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Curcumin analogue C66 attenuates obesity-induced renal injury by inhibiting chronic inflammation.

Authors :
Ye, Lin
Hu, Xueting
Hu, Xiang
Yin, Sihui
Chen, Jianqiang
He, Hanghui
Hong, Shanshan
Yang, Bin
Singh, Krishna K.
Feng, Jianpeng
Wang, Yi
Luo, Wu
Liang, Guang
Source :
Biomedicine & Pharmacotherapy. May2021, Vol. 137, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

Obesity has been recognized as a major risk factor for the development of chronic kidney disease, which is accompanied by increased renal inflammation, fibrosis, and apoptosis. C66 is a curcumin derivative that exerts anti-inflammatory effects by inhibiting the JNK pathway and prevents diabetic nephropathy. The present study investigates the possible protective effect of C66 on high-fat diet (HFD)-induced obesity-related glomerulopathy. Mice were fed with HFD for 8 weeks while some were treated with C66 every 2 days for 11 weeks. The HFD-fed mice developed renal dysfunction, as well as elevated triglyceride and cholesterol. Kidneys of the HFD-fed mice showed marked glomerular injuries, apoptosis, and inflammation with markedly increased cytokine production. Interestingly, treating HFD-fed mice with C66 remarkably reversed these pathological changes via inhibiting inflammation and NF-κB/JNK activation. In cultured mesangial cells, Palmitic Acid was able to activate the pro-fibrotic mechanisms, apoptosis, inflammatory response, and NF-κB and JNK signaling pathways, all of which could be attenuated by C66 treatment. In all, we demonstrated that curcumin analogue C66 attenuates obesity-induced renal injury by inhibiting chronic inflammation and apoptosis via targeting NF-κB and JNK. Our data suggest that C66 can be potentially used to prevent obesity-associated renal diseases warranting future investigations. [Display omitted] • Compound C66 improved histological abnormalities in HFD-fed mouse kidney. • C66 reduced PA-induced inflammation and apoptosis in mesangial cells. • C66 attenuated inflammatory kidney injuries via inhibiting JNK/NF-κB activation. • Inhibition of inflammation may be an effective strategy for the treatment of ORG. • JNK/NF-κB pathway is a promising therapeutic target for ORG. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07533322
Volume :
137
Database :
Academic Search Index
Journal :
Biomedicine & Pharmacotherapy
Publication Type :
Academic Journal
Accession number :
149367627
Full Text :
https://doi.org/10.1016/j.biopha.2021.111418