Topic Editors

Laboratory of Cardiovascular Physiology, Dipartimento di Scienze Cliniche e Biologiche, Università Degli Studi di Torino, Regione Gonzole 10, 10043 Orbassano, Italy
1. Laboratory of Cellular and Molecular Cardiovascular Pathophysiology, Department of Biology, E. and E.S. (Di.B.E.S.T.), University of Calabria, Rende, Italy
2. National Institute of Cardiovascular Research (INRC), Bologna, Italy
Laboratory of Cardiovascular Physiology, Biomedicine School, Faculty of Medicine, Benemérita Universidad Autónoma de Puebla, Puebla 72410, Mexico
Laboratory of Cardiac Cellular Physiology, Department of Biotechnology and Biosciences, University of Milano-Bicocca, Milan, Italy
Dr. Francesco Moccia
Department of Biology and Biotechnology “Lazzaro Spallanzani”, Laboratory of General Physiology, University of Pavia, Pavia, Italy
Lab of Cellular and Molecular Cardiovascular Pathophysiology, Operative Unit of National Institute of Cardiovascular Research (INRC), Italy, Department of DiBEST, University of Calabria, 87036 Arcavacata, Italy

Oxidative Stress in Vascular Pathophysiology

Abstract submission deadline
closed (31 May 2023)
Manuscript submission deadline
closed (31 July 2023)
Viewed by
755

Topic Information

Dear Colleagues,

In the physiological context, reactive oxygen species (ROS) play a fundamental role in controlling vascular and heart functions through the modulation of several redox-sensitive signaling pathways. However, the excess of ROS production inevitably leads to oxidative stress (OS), a condition characterized by an imbalance between pro-oxidant species and antioxidant systems, potent ROS-detoxifying enzymes employed by vascular cells and cardiomyocytes to preserve their integrity against OS-dependent damages, thus ensuring the normal cardiovascular function. The development of a pro-oxidant phenotype triggers cellular and molecular mechanisms driving inflammation, endothelial dysfunction, and the associated myocardial infarction and other cardiovascular diseases. Although the role of OS in the onset and progression of atherosclerosis and its late thrombotic complications is unquestionable, and although several antioxidants have been found to induce cardioprotection in preclinical models, these agents have shown disappointing results in large-scale randomized controlled trials. Hence, the identification and development of new therapies are urgently required to mitigate the cardiovascular burden and reduce associated risk factors, ameliorating the quality of life and patient health status. In this context, the present topic addresses the latest findings aiming to highlight novel mechanisms whereby physiological ROS levels modulate cardiovascular functions, identify novel molecular actors and pharmacological agents that could prevent vascular and cardiac OS, and improve vasculature function for translating novel cardioprotective therapies and biomarkers into the clinical scenario for patient benefit.

Prof. Dr. Claudia Penna
Prof. Dr. Tommaso Angelone
Dr. Roberto Berra-Romani
Dr. Francesco Lodola
Dr. Francesco Moccia
Dr. Carmine Rocca
Topic Editors

Keywords

  • reactive oxygen species
  • oxidative stress
  • cardiovascular diseases
  • cardioprotection
  • endothelial dysfunction

Participating Journals

Journal Name Impact Factor CiteScore Launched Year First Decision (median) APC
Antioxidants
antioxidants
7.0 8.8 2012 13.9 Days CHF 2900
International Journal of Molecular Sciences
ijms
5.6 7.8 2000 16.3 Days CHF 2900
Nutrients
nutrients
5.9 9.0 2009 14.5 Days CHF 2900
Oxygen
oxygen
- - 2021 22.7 Days CHF 1000

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