Salta al contenuto principale
Ricerc@Sapienza
Toggle navigation
Home
Login
Home
Persone
marianna.cosentino@uniroma1.it
Marianna Cosentino
Assegnista di ricerca
Struttura:
DIPARTIMENTO DI SCIENZE ANATOMICHE, ISTOLOGICHE, MEDICO LEGALI E DELL'APPARATO LOCOMOTORE
E-mail:
marianna.cosentino@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Pubblicazioni
Titolo
Pubblicato in
Anno
Development of an optical system for strain drop measurement of osteosarcoma cells on substrates with different stiffness
SENSORS
2024
Cyclin D3 deficiency promotes a slower, more oxidative skeletal muscle phenotype and ameliorates pathophysiology in the mdx mouse model of Duchenne muscular dystrophy
THE FASEB JOURNAL
2023
Remodeled eX vivo muscle engineered tissue improves heart function after chronic myocardial ischemia
SCIENTIFIC REPORTS
2023
Modelling three-dimensional cancer-associated cachexia and therapy: the molecular basis and therapeutic potential of interleukin-6 transignalling blockade
JOURNAL OF CACHEXIA, SARCOPENIA AND MUSCLE
2023
The development of an innovative embedded sensor for the optical measurement of ex-vivo engineered muscle tissue contractility
SENSORS
2022
Effects of ROI positioning on the measurement of engineered muscle tissue contractility with an optical tracking method
2022 IEEE International Symposium on Medical Measurements and Applications, MeMeA 2022 - Conference Proceedings
2022
Electric field distribution analysis for the design of an electrode system in a 3D neuromuscular junction microfluidic device
MeMeA 2021 - 2021 IEEE International Symposium on Medical Measurements and Applications Proceedings
2021
Mechanisms Regulating Muscle Regeneration: Insights into the Interrelated and Time-Dependent Phases of Tissue Healing
CELLS
2020
Measuring the maximum power of an ex vivo engineered muscle tissue with isovelocity shortening technique
IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT
2019
Measuring the X-MET’s maximum power: a preliminary study
2018
DNA damage signaling mediates the functional antagonism between replicative senescence and terminal muscle differentiation
GENES & DEVELOPMENT
2017
Progetti di Ricerca
Use of a 3D Neuro-Muscular Junction system to study the pathological alterations in Amyotrophic Lateral Sclerosis
X-MET as 3D muscle experimental model to study cancer associated cachexia
Gruppi di ricerca
Tissue Engineering Unit
© Università degli Studi di Roma "La Sapienza" - Piazzale Aldo Moro 5, 00185 Roma