Elisa Messina
Overview
Explore the profile of Elisa Messina including associated specialties, affiliations and a list of published articles.
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51
Citations
2497
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Recent Articles
1.
Moschetti M, Lo Curto A, Giacomarra M, Francofonte D, Zizzo C, Messina E, et al.
Int J Mol Sci
. 2024 Sep;
25(17).
PMID: 39273088
Studying a patient with Pompe disease (PD) is like opening Pandora's box. The specialist is faced with numerous clinical features similar to those of several diseases, and very often the...
2.
Picchio V, Gaetani R, Pagano F, Derevyanchuk Y, Pagliarosi O, Floris E, et al.
Int J Mol Sci
. 2024 Mar;
25(5).
PMID: 38474123
Radiotherapy-induced cardiac toxicity and consequent diseases still represent potential severe late complications for many cancer survivors who undergo therapeutic thoracic irradiation. We aimed to assess the phenotypic and paracrine features...
3.
Putotto C, Pulvirenti F, Pugnaloni F, Isufi I, Unolt M, Anaclerio S, et al.
Genes (Basel)
. 2022 Dec;
13(12).
PMID: 36553601
Background: Aortic root dilation (ARD) has been described in 22q11.2DS, even without congenital heart disease (CHD). However, the clinical implications and longitudinal course are unclear. In this study, we evaluated...
4.
Gaetani R, Derevyanchuk Y, Notargiacomo A, Pea M, Renzi M, Messina E, et al.
Bioengineering (Basel)
. 2022 Nov;
9(11).
PMID: 36354532
Nano- or microdevices, enabling simultaneous, long-term, multisite, cellular recording and stimulation from many excitable cells, are expected to make a strategic turn in basic and applied cardiology (particularly tissue engineering)...
5.
Picchio V, Floris E, Derevyanchuk Y, Cozzolino C, Messina E, Pagano F, et al.
Int J Mol Sci
. 2022 Oct;
23(19).
PMID: 36232943
Ex vivo modelling systems for cardiovascular research are becoming increasingly important in reducing lab animal use and boosting personalized medicine approaches. Integrating multiple cell types in complex setups adds a...
6.
Garoffolo G, Casaburo M, Amadeo F, Salvi M, Bernava G, Piacentini L, et al.
Circ Res
. 2022 Jun;
131(3):239-257.
PMID: 35770662
Background: Conversion of cardiac stromal cells into myofibroblasts is typically associated with hypoxia conditions, metabolic insults, and/or inflammation, all of which are predisposing factors to cardiac fibrosis and heart failure....
7.
Belviso I, Angelini F, Di Meglio F, Picchio V, Sacco A, Nocella C, et al.
Int J Mol Sci
. 2020 Oct;
21(21).
PMID: 33114386
Cardiac adverse remodeling is characterized by biological changes that affect the composition and architecture of the extracellular matrix (ECM). The consequently disrupted signaling can interfere with the balance between cardiogenic...
8.
Pagliarosi O, Picchio V, Chimenti I, Messina E, Gaetani R
Front Cell Dev Biol
. 2020 Oct;
8:559032.
PMID: 33015056
The increased knowledge in cell signals and stem cell differentiation, together with the development of new technologies, such as 3D bioprinting, has made the generation of artificial tissues more feasible...
9.
Gaetani R, Zizzi E, Deriu M, Morbiducci U, Pesce M, Messina E
Front Cell Dev Biol
. 2020 Jul;
8:334.
PMID: 32671058
During embryonic morphogenesis, the heart undergoes a complex series of cellular phenotypic maturations (e.g., transition of myocytes from proliferative to quiescent or maturation of the contractile apparatus), and this involves...
10.
Salvi M, Morbiducci U, Amadeo F, Santoro R, Angelini F, Chimenti I, et al.
Sci Rep
. 2019 May;
9(1):6644.
PMID: 31040327
The 'cardiosphere' is a 3D cluster of cardiac progenitor cells recapitulating a stem cell niche-like microenvironment with a potential for disease and regeneration modelling of the failing human myocardium. In...