Metabolomics analysis reveals elevation of 3-indoxyl sulfate in plasma and brain during chemically-induced acute kidney injury in mice: Investigation of nicotinic acid receptor agonists

被引:42
作者
Zgoda-Pols, Joanna R. [1 ]
Chowdhury, Swapan [1 ]
Wirth, Mark [2 ]
Milburn, Michael V. [3 ]
Alexander, Danny C. [3 ]
Alton, Kevin B. [2 ]
机构
[1] Merck Res Labs, Rahway, NJ 07065 USA
[2] Merck Res Labs, Kenilworth, NJ 07033 USA
[3] Metabolon Inc, Durham, NC 27713 USA
关键词
Nicotinic acid agonist; Metabolomics; 3-indoxyl sulfate; Acute kidney injury; Central nervous system; Mice; ORGANIC ANION TRANSPORTER; INDOXYL SULFATE; UREMIC TOXINS; AMINO-ACIDS; RENAL METABOLISM; INVOLVEMENT; BIOMARKER;
D O I
10.1016/j.taap.2011.05.015
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
An investigative renal toxicity study using metabolomics was conducted with a potent nicotinic acid receptor (NAR) agonist, SCH 900424. Liquid chromatography-mass spectrometry (LC-MS) and gas chromatography-mass spectrometry (GC-MS) techniques were used to identify small molecule biomarkers of acute kidney injury (AKI) that could aid in a better mechanistic understanding of SCH 900424-induced AKI in mice. The metabolomics study revealed 3-indoxyl sulfate (3IS) as a more sensitive marker of SCH 900424-induced renal toxicity than creatinine or urea. An LC-MS assay for quantitative determination of 3IS in mouse matrices was also developed. Following treatment with SCH 900424, 3IS levels were markedly increased in murine plasma and brain, thereby potentially contributing to renal- and central nervous system (CNS)-related rapid onset of toxicities. Furthermore, significant decrease in urinary excretion of 3IS in those animals due to compromised renal function may be associated with the elevation of 3IS in plasma and brain. These data suggest that 3IS has a potential to be a marker of renal and CNS toxicities during chemically-induced AKI in mice. In addition, based on the metabolomic analysis other statistically significant plasma markers including p-cresol-sulfate and tryptophan catabolites (kynurenate, kynurenine, 3-indole-lactate) might be of toxicological importance but have not been studied in detail. This comprehensive approach that includes untargeted metabolomic and targeted bioanalytical sample analyses could be used to investigate toxicity of other compounds that pose preclinical or clinical development challenges in a pharmaceutical discovery and development. (C) 2011 Published by Elsevier Inc.
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收藏
页码:48 / 56
页数:9
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