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Biomedical subjects

E Zang

Publications and source records attributed to E Zang.

At least 19 recordsLinked to original sources

Inhibitors of trypsin-like serine proteases prevent DNA damage-induced neuronal death by acting upstream of the mitochondrial checkpoint and of p53 induction.

We have previously shown that the pharmacological agents 4-(2-aminoethyl)=benzenesulfonylfluoride hydrochloride (AEBSF) and Na-p-tosyl-L-lysine chloromethylketone (TLCK), inhibitors of trypsin-like serine proteases, prevent the death of trophic factor-deprived PC12 cells and sympathetic neurons. Both AEBSF and TLCK inhibit caspase activation in this model, but it is unclear whether they do so indirectly or through a direct effect at the level of the caspases. In the current study, we have used these agents in another model of neuronal death that is induced by DNA damage. We find that both agents delay the death of DNA-damaged PC12 cells, neonatal rat sympathetic neurons and embryonic rat cortical neurons. As in the trophic deprivation model, they act upstream of the caspases. In addition, they prevent mitochondrial alterations, such as cytochrome c release or loss of transmembrane potential. In contrast, the general caspase inhibitor bok-asp-fmk does not prevent cytochrome c release and has only a partial and transient effect on loss of transmembrane potential. Interestingly, both AEBSF and TLCK prevent the induction and nuclear accumulation of p53 that is induced by DNA damage in cortical neurons. Therefore, these serine protease inhibitors act at a point upstream in the apoptotic pathway, prior to p53 induction and the mitochondrial checkpoint, to delay neuronal death in this model, and do not act at the level of the caspases. We conclude that therapeutic strategies based on serine protease inhibition may be useful in preventing neuronal cell death.

Animals↗

Investigation of commercial Mitolife as an antioxidant and antimutagen.

Coronary heart disease and many types of cancer are important diseases in the world and especially in Western countries. There are biochemical activation processes for low-density lipoprotein cholesterol and genotoxic carcinogens to reactive products. In part, these also involve the generation of active oxygen and reactive oxygen species. We investigated the effect of a natural product, MitoLife, which contains a mixture of fruit and tea extracts, on the oxidation of low-density lipoprotein cholesterol and the mutagenicity of five genotoxic carcinogens, specifically, 2-acetylaminofluorene, 2-aminoanthracene, 2-amino-3-methylimidazo[4,5-f]quinoline, aflatoxin B(1), and benzo[a]pyrene. A positive antioxidant control, polyphenon 60, a concentrate of green-tea polyphenols, was used to compare the effect of MitoLife with that of polyphenon. MitoLife displayed inhibiting effects in all series of tests at slightly lower effectiveness but with the same order of magnitude as the green-tea polyphenol product. Thus, MitoLife represents another means to decrease adverse effects associated with the oxidation of low-density lipoprotein cholesterol or of a series of carcinogens, some of which are in the human environment.

Antimutagenic Agents↗

cis-Dichloro(dimethylaminomethylene)(triphenylphosphine)palladium(II) acetone solvate.

The synthesis and X-ray structural analysis of the title compound, [PdCl(2)(C(3)H(7)N)(C(18)H(15)P)].C(3)H(6)O, are described. The crystal structure contains discrete monomeric molecules of the carbene complex and solvent molecules separated by normal van der Waals distances. The Pd atom is four-coordinate in an essentially square-planar environment, with the chlorine ligands mutually cis; Pd-P = 2.2495 (7), Pd-Cl = 2.3508 (7) and 2.3600 (7), Pd-C 1.948 (2) and N-C(carbene) 1.274 (3) A.

Journal Article↗

Doses of nicotine and lung carcinogens delivered to cigarette smokers.

