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  • Altered glucose and lipid homeostasis in liver and adipose tissue pre-dispose inducible NOS knockout mice to insulin resistance.

Altered glucose and lipid homeostasis in liver and adipose tissue pre-dispose inducible NOS knockout mice to insulin resistance.

Scientific reports (2017-01-21)
Babu Nageswararao Kanuri, Jitendra S Kanshana, Sanjay C Rebello, Priya Pathak, Anand P Gupta, Jiaur R Gayen, Kumaravelu Jagavelu, Madhu Dikshit
摘要

On the basis of diet induced obesity and KO mice models, nitric oxide is implied to play an important role in the initiation of dyslipidemia induced insulin resistance. However, outcomes using iNOS KO mice have so far remained inconclusive. The present study aimed to assess IR in iNOS KO mice after 5 weeks of LFD feeding by monitoring body composition, energy homeostasis, insulin sensitivity/signaling, nitrite content and gene expressions changes in the tissues. We found that body weight and fat content in KO mice were significantly higher while the respiratory exchange ratio (RER), volume of carbon dioxide (VCO

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抗-β-肌动蛋白−过氧化物酶抗体,小鼠单克隆 小鼠抗, clone AC-15, purified from hybridoma cell culture