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Granulocyte colony-stimulating factor mobilized bone marrow stem cells treat the acute myocardial infarction

Yunxian Chen

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Abstract

AIM: To investigate the effects of granulocyte colony-stimulating factor (G-CSF)-mobilized bone marrow stem cells on treatment of the myocardial infarction in experimental rats. METHODS: Three hours after injected with isoprenaline(ISO) interaperitoneally to develop acute ischemic model, rats' bone marrow stem cells were mobilized by G-CSF and migrated to the site of myocardial infarction. The hearts were harvested from 24 hours to 2 weeks after administration of ISO for histopathological examination. RESULTS: 24 hours after administration of ISO , myocardial infarct zones scattered in the pallium of the control group ,there were a large amoumt of inflammatory cells infiltration around the infarct zones and majority of them were neutrophils. The infarction in the G-CSF treatment group was milder, majority of the infiltrative cells were monocytoid; 48 hours after administration of ISO, infarct zones expanded greatly in control group, while that of the G-CSF treatment group increased just mildly; 2 weeks after administration of ISO, there was no significant scar in the G-CSF treatment group. We also found the regeneration of myocytes in the pallium. CONCLUSION: G-CSF treatment protected the ischemic myocardium and it may be used to treat the acute myocardial infarction.

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AIM: To investigate the effects of granulocyte colony-stimulating factor (G-CSF)-mobilized bone marrow stem cells on treatment of the myocardial infarction in experimental rats. METHODS: Three hours after injected with isoprenaline(ISO) interaperitoneally to develop acute ischemic model, rats' bone marrow stem cells were mobilized by G-CSF and migrated to the site of myocardial infarction. The hearts were harvested from 24 hours to 2 weeks after administration of ISO for histopathological examination. RESULTS: 24 hours after administration of ISO , myocardial infarct zones scattered in the pallium of the control group ,there were a large amoumt of inflammatory cells infiltration around the infarct zones and majority of them were neutrophils. The infarction in the G-CSF treatment group was milder, majority of the infiltrative cells were monocytoid; 48 hours after administration of ISO, infarct zones expanded greatly in control group, while that of the G-CSF treatment group increased just mildly; 2 weeks after administration of ISO, there was no significant scar in the G-CSF treatment group. We also found the regeneration of myocytes in the pallium. CONCLUSION: G-CSF treatment protected the ischemic myocardium and it may be used to treat the acute myocardial infarction.

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Available abstract

AIM: To investigate the effects of granulocyte colony-stimulating factor (G-CSF)-mobilized bone marrow stem cells on treatment of the myocardial infarction in experimental rats. METHODS: Three hours after injected with isoprenaline(ISO) interaperitoneally to develop acute ischemic model, rats' bone marrow stem cells were mobilized by G-CSF and migrated to the site of myocardial infarction. The hearts were harvested from 24 hours to 2 weeks after administration of ISO for histopathological examination. RESULTS: 24 hours after administration of ISO , myocardial infarct zones scattered in the pallium of the control group ,there were a large amoumt of inflammatory cells infiltration around the infarct zones and majority of them were neutrophils. The infarction in the G-CSF treatment group was milder, majority of the infiltrative cells were monocytoid; 48 hours after administration of ISO, infarct zones expanded greatly in control group, while that of the G-CSF treatment group increased just mildly; 2 weeks after administration of ISO, there was no significant scar in the G-CSF treatment group. We also found the regeneration of myocytes in the pallium. CONCLUSION: G-CSF treatment protected the ischemic myocardium and it may be used to treat the acute myocardial infarction.

Key concepts: Medicine, Granulocyte colony-stimulating factor, Myocardial infarction, Bone marrow, Bone Marrow Stem Cell, Stem cell, Granulocyte, Infarction

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