Literature DB >> 23103716

Dietary polyphenols preconditioning protects 3T3-L1 preadipocytes from mitochondrial alterations induced by oxidative stress.

Pascal Baret1, Axelle Septembre-Malaterre, Michel Rigoulet, Christian Lefebvre d'Hellencourt, Muriel Priault, Marie-Paule Gonthier, Anne Devin.   

Abstract

Numerous studies indicate that an increase in reactive oxygen species (ROS) significantly affects white adipose tissue biology and leads to an inflammatory profile and insulin resistance, which could contribute to obesity-associated diabetes and cardiovascular diseases. Mitochondria play a key role in adipose tissue energy metabolism and constitute the main source of cellular ROS such as H(2)O(2). Polyphenols constitute the most abundant antioxidants provided by the human diet. Indeed, they are widely distributed in fruits, vegetables and some plant-derived beverages such as coffee and tea. Thus, the biological effects of dietary polyphenols that may increase the antioxidant capacity of the body against obesity-induced oxidative stress are of high interest. Here, we studied the capacity of polyphenols to modulate the impact of oxidative stress on the mitochondria of preadipocytes, which are important cells governing the adipose tissue development for energy homeostasis. Whereas H(2)O(2) treatment induces a proliferation arrest associated with an increase in mitochondrial content in 3T3-L1 preadipocytes, preconditioning with some major dietary polyphenols totally or partially protects the cells against oxidative stress consequences. This article is part of a Directed Issue entitled: Bioenergetic dysfunction, adaptation and therapy.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 23103716     DOI: 10.1016/j.biocel.2012.10.007

Source DB:  PubMed          Journal:  Int J Biochem Cell Biol        ISSN: 1357-2725            Impact factor:   5.085


  11 in total

1.  Investigation of hypoglycemic effects, oxidative stress potential and xanthine-oxidase activity of polyphenols (gallic acid, catechin) derived from faba bean on 3T3-L1 cell line: insights into molecular docking and simulation study.

Authors:  Dhiraj Kumar Choudhary; Navaneet Chaturvedi; Amit Singh; Abha Mishra
Journal:  Toxicol Res (Camb)       Date:  2020-05-21       Impact factor: 3.524

2.  Phycoerythrin averts intracellular ROS generation and physiological functional decline in eukaryotes under oxidative stress.

Authors:  Ravi R Sonani; Rajesh P Rastogi; Niraj K Singh; Jaymesh Thadani; Puja J Patel; Jitendra Kumar; Anand K Tiwari; Ranjitsinh V Devkar; Datta Madamwar
Journal:  Protoplasma       Date:  2016-06-22       Impact factor: 3.356

Review 3.  Targeting the NO/superoxide ratio in adipose tissue: relevance to obesity and diabetes management.

Authors:  Aleksandra Jankovic; Aleksandra Korac; Biljana Buzadzic; Ana Stancic; Vesna Otasevic; Péter Ferdinandy; Andreas Daiber; Bato Korac
Journal:  Br J Pharmacol       Date:  2016-05-15       Impact factor: 8.739

Review 4.  Oxidative stress and adipocyte biology: focus on the role of AGEs.

Authors:  Florence Boyer; Jennifer Baraka Vidot; Alexis Guerin Dubourg; Philippe Rondeau; M Faadiel Essop; Emmanuel Bourdon
Journal:  Oxid Med Cell Longev       Date:  2015-03-23       Impact factor: 6.543

5.  Antioxidant polyphenol-rich extracts from the medicinal plants Antirhea borbonica, Doratoxylon apetalum and Gouania mauritiana protect 3T3-L1 preadipocytes against H2O2, TNFα and LPS inflammatory mediators by regulating the expression of superoxide dismutase and NF-κB genes.

Authors:  Marie-Paule Gonthier; Christine Robert-Da Silva; Méry Marimoutou; Fanny Le Sage; Jacqueline Smadja; Christian Lefebvre d'Hellencourt
Journal:  J Inflamm (Lond)       Date:  2015-02-08       Impact factor: 4.981

Review 6.  ROS: Crucial Intermediators in the Pathogenesis of Intervertebral Disc Degeneration.

Authors:  Chencheng Feng; Minghui Yang; Minghong Lan; Chang Liu; Yang Zhang; Bo Huang; Huan Liu; Yue Zhou
Journal:  Oxid Med Cell Longev       Date:  2017-03-14       Impact factor: 6.543

7.  Protective effects of Phyllanthus phillyreifolius extracts against hydrogen peroxide induced oxidative stress in HEK293 cells.

Authors:  Dovilė Grauzdytė; Audrius Pukalskas; Wildriss Viranaicken; Chaker El Kalamouni; Petras Rimantas Venskutonis
Journal:  PLoS One       Date:  2018-11-16       Impact factor: 3.240

Review 8.  Oxidative Stress, Plant Natural Antioxidants, and Obesity.

Authors:  Israel Pérez-Torres; Vicente Castrejón-Téllez; María Elena Soto; María Esther Rubio-Ruiz; Linaloe Manzano-Pech; Verónica Guarner-Lans
Journal:  Int J Mol Sci       Date:  2021-02-11       Impact factor: 5.923

9.  Potential Use of Vacuum Impregnation and High-Pressure Homogenization to Obtain Functional Products from Lulo Fruit (Solanum quitoense Lam.).

Authors:  Leidy Indira Hinestroza-Córdoba; Cristina Barrera; Lucía Seguí; Noelia Betoret
Journal:  Foods       Date:  2021-04-09

Review 10.  Obesity-associated oxidative stress: strategies finalized to improve redox state.

Authors:  Isabella Savini; Maria Valeria Catani; Daniela Evangelista; Valeria Gasperi; Luciana Avigliano
Journal:  Int J Mol Sci       Date:  2013-05-21       Impact factor: 5.923

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