Hydrogen Sulfide Inhibits High-Salt Diet-Induced Renal Oxidative Stress and Kidney Injury in Dahl Rats

Author:

Huang Pan1,Shen Zhizhou1,Liu Jia1,Huang Yaqian1,Chen Siyao1,Yu Wen1,Wang Suxia2,Ren Yali2,Li Xiaohui3,Tang Chaoshu4,Du Junbao15,Jin Hongfang1

Affiliation:

1. Department of Pediatrics, Peking University First Hospital, Beijing 100034, China

2. Lab of Electron Microscopy, Peking University First Hospital, Beijing 100034, China

3. Department of Cardiology, Capital Institute of Pediatrics, Beijing 100020, China

4. Department of Physiology and Pathophysiology, Peking University Health Science Centre, Beijing 100191, China

5. Key Lab of Molecular Cardiology, Ministry of Education, Beijing 100191, China

Abstract

Background. The study was designed to investigate if H2S could inhibit high-salt diet-induced renal excessive oxidative stress and kidney injury in Dahl rats.Methods. Male salt-sensitive Dahl and SD rats were used. Blood pressure (BP), serum creatinine, urea, creatinine clearance rate, and 24-hour urine protein were measured. Renal ultra- and microstructures were observed. Collagen-I and -III contents the oxidants and antioxidants levels in renal tissue were detected. Keap1/Nrf2 association and Keap1 s-sulfhydration were detected.Results. After 8 weeks of high-salt diet, BP was significantly increased, renal function and structure were impaired, and collagen deposition was abundant in renal tissues with increased renal MPO activity, H2O2, MDA, GSSG, andOH contents, reduced renal T-AOC and GSH contents, CAT, GSH-PX and SOD activity, and SOD expressions in Dahl rats. Furthermore, endogenous H2S in renal tissues was decreased in Dahl rats. H2S donor, however, decreased BP, improved renal function and structure, and inhibited collagen excessive deposition in kidney, in association with increased antioxidative activity and reduced oxidative stress in renal tissues. H2S activated Nrf2 by inducing Keap1 s-sulfhydration and subsequent Keap1/Nrf2 disassociation.Conclusions. H2S protected against high-salt diet-induced renal injury associated with enhanced antioxidant capacity and inhibited renal oxidative stress.

Funder

Major Basic Research Development Program of People’s Republic of China

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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