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Resveratrol Ameliorates Contrast Induced Nephropathy Through the Activation of SIRT1-PGC-1 alpha-Foxo1 Signaling in Mice

Authors
Hong, Yu AhBae, So YeonAhn, Shin YoungKim, JieunKwon, Young JooJung, Woon YongKo, Gang Jee
Issue Date
2017
Publisher
KARGER
Keywords
Contrast media; Acute kidney injury; Resveratrol; Oxidative stress; Apoptosis; SIRT1
Citation
KIDNEY & BLOOD PRESSURE RESEARCH, v.42, no.4, pp.641 - 653
Indexed
SCIE
SCOPUS
Journal Title
KIDNEY & BLOOD PRESSURE RESEARCH
Volume
42
Number
4
Start Page
641
End Page
653
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/86477
DOI
10.1159/000481804
ISSN
1420-4096
Abstract
Background/Aims: SIRT1 activation promotes the resistance of renal tubular cells to oxidative stress, and resveratrol is known as a SIRT1 activator. Methods: Resveratrol was injected intraperitoneally with iohexol for 24 hours. NRK-52E cells were pretreated with resveratrol for 24 hours and then exposed to iohexol for 3 hours. Renal function was measured by serum creatinine and cell survival was assessed by MTT assay. We investigated whether resveratrol attenuates oxidative stress and apoptosis in contrast-induced nephropathy (CIN). Results: Serum creatinine and tubular injury increased significantly after iohexol treatment, and resveratrol co-treatment attenuated the renal injury. Cell survival decreased after iohexol exposure and resveratrol reduced cell death induced by iohexol. Resveratrol was accompanied with the activation of SIRT1 and PGC-1 alpha and dephosphorylation of FoxO1 in mice with CIN. SIRT1 and PGC-1 alpha expression were decreased by iohexol, and increased significantly in resveratrol-pretreated cells. These processes resulted in reduction of oxidative stress and apoptosis both in vivo and in vitro experiments. Resveratrol decreased inflammatory cell infiltration induced by iohexol in mice with CIN. SIRT1 inhibition using siRNA in tubular cells accentuated the decrease of cell viability by iohexol. Conclusion: Resveratrol attenuated CIN by modulating renal oxidative stress and apoptosis through activation of SIRT1-PGC-1 alpha-FoxO1 signaling. (c) 2017 The Author(s) Published by S. Karger AG, Basel
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