BACKGROUND: Cigarette smoke yields of tar and nicotine obtained under the Federal Trade Commission (FTC)-specified machine-smoking protocol (35-mL puff volume drawn for 2 seconds once per minute) may not accurately reflect the delivery of toxins and carcinogens to the smoker. We conducted this study to obtain more realistic estimates of exposure to components of cigarette smoke that affect lung cancer risk. METHODS: We used a pressure transducer system to evaluate puffing characteristics for 133 smokers of cigarettes rated by the FTC at 1.2 mg of nicotine or less (56 smokers of low-yield cigarettes [</=0.8 mg of nicotine per cigarette] and 77 smokers of medium-yield cigarettes [0.9-1.2 mg of nicotine per cigarette]). We programmed measurements from a randomly chosen subset of 72 of these smokers into a piston-type machine to generate smoke from each smoker's usual brand of cigarettes for assays of nicotine, carbon monoxide, tar, and the lung cancer-causing agents 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone and benzo[a]pyrene. The FTC protocol was also used to assess levels of targeted components in the 11 brands most frequently smoked by study subjects. RESULTS: Compared with the FTC protocol values, smokers of low- and medium-yield brands took in statistically significantly larger puffs (48.6 and 44.1 mL, respectively) at statistically significantly shorter intervals (21.3 and 18.5 seconds, respectively), and they drew larger total smoke volumes than specified in the FTC parameters. They received, respectively, 2.5 and 2.2 times more nicotine and 2.6 and 1.9 times more tar than FTC-derived amounts, as well as about twofold higher levels of benzo[a]pyrene and 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone. Smokers of medium-yield cigarettes compared with smokers of low-yield cigarettes received higher doses of all components. CONCLUSIONS: The FTC protocol underestimates nicotine and carcinogen doses to smokers and overestimates the proportional benefit of low-yield cigarettes. Thus, FTC-based nicotine medication doses prescribed/recommended for smoking cessation may need to be reassessed.

Administration, Inhalation↗

Effect of black tea on azoxymethane-induced colon cancer.

Two sets of experiments on the role of tea in azoxymethane (AOM) induced colon cancer were performed. The first test involved male F344 rats given 1.25% solutions of black tea beginning at 5 weeks of age and ending at 51 days of age. At 6 and 7 weeks of age, they received 15 mg/kg AOM and were held for 50 weeks. Another group received the AOM dosage at 6 and 7 weeks and were placed on the tea solutions 2 days after the last AOM dosage, at 51 days of age, and held for the 50-week period. The end point was the occurrence and multiplicity of colon cancer, classified as in situ, exophytic, invasive and Peyer's patch carcinomas. Tea failed to affect the incidence and multiplicity of colon cancers when given during or after the AOM administration, but tea after AOM increased the multiplicity of exophytic carcinomas. In a second series of tests, solutions of 0.6, 1.25, 1.75 or 2.5% tea were given, beginning 1 week prior to the two AOM doses and extending for 42 weeks. Also, one group received 1.25% tea and 1.85% whole milk. The incidence of exophytic or invasive colon cancer and tumor multiplicity were similar in all treatment groups, although the incidence of exophytic neoplasms was higher with 2.5% tea. Thus, chronic administration failed to significantly change the incidence and multiplicity of the AOM-induced colon cancers. These findings are accounted for by the underlying mechanism, namely the fact that tea solutions do not alter the amount of cytochrome P-4502E1 required for the metabolic activation of AOM.

Animals↗

Effect of tea extracts, polyphenols, and epigallocatechin gallate on azoxymethane-induced colon cancer.

Studies were conducted to determine the chemopreventive efficacy of several types of tea extracts on azoxymethane-induced colon cancer in male F344 rats. After determining the maximally tolerated dosage of the tea products, their effect in a colon cancer model was investigated. Groups of 36 male F344 rats received 2 subcutaneous doses of 15 mg/kg azoxymethane (AOM) at Weeks 6 and 7. Experimental groups also received as drinking fluids 3600 ppm of black or green tea extracts, 1800 ppm of EGCG, or 1800 ppm of black or green tea polyphenols beginning at 5 weeks of age. Additional groups drank a lower dose of 360 ppm of the five tea products. The experiments were terminated 43 weeks after the first tea exposure. No evidence of toxicity was observed since the body weight gain of all groups was similar. The rats given AOM had carcinoma of the small intestine and of the colon, classified histologically as in situ carcinoma, exophytic, invasive, and Peyer's patch carcinoma. In the small intestine, most of the neoplasms were classified as invasive, but in the colon, most were exophytic. The various tea products failed to produce a significant difference in the incidence of the several types of colon and small intestine carcinoma. The multiplicity of colon cancers ranged from 1