Distinct urinary metabolite profiles of two pharmacologically active N-methylanthranilates: Three approaches to xenobiotic metabolite identification
Autor: | Pavle J. Randjelović, Nikola Stojanovic, Ana B. Miltojević, Niko S. Radulović |
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Rok vydání: | 2017 |
Předmět: |
Male
Magnetic Resonance Spectroscopy Stereochemistry Metabolite Hydroxylation Toxicology 030226 pharmacology & pharmacy Xenobiotics 03 medical and health sciences chemistry.chemical_compound 0404 agricultural biotechnology 0302 clinical medicine Biotransformation Anthranilic acid Animals Humans ortho-Aminobenzoates Benzamide Chromatography food and beverages 04 agricultural and veterinary sciences General Medicine 040401 food science Rats 3. Good health Metabolic pathway chemistry Toxicity Isopropyl Chromatography Liquid Food Science |
Zdroj: | Food and Chemical Toxicology. 109:341-355 |
ISSN: | 0278-6915 |
DOI: | 10.1016/j.fct.2017.09.006 |
Popis: | Two volatile alkaloids, isopropyl N -methylanthranilate (IMA) and methyl N -methylanthranilate (MMA), present in the human diet and cosmetic products, were recently demonstrated to possess important pharmacological activities. While MMA is considered to be phototoxic, there is scarce data on the toxicity of IMA. Herein, we analyzed urinary metabolites of IMA and MMA in rats (200 mg kg −1 , i.p. , 7 days) by combining three different approaches: 1) preparative chromatography, 2) synthesis, and 3) SPR. The preparative approach, Sephadex LH-20 chromatography of the extract of urine samples of IMA treated animals, in conjunction with NMR, enabled the identification of 16 different anthranilate derivatives, among which products of aromatic core hydroxylation (isopropyl 5-hydroxy- N -methylanthranilate, isopropyl 5-hydroxyantranilate, isopropyl 3-hydroxyantranilate) were the major ones. The first application of the synthetic/combinatorial approach led to a successful identification of MMA metabolites, where 2-(methylamino)benzamide and N -methylanthranilic acid were the principal ones, among 14 others. Generally, MMA and IMA undergo analogous biotransformation pathways; however, MMA predominantly underwent chemical conversions of the ester group, i.e. transformation into derivatives of anthranilamide and anthranilic acid, while the major metabolic pathway of IMA was hydroxylation of the aromatic core. Additionally, pathohistological examinations revealed no signs of liver toxicity, or other signs of toxicity. |
Databáze: | OpenAIRE |
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