opin Cardiol 1995, 10:169-79. PubMedAbstract | PublisherFullText

Segers VF, Lee RT: Stem-cell therapy for cardiac disease.

Nature 2008, 451:937-42. PubMedAbstract | PublisherFullText

Gnecchi M, Zhang Z, Ni A, Dzau VJ: Paracrine mechanisms in adult stem cell signaling and therapy.

Circ Res 2008, 103:1204-19. PubMedAbstract | PublisherFullText

Manuilova ES, Gordeeva OF, Grivennikov IA, Ozernyuk ND: Embryonic stem cells: spontaneous and directed differentiation.

Biol Bull Russ Acad Sci 2001, 28:595-600.

Li R, Xue T, Cho H, Akar F, Tsang S, Jones S, et al.: Functional integration of electrically active cardiac derivatives from genetically engineered human embryonic stem cells with quiescent recipient ventricular cardiomyocytes: insights into the development of cell-based pacemakers.

Circulation 2005, 111:11-20. PubMedAbstract | PublisherFullText

Chen A, Ting S, Seow J, Reuveny S, Oh S. Considerations in designing systems for large scale production of human cardiomyocytes from pluripotent stem cells. Stem Cell Res Ther. 2014;5:122.

Bernstein HS. Cardiac repair and restoration using human embryonic stem cells. Regen Med. 2012;7:697.

He W, Ye L, Li S, Liu H, Wang Q, Fu X, et al.: Stirred suspension culture improves embryoid body formation and cardiogenic differentiation of genetically modified embryonic stem cells.

Biol Pharmaceut Bull 2012, 35:308-16.

Chong JJ, Yang X, Don CW, Minami E, Liu YW, Weyers JJ, et al.: Human embryonic-stem-cell-derived cardiomyocytes regenerate non-human primate hearts.

Nature 2014, 510:273-7. PubMedAbstract | PublisherFullText

Robertson JA: Human embryonic stem cell research: ethical and legal issues.

Nat Rev Genet 2001, 2:74-8. PubMedAbstract | PublisherFullText

Dhar D, Hsi-en HJ: Stem cell research policies around the world.

Yale J Biol Med 2009, 82:113-5. PubMedAbstract | PublisherFullText

Marelli D, Desrosiers C, el-Alfy M, Kao RL, Chiu RC: Cell transplantation for myocardial repair: an experimental approach.

Cell Transplant 1992, 1:383-90. PubMedAbstract | PublisherFullText

Reinecke H, Poppa V, Murry CE: Skeletal muscle stem cells do not transdifferentiate into cardiomyocytes after cardiac grafting.

J Mol Cell Cardiol 2002, 34:241-9. PubMedAbstract | PublisherFullText

Pagani FD, DerSimonian H, Zawadzka A, Wetzel K, Edge AS, Jacoby DB, et al.: Autologous skeletal myoblasts transplanted to ischemia-damaged myocardium in humans. Histological analysis of cell survival and differentiation.

J Am Coll Cardiol 2003, 41:879-88. PubMedAbstract | PublisherFullText

Menasche P, Alfieri O, Janssens S, McKenna W, Reichenspurner H, Trinquart L, et al.: The Myoblast Autologous Grafting in Ischemic Cardiomyopathy (MAGIC) trial: first randomized placebo-controlled study of myoblast transplantation.

Circulation 2008, 117:1189-200. PubMedAbstract | PublisherFullText

Roell W, Lewalter T, Sasse P, Tallini YN, Choi BR, Breitbach M, et al.: Engraftment of connexin 43-expressing cells prevents post-infarct arrhythmia.

Nature 2007, 450:819-24. PubMedAbstract | PublisherFullText

Fernandes S, Rijen HVMV, Forest V, Evain S, Leblond A, Mrot J, et al.: Cardiac cell therapy: overexpression of connexin43 in skeletal myoblasts and prevention of ventricular arrhythmias.

