Hepatoprotective Effect of Grape Seed and Skin Extract Against Lithium Exposure Examined by the Window of Proteomics

Author:

Mezni Ali12ORCID,Khazri Olfa12,Jarnier Frédérique3,Hardouin Julie34,Limam Ferid1,Jouenne Thierry34,Aouani Ezzeddine12,Cosette Pascal34

Affiliation:

1. Laboratoire des Substances Bioactives (LSBA), Centre de Biotechnologie de Borj Cedria, Hammam-Lif, Tunisie

2. Université de Carthage, Faculté des Sciences de Bizerte, Zarzouna, Tunisie

3. Normandie University, UNIROUEN, INSERM US 51, CNRS UAR 2026, HeRacLeS-PISSARO, INSA Rouen-Normandie, Rouen, France

4. CNRS UMR 6270, Normandie University, UNIROUEN, INSA Rouen-Normandie, Rouen, France

Abstract

Context The liver is the organ by which the majority of substances are metabolized, including psychotropic drugs. Lithium (Li) used as drug for many neurological disorders such as bipolar disorders. Objective This study aims to assess lithium toxicity and to evaluate the hepatic-protective properties of a grape skin seed and extract (GSSE). Materials and methods Twenty-four male Wistar rats were exposed for 30 days to either various lithium concentrations, GSSE alone, or lithium supplemented with GSSE. The proteomic analysis revealed alterations of liver protein profiles after lithium treatments that were successfully identified by mass spectrometry. Results Lithium treatment induced an oxidative damage by the alteration of antioxidant enzymes activities such as superoxide dismutase, CAT, and Gpx. The regulated proteins are mainly involved in the respiratory electron transport chain, detoxification processes, ribosomal stress pathway, glycolysis, and cytoskeleton. Proteins were differentially expressed in a dose-dependent manner. Interestingly, GSSE reversed the situation and restored the level of liver proteins whose abundance was modified after lithium treatment, arguing for its protective activity. Conclusion Our data demonstrated the ability of proteomic analysis to underline the toxicity mechanisms of lithium in animal models. Based on these results, GSSE may be envisaged as a nutritional supplement to weaken the liver toxicity of lithium.

Funder

Ministry of Higher Education of Tunisia

Publisher

SAGE Publications

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,Toxicology

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