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- W2248975739 abstract "Stem cell therapy has several mechanisms for repairing damaged myocardium and improving functional capacity of the left ventricle reduced by myocardial infarction. Despite the increase in scientific data, details of these mechanisms are still partly unexplained. The optimal number and type of stem cells as well as timing and route of transplantation are unclear. The purpose of this study was to clarify therapeutic potential of bone marrow-derived stem cells (BM-MNCs) using experimental porcine acute myocardial infarction model. Myocardial infarction was caused by occluding the circumflex coronary artery for 90 minutes. Immediately after reperfusion BMMNCs were injected directly into the damaged myocardium or by angioplastic catheter into the infarct-related coronary artery. Left ventricular ejection fraction (LVEF) improved 3 weeks after infarction in animals that received BM-MNCs intramyocardially whereas in animals that received intracoronary transplantation or saline LVEF failed to recover. Radionuclide imaging and histological analysis showed intramyocardially transplanted cells remaining in the infarcted myocardium, whereas after intracoronary transplantation a major fraction of cells flushed into the lungs. In histological analysis minor fraction of BM-MNCs showed differentiation towards myocyte form and proliferation. Significantly lower collagen density and higher levels of smooth muscle actin and skeletal muscle actin were detected in the infarcted myocardium after intramyocardial or intracoronary BM-MNC transplantation compared with animals that received saline. Proteomic screening indicated that mitochondrial energy metabolism recovered after BM-MNC transplantation. Additionally, two proteins showed elevated levels after BM-MNC transplantation, which indicates that they are actively involved in the pathological mechanisms. BM-MNCs appear to enhance recovery of the infarcted myocardium by restoring the reduced LVEF after infarction. Intramyocardial stem cell therapy showed best results in recovery. Stem cell therapy moulds the infarct scar by reducing collagen density and by increasing components typical for muscle cells. The effects of stem cell therapy are mainly paracrine." @default.
- W2248975739 created "2016-06-24" @default.
- W2248975739 creator A5049594255 @default.
- W2248975739 date "2011-01-01" @default.
- W2248975739 modified "2023-09-27" @default.
- W2248975739 title "Bone marrow-derived stem cell therapy in acute myocardial infarction : an experimental porcine model" @default.
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