J Cell Mol Med 2009, 13:3703-12. PubMedAbstract | PublisherFullText

Orlic D, Kajstura J, Chimenti S, Jakoniuk I, Anderson S, Li B, et al.: Bone marrow cells regenerate infarcted myocardium.

Nature 2001, 410:701-5. PubMedAbstract | PublisherFullText

Murry C, Soonpaa M, Reinecke H, Nakajima H, Rubart M, Pasumarthi K, et al.: Haematopoietic stem cells do not transdifferentiate into cardiac myocytes in myocardial infarcts.

Nature 2004, 428:664-8. PubMedAbstract | PublisherFullText

Fukuda K, Fujita J: Mesenchymal, but not hematopoietic, stem cells can be mobilized and differentiate into cardiomyocytes after myocardial infarction in mice.

Kidney Int 2005, 68:1940-3. PubMedAbstract | PublisherFullText

Nygren JM, Jovinge S, Breitbach M, Sawen P, Roll W, Hescheler J, et al.: Bone marrow-derived hematopoietic cells generate cardiomyocytes at a low frequency through cell fusion, but not transdifferentiation.

Nat Med 2004, 10:494-501. PubMedAbstract | PublisherFullText

Balsam LB, Wagers AJ, Christensen JL, Kofidis T, Weissman IL, Robbins RC: Haematopoietic stem cells adopt mature haematopoietic fates in ischaemic myocardium.

Nature 2004, 428:668-73. PubMedAbstract | PublisherFullText

Yin AH, Miraglia S, Zanjani ED, Almeida-Porada G, Ogawa M, Leary AG, et al.: AC133, a novel marker for human hematopoietic stem and progenitor cells.

Blood 1997, 90:5002-12. PubMedAbstract | PublisherFullText

Sidney LE, Branch MJ, Dunphy SE, Dua HS, Hopkinson A: Concise review: Evidence for CD34 as a common marker for diverse progenitors.

Stem Cells 2014, 32:1380-9. PubMedAbstract | PublisherFullText

Krbling M, Katz RL, Khanna A, Ruifrok AC, Rondon G, Albitar M, et al.: Hepatocytes and epithelial cells of donor origin in recipients of peripheral-blood stem cells.

N Engl J Med 2002, 346:738-46. PubMedAbstract | PublisherFullText

Yeh ET, Zhang S, Wu HD, Korbling M, Willerson JT, Estrov Z: Transdifferentiation of human peripheral blood CD34+enriched cell population into cardiomyocytes, endothelial cells, and smooth muscle cells in vivo.

Circulation 2003, 108:2070-3. PubMedAbstract | PublisherFullText

Norol F, Bonnet N, Peinnequin A, Chretien F, Legrand R, Isnard R, et al.: GFP-transduced CD34+ and Lin- CD34- hematopoietic stem cells did not adopt a cardiac phenotype in a nonhuman primate model of myocardial infarct.

Exp Hematol 2007, 35:653-61. PubMedAbstract | PublisherFullText

Arnous S, Mozid A, Martin J, Mathur A: Bone marrow mononuclear cells and acute myocardial infarction.

Stem Cell Res Ther 2012, 3:2. PubMedAbstract | PublisherFullText

Clifford DM, Fisher SA, Brunskill SJ, Doree C, Mathur A, Watt S, et al. Stem cell treatment for acute myocardial infarction. Cochrane Database Syst Rev. 2012;2:Cd006536.

Fisher SA, Brunskill SJ, Doree C, Mathur A, Taggart DP, Martin-Rendon E: Stem cell therapy for chronic ischaemic heart disease and congestive heart failure.

Cochrane Database Syst Rev 2014, 4:CD007888. PubMedAbstract | PublisherFullText

Uemura R, Xu M, Ahmad N, Ashraf M: Bone marrow stem cells prevent left ventricular remodelling of ischemic heart through paracrine signalling.

