Endothelial Cell Coculture Within Tissue-Engineered Cardiomyocyte Sheets Enhances Neovascularization and Improves Cardiac Function of Ischemic Hearts
暂无分享,去创建一个
Masayuki Yamato | Teruo Okano | Eiji Kobayashi | Hiromi Kurosawa | Tatsuya Shimizu | Hidekazu Sekine | Sachiko Sekiya | T. Okano | Tatsuya Shimizu | M. Yamato | Joseph Yang | E. Kobayashi | H. Kurosawa | H. Sekine | Joseph Yang | Kyoko Hobo | Sachiko Sekiya | K. Hobo | Kyoko Hobo
[1] Andreas Hess,et al. Engineered heart tissue grafts improve systolic and diastolic function in infarcted rat hearts , 2006, Nature Medicine.
[2] Bernd Hertenstein,et al. Intracoronary autologous bone-marrow cell transfer after myocardial infarction: the BOOST randomised controlled clinical trial , 2004, The Lancet.
[3] Richard T. Lee,et al. Endothelial Cells Promote Cardiac Myocyte Survival and Spatial Reorganization: Implications for Cardiac Regeneration , 2004, Circulation.
[4] R Langer,et al. Tissue engineering of functional cardiac muscle: molecular, structural, and electrophysiological studies. , 2001, American journal of physiology. Heart and circulatory physiology.
[5] A. Hagège,et al. Myoblast transplantation for heart failure , 2001, The Lancet.
[6] Masayuki Yamato,et al. Long-term survival and growth of pulsatile myocardial tissue grafts engineered by the layering of cardiomyocyte sheets. , 2006, Tissue engineering.
[7] Masayuki Yamato,et al. Reconstruction of functional tissues with cell sheet engineering. , 2007, Biomaterials.
[8] W. Zimmermann,et al. Tissue Engineering of a Differentiated Cardiac Muscle Construct , 2002, Circulation research.
[9] Hidezo Mori,et al. Monolayered mesenchymal stem cells repair scarred myocardium after myocardial infarction , 2006, Nature Medicine.
[10] C. Murry,et al. Regenerating the heart , 2005, Nature Biotechnology.
[11] Teruo Okano,et al. Repair of impaired myocardium by means of implantation of engineered autologous myoblast sheets. , 2005, The Journal of thoracic and cardiovascular surgery.
[12] T. Okano,et al. Tissue Cardiomyoplasty Using Bioengineered Contractile Cardiomyocyte Sheets to Repair Damaged Myocardium: Their Integration with Recipient Myocardium , 2005, Transplantation.
[13] Mitsuo Umezu,et al. Fabrication of Pulsatile Cardiac Tissue Grafts Using a Novel 3-Dimensional Cell Sheet Manipulation Technique and Temperature-Responsive Cell Culture Surfaces , 2002, Circulation research.
[14] R. Weisel,et al. Survival and function of bioengineered cardiac grafts. , 1999, Circulation.
[15] Masayuki Yamato,et al. Bioengineered cardiac cell sheet grafts have intrinsic angiogenic potential. , 2006, Biochemical and biophysical research communications.
[16] D L Eckberg,et al. Mathematical treatment of autonomic oscillations. , 1999, Circulation.
[17] Ching-Pin Chang,et al. Injectable bioartificial myocardial tissue for large-scale intramural cell transfer and functional recovery of injured heart muscle. , 2004, The Journal of thoracic and cardiovascular surgery.
[18] T. Okano,et al. Cardiomyocyte bridging between hearts and bioengineered myocardial tissues with mesenchymal transition of mesothelial cells. , 2006, The Journal of heart and lung transplantation : the official publication of the International Society for Heart Transplantation.
[19] A. Wear. CIRCULATION , 1964, The Lancet.
[20] J. Leor,et al. Bioengineered Cardiac Grafts: A New Approach to Repair the Infarcted Myocardium? , 2000, Circulation.