Investigating hormesis, aging, and neurodegeneration: From bench to clinics

Author:

Calabrese Vittorio1,Wenzel Uwe2,Piccoli Tommaso3,Jacob Ursula M.4,Nicolosi Lidia1,Fazzolari Giovanni1,Failla Gabriella1,Fritsch Tilman5,Osakabe Naomi6,Calabrese Edward J.7

Affiliation:

1. Department of Biomedical and Biotechnological Sciences, University of Catania , Catania , Italy

2. Institut für Ernährungswissenschaft, Justus Liebig Universitat Giessen , Germany

3. Neurology Unit, Department of Biomedicine, Neuroscience and Advanced Diagnostics (BIND), University of Palermo , Palermo , Italy

4. System Biologie AG , Wollerau , Switzerland

5. NAM Institute , Salzburg , Austria

6. Department of Bio-Science and Engineering, Faculty of System Science and Engineering, Shibaura Institute of Technology , Tokyo , Japan

7. Department of Environmental Health Sciences, Morrill I, N344, University of Massachusetts, Amherst , MA 01003 , United States of America

Abstract

Abstract Mitochondria-derived reactive oxygen species production at a moderate physiological level plays a fundamental role in the anti-aging signaling, due to their action as redox-active sensors for the maintenance of optimal mitochondrial balance between intracellular energy status and hormetic nutrients. Iron regulatory protein dysregulation, systematically increased iron levels, mitochondrial dysfunction, and the consequent oxidative stress are recognized to underlie the pathogenesis of multiple neurodegenerative diseases, such as Parkinson’s disease and Alzheimer’s disease. Central to their pathogenesis, Nrf2 signaling dysfunction occurs with disruption of metabolic homeostasis. We highlight the potential therapeutic importance of nutritional polyphenols as substantive regulators of the Nrf2 pathway. Here, we discuss the common mechanisms targeting the Nrf2/vitagene pathway, as novel therapeutic strategies to minimize consequences of oxidative stress and neuroinflammation, generally associated to cognitive dysfunction, and demonstrate its key neuroprotective and anti-neuroinflammatory properties, summarizing pharmacotherapeutic aspects relevant to brain pathophysiology.

Publisher

Walter de Gruyter GmbH

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