Sources of 7-ketocholesterol, metabolism and inactivation strategies: food and biomedical applications

Author:

Ghzaiel Imen123ORCID,Sassi Khouloud1,Zarrouk Amira24ORCID,Ghosh Shubhrima5,Dias Irundika H K6ORCID,Nury Thomas1,Ksila Mohamed17,Essadek Soukaina18,Tahri Joutey Mounia18ORCID,Brahmi Fatiha9,Mihoubi Wafa10,Rup-Jacques Sandrine11ORCID,Samadi Mohammad11,Rezig Leila1213ORCID,Meziane Smail14,Ghrairi Taoufik7,Masmoudi-Kouki Olfa7,Hammami Sonia2,Nasser Boubker8,Hammami Mohamed2,Wang Yuqin15,Griffiths William J15,Vejux Anne1,Lizard Gérard1ORCID

Affiliation:

1. Team ‘Biochemistry of the Peroxisome, Inflammation and Lipid Metabolism’ EA7270/Inserm, University Bourgogne Franche-Comté, Dijon, France

2. Lab-NAFS ‘Nutrition-Functional Food & Vascular Health’, Faculty of Medicine, University of Monastir, Monastir, Tunisia

3. Faculty of Sciences of Tunis, University Tunis-El Manar, Tunis, Tunisia

4. Faculty of Medicine, University of Sousse, Sousse, Tunisia

5. School of Pharmacy and Pharmaceutical Sciences, Trinity College Dublin, The University of Dublin, College Green, Dublin 2, Ireland

6. Aston Medical School, Aston University, Birmingham, UK

7. Department of Biology, Faculty of Sciences, University Tunis-El Manar, Loboratory of Neurophysiology, Cellular Physiopathology and Valorisation of BioMolecules, LR18ES03, Tunis, Tunisia

8. Laboratory of Biochemistry, Neurosciences, Natural Resources and Environment, Faculty of Sciences & Techniques, University Hassan I, Settat, Morocco

9. Laboratory Biomathématique, Biochimie, Biophysique et Scientométrie, Faculté des Sciences de la Nature et de la Vie, Université de Bejaia, Bejaia, Algeria

10. Laboratoire de Biotechnologie Moléculaire des Eucaryotes, Centre de Biotechnologie de Sfax, Université de Sfax, Sfax, Tunisia

11. LCPMC-A2, ICPM, Department of Chemistry, University Lorraine, Metz Technopôle, Metz, France

12. University of Carthage, National Institute of Applied Sciences and Technology, LR11ES26, LIP-MB ‘Laboratory of Protein Engineering and Bioactive Molecules’, Tunis, Tunisia

13. University of Carthage, High Institute of Food Industries, El Khadra City, Tunis, Tunisia

14. Institut Européen des Antioxydants, Neuves-Maisons, France

15. Swansea University Medical School, Swansea, Wales, UK

Abstract

Graphical abstract Abstract 7-Ketocholesterol (or 7-oxocholesterol) is an oxysterol essentially formed by cholesterol autoxidation. It is often found at enhanced levels in the body fluids and/or target tissues of patients with age-related diseases (cardiovascular, neuronal, and ocular diseases) as well as in subjects concerned with civilization diseases (type 2 diabetes, bowel diseases, and metabolic syndrome). The involvement of increased 7-ketocholesterol levels in the pathophysiology of these diseases is widely suspected. Indeed, 7-ketocholesterol at elevated concentrations is a powerful inducer of oxidative stress, inflammation, and cellular degeneration which are common features of all these diseases. It is important to better know the origin of 7-ketocholesterol (diet, incidence of environmental factors, and endogenous formation (autoxidation and enzymatic synthesis)) and its inactivation mechanisms which include esterification, sulfation, oxidation, and reduction. This knowledge will make it possible to act at different levels to regulate 7-ketocholesterol level and counteract its toxicity in order to limit the incidence of diseases associated with this oxysterol. These different points as well as food and biomedical applications are addressed in this review.

Publisher

Bioscientifica

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