José Teixeira
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BraveHEART: Improving Nature by Addressing Bioactiv Dietary Polyphenols to Mitochondria for the Protection of Cardiac Complications in Non-Alcoholic Fatty Liver Disease
Open Date: 2022-01-02
Close Date: 2023-07-30
Grant: Close
BraveHEART: Improving Nature by Addressing Bioactiv Dietary Polyphenols to Mitochondria for the Protection of Cardiac Complications in Non-Alcoholic Fatty Liver Disease
Open Date: 2022-01-01
Close Date: 2023-07-01
Grant: Open
MitoMED - Targeting Mitochondria with a New Generation of Multi-Purpose Bioactive Molecules Inspired in Natural Scaffolds
Open Date: 2021-05-01
Close Date: 2027-04-01
Grant: Open
MitoMED - Targeting Mitochondria with a New Generation of Multi-Purpose Bioactive Molecules Inspired in Natural Scaffolds
Open Date: 2021-05-01
Close Date: 2027-04-01
Grant: Close
SkinSHIELD: Redox-active phytochemicals triggering mitochondrial hormesis: developing a new generation of cosmetic active ingredients
Open Date: 2018-07-01
Close Date: 2021-06-01
Articles (10)
From Non-Alcoholic Fatty Liver to Hepatocellular Carcinoma: A Story of (Mal)Adapted Mitochondria
Non-alcoholic fatty liver disease (NAFLD) is a global pandemic affecting 25% of the world’s population and is a serious health and economic concern worldwide. NAFLD is mainly the result of unhealthy dietary habits combined with sedentary lifestyle, although some genetic contributions to NAFLD have been documented. NAFLD is characterized by the excessive accumulation of triglycerides (TGs) in hepatocytes and encompasses a spectrum of chronic liver abnormalities, ranging from simple steatosis (NAFL) to steatohepatitis (NASH), significant liver fibrosis, cirrhosis, and hepatocellular carcinoma. Although the molecular mechanisms that cause the progression of steatosis to severe liver damage are not fully understood, metabolic-dysfunction-associated fatty liver disease is strong evidence that mitochondrial dysfunction plays a significant role in the development and progression of NAFLD. Mitochondria are highly dynamic organelles that undergo functional and structural adaptations to meet the metabolic requirements of the cell. Alterations in nutrient availability or cellular energy needs can modify mitochondria formation through biogenesis or the opposite processes of fission and fusion and fragmentation. In NAFL, simple steatosis can be seen as an adaptive response to storing lipotoxic free fatty acids (FFAs) as inert TGs due to chronic perturbation in lipid metabolism and lipotoxic insults. However, when liver hepatocytes’ adaptive mechanisms are overburdened, lipotoxicity occurs, contributing to reactive oxygen species (ROS) formation, mitochondrial dysfunction, and endoplasmic reticulum (ER) stress. Impaired mitochondrial fatty acid oxidation, reduction in mitochondrial quality, and disrupted mitochondrial function are associated with a decrease in the energy levels and impaired redox balance and negatively affect mitochondria hepatocyte tolerance towards damaging hits. However, the sequence of events underlying mitochondrial failure from steatosis to hepatocarcinoma is still yet to be fully clarified. This review provides an overview of our understanding of mitochondrial adaptation in initial NAFLD stages and highlights how hepatic mitochondrial dysfunction and heterogeneity contribute to disease pathophysiology progression, from steatosis to hepatocellular carcinoma. Improving our understanding of different aspects of hepatocytes’ mitochondrial physiology in the context of disease development and progression is crucial to improving diagnosis, management, and therapy of NAFLD/NASH.
Year:
2023
Collaborators (24)
Carina Prip-Buus
CNRS Délégation Paris B
Marta Afonso
Assistant Professor
Faculty of Pharmacy, University of Lisbon
Caroline Veloso
-
Fernando Remião
Professor
Universidade do Porto Faculdade de Medicina
Paulo Santos
Associate Professor
University of Coimbra
Peter M. J. Quinn
-
Stephen H Tsang
-
Yaiza Potes
Assistant Professor
University of Oviedo
Paulo Oliveira
Invited Assistant Professor
University of Coimbra
Rosa Fernandes
University of Coimbra
Sylwia Szymanska
Children's Memorial Health Institute
Rui Castro
Invited Assistant Professor
Faculty of Pharmacy, University of Lisbon
Justyna Janikiewicz
Assistant Professor
Nencki Institute of Experimental Biology, Polish Academy of Sciences
Agnieszka Dobrzyn
Director of the Institute, professor
Instytut Biologii Doswiadczalnej im M Nenckiego Polskiej Akademii Nauk
Liana C. Silva
Universidade de Aveiro
Teresa Cunha-Oliveira
University of Coimbra
Fernanda Borges
Associate Professor
Faculty of Sciences of the University of Porto
Jérémie Gautheron
INSERM
Celso Henrique Alves
University of Coimbra
Agnieszka Karkucinska-Wieckowska
professor assistant
Children's Memorial Health Institute
Renata Silva
University of Porto
Nuno Raimundo
Associate Professor
Penn State College of Medicine
Carlos Fernandes
University of Porto
Michał Dąbrowski
Head, associate professor
Nencki Institute of Experimental Biology

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