APRILE, DOMENICO

APRILE, DOMENICO  

Dipartimento di Medicina Sperimentale  

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Risultati 1 - 14 di 14 (tempo di esecuzione: 0.087 secondi).
Titolo Data di pubblicazione Autore(i) File
A comparative study on normal and obese mice indicates that the secretome of mesenchymal stromal cells is influenced by tissue environment and physiopathological conditions 1-gen-2020 Ayaz-Guner, S.; Alessio, N.; Acar, M. B.; Aprile, D.; Ozcan, S.; Di Bernardo, G.; Peluso, G.; Galderisi, U.
An Example of Neuro-Glial Commitment and Differentiation of Muse Stem Cells Obtained from Patients with IQSEC2-Related Neural Disorder: A Possible New Cell-Based Disease Model 1-gen-2023 Al Sammarraie, Sura Hilal Ahmed; Aprile, Domenico; Meloni, Ilaria; Alessio, Nicola; Mari, Francesca; Manata, Marianna; Lo Rizzo, Caterina; Di Bernardo, Giovanni; Peluso, Gianfranco; Renieri, Alessandra; Galderisi, Umberto
Different stages of quiescence, senescence, and cell stress identified by molecular algorithm based on the expression of ki67, rps6, and beta-galactosidase activity 1-gen-2021 Alessio, N.; Aprile, D.; Cappabianca, S.; Peluso, G.; Di Bernardo, G.; Galderisi, U.
Germicidal lamps using UV-C radiation may pose health safety issues: a biomolecular analysis of their effects on apoptosis and senescence 1-gen-2024 Alessio, Nicola; Ambrosino, Alessia; Boggi, Andrea; Aprile, Domenico; Pinto, Iole; Galano, Giovanni; Galderisi, Umberto; Di Bernardo, Giovanni
IGFBP5 is released by senescent cells and is internalized by healthy cells, promoting their senescence through interaction with retinoic receptors 1-gen-2024 Alessio, Nicola; Aprile, Domenico; Peluso, Gianfranco; Mazzone, Valeria; Patrone, Deanira; Di Bernardo, Giovanni; Galderisi, Umberto
Loss of hierarchical imprinting regulation at the Prader-Willi/Angelman syndrome locus in human iPSCs 1-gen-2018 Pólvora-Brandão, Duarte; Joaquim, Mariana; Godinho, Inês; Aprile, Domenico; Álvaro, Ana Rita; Onofre, Isabel; Raposo, Ana Cláudia; Pereira de Almeida, Luís; Duarte, Sofia T; da Rocha, Simão T
Low-level radiofrequency exposure does not induce changes in MSC biology: An in vitro study for the prevention of NIR-related damage 1-gen-2019 Alessio, N.; Santoro, E.; Squillaro, T.; Aprile, D.; Briccola, M.; Giubbini, P.; Marchesani, R.; Muoio, M. R.; Lamberti, M.
Meta-analysis of senescent cell secretomes to identify common and specific features of the different senescent phenotypes: a tool for developing new senotherapeutics 1-gen-2023 Oguma, Yo; Alessio, Nicola; Aprile, Domenico; Dezawa, Mari; Peluso, Gianfranco; Di Bernardo, Giovanni; Galderisi, Umberto
Muse stem cells can be isolated from stromal compartment of mouse bone marrow, adipose tissue, and ear connective tissue: A comparative study of their in vitro properties 1-gen-2021 Aprile, D.; Alessio, N.; Demirsoy, I. H.; Squillaro, T.; Peluso, G.; Di Bernardo, G.; Galderisi, U.
Progression of irradiated mesenchymal stromal cells from early to late senescence: Changes in SASP composition and anti‐tumour properties 1-gen-2023 Alessio, Nicola; Acar, Mustafa Burak; Squillaro, Tiziana; Aprile, Domenico; Ayaz‐güner, Şerife; Di Bernardo, Giovanni; Peluso, Gianfranco; Özcan, Servet; Galderisi, Umberto
Role of glycosphingolipid SSEA-3 and FGF2 in the stemness and lineage commitment of multilineage differentiating stress enduring (MUSE) cells 1-gen-2023 Aprile, Domenico; Alessio, Nicola; Squillaro, Tiziana; Di Bernardo, Giovanni; Peluso, Gianfranco; Galderisi, Umberto
The senescence-associated secretory phenotype (SASP) from mesenchymal stromal cells impairs growth of immortalized prostate cells but has no effect on metastatic prostatic cancer cells 1-gen-2019 Alessio, N.; Aprile, D.; Squillaro, T.; Di Bernardo, G.; Finicelli, M.; Melone, M. A. B.; Peluso, G.; Galderisi, U.
Timely Supplementation of Hydrogels Containing Sulfated or Unsulfated Chondroitin and Hyaluronic Acid Affects Mesenchymal Stromal Cells Commitment Toward Chondrogenic Differentiation 1-gen-2021 Alessio, N.; Stellavato, A.; Aprile, D.; Cimini, D.; Vassallo, V.; Di Bernardo, G.; Galderisi, U.; Schiraldi, C.
Why do muse stem cells present an enduring stress capacity? Hints from a comparative proteome analysis 1-gen-2021 Acar, M. B.; Aprile, D.; Ayaz-Guner, S.; Guner, H.; Tez, C.; Di Bernardo, G.; Peluso, G.; Ozcan, S.; Galderisi, U.