Low-dose hydralazine prevents fibrosis in a murine model of acute kidney injury-to-chronic kidney disease progression

2017 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​Low-dose hydralazine prevents fibrosis in a murine model of acute kidney injury-to-chronic kidney disease progression​
Tampe, B. ; Steinle, U.; Tampe, D. ; Carstens, J. L.; Korsten, P. ; Zeisberg, E. M.   & Müller, G. A. et al.​ (2017) 
Kidney International91(1) pp. 157​-176​.​ DOI: https://doi.org/10.1016/j.kint.2016.07.042 

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Authors
Tampe, Björn ; Steinle, Ulrike; Tampe, Désirée ; Carstens, Julienne L.; Korsten, Peter ; Zeisberg, Elisabeth M. ; Müller, Gerhard A.; Kalluri, Raghu; Zeisberg, Michael 
Abstract
Acute kidney injury (AKI) and progressive chronic kidney disease (CKD) are intrinsically tied syndromes. In this regard, the acutely injured kidney often does not achieve its full regenerative capacity and AKI directly transitions into progressive CKD associated with tubulointerstitial fibrosis. Underlying mechanisms of such AKI-to-CKD progression are still incompletely understood and specific therapeutic interventions are still elusive. Because epigenetic modifications play a role in maintaining tissue fibrosis, we used a murine model of ischemia-reperfusion injury to determine whether aberrant promoter methylation of RASAL1 contributes causally to the switch between physiological regeneration and tubulointerstitial fibrogenesis, a hallmark of AKI-to-CKD progression. It is known that the antihypertensive drug hydralazine has demethylating activity, and that its optimum demethylating activity occurs at concentrations below blood pressure-lowering doses. Administration of low-dose hydralazine effectively induced expression of hydroxylase TET3, which catalyzed RASAL1 hydroxymethylation and subsequent RASAL1 promoter demethylation. Hydralazine-induced CpG promoter demethylation subsequently attenuated renal fibrosis and preserved excretory renal function independent of its blood pressure-lowering effects. In comparison, RASAL1 demethylation and inhibition of tubulointerstitial fibrosis was not detected upon administration of the angiotensin-converting enzyme inhibitor Ramipril in this model. Thus, RASAL1 promoter methylation and subsequent transcriptional RASAL1 suppression plays a causal role in AKI-to-CKD progression.
Issue Date
2017
Journal
Kidney International 
Project
SFB 1002: Modulatorische Einheiten bei Herzinsuffizienz 
SFB 1002 | C01: Epigenetische Kontrolle der Herzfibrose 
SFB 1002 | D03: ENPP3-vermittelter Phosphat-Metabolismus bei der Herzfibrose 
Working Group
RG E. Zeisberg (Kardiales Stroma) 
RG M. Zeisberg (Renale Fibrogenese) 
ISSN
0085-2538
eISSN
1523-1755
Language
English

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