20-HETE and EETs in diabetic nephropathy: a novel mechanistic pathway.

Diabetic nephropathy (DN), a major complication of diabetes, is characterized by hypertrophy, extracellular matrix accumulation, fibrosis and proteinuria leading to loss of renal function. Hypertrophy is a major factor inducing proximal tubular epithelial cells injury. However, the mechanisms leadin...

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Main Authors: Stephanie Eid, Rita Maalouf, Ayad A Jaffa, Joseph Nassif, Ahmed Hamdy, Awad Rashid, Fuad N Ziyadeh, Assaad A Eid
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3732284?pdf=render
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spelling doaj-d2c86ea578b845919e7e8ba4309f4f752020-11-25T01:18:09ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0188e7002910.1371/journal.pone.007002920-HETE and EETs in diabetic nephropathy: a novel mechanistic pathway.Stephanie EidRita MaaloufAyad A JaffaJoseph NassifAhmed HamdyAwad RashidFuad N ZiyadehAssaad A EidDiabetic nephropathy (DN), a major complication of diabetes, is characterized by hypertrophy, extracellular matrix accumulation, fibrosis and proteinuria leading to loss of renal function. Hypertrophy is a major factor inducing proximal tubular epithelial cells injury. However, the mechanisms leading to tubular injury is not well defined. In our study, we show that exposure of rats proximal tubular epithelial cells to high glucose (HG) resulted in increased extracellular matrix accumulation and hypertrophy. HG treatment increased ROS production and was associated with alteration in CYPs 4A and 2C11 expression concomitant with alteration in 20-HETE and EETs formation. HG-induced tubular injury were blocked by HET0016, an inhibitor of CYPs 4A. In contrast, inhibition of EETs promoted the effects of HG on cultured proximal tubular cells. Our results also show that alteration in CYPs 4A and 2C expression and 20HETE and EETs formation regulates the activation of the mTOR/p70S6Kinase pathway, known to play a major role in the development of DN. In conclusion, we show that hyperglycemia in diabetes has a significant effect on the expression of Arachidonic Acid (AA)-metabolizing CYPs, manifested by increased AA metabolism, and might thus alter kidney function through alteration of type and amount of AA metabolites.http://europepmc.org/articles/PMC3732284?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Stephanie Eid
Rita Maalouf
Ayad A Jaffa
Joseph Nassif
Ahmed Hamdy
Awad Rashid
Fuad N Ziyadeh
Assaad A Eid
spellingShingle Stephanie Eid
Rita Maalouf
Ayad A Jaffa
Joseph Nassif
Ahmed Hamdy
Awad Rashid
Fuad N Ziyadeh
Assaad A Eid
20-HETE and EETs in diabetic nephropathy: a novel mechanistic pathway.
PLoS ONE
author_facet Stephanie Eid
Rita Maalouf
Ayad A Jaffa
Joseph Nassif
Ahmed Hamdy
Awad Rashid
Fuad N Ziyadeh
Assaad A Eid
author_sort Stephanie Eid
title 20-HETE and EETs in diabetic nephropathy: a novel mechanistic pathway.
title_short 20-HETE and EETs in diabetic nephropathy: a novel mechanistic pathway.
title_full 20-HETE and EETs in diabetic nephropathy: a novel mechanistic pathway.
title_fullStr 20-HETE and EETs in diabetic nephropathy: a novel mechanistic pathway.
title_full_unstemmed 20-HETE and EETs in diabetic nephropathy: a novel mechanistic pathway.
title_sort 20-hete and eets in diabetic nephropathy: a novel mechanistic pathway.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Diabetic nephropathy (DN), a major complication of diabetes, is characterized by hypertrophy, extracellular matrix accumulation, fibrosis and proteinuria leading to loss of renal function. Hypertrophy is a major factor inducing proximal tubular epithelial cells injury. However, the mechanisms leading to tubular injury is not well defined. In our study, we show that exposure of rats proximal tubular epithelial cells to high glucose (HG) resulted in increased extracellular matrix accumulation and hypertrophy. HG treatment increased ROS production and was associated with alteration in CYPs 4A and 2C11 expression concomitant with alteration in 20-HETE and EETs formation. HG-induced tubular injury were blocked by HET0016, an inhibitor of CYPs 4A. In contrast, inhibition of EETs promoted the effects of HG on cultured proximal tubular cells. Our results also show that alteration in CYPs 4A and 2C expression and 20HETE and EETs formation regulates the activation of the mTOR/p70S6Kinase pathway, known to play a major role in the development of DN. In conclusion, we show that hyperglycemia in diabetes has a significant effect on the expression of Arachidonic Acid (AA)-metabolizing CYPs, manifested by increased AA metabolism, and might thus alter kidney function through alteration of type and amount of AA metabolites.
url http://europepmc.org/articles/PMC3732284?pdf=render
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