Area of research
Molecular Biology · Oncology
Research interest
Research focused on Thioredoxin reductase and Antioxidant, with related work in Thioredoxin, Oxidative stress, KEAP1. Notable publications include 'European contribution to the study of ROS: A summary of the findings and prospects for the future from the COST action BM1203 (EU-ROS)', 'Gold(I) Carbene Complexes Causing Thioredoxin 1 and Thioredoxin 2 Oxidation as Potential Anticancer Agents', and 'Principles in Redox Signaling: From Chemistry to Functional Significance'.
From In Silico to a Cellular Model: Molecular Docking Approach to Evaluate Antioxidant Bioactive Peptides
Nrf2-Activating Bioactive Peptides Exert Anti-Inflammatory Activity through Inhibition of the NF-κB Pathway
Mitochondrial depletion of glutaredoxin 2 induces metabolic dysfunction-associated fatty liver disease in mice
Comparative analysis of the antioxidant capacity and lipid and protein oxidation of soy and oats beverages
Identification of New Peptides from Fermented Milk Showing Antioxidant Properties: Mechanism of Action
Fermented Soy-Derived Bioactive Peptides Selected by a Molecular Docking Approach Show Antioxidant Properties Involving the Keap1/Nrf2 Pathway
The Determining Role of Mitochondrial Reactive Oxygen Species Generation and Monoamine Oxidase Activity in Doxorubicin-Induced Cardiotoxicity
Milk-derived bioactive peptides exhibit antioxidant activity through the Keap1-Nrf2 signaling pathway
Antioxidant Properties of Fermented Soy during Shelf Life
Significance of the mitochondrial thioredoxin reductase in cancer cells: An update on role, targets and inhibitors
Milk-derived bioactive peptides protect against oxidative stress in a Caco-2 cell model
European contribution to the study of ROS: A summary of the findings and prospects for the future from the COST action BM1203 (EU-ROS)
Oxidative changes in lipids, proteins, and antioxidants in yogurt during the shelf life
Tamoxifen-like metallocifens target the thioredoxin system determining mitochondrial impairment leading to apoptosis in Jurkat cells
Corrigendum to “European contribution to the study of ROS: A summary of the findings and prospects for the future from the COST action BM1203 (EU-ROS)” [Redox Biol. 13 (2017) 94–162]
Mitochondrial Thioredoxin System as a Modulator of Cyclophilin D Redox State
Evidence for Targeting Thioredoxin Reductases with Ferrocenyl Quinone Methides. A Possible Molecular Basis for the Antiproliferative Effect of Hydroxyferrocifens on Cancer Cells
Fluorescent silver(i) and gold(i)–N-heterocyclic carbene complexes with cytotoxic properties: mechanistic insights
Gold(I) Carbene Complexes Causing Thioredoxin <b>1</b> and Thioredoxin <b>2</b> Oxidation as Potential Anticancer Agents
Principles in Redox Signaling: From Chemistry to Functional Significance