Literature DB >> 30732555

Mechanisms of beneficial effects of exercise training on non-alcoholic fatty liver disease (NAFLD): Roles of oxidative stress and inflammation.

Parvin Farzanegi1, Amir Dana2, Zeynab Ebrahimpoor3, Mahdieh Asadi1, Mohammad Ali Azarbayjani4.   

Abstract

Non-alcoholic fatty liver disease (NAFLD) is a common chronic liver disorder which is associated with accumulation of fats in the liver. It causes a wide variety of pathological effects such as non-alcoholic steatohepatitis (NASH) and cirrhosis, insulin resistance, obesity, hypertension, dyslipidaemia, diabetes and cardiovascular disease. The molecular mechanisms that cause the initiation and progression of NAFLD are not fully understood. Oxidative stress (OS) induced by reactive oxygen species (ROS) and inflammation are likely a significant mechanism which can lead to hepatic cell death and tissue injury. Mitochondrial abnormalities, down-regulation of several antioxidant enzymes, glutathione (GSH) depletion and decreased activity of GSH-dependent antioxidants, accumulation of leukocytes and hepatic inflammation are the major sources of ROS overproduction in NAFLD. Excessive production of ROS suppresses the capacity of other antioxidant defence systems in NAFLD and causes further oxidative damage. Regular exercise can be considered as an effective strategy for treatment of NAFLD. It improves NAFLD by reducing intrahepatic fat content, increasing β-oxidation of fatty acids, inducing hepato-protective autophagy, overexpressing peroxisome proliferator-activated receptor- γ (PPAR-γ), as well as attenuating hepatocyte apoptosis and increasing insulin sensitivity. Exercise training also suppresses ROS overproduction and OS in NAFLD via up-regulation of several antioxidant enzymes and anti-inflammatory mediators. Therefore, an understanding of these molecules and signalling pathways gives us valuable information about NAFLD progression and a method for developing a suitable clinical treatment. This review aimed to evaluate sources of ROS and OS in NAFLD and the molecular mechanisms involved in the beneficial effects of exercises on NAFLD.

Entities:  

Keywords:  Exercise; NAFLD; inflammation; oxidative stress; reactive oxygen species

Mesh:

Year:  2019        PMID: 30732555     DOI: 10.1080/17461391.2019.1571114

Source DB:  PubMed          Journal:  Eur J Sport Sci        ISSN: 1536-7290            Impact factor:   4.050


  56 in total

1.  Exercise suppresses NLRP3 inflammasome activation in mice with diet-induced NASH: a plausible role of adropin.

Authors:  Wenqi Yang; Ling Liu; Yuan Wei; Chunlu Fang; Shujing Liu; Fu Zhou; Yaping Li; Ge Zhao; Ziyi Guo; Yuan Luo; Liangming Li
Journal:  Lab Invest       Date:  2020-12-02       Impact factor: 5.662

Review 2.  Non-Alcoholic Fatty Liver Disease and Cardiovascular Comorbidities: Pathophysiological Links, Diagnosis, and Therapeutic Management.

Authors:  Alexandra Jichitu; Simona Bungau; Ana Maria Alexandra Stanescu; Cosmin Mihai Vesa; Mirela Marioara Toma; Cristiana Bustea; Stela Iurciuc; Marius Rus; Nicolae Bacalbasa; Camelia Cristina Diaconu
Journal:  Diagnostics (Basel)       Date:  2021-04-12

3.  Dehydroabietic acid improves nonalcoholic fatty liver disease through activating the Keap1/Nrf2-ARE signaling pathway to reduce ferroptosis.

Authors:  Gai Gao; Zhishen Xie; Er-Wen Li; Yong Yuan; Yu Fu; Pan Wang; Xiaowei Zhang; Yonghui Qiao; Jiangyan Xu; Christian Hölscher; Hui Wang; Zhenqiang Zhang
Journal:  J Nat Med       Date:  2021-02-15       Impact factor: 2.343

4.  Four weeks exercise training enhanced the hepatic insulin sensitivity in high fat- and high carbohydrate-diet fed hyperinsulinemic rats.

Authors:  Anu Joseph; S Parvathy; Koyikkal Karthikeya Varma; Aiswarya Nandakumar
Journal:  J Diabetes Metab Disord       Date:  2020-11-25

5.  Effect of vitamin D3 supplementation on hepatic lipid dysregulation associated with autophagy regulatory AMPK/Akt-mTOR signaling in type 2 diabetic mice.

Authors:  Hyewon Lim; Heaji Lee; Yunsook Lim
Journal:  Exp Biol Med (Maywood)       Date:  2021-02-04

6.  Parthenolide plays a protective role in the liver of mice with metabolic dysfunction‑associated fatty liver disease through the activation of the HIPPO pathway.

Authors:  Weihong Wang; Yukai He; Qiuli Liu
Journal:  Mol Med Rep       Date:  2021-05-06       Impact factor: 2.952

7.  Phenethylamine in chlorella alleviates high-fat diet-induced mouse liver damage by regulating generation of methylglyoxal.

Authors:  Yifeng Zheng; Agustin Martin-Morales; Jing Wang; Masaki Fujishima; Eri Okumura; Kenji Sato
Journal:  NPJ Sci Food       Date:  2021-07-23

8.  PNPLA3 I148M is involved in the variability in anti-NAFLD response to exenatide.

Authors:  Yunzhi Chen; Xuemei Yan; Xiao Xu; Shuhua Yuan; Fen Xu; Hua Liang
Journal:  Endocrine       Date:  2020-08-30       Impact factor: 3.633

9.  DHA Protects Hepatocytes from Oxidative Injury through GPR120/ERK-Mediated Mitophagy.

Authors:  Jinglong Chen; Danping Wang; Yibo Zong; Xiaojing Yang
Journal:  Int J Mol Sci       Date:  2021-05-26       Impact factor: 5.923

10.  Alleviative effects of total flavones of Glycyrrhiza uralensis Fisch on oxidative stress and lipid metabolism disorder induced by high-fat diet in intestines of Tilapia (Oreochromis niloticus).

Authors:  Jinliang Du; Li-Ping Cao; Rui Jia; Zhengyan Gu; Qin He; Pao Xu; Guojun Yin; Yuzhong Ma
Journal:  3 Biotech       Date:  2021-06-20       Impact factor: 2.893

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