Area of research
Molecular Biology · Sensory Systems
Research interest
Research interests include Mitochondrion, Cell biology, Potassium channel, Biology, Apoptosis, and Cancer research.
HSPA8 and HSPA9: Two prognostic and therapeutic targets in breast, colon, and kidney cancers?
The Role of Transglutaminase 2 in Cancer: An Update
BioID-based intact cell interactome of the Kv1.3 potassium channel identifies a Kv1.3-STAT3-p53 cellular signaling pathway
Neural stem/progenitor cells from olfactory neuroepithelium collected by nasal brushing as a cell model reflecting molecular and cellular dysfunctions in schizophrenia
Human frataxin, the Friedreich ataxia deficient protein, interacts with mitochondrial respiratory chain
News and views on ion channels in cancer: is cancer a channelopathy?
Pharmacological modulation of Kv1.3 potassium channel selectively triggers pathological B lymphocyte apoptosis in vivo in a genetic CLL model
Mitochondrial Dynamics, ROS, and Cell Signaling: A Blended Overview
Mitochondrial K+ channels and their implications for disease mechanisms
A novel mitochondrial Kv1.3–caveolin axis controls cell survival and apoptosis
NMR Metabolite Profiles of the Bivalve Mollusc Mytilus galloprovincialis Before and After Immune Stimulation With Vibrio splendidus
Transglutaminase Type 2 regulates the Wnt/β-catenin pathway in vertebrates
Exploiting pyocyanin to treat mitochondrial disease due to respiratory complex III dysfunction
Compensatory expression of NRF2-dependent antioxidant genes is required to overcome the lethal effects of Kv11.1 activation in breast cancer cells and PDOs
Insight into the mechanism of cytotoxicity of membrane-permeant psoralenic Kv1.3 channel inhibitors by chemical dissection of a novel member of the family
Mitochondrial Metabolism, Contact Sites and Cellular Calcium Signaling: Implications for Tumorigenesis
Impaired Mitochondrial ATP Production Downregulates Wnt Signaling via ER Stress Induction
Mitochondrial Kv1.3: a New Target in Cancer Biology?
Targeting the Mitochondrial Potassium Channel Kv1.3 to Kill Cancer Cells: Drugs, Strategies, and New Perspectives
Excessive Accumulation of Ca2 + in Mitochondria of Y522S-RYR1 Knock-in Mice: A Link Between Leak From the Sarcoplasmic Reticulum and Altered Redox State
Pharmacological modulation of mitochondrial ion channels
Mitochondrial apoptosis is induced by Alkoxy phenyl-1-propanone derivatives through PP2A-mediated dephosphorylation of Bad and Foxo3A in CLL
Novel Mitochondria-Targeted Furocoumarin Derivatives as Possible Anti-Cancer Agents
Targeting Mitochondrial Ion Channels to Fight Cancer
Direct Pharmacological Targeting of a Mitochondrial Ion Channel Selectively Kills Tumor Cells In Vivo
Targeting the Potassium Channel Kv1.3 Kills Glioblastoma Cells
Mitochondrial potassium channels in cell death
Regulation of Proliferation by a Mitochondrial Potassium Channel in Pancreatic Ductal Adenocarcinoma Cells
Physiology of intracellular potassium channels: A unifying role as mediators of counterion fluxes?
Tumor-reducing effect of the clinically used drug clofazimine in a SCID mouse model of pancreatic ductal adenocarcinoma