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Biomedical subjects

L B Fay

Publications and source records attributed to L B Fay.

42 records · Page 3Linked to original sources

Heterocyclic aromatic amine formation in grilled bacon, beef and fish and in grill scrapings.

The heterocyclic aromatic amines (HAAs) 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP), 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline (MeIQx), 2-amino-3,4,8-trimethylimidazo[4,5-f]quinoxaline (4,8-DiMeIQx) and 2-amino alpha carboline (A alpha C) were quantitated in grilled bacon and beef. The levels of PhIP in bacon ranged from < 0.1 to 52 p.p.b., MeIQx was detected at levels ranging from 0.9 to 18 p.p.b. Both 4,8-DiMeIQx and A alpha C were found at < 1 p.p.b. In grilled meat patties, MeIQx and PhIP were detected at levels ranging from 0.8 to 3.2 p.p.b., while 4,8-DiMeIQx and A alpha C were below the limit of detection (approximately 0.5 p.p.b.). HAAs were below the limit of detection in grilled fish. The bacon fat drippings and the pan scrapings obtained from grilled meat and fish also contained significant amounts of HAAs and indicated that either these carcinogens are released with the fat during grilling or that HAAs are formed directly in the released fat and juices. Several of these carcinogens were detected in the pan scrapings at concentrations 10- to 100-fold higher than in cooked meats. PhIP was detected at 144 p.p.b. in combined grilled meat and fish scrapings, followed by A alpha C at 77 p.p.b., MeIQx at 29 p.p.b. and 4,8-DiMeIQx at 4 p.p.b. The co-mutagens harman and norharman were also detected in cooked meats and fish at amounts ranging from 5 to 30 p.p.b. Fat drippings and grill residue scrapings are often used as a base for gravies and sauces. Thus, cooking practices and dietary habits have a strong impact on HAA exposure.

Animals↗

Electron impact and fast atom bombardment mass spectrometric analysis of the food-borne carcinogens 2-amino-3-methylimidazo [4,5-f] quinoline, 2-amino-3,8-dimethylimidazo [4,5-f] quinoxaline and their metabolites.

Electron impact (EI) and fast atom bombardment (FAB) mass spectrometry were used to characterize the heterocyclic aromatic amines, 2-amino-3-methylimidazo[4,5-f]quinoline and 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline and their metabolites. The carcinogenic N2-hydroxy metabolites and several non-conjugated detoxification products were analysed directly by EI mass spectrometry, while several polar sulphate and beta-glucuronic acid conjugates were analysed by FAB mass spectrometry. Analysis of beta-glucuronic acid conjugates was also achieved by EI mass spectrometry following silylation.

Carcinogens↗

Determination of 15N enrichment of taurine in cat urine by high resolution fast-atom bombardment mass spectrometry.

A method is described for measuring the stable isotopic enrichment of taurine in cat urine samples by high resolution fast-atom bombardment mass spectrometry, after 15N labelled taurine was given to cats for the purpose of investigating taurine metabolism. The 15N enrichment of taurine was measured after hydrolysis and purification of taurine by anion/cation exchange chromatography. The isotopic ratio of taurine was determined by measuring the [M+H]+ ion peaks in the spectra of the unlabelled and labelled compounds under multiple ion scan conditions. The overall standard deviation of the measurement is better than 4%. This method requires no derivation and uses only 500 microL of urine samples.

Animals↗

The effect of dose and cytochrome P450 induction on the metabolism and disposition of the food-borne carcinogen 2-amino-3,8-dimethylimidazo[4,5-f] quinoxaline (MeIQx) in the rat.

