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Increased Fatty Acid Oxidation in Differentiated Proximal Tubular Cells Surviving a Reversible Episode of Acute Kidney Injury

Authors :
Aurélien Bataille
Pierre Galichon
Nadjim Chelghoum
Badreddine Mohand Oumoussa
Marie-Julia Ziliotis
Iman Sadia
Sophie Vandermeersch
Noémie Simon-Tillaux
David Legouis
Raphaël Cohen
Yi-Chun Xu-Dubois
Morgane Commereuc
Eric Rondeau
Stéphane Le Crom
Alexandre Hertig
Source :
Cellular Physiology and Biochemistry, Vol 47, Iss 4, Pp 1338-1351 (2018)
Publication Year :
2018
Publisher :
Cell Physiol Biochem Press GmbH & Co KG, 2018.

Abstract

Background/Aims: Fatty acid oxidation (FAO), the main source of energy produced by tubular epithelial cells in the kidney, was found to be defective in tubulo-interstitial samples dissected out in kidney biopsies from patients with chronic kidney disease (CKD). Experimental data indicated that this decrease was a strong determinant of renal fibrogenesis, hence a focus for therapeutic interventions. Nevertheless, whether persistently differentiated renal tubules, surviving in a pro-fibrotic environment, also suffer from a decrease in FAO, is currently unknown. Methods: To address this question, we isolated proximal tubules captured ex vivo on the basis of the expression of an intact brush border antigen (Prominin-1) in C57BL6/J mice subjected to a controlled, two-hit model of renal fibrosis (reversible ischemic acute kidney injury (AKI) or sham surgery, followed by angiotensin 2 administration). A transcriptomic high throughput sequencing was performed on total mRNA from these cells, and on whole kidneys. Results: In contrast to mice subjected to sham surgery, mice with a history of AKI displayed histologically more renal fibrosis when exposed to angiotensin 2. High throughput RNA sequencing, principal component analysis and clustering showed marked consistency within experimental groups. As expected, FAO transcripts were decreased in whole fibrotic kidneys. Surprisingly, however, up- rather than down-regulation of metabolic pathways (oxidative phosphorylation, fatty acid metabolism, glycolysis, and PPAR signalling pathway) was a hallmark of the differentiated tubules captured from fibrotic kidneys. Immunofluorescence co-staining analysis confirmed that the expression of FAO enzymes was dependent of tubular trophicity. Conclusions: These data suggest that in differentiated proximal tubules energetic hyperactivity is promoted concurrently with organ fibrogenesis.

Details

Language :
English
ISSN :
10158987 and 14219778
Volume :
47
Issue :
4
Database :
Directory of Open Access Journals
Journal :
Cellular Physiology and Biochemistry
Publication Type :
Academic Journal
Accession number :
edsdoj.484b1a0eb9894756ab3a2480ea1e9f5e
Document Type :
article
Full Text :
https://doi.org/10.1159/000490819