Renalase contributes to protection against renal fibrosis via inhibiting oxidative stress in rats
Background Renal interstitial fibrosis (RIF) is a common pathway for progression of chronic kidney disease (CKD) to end-stage renal disease. In our previous study, it has been provided that renalase can ameliorate renal interstitial fibrosis in unilateral ureteral obstruction (UUO) rats. The other m...
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Published in | International urology and nephrology Vol. 50; no. 7; pp. 1347 - 1354 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Springer Netherlands
01.07.2018
Springer Nature B.V |
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Abstract | Background
Renal interstitial fibrosis (RIF) is a common pathway for progression of chronic kidney disease (CKD) to end-stage renal disease. In our previous study, it has been provided that renalase can ameliorate renal interstitial fibrosis in unilateral ureteral obstruction (UUO) rats. The other mechanism of renalase to alleviate renal fibrosis should be explored.
Materials and methods
In this study, we evaluated the role of oxidative stress in UUO rats and epithelial–mesenchymal transition (EMT) in human proximal renal tubular epithelial (HK-2) cells and examined the association of renalase.
Results
Oxidative stress could induce EMT and fibrosis in HK-2 cells. In the UUO model, oxidative stress occurred and maintained at a high level leading to RIF. Administration of renalase by adenovirus significantly attenuated oxidative stress and further in vitro study showed that renalase can exert anti-fibrosis by inhibiting oxidative stress.
Conclusion
Our results prompt another mechanism of anti-fibrotic renal protection of renalase, which may be partly associated with inhibiting oxidative stress. These data provided another theoretical basis that supplementation with exogenous renalase may be a promising strategy for slowing or halting the progression of CKD. |
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AbstractList | Background
Renal interstitial fibrosis (RIF) is a common pathway for progression of chronic kidney disease (CKD) to end-stage renal disease. In our previous study, it has been provided that renalase can ameliorate renal interstitial fibrosis in unilateral ureteral obstruction (UUO) rats. The other mechanism of renalase to alleviate renal fibrosis should be explored.
Materials and methods
In this study, we evaluated the role of oxidative stress in UUO rats and epithelial–mesenchymal transition (EMT) in human proximal renal tubular epithelial (HK-2) cells and examined the association of renalase.
Results
Oxidative stress could induce EMT and fibrosis in HK-2 cells. In the UUO model, oxidative stress occurred and maintained at a high level leading to RIF. Administration of renalase by adenovirus significantly attenuated oxidative stress and further in vitro study showed that renalase can exert anti-fibrosis by inhibiting oxidative stress.
Conclusion
Our results prompt another mechanism of anti-fibrotic renal protection of renalase, which may be partly associated with inhibiting oxidative stress. These data provided another theoretical basis that supplementation with exogenous renalase may be a promising strategy for slowing or halting the progression of CKD. BACKGROUNDRenal interstitial fibrosis (RIF) is a common pathway for progression of chronic kidney disease (CKD) to end-stage renal disease. In our previous study, it has been provided that renalase can ameliorate renal interstitial fibrosis in unilateral ureteral obstruction (UUO) rats. The other mechanism of renalase to alleviate renal fibrosis should be explored.MATERIALS AND METHODSIn this study, we evaluated the role of oxidative stress in UUO rats and epithelial-mesenchymal transition (EMT) in human proximal renal tubular epithelial (HK-2) cells and examined the association of renalase.RESULTSOxidative stress could induce EMT and fibrosis in HK-2 cells. In the UUO model, oxidative stress occurred and maintained at a high level leading to RIF. Administration of renalase by adenovirus significantly attenuated oxidative stress and further in vitro study showed that renalase can exert anti-fibrosis by inhibiting oxidative stress.CONCLUSIONOur results prompt another mechanism of anti-fibrotic renal protection of renalase, which may be partly associated with inhibiting oxidative