Circ Res 2006, 98:1414-21. PubMedAbstract | PublisherFullText

Nowbar AN, Mielewczik M, Karavassilis M, Dehbi H-M, Shun-Shin MJ, Jones S, et al.: Discrepancies in autologous bone marrow stem cell trials and enhancement of ejection fraction (DAMASCENE): weighted regression and meta-analysis.

BMJ 2014, 348:g2688. PubMedAbstract | PublisherFullText

Abbott A: Doubts over heart stem-cell therapy.

Nature 2014, 509:15-6. PubMedAbstract | PublisherFullText

Pittenger MF: Multilineage potential of adult human mesenchymal stem cells.

Science 1999, 284:143-7. PubMedAbstract | PublisherFullText

Long X, Olszewski M, Huang W, Kletzel M: Neural cell differentiation in vitro from adult human bone marrow mesenchymal stem cells.

Stem Cells Dev 2005, 14:65-9. PubMedAbstract | PublisherFullText

Dominici M, Le Blanc K, Mueller I, Slaper-Cortenbach I, Marini F, Krause D, et al.: Minimal criteria for defining multipotent mesenchymal stromal cells. The International Society for Cellular Therapy position statement.

Cytotherapy 2006, 8:315-7. PubMedAbstract | PublisherFullText

Kuraitis D, Ruel M, Suuronen EJ: Mesenchymal stem cells for cardiovascular regeneration.

Cardiovasc Drugs Ther 2011, 25:349-62. PubMedAbstract | PublisherFullText

Miyahara Y, Nagaya N, Kataoka M, Yanagawa B, Tanaka K, Hao H, et al.: Monolayered mesenchymal stem cells repair scarred myocardium after myocardial infarction.

Nat Med 2006, 12:459-65. PubMedAbstract | PublisherFullText

Takahashi K, Yamanaka S: Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors.

Cell 2006, 126:663-76. PubMedAbstract | PublisherFullText

Lee J-H, Lee JB, Shapovalova Z, Fiebig-Comyn A, Mitchell RR, Laronde S, et al.: Somatic transcriptome priming gates lineage-specific differentiation potential of human-induced pluripotent stem cell states.

Nat Commun 2014, 5:5605. PubMedAbstract | PublisherFullText

Martens A, Kensah G, Rojas S, Rotrmel A, Baraki H, Haverich A, et al.: Induced pluripotent stem cell (iPSC)-derived cardiomyocytes engraft and improve heart function in a mouse model of acute myocardial infarction.

Thorac Cardiovasc Surg 2012, 60:PP26.

Yu SP, Wei Z, Wei L: Preconditioning strategy in stem cell transplantation therapy.

Transl Stroke Res 2013, 4:76-88. PubMedAbstract | PublisherFullText

Rais Y, Zviran A, Geula S, Gafni O, Chomsky E, Viukov S, et al.: Deterministic direct reprogramming of somatic cells to pluripotency.

Nature 2013, 502:65-70. PubMedAbstract | PublisherFullText

Riggs JW, Barrilleaux BL, Varlakhanova N, Bush KM, Chan V, Knoepfler PS: Induced pluripotency and oncogenic transformation are related processes.

Stem Cells Dev 2013, 22:37-50. PubMedAbstract | PublisherFullText

Christoforou N, Liau B, Chakraborty S, Chellapan M, Bursac N, Leong KW: Induced pluripotent stem cell-derived cardiac progenitors differentiate to cardiomyocytes and form biosynthetic tissues.

PLoS One 2013, 8:e65963. PubMedAbstract | PublisherFullText

Fisher MB, Mauck RL: Tissue engineering and regenerative medicine: recent innovations and the transition to translation.

Tissue Eng Part B Rev 2013, 19:1-13. PubMedAbstract | PublisherFullText

Beltrami AP, Urbanek K, Kajstura J, Yan SM, Finato N, Bussani R, et al.: Evidence that human cardiac myocytes divide after myocardial infarction.

Read more here:
Challenges in identifying the best source of stem cells ...

Related Posts

Comments are closed.

Archives