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Genetic depletion of glutathione peroxidase-1 potentiates nephrotoxicity induced by multiple doses of cocaine via activation of angiotensin II AT1 receptor

Authors
Huynh Nhu MaiChung, Yoon HeeShin, Eun-JooKim, Dae-JoongJeong, Ji HoonThuy-Ty Lan NguyenNam, YunsungLee, Yu JeungNah, Seung-YeolYu, Dae-YeulJang, Choon-GonHo, Ye-ShihLei, Xin GenKim, Hyoung-Chun
Issue Date
Apr-2016
Publisher
TAYLOR & FRANCIS LTD
Keywords
AT1R; cocaine; GPx-1 gene; kidney; losartan; PI3K; Akt signaling
Citation
FREE RADICAL RESEARCH, v.50, no.4, pp 467 - 483
Pages
17
Journal Title
FREE RADICAL RESEARCH
Volume
50
Number
4
Start Page
467
End Page
483
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/7044
DOI
10.3109/10715762.2016.1143097
ISSN
1071-5762
1029-2470
Abstract
We investigated the possible roles of angiotensin II type 1 receptor (AT1R) and oxidative stress responsive nuclear factor B (NFB) in renal damage caused by multiple doses of cocaine in glutathione peroxidase (GPx)-1 gene-depleted mice. Treatment with cocaine resulted in significant increases in malondialdehyde, protein carbonyl, and pro-apoptotic Bax expression and decreases in the ratio of glutathione (GSH) and its oxidized form (GSSG), GSH-dependent enzymes, and anti-apoptotic factors in the kidney. These alterations were more pronounced in GPx-1 knockout (-/-) mice than in wild type (WT) mice. Notably, the AT1R antagonist losartan protected against the renal toxicity induced by cocaine, whereas the NFB inhibitor pyrrolidine dithiocarbamate was not protective. The toxicity was more pronounced in GPx-1 (-/-) mice than in WT mice. The protective effect afforded by losartan against cocaine toxicity appeared to be more sensitive in GPx-1 (-/-) mice than that in WT mice. These losartan-mediated protective effects were inhibited by the phosphatidyl-inositol-3-kinase (PI3K) inhibitor LY294002, indicating that losartan provides significant protection from cocaine-induced renal toxicity through PI3K/Akt signaling. Our results suggest that genetic inhibition of GPx-1 potentiates cocaine-induced renal damage via activation of AT1R by inhibition of PI3K-Akt signaling, and that AT1R can be a therapeutic target against renal toxicity induced by cocaine.
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