stress. These data provided another theoretical basis that supplementation with exogenous renalase may be a promising strategy for slowing or halting the progression of CKD. Renal interstitial fibrosis (RIF) is a common pathway for progression of chronic kidney disease (CKD) to end-stage renal disease. In our previous study, it has been provided that renalase can ameliorate renal interstitial fibrosis in unilateral ureteral obstruction (UUO) rats. The other mechanism of renalase to alleviate renal fibrosis should be explored. In this study, we evaluated the role of oxidative stress in UUO rats and epithelial-mesenchymal transition (EMT) in human proximal renal tubular epithelial (HK-2) cells and examined the association of renalase. Oxidative stress could induce EMT and fibrosis in HK-2 cells. In the UUO model, oxidative stress occurred and maintained at a high level leading to RIF. Administration of renalase by adenovirus significantly attenuated oxidative stress and further in vitro study showed that renalase can exert anti-fibrosis by inhibiting oxidative stress. Our results prompt another mechanism of anti-fibrotic renal protection of renalase, which may be partly associated with inhibiting oxidative stress. These data provided another theoretical basis that supplementation with exogenous renalase may be a promising strategy for slowing or halting the progression of CKD. |
Author | Zhang, Qidong Wang, Liyan Wang, Yahui Wu, Yiru Liu, Wenhu Wang, Xiaoqi |
Author_xml | – sequence: 1 givenname: Yiru surname: Wu fullname: Wu, Yiru organization: Department of Nephrology, Faculty of Kidney Diseases, Beijing Friendship Hospital, Capital Medical University – sequence: 2 givenname: Liyan surname: Wang fullname: Wang, Liyan organization: Department of Nephrology, Faculty of Kidney Diseases, Beijing Friendship Hospital, Capital Medical University – sequence: 3 givenname: Xiaoqi surname: Wang fullname: Wang, Xiaoqi organization: Department of Nephrology, Faculty of Kidney Diseases, Beijing Friendship Hospital, Capital Medical University – sequence: 4 givenname: Yahui surname: Wang fullname: Wang, Yahui organization: Department of Nephrology, Faculty of Kidney Diseases, Beijing Friendship Hospital, Capital Medical University – sequence: 5 givenname: Qidong surname: Zhang fullname: Zhang, Qidong organization: Department of Nephrology, Faculty of Kidney Diseases, Beijing Friendship Hospital, Capital Medical University – sequence: 6 givenname: Wenhu surname: Liu fullname: Liu, Wenhu email: liuwenhu2013@163.com organization: Department of Nephrology, Faculty of Kidney Diseases, Beijing Friendship Hospital, Capital Medical University |
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Keywords | Oxidative stress Renalase Renal interstitial fibrosis Epithelial–mesenchymal transition Chronic kidney disease |
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Renal interstitial fibrosis (RIF) is a common pathway for progression of chronic kidney disease (CKD) to end-stage renal disease. In our previous... Renal interstitial fibrosis (RIF) is a common pathway for progression of chronic kidney disease (CKD) to end-stage renal disease. In our previous study, it has... BackgroundRenal interstitial fibrosis (RIF) is a common pathway for progression of chronic kidney disease (CKD) to end-stage renal disease. In our previous... BACKGROUNDRenal interstitial fibrosis (RIF) is a common pathway for progression of chronic kidney disease (CKD) to end-stage renal disease. In our previous... |
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SubjectTerms | Animals Biomarkers - blood Cells, Cultured Disease Models, Animal End-stage renal disease Fibrosis Fibrosis - prevention & control Humans Kidney diseases Kidney Tubules, Proximal - metabolism Male Medicine Medicine & Public Health Mesenchyme Monoamine Oxidase - metabolism Nephrology Nephrology - Original Paper Oxidation Oxidative stress Oxidative Stress - drug effects Random Allocation Rats Rats, Sprague-Dawley Renal Insufficiency, Chronic - metabolism Renal Insufficiency, Chronic - pathology Renal Insufficiency, Chronic - physiopathology Rodents Role Sensitivity and Specificity Supplements Urology |
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Title | Renalase contributes to protection against renal fibrosis via inhibiting oxidative stress in rats |
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