Literature DB >> 19336034

Urine proteomic profiling of uranium nephrotoxicity.

Véronique Malard1, Jean-Charles Gaillard, Frédéric Bérenguer, Nicole Sage, Eric Quéméneur.   

Abstract

Uranium is used in many chemical forms in civilian and military industries and is a known nephrotoxicant. A key issue in monitoring occupational exposure is to be able to evaluate the potential damage to the body, particularly the kidney. In this study we used innovative proteomic techniques to analyse urinary protein modulation associated with acute uranium exposure in rats. Given that the rat urinary proteome has rarely been studied, we first identified 102 different proteins in normal urine, expanding the current proteome data set for this central animal in toxicology. Rats were exposed intravenously to uranyl nitrate at 2.5 and 5 mg/kg and samples were collected 24 h later. Using two complementary proteomic methods, a classic 2-DE approach and semi-quantitative SDS-PAGE-LC-MS/MS, 14 modulated proteins (7 with increased levels and 7 with decreased levels) were identified in urine after uranium exposure. Modulation of three of them was confirmed by western blot. Some of the modulated proteins corresponded to proteins already described in case of nephrotoxicity, and indicated a loss of glomerular permeability (albumin, alpha-1-antiproteinase, serotransferrin). Others revealed tubular damage, such as EGF and vitamin D-binding protein. A third category included proteins never described in urine as being associated with metal stress, such as ceruloplasmin. Urinary proteomics is thus a valuable tool to profile uranium toxicity non-invasively and could be very useful in follow-up in case of accidental exposure to uranium.

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Year:  2009        PMID: 19336034     DOI: 10.1016/j.bbapap.2009.01.010

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  9 in total

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5.  Urinary Vitamin D Binding Protein and KIM-1 Are Potent New Biomarkers of Major Adverse Renal Events in Patients Undergoing Coronary Angiography.

Authors:  Lyubov Chaykovska; Fabian Heunisch; Gina von Einem; Markus L Alter; Carl-Friedrich Hocher; Oleg Tsuprykov; Thomas Dschietzig; Axel Kretschmer; Berthold Hocher
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6.  Urinary vitamin D binding protein: a potential novel marker of renal interstitial inflammation and fibrosis.

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7.  Escherichia coli response to uranyl exposure at low pH and associated protein regulations.

Authors:  Arbia Khemiri; Marie Carrière; Nicolas Bremond; Mohamed Amine Ben Mlouka; Laurent Coquet; Isabelle Llorens; Virginie Chapon; Thierry Jouenne; Pascal Cosette; Catherine Berthomieu
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8.  Differential protein expression in metallothionein protection from depleted uranium-induced nephrotoxicity.

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  9 in total

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