Human adipose tissue-derived mesenchymal stem cells (ADMSCs) are considered eligible candidates for cardiovascular stem cell therapy applications due to their cardiac transdifferentiation potential and immunotolerance. Over the years, the in vitro culture of ADMSCs by platelet lysate (PL), a hemoderivate containing numerous growth factors and cytokines derived from platelet pools, has allowed achieving a safe and reproducible methodology to obtain high cell yield prior to clinical administration. Nevertheless, the biological properties of PL are still to be fully elucidated. In this brief report we show the potential ability of PL to induce a permissive state of cardiac-like transdifferentiation and to cause epigeneticmodifications.RTPCRresults indicate an upregulation of Cx43, SMA, c-kit, andThy-1 confirmed by immunofluorescence staining, compared to standard cultures with foetal bovine serum. Moreover, PL-cultured ADMSCs exhibit a remarkable increase of both acetylated histones 3 and 4, with a patient-dependent time trend, andmethylation at lysine 9 on histone 3 preceding the acetylation. Expression levels of p300 and SIRT-1, twomajor regulators of histone 3, are also upregulated after treatment with PL. In conclusion, PL could unravel novel biological properties beyond its routine employment in noncardiac applications, providing new insights into the plasticity of human ADMSCs.

The potential of GMP-compliant platelet lysate to induce a permissive state for cardiovascular transdifferentiation in human mediastinal adipose tissue-derived mesenchymal stem cells / Siciliano, Camilla; Chimenti, Isotta; Bordin, Antonella; Ponti, Donatella; Iudicone, Paola; Peruzzi, Mariangela; Rendina, Erino Angelo; Calogero, Antonella; Pierelli, Luca; Ibrahim, Mohsen; De Falco, Elena. - In: BIOMED RESEARCH INTERNATIONAL. - ISSN 2314-6141. - ELETTRONICO. - (2015), pp. 1-10. [10.1155/2015/162439]

The potential of GMP-compliant platelet lysate to induce a permissive state for cardiovascular transdifferentiation in human mediastinal adipose tissue-derived mesenchymal stem cells

Camilla, Siciliano
Primo
;
Chimenti, Isotta;Bordin, Antonella;Ponti, Donatella;Peruzzi, Mariangela;Rendina, Erino Angelo;Calogero, Antonella;Pierelli, Luca;Ibrahim, Mohsen;De Falco, Elena
Ultimo
2015

Abstract

Human adipose tissue-derived mesenchymal stem cells (ADMSCs) are considered eligible candidates for cardiovascular stem cell therapy applications due to their cardiac transdifferentiation potential and immunotolerance. Over the years, the in vitro culture of ADMSCs by platelet lysate (PL), a hemoderivate containing numerous growth factors and cytokines derived from platelet pools, has allowed achieving a safe and reproducible methodology to obtain high cell yield prior to clinical administration. Nevertheless, the biological properties of PL are still to be fully elucidated. In this brief report we show the potential ability of PL to induce a permissive state of cardiac-like transdifferentiation and to cause epigeneticmodifications.RTPCRresults indicate an upregulation of Cx43, SMA, c-kit, andThy-1 confirmed by immunofluorescence staining, compared to standard cultures with foetal bovine serum. Moreover, PL-cultured ADMSCs exhibit a remarkable increase of both acetylated histones 3 and 4, with a patient-dependent time trend, andmethylation at lysine 9 on histone 3 preceding the acetylation. Expression levels of p300 and SIRT-1, twomajor regulators of histone 3, are also upregulated after treatment with PL. In conclusion, PL could unravel novel biological properties beyond its routine employment in noncardiac applications, providing new insights into the plasticity of human ADMSCs.
2015
fetal bovine serum; myocardial-infarction; regenerative medicine; histone modifications; autologous platelets; epigenetic signature; cardiac-disease; stromal cells; macular hole; differentiation
01 Pubblicazione su rivista::01a Articolo in rivista
The potential of GMP-compliant platelet lysate to induce a permissive state for cardiovascular transdifferentiation in human mediastinal adipose tissue-derived mesenchymal stem cells / Siciliano, Camilla; Chimenti, Isotta; Bordin, Antonella; Ponti, Donatella; Iudicone, Paola; Peruzzi, Mariangela; Rendina, Erino Angelo; Calogero, Antonella; Pierelli, Luca; Ibrahim, Mohsen; De Falco, Elena. - In: BIOMED RESEARCH INTERNATIONAL. - ISSN 2314-6141. - ELETTRONICO. - (2015), pp. 1-10. [10.1155/2015/162439]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/790576
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