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Vanina Romanello

University of Padua · IT
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Area of research
Molecular Biology · Physiology
Research interest
Research interests include Biology, Skeletal muscle, Mitochondrion, Cell biology, Sarcopenia, and Mitophagy.
h-index
citations
6,108
works
25
NIH funding
primary concept
email

Recent publications

C16ORF70/MYTHO promotes healthy aging in C.elegans and prevents cellular senescence in mammals
Journal of Clinical Investigation 2024cited by 11position: middledoi
Intracellular to Interorgan Mitochondrial Communication in Striated Muscle in Health and Disease
Endocrine Reviews 2023cited by 37position: middledoi
Implications of mitochondrial fusion and fission in skeletal muscle mass and health
Seminars in Cell and Developmental Biology 2022cited by 42position: firstdoi
Mechanisms of muscle atrophy and hypertrophy: implications in health and disease
Nature Communications 2021cited by 893position: middledoi
The connection between the dynamic remodeling of the mitochondrial network and the regulation of muscle mass
Cellular and Molecular Life Sciences 2020cited by 192position: firstdoi
The Interplay between Mitochondrial Morphology and Myomitokines in Aging Sarcopenia
International Journal of Molecular Sciences 2020cited by 90position: firstdoi
DRP1-mediated mitochondrial shape controls calcium homeostasis and muscle mass
Nature Communications 2019cited by 398position: middledoi
FGF21 as Modulator of Metabolism in Health and Disease
Frontiers in Physiology 2019cited by 312position: middledoi
Fibroblast growth factor 21 controls mitophagy and muscle mass
Journal of Cachexia Sarcopenia and Muscle 2019cited by 225position: lastdoi
Inhibition of the Fission Machinery Mitigates OPA1 Impairment in Adult Skeletal Muscles
Cells 2019cited by 87position: firstdoi
Skeletal muscle mTORC1 regulates neuromuscular junction stability
Journal of Cachexia Sarcopenia and Muscle 2019cited by 69position: middledoi
Transcriptional programming of lipid and amino acid metabolism by the skeletal muscle circadian clock
PLoS Biology 2018cited by 147position: middledoi
Age-Associated Loss of OPA1 in Muscle Impacts Muscle Mass, Metabolic Homeostasis, Systemic Inflammation, and Epithelial Senescence
Cell Metabolism 2017cited by 549position: middledoi
In mammalian skeletal muscle, phosphorylation of TOMM22 by protein kinase CSNK2/CK2 controls mitophagy
Autophagy 2017cited by 75position: middledoi
Muscle Expression of <i> SOD1 <sup>G93A</sup> </i> Triggers the Dismantlement of Neuromuscular Junction <i>via</i> PKC-Theta
Antioxidants and Redox Signaling 2017cited by 64position: middledoi
Mitochondrial Quality Control and Muscle Mass Maintenance
Frontiers in Physiology 2016cited by 423position: firstdoi
Transcription Factor EB Controls Metabolic Flexibility during Exercise
Cell Metabolism 2016cited by 325position: middledoi
Glycolytic-to-oxidative fiber-type switch and mTOR signaling activation are early-onset features of SBMA muscle modified by high-fat diet
Acta Neuropathologica 2016cited by 88position: middledoi
Physical exercise in aging human skeletal muscle increases mitochondrial calcium uniporter expression levels and affects mitochondria dynamics
Physiological Reports 2016cited by 88position: middledoi
Regulation of autophagy and the ubiquitin–proteasome system by the FoxO transcriptional network during muscle atrophy
Nature Communications 2015cited by 703position: middledoi
The Opa1-Dependent Mitochondrial Cristae Remodeling Pathway Controls Atrophic, Apoptotic, and Ischemic Tissue Damage
Cell Metabolism 2015cited by 449position: middledoi
Lifelong Physical Exercise Delays Age-Associated Skeletal Muscle Decline
The Journals of Gerontology Series A 2014cited by 285position: middledoi
Electrical Stimulation Counteracts Muscle Decline in Seniors
Frontiers in Aging Neuroscience 2014cited by 160position: middledoi
Signalling pathways regulating muscle mass in ageing skeletal muscle. The role of the IGF1-Akt-mTOR-FoxO pathway
Biogerontology 2013cited by 328position: middledoi
Mitochondrial biogenesis and fragmentation as regulators of protein degradation in striated muscles
Journal of Molecular and Cellular Cardiology 2012cited by 68position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Marco Sandri · University of Padua21 papers (2012–2024)Bert Blaauw · University of Padua10 papers (2013–2019)Feliciano Protasi · University of Padua5 papers (2014–2019)Antonio Musarò · Institut Pasteur5 papers (2013–2017)Leonardo Salviati · University of Padua5 papers (2017–2024) · 4 papers (2013–2016)Valeria Morbidoni · University of Padua4 papers (2016–2024)Mattia Albiero · University of Padua4 papers (2017–2019)Luca Scorrano · University of Padua4 papers (2015–2019)Simona Boncompagni · University of Padua4 papers (2014–2019) · 4 papers (2014–2017)Andrea Armani · University of Padua4 papers (2015–2024)Laura Pietrangelo · University of Rochester Medical Center4 papers (2014–2017)Caterina Tezze · University of Padua4 papers (2016–2019)Sandra Zampieri · University of Padua4 papers (2014–2017)Rosario Rizzuto · University of Padua3 papers (2013–2018) · 3 papers (2014–2016)Giulia Milan · University of Padua3 papers (2013–2024)Cristina Mammucari · University of Padua3 papers (2013–2019) · 3 papers (2014–2016)
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