Abstract BACKGROUND: Use of peripheral blood- or bone marrow-derived progenitors for ischemic heart repair is a feasible option to induce neo-vascularization in ischemic tissues. These cells, named Endothelial Progenitors Cells (EPCs), have been extensively characterized phenotypically and functionally. The clinical efficacy of cardiac repair by EPCs cells remains, however, limited, due to cell autonomous defects as a consequence of risk factors. The devise of "enhancement" strategies has been therefore sought to improve repair ability of these cells and increase the clinical benefit. PRINCIPAL FINDINGS: Pharmacologic inhibition of histone deacetylases (HDACs) is known to enhance hematopoietic stem cells engraftment by improvement of self renewal and inhibition of differentiation in the presence of mitogenic stimuli in vitro. In the present study cord blood-derived CD34(+) were pre-conditioned with the HDAC inhibitor Valproic Acid. This treatment affected stem cell growth and gene expression, and improved ischemic myocardium protection in an immunodeficient mouse model of myocardial infarction. CONCLUSIONS: Our results show that HDAC blockade leads to phenotype changes in CD34(+) cells with enhanced self renewal and cardioprotection.

Burba, I., Colombo, G., Staszewsky, L., De Simone, M., Devanna, P., Nanni, S., Avitabile, D., Molla, F., Cosentino, S., Russo, I., De Angelis, N., Soldo, A., Biondi, A., Gambini, E., Gaetano, C., Farsetti, A., Pompilio, G., Latini, R., Capogrossi, M., Pesce, M., Histone deacetylase inhibition enhances self renewal and cardioprotection by human cord blood-derived CD34 cells., <<PLOS ONE>>, 2011; 6 (7): 22158-22175. [doi:10.1371/journal.pone.0022158] [http://hdl.handle.net/10807/11666]

Histone deacetylase inhibition enhances self renewal and cardioprotection by human cord blood-derived CD34 cells.

Nanni, Simona;
2011

Abstract

Abstract BACKGROUND: Use of peripheral blood- or bone marrow-derived progenitors for ischemic heart repair is a feasible option to induce neo-vascularization in ischemic tissues. These cells, named Endothelial Progenitors Cells (EPCs), have been extensively characterized phenotypically and functionally. The clinical efficacy of cardiac repair by EPCs cells remains, however, limited, due to cell autonomous defects as a consequence of risk factors. The devise of "enhancement" strategies has been therefore sought to improve repair ability of these cells and increase the clinical benefit. PRINCIPAL FINDINGS: Pharmacologic inhibition of histone deacetylases (HDACs) is known to enhance hematopoietic stem cells engraftment by improvement of self renewal and inhibition of differentiation in the presence of mitogenic stimuli in vitro. In the present study cord blood-derived CD34(+) were pre-conditioned with the HDAC inhibitor Valproic Acid. This treatment affected stem cell growth and gene expression, and improved ischemic myocardium protection in an immunodeficient mouse model of myocardial infarction. CONCLUSIONS: Our results show that HDAC blockade leads to phenotype changes in CD34(+) cells with enhanced self renewal and cardioprotection.
2011
AREA06 - SCIENZE MEDICHE
Pubblicazione su rivista con Impact Factor
Inglese
Articolo in rivista
Inglese
Histone deacetylase
cardioprotection
Settore MED/50 - SCIENZE TECNICHE MEDICHE APPLICATE
Public Library of Science
6
7
2011
Epub
22158
22175
18
Esperti anonimi
Articolo su rivista scientifica / specializzata
online
info:eu-repo/semantics/article
Burba, I., Colombo, G., Staszewsky, L., De Simone, M., Devanna, P., Nanni, S., Avitabile, D., Molla, F., Cosentino, S., Russo, I., De Angelis, N., Soldo, A., Biondi, A., Gambini, E., Gaetano, C., Farsetti, A., Pompilio, G., Latini, R., Capogrossi, M., Pesce, M., Histone deacetylase inhibition enhances self renewal and cardioprotection by human cord blood-derived CD34 cells., <<PLOS ONE>>, 2011; 6 (7): 22158-22175. [doi:10.1371/journal.pone.0022158] [http://hdl.handle.net/10807/11666]
open
262
Burba, I; Colombo, Gi; Staszewsky, Li; De Simone, M; Devanna, P; Nanni, Simona; Avitabile, D; Molla, F; Cosentino, S; Russo, I; De Angelis, N; Soldo, ...espandi
20
art_per_29
03. Contributo in rivista::Articolo in rivista, Nota a sentenza
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