Literature DB >> 24300339

Exposure to low- vs iso-osmolar contrast agents reduces NADPH-dependent reactive oxygen species generation in a cellular model of renal injury.

Giuseppe Stefano Netti1, Clelia Prattichizzo1, Eustacchio Montemurno2, Simona Simone3, Cesira Cafiero3, Federica Rascio2, Giovanni Stallone2, Elena Ranieri1, Giuseppe Grandaliano2, Loreto Gesualdo4.   

Abstract

Contrast-induced nephropathy represents the third cause of hospital-acquired acute renal failure. This study investigated the effects of low- vs iso-osmolar contrast medium (CM) exposure on NADPH-dependent reactive oxygen species (ROS) generation by tubular cells. X-ray attenuation of iohexol, iopamidol, and iodixanol was assessed at equimolar iodine concentrations and their effects on human renal proximal tubular cells (PTCs) were evaluated with equally attenuating solutions of each CM. Cytotoxicity, apoptosis, and necrosis were investigated by trypan blue exclusion, MTT assay, and annexin V/propidium iodide assay, respectively. ROS production was assessed by DCF assay, NADPH oxidase activity by the lucigenin-enhanced chemiluminescence method, and Nox4 expression by immunoblot. Yielding the same X-ray attenuation, CM cytotoxicity was assessed in PTCs at equimolar iodine concentrations. More necrosis was present after incubation with iohexol and iopamidol than after incubation with equal concentrations of iodixanol. Iohexol and iodixanol at low iodine concentrations induced less cytotoxicity than iopamidol. Moreover, both iohexol and iopamidol induced more apoptosis than iodixanol, with a dose-dependent effect. ROS generation was significantly higher with iopamidol and iohexol compared to iodixanol. NADPH oxidase activity and Nox4 protein expression significantly increased after exposure to iopamidol and iohexol, with a dose-dependent effect, compared with iodixanol. CM-induced Nox4 expression and activity depended upon Src activation. In conclusion, at angiographic concentrations, iodixanol induces fewer cytotoxic effects on cultured tubular cells than iohexol and iopamidol along with a lower induction of Nox4-dependent ROS generation. This enzyme may, thus, represent a potential therapeutic target to prevent iodinated CM-related oxidative stress.
© 2013 Published by Elsevier Inc.

Entities:  

Keywords:  Contrast-induced nephropathy; Free radicals; Iso-osmolar contrast medium; Low-osmolar contrast medium; NADPH oxidase; Reactive oxygen species

Mesh:

Substances:

Year:  2013        PMID: 24300339     DOI: 10.1016/j.freeradbiomed.2013.11.016

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  9 in total

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Authors:  Tao Wu; Hai Nie; Allan B Dietz; David R Salek; Jay Smith; Andre J van Wijnen; Wenchun Qu
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5.  Oxidative stress caused by activation of NADPH oxidase 4 promotes contrast-induced acute kidney injury.

Authors:  Bo Young Jeong; Hoi Young Lee; Chang Gyo Park; Jaeku Kang; Seong-Lan Yu; Du-Ri Choi; Seung-Yun Han; Moon Hyang Park; Sungkwon Cho; Soo Young Lee; Won-Min Hwang; Sung-Ro Yun; Hye-Myung Ryu; Eun-Joo Oh; Sun-Hee Park; Yong-Lim Kim; Se-Hee Yoon
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Authors:  Zhihong Zhao; Guixiang Liao; Qin Zhou; Daoyuan Lv; Harry Holthfer; Hequn Zou
Journal:  Oxid Med Cell Longev       Date:  2016-02-24       Impact factor: 6.543

Review 9.  Acute kidney injury from contrast-enhanced CT procedures in patients with cancer: white paper to highlight its clinical relevance and discuss applicable preventive strategies.

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  9 in total

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