The effect of dose and cytochrome P450 induction on the metabolism and disposition of the food-borne carcinogen 2-amino-3,8-dimethylimidazo[4,5-f]quinoxaline (MeIQx) was investigated in the male Sprague-Dawley rat. Animals were given MeIQx by gavage at doses of 0.01, 0.2 or 20 mg/kg body wt. The phase II conjugates, MeIQx-N2 sulfamate and MeIQx-N2 glucuronide were the predominant metabolites found in urine of non-induced animals at the highest dose treatment. Animals induced with polychlorinated-biphenyl (PCB) produced greater amounts of metabolites hydroxylated at the 5 position of MeIQx which were excreted as glucuronide or sulfate conjugates. At the lowest dose studied, the urinary excretion profile was nearly identical for both animal groups and cytochrome P450 induction had little influence on metabolism. In contrast to high dose exposure, where sulfamate formation was a major route of detoxification, N2 glucuronide formation was the most important metabolic pathway for elimination of MeIQx at low doses. Liver microsomes transformed MeIQx to the genotoxic metabolite 2-hydroxyamino-3,8-dimethylimidazo[4,5-f]quinoxaline (HNOH-MeIQx) and N-hydroxylase activity was 20-fold greater in microsomes obtained from PCB-treated animals than in untreated control animals. The increase in N-hydroxylase activity was discerned in vivo through formation of the metastable N-glucuronide conjugate of HNOH-MeIQx (MeIQx-[HO-N]-Gl). This metabolite accounted for approximately 3% of the dose in bile of PCB-treated rats. In contrast, in the non-induced rat, MeIQx-[HO-N]-Gl was preferentially excreted in urine and accounted for approximately 0.2-1% of the total dose. These results demonstrate that the metabolism of MeIQx in the rat is influenced by both dose and cytochrome P450 induction. The absence of intestinal tumors in the non-induced rat may be partially attributed to the low levels of formation and poor biliary excretion of the N-glucuronide conjugate of the genotoxic metabolite HNOH-MeIQx.

1-Naphthylamine↗

Metabolism of the food mutagen 2-amino-3-methylimidazo[4,5-f]quinoline in nonhuman primates undergoing carcinogen bioassay.

2-Amino-3-methylimidazo[4.5-f]quinoline (IQ) is a potent bacterial mutagen and rodent carcinogen which also produces hepatocellular carcinoma in monkeys. The metabolism and disposition of this procarcinogen were investigated in monkeys undergoing carcinogen bioassay and in monkeys given an acute dose of IQ. Analysis of urine, feces, and bile revealed that IQ was extensively metabolized. A number of metabolites in urine were purified by high-performance liquid chromatography and characterized by 1H NMR and mass spectroscopy. Metabolites resulted from cytochrome P450-mediated ring oxidation at the C-5 position or N-demethylation. These metabolites could be further transformed by conjugation to sulfate or beta-glucuronic acid. Glucuronidation and sulfamate formation at the exocyclic amine group were other major routes of metabolism. Enteric bacteria also contributed to IQ biotransformation by forming the 7-oxo derivatives of IQ and N-demethyl-IQ. The metastable N2-glucuronide conjugate of the carcinogenic metabolite, 2-(hydroxyamino)-3-methylimidazo[4,5-f]quinoline, was found in urine. This indicates that metabolic activation through cytochrome P450-mediated N-oxidation occurs in vivo and that glucuronidation is a means of transport of the carcinogenic metabolite to extrahepatic tissues.

Animals↗

Synthesis of multiply-labeled [15N3,13C1]-8-oxo-substituted purine bases and their corresponding 2'-deoxynucleosides.

Stable isotope-labeled analogues of oxidatively modified purine bases are required as internal standards for accurate quantitation of free radical induced damage in DNA using the isotope-dilution GC/MS technique. For this reason, we report on a facile and expedient method to synthesize the isotope-labeled oxidized DNA bases 8-oxoguanine (8-oxo-Gua, 5a) and 8-oxo-adenine (8-oxo-Ade, 5b). Both routes have in common the introduction of two exocyclic 15N isotopes simultaneously by halogen displacement of chlorine-substituted pyrimidines with [15N]-benzylamine. Debenzylation is achieved by either catalytic hydrogenation or treatment with aluminium chloride in benzene. An additional isotope is incorporated by nitrosation with 15N-labeled sodium nitrite. Cyclocondensation of the triamines with 13C-labeled urea then affords 5a and 5b in overall yields of 34% and 27%, respectively, and each with four isotope labels and at least 99 atom % excess. A further one-step enzyme catalyzed coupling of the C8 adducted purines with 2'-deoxyribose furnishes the isotope-labeled 2'-deoxynucleosides 2'-deoxy-7,8-dihydro-8-oxoguanosine (8-oxo-dGuo) and 2'-deoxy-7,8-dihydro-8-oxoadenosine (8-oxo-dAdo).

Chromatography, High Pressure Liquid↗