Transplantation of telomerase/myocardin-co-expressing mesenchymal cells in the mouse promotes myocardial revascularization and tissue repair

Madonna, Rosalinda ✉; Pieragostino, Damiana; Rossi, Claudia; Guarnieri, Simone; Nagy, Csilla T. [Nagy, Csilla Terézia (kardiovaszkuláris...), szerző] Farmakológiai és Farmakoterápiás Intézet (SE / AOK / I); Giricz, Zoltán [Giricz, Zoltán (Biokémia, Farmako...), szerző] Farmakológiai és Farmakoterápiás Intézet (SE / AOK / I); Ferdinandy, Péter [Ferdinandy, Péter (Farmakológia, mol...), szerző] Farmakológiai és Farmakoterápiás Intézet (SE / AOK / I); Del Boccio, Piero; Mariggiò, Maria Addolorata; Geng, Yong-Jian; De Caterina, Raffaele

Angol nyelvű Szakcikk (Folyóiratcikk) Tudományos
Megjelent: VASCULAR PHARMACOLOGY 1537-1891 1879-3649 135 Paper: 106807 , 11 p. 2020
  • SJR Scopus - Molecular Medicine: Q1
Azonosítók
Támogatások:
  • (NVKP-16-1-2016-0017 National Heart Program) Támogató: NKFIH
  • (VEKOP-2.3.2-16-2016-00002) Támogató: NKFIH
Szakterületek:
  • Farmakológia és gyógyszerészet
Aim: Cell therapies are hampered by poor survival and growth of grafts. We tested whether forced co-expression of telomerase reverse transcriptase (TERT) and myocardin (MYOCD) improves post-infarct revascularization and tissue repair by adipose tissue-derived mesenchymal stromal cells (AT-MSCs). Methods and results: We transplanted AT-MSCs overexpressing MYOCD and TERT in a murine model of acute myocardial infarction (AMI). We characterized paracrine effects of AT-MSCs. When transplanted into infarcted hearts of C57BL/6 mice, AT-MSCs overexpressing TERT and MYOCD decreased scar tissue and the intra-scar CD3 and B220 lymphocyte infiltration; and increased arteriolar density as well as ejection fraction compared with saline or mock-transduced AT-MSCs. These effects were accompanied by higher persistence of the injected cells in the heart, increased numbers of Ki-67+ and CD117+ cells, and the expression of cardiac actin and beta-myosin heavy chain. Intramyocardial delivery of the secretome and its extracellular vesicle (EV)-enriched fraction also decreased scar tissue formation and increased arteriolar density in the murine AMI model. Proteomic analysis of AT-MSCs-EV-enriched fraction predicted the activation of vascular development and the inhibition of immune cell trafficking. Elevated concentrations of miR-320a, miR-150-5p and miR-126-3p associated with regulation of apoptosis and vasculogenesis were confirmed in the AT-MSCs-EV-enriched fraction. Conclusions: AT-MSCs overexpressing TERT and MYOCD promote persistence of transplanted aged AT-MSCs and enhance arteriolar density in a murine model of AMI. EV-enriched fraction is the component of the paracrine secretion by AT-MSCs with pro-angiogenic and anti-fibrotic activities.
Hivatkozás stílusok: IEEEACMAPAChicagoHarvardCSLMásolásNyomtatás
2025-04-27 14:27