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Open AccessJournal ArticleDOI

Transendocardial, Autologous Bone Marrow Cell Transplantation for Severe, Chronic Ischemic Heart Failure

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TLDR
The present study demonstrates the relative safety of intramyocardial injections of bone marrow–derived stem cells in humans with severe heart failure and the potential for improving myocardial blood flow with associated enhancement of regional and global left ventricular function.
Abstract
Background— This study evaluated the hypothesis that transendocardial injections of autologous mononuclear bone marrow cells in patients with end-stage ischemic heart disease could safely promote neovascularization and improve perfusion and myocardial contractility. Methods and Results— Twenty-one patients were enrolled in this prospective, nonrandomized, open-label study (first 14 patients, treatment; last 7 patients, control). Baseline evaluations included complete clinical and laboratory evaluations, exercise stress (ramp treadmill), 2D Doppler echocardiogram, single-photon emission computed tomography perfusion scan, and 24-hour Holter monitoring. Bone marrow mononuclear cells were harvested, isolated, washed, and resuspended in saline for injection by NOGA catheter (15 injections of 0.2 cc). Electromechanical mapping was used to identify viable myocardium (unipolar voltage ≥6.9 mV) for treatment. Treated and control patients underwent 2-month noninvasive follow-up, and treated patients alone underwen...

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Journal ArticleDOI

Advanced heart failure therapy adapted to hemodynamic objectives acquired from invasive hemodynamic monitoring

TL;DR: It was possible to reduce ventricular filling pressures to significantly lower values, obtaining a significant improvement of cardiac index, systemic vascular resistance index and pulmonary artery mean pressure, by using significantly higher doses of vasodilators.
Journal ArticleDOI

Improvement of exercise-induced cardiac deformation after cell therapy for severe chronic ischemic heart failure.

TL;DR: CTX may improve cardiac deformation and MR during exercise in patients with severe chronic heart failure when viable areas are targeted, and was not apparent at rest and more pronounced with inferior viability.
Journal ArticleDOI

Gene- and cell-based therapies for cardiovascular diseases: current status and future directions

TL;DR: The successful translation of experimental therapies into clinical practice will require safer and more effective vectors and delivery tools, a deeper knowledge of progenitor cell biology and, finally, the documentation of efficacy and safety through multicentre randomized trials.
Journal ArticleDOI

Engraftment of pre-differentiated stem cells into cardiomyocytes in an animal model of ischemic cardiopathy

TL;DR: The observed recovery does not demonstrate new cardiac muscle formation, but events suggest that pre-differentiated stem cells conserve some muscle characteristic traits in situ that at least last for two weeks after cell transplantation.
Dissertation

Cèl·lules mare mesenquimals humanes: aïllament, caracterització i potencialitat per a la regeneració cardíaca

TL;DR: In this paper, the authors show that the CT-based approach can be used to reparar the miocardi danyat (cardiomioplastia cel·lular).
References
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Journal ArticleDOI

Isolation of putative progenitor endothelial cells for angiogenesis.

TL;DR: It is suggested that EC progenitors may be useful for augmenting collateral vessel growth to ischemic tissues (therapeutic angiogenesis) and for delivering anti- or pro-angiogenic agents, respectively, to sites of pathologic or utilitarianAngiogenesis.
Journal ArticleDOI

Bone marrow cells regenerate infarcted myocardium

TL;DR: It is indicated that locally delivered bone marrow cells can generate de novo myocardium, ameliorating the outcome of coronary artery disease.
Journal ArticleDOI

Neovascularization of ischemic myocardium by human bone-marrow–derived angioblasts prevents cardiomyocyte apoptosis, reduces remodeling and improves cardiac function

TL;DR: It is shown that bone marrow from adult humans contains endothelial precursors with phenotypic and functional characteristics of embryonic hemangioblasts, and that these can be used to directly induce new blood vessel formation in the infarct-bed and proliferation of preexisting vasculature after experimental myocardial infarction.
Journal ArticleDOI

Human Mesenchymal Stem Cells Differentiate to a Cardiomyocyte Phenotype in the Adult Murine Heart

TL;DR: The persistence of the engrafted hMSCs and their in situ differentiation in the heart may represent the basis for using these adult stem cells for cellular cardiomyoplasty.
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