Literature DB >> 29544378

Glucose and lipid metabolism alterations in liver and adipose tissue pre-dispose p47phox knockout mice to systemic insulin resistance.

Babu Nageswararao Kanuri1,2, Sanjay C Rebello1, Priya Pathak1, Hobby Agarwal1, Jitendra S Kanshana1, Deepika Awasthi1, Anand P Gupta3, Jiaur R Gayen3, Kumaravelu Jagavelu1, Madhu Dikshit4.   

Abstract

Oxidative stress due to enhanced production or reduced scavenging of reactive oxygen species (ROS) has been associated with diet (dyslipidemia) induced obesity and insulin resistance (IR). The present study was undertaken to assess the role of p47phox in IR using wild type (WT) and p47phox-/- mice, fed with different diets (HFD, LFD or Chow). Augmented body weight, glucose intolerance and reduced insulin sensitivity were observed in p47phox-/- mice fed with 45% HFD and 10% LFD. Further, body fat and circulating lipids were increased significantly with 5 weeks LFD feeding in p47phox-/- mice, while parameters of energy homeostasis were reduced as compared with WT mice. LFD fed knockout (KO) mice showed an enhanced hepatic glycogenolysis, and reduced insulin signalling in liver and adipose tissue, while skeletal muscle tissue remained unaffected. A significant increase in hepatic lipids, adiposity, as well as expression of genes regulating lipid synthesis, breakdown and efflux were observed in LFD fed p47phox-/- mice after 5 weeks. On the other hand, mice lacking p47phox demonstrated altered glucose tolerance and tissue insulin sensitivity after 5 weeks chow feeding, while changes in body weight, respiratory exchange ratio (RER) and heat production are non-significant. Our data demonstrate that lack of p47phox is sufficient to induce IR through altered glucose and lipid utilization by the liver and adipose tissue.

Entities:  

Keywords:  Insulin resistance; metabolism; p47phox; reactive oxygen species

Mesh:

Substances:

Year:  2018        PMID: 29544378     DOI: 10.1080/10715762.2018.1453136

Source DB:  PubMed          Journal:  Free Radic Res        ISSN: 1029-2470


  4 in total

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