Sfoglia per Autore
Insertion/deletion polymorphism of the Angiotensin I-Converting Enzyme gene and risk of restenosis after directional coronary atherectomy followed by stent implantation
2000-01-01 Gnecchi, Massimiliano; Ferrario, M; Repetto, A; Canosi, U; Bramucci, E; Angoli, L; Bernardi, F; Merlini, Pa; Ardissino, D.
Long-term clinical outcome after directional coronary atherectomy followed by stem implantation
2001-01-01 Ardissino, D; Boschetti, E; Repetto, A; Brambilla, N; Bramucci, E; Ferrario, M; Canosi, U; Angoli, L; Gnecchi, Massimiliano; Tavazzi, L.
Insertion/deletion polymorfism of the angiotensin-I converting enzyme gene and cardiac allograft vasculopathy after heart transplantation
2001-01-01 Gnecchi, Massimiliano; Viganò, M; Boschetti, E; Bernardi, F; Ardissino, D; Gronda, E; Merlini, Pa; Canosi, U; Angoli, L; Tavazzi, L.
Insertion/deletion polymorphism of the Angiotensin I-Converting Enzyme gene and risk of restenosis after directional coronary atherectomy followed by stent implantation
2001-01-01 Gnecchi, Massimiliano; Ferrario, M; Repetto, A; Canosi, U; Bramucci, E; Angoli, L; Laudisa, Ml; Bernardi, F; Merlini, Pa; Ardissino, D.
Cytokine-mobilized bone marrow cells re-endothealize injured blood vessel and inhibit neointimal formation.
2003-01-01 Kong, D; Gnecchi, Massimiliano; Melo, Lg; Zhang, L; Pratt, Re; Dzau, V. J.
Genetically engineered mesenchymal stem cells expressing Akt exhibit improved glucose metabolism, resistance to apoptosis and markedly improved performance of infarcted rat hearts.
2003-01-01 Noiseux, N; Mangi, Aa; Gnecchi, Massimiliano; Pratt, Re; Zhang, L; Dzau, V. J.
Gene and cell-based therapies for cardiovascular diseases: current status and future directions
2004-01-01 Melo, Lg; Gnecchi, Massimiliano; Pachori, As; Wang, K; Dzau, Vj
Molecular and cell based therapies for protection, rescue and repair of ischemic myocardium: reasons for cautious optimism
2004-01-01 Melo, Lg; Pachori, As; Kong, D; Gnecchi, Massimiliano; Wang, K; Pratt, Re; Dzau, Vj
Mesenchymal stem cells overexpressing Akt exhibit enhanced glucose transport and resist hypoxia induced apoptosis
2004-01-01 Gnecchi, Massimiliano; Noiseux, N; Melo, Lg; Lopez Llasca, M; Pratt, Re; Dzau, V. J.
Cytokine-induced mobilization of circulating endothelial progenitor cells enhances repair of injured arteries
2004-01-01 Kong, D; Melo, Lg; Gnecchi, Massimiliano; Zhang, L; Mostoslavsky, G; Liew, Cc; Pratt, Re; Dzau, Vj
Endothelium targeted gene and cell based therapies for vascular diseases
2004-01-01 Melo, Lg; Gnecchi, Massimiliano; Pachori, As; Kong, D; Wang, K; Liu, X; Pratt, Re; Dzau, Vj
Gene and cell-based therapies for heart disease
2004-01-01 Melo, Lg; Pachori, As; Kong, D; Gnecchi, Massimiliano; Wang, K; Pratt, Re; Dzau, Vj
Injected adult bone marrow-derived stem cells fuse with cardiomyocytes in the infarcted heart
2004-01-01 Noiseux, N; Gnecchi, Massimiliano; Lopez Llasca, M; Pratt, R; Dzau, V. J.
Mesenchymal stem cells overesxpressing Akt prevent cardiac metabolic remodelling after infarction.
2004-01-01 Gnecchi, Massimiliano; He, H; Noiseux, N; Zhang, L; Melo, Lg; Pratt, Re; Ingwall, Js; Dzau, V. J.
Transplantation of Mesenchymal stem cells overexpressing Akt limits infarct size and prevents cardiac dysfunction as early as 3 days after infarction: evidence suggesting paracrine action rather than regeneration.
2004-01-01 Gnecchi, Massimiliano; He, H; Noiseux, N; Zhang, L; Melo, Lg; Pratt, Re; Ingwall, Js; Dzau, V. J.
Angiotensin-converting enzyme insertion/deletion polymorphism and risk of restenosis after directional coronary atherectomy followed by stent implantation
2004-01-01 Canosi, U; ANGELICA MERLINI, P; Bernardi, F; Repetto, A; Bramucci, E; Ferrario, M; Angoli, L; Gnecchi, Massimiliano; Ferraresi, P; Marchetti, G; Tavazzi, L; Ardissino, D.
Transplantation of bone marrow-derived cells expressing Akt into infarcted murine heart produces dramatic improvement in cardiac function despite infrequent cellular fusion.
2004-01-01 Noiseux, N; Lopez LLasca, M; Gnecchi, Massimiliano; Pratt, Re; Dzau, Vj:
Overexpression of Akt in mesenchymal stem cells improves ATP production under hypoxia by increasing glucose uptake and mitochondrial enzymes activity: a possible explanation for increased resistence to apoptosis.
2004-01-01 Gnecchi, Massimiliano; He, H; Noiseux, N; Morello, F; Pachori, A; Mirotsou, M; Melo, Lg; Lopez Llasca, M; Pratt, Re; Ingwall, Js; Dzau, V. J.
Therapeutic potential of endothelial progenitor cells in cardiovascular diseases
2005-01-01 Dzau, Vj; Gnecchi, Massimiliano; Pachori, A; Melo, Lg
Enhancing stem cell therapy efficacy through genetic modification
2005-01-01 Dzau, Vj; Pachori, A; Gnecchi, Massimiliano
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