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August 14, 2001Proceedings of the National Academy of Sciences2,092 citationsOpen Access

Mobilized bone marrow cells repair the infarcted heart, improving function and survival

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DODonald OrlicJKJan KajsturaSCStefano Chimenti

Key Result

Cytokine-mediated mobilization of bone marrow cells in acute myocardial infarction decreased mortality by 68% and infarct size by 40% at 27 days.

Structured PICO

Does mobilization of primitive bone marrow cells by stem cell factor and granulocyte-colony stimulating factor improve function and survival in an animal model of acute myocardial infarction?

P
Population
Animal model with acute myocardial infarct
I
Intervention
Mobilization of primitive bone marrow cells by stem cell factor and granulocyte-colony stimulating factor
O
Outcome
Tissue regeneration, mortality, infarct size, cavitary dilation, diastolic stress, ejection fraction, and hemodynamics

Mobilization of primitive bone marrow cells by cytokines offers a potential noninvasive strategy for myocardial regeneration after ischemic injury.

Abstract

Attempts to repair myocardial infarcts by transplanting cardiomyocytes or skeletal myoblasts have failed to reconstitute healthy myocardium and coronary vessels integrated structurally and functionally with the remaining viable portion of the ventricular wall. The recently discovered growth and transdifferentiation potential of primitive bone marrow cells (BMC) prompted us, in an earlier study, to inject in the border zone of acute infarcts Lin(-) c-kit(POS) BMC from syngeneic animals. These BMC differentiated into myocytes and vascular structures, ameliorating the function of the infarcted heart. Two critical determinants seem to be required for the transdifferentiation of primitive BMC: tissue damage and a high level of pluripotent cells. On this basis, we hypothesized here that BMC, mobilized by stem cell factor and granulocyte-colony stimulating factor, would home to the infarcted region, replicate, differentiate, and ultimately promote myocardial repair. We report that, in the presence of an acute myocardial infarct, cytokine-mediated translocation of BMC resulted in a significant degree of tissue regeneration 27 days later. Cytokine-induced cardiac repair decreased mortality by 68%, infarct size by 40%, cavitary dilation by 26%, and diastolic stress by 70%. Ejection fraction progressively increased and hemodynamics significantly improved as a consequence of the formation of 15 x 10(6) new myocytes with arterioles and capillaries connected with the circulation of the unaffected ventricle. In conclusion, mobilization of primitive BMC by cytokines might offer a noninvasive therapeutic strategy for the regeneration of the myocardium lost as a result of ischemic heart disease and, perhaps, other forms of cardiac pathology.

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Cite This Study

Orlic et al. (2001) studied Acute myocardial infarct. Stem cell factor and granulocyte-colony stimulating factor was evaluated on Mortality, infarct size, cavitary dilation, and diastolic stress. Cytokine-mediated mobilization of bone marrow cells in acute myocardial infarction decreased mortality by 68% and infarct size by 40% at 27 days.

synapsesocial.com/papers/6a07b4fa15d371b388386914https://doi.org/10.1073/pnas.181177898
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