Area of research
Molecular Biology · Cardiology and Cardiovascular Medicine
Research interest
Research interests include Skeletal muscle, Calsequestrin, Calcium, Biology, Endoplasmic reticulum, and Mitochondrion.
A novel, patient-derived RyR1 mutation impairs muscle function and calcium homeostasis in mice
Improvement of muscle strength in a mouse model for congenital myopathy treated with HDAC and DNA methyltransferase inhibitors
Author response: Improvement of muscle strength in a mouse model for congenital myopathy treated with HDAC and DNA methyltransferase inhibitors
Impaired Binding to Junctophilin-2 and Nanostructural Alteration in CPVT Mutation
Parvalbumin affects skeletal muscle trophism through modulation of mitochondrial calcium uptake
Endothelial cells from umbilical cord of women affected by gestational diabetes: A suitable in vitro model to study mechanisms of early vascular senescence in diabetes
Improvement of muscle strength in a mouse model for congenital myopathy treated with HDAC and DNA methyltransferase inhibitors
DRP1-mediated mitochondrial shape controls calcium homeostasis and muscle mass
Excessive Accumulation of Ca2 + in Mitochondria of Y522S-RYR1 Knock-in Mice: A Link Between Leak From the Sarcoplasmic Reticulum and Altered Redox State
Muscle activity prevents the uncoupling of mitochondria from Ca2+ Release Units induced by ageing and disuse
A 3D diffusional-compartmental model of the calcium dynamics in cytosol, sarcoplasmic reticulum and mitochondria of murine skeletal muscle fibers
Muscle Expression of <i> SOD1 <sup>G93A</sup> </i> Triggers the Dismantlement of Neuromuscular Junction <i>via</i> PKC-Theta
Strenuous exercise triggers a life‐threatening response in mice susceptible to malignant hyperthermia
Estrogens Protect Calsequestrin‐1 Knockout Mice from Lethal Hyperthermic Episodes by Reducing Oxidative Stress in Muscle
Physical exercise in aging human skeletal muscle increases mitochondrial calcium uniporter expression levels and affects mitochondria dynamics
Exercise-induced alterations and loss of sarcomeric M-line organization in the diaphragm muscle of obscurin knockout mice
Role of the JP45-Calsequestrin Complex on Calcium Entry in Slow Twitch Skeletal Muscles
The Mitochondrial Calcium Uniporter Controls Skeletal Muscle Trophism In Vivo
Persistent muscle fiber regeneration in long term denervation. Past, present, future
Persistent muscle fiber regeneration in long term denervation. Past, present, future
Oxidative stress, mitochondrial damage, and cores in muscle from calsequestrin-1 knockout mice
Differential Role of Calsequestrin Isoforms on Calcium Entry in Skeletal Muscle FDB Fibres
Lifelong Physical Exercise Delays Age-Associated Skeletal Muscle Decline
Long-Term High-Level Exercise Promotes Muscle Reinnervation With Age
Electrical Stimulation Counteracts Muscle Decline in Seniors
A Mutation in the<i>CASQ1</i>Gene Causes a Vacuolar Myopathy with Accumulation of Sarcoplasmic Reticulum Protein Aggregates
Deletion of small ankyrin 1 (sAnk1) isoforms results in structural and functional alterations in aging skeletal muscle fibers
Defects of Vps15 in skeletal muscles lead to autophagic vacuolar myopathy and lysosomal disease
Enhanced dihydropyridine receptor calcium channel activity restores muscle strength in JP45/CASQ1 double knockout mice
Mitochondrial Ca2+-Handling in Fast Skeletal Muscle Fibers from Wild Type and Calsequestrin-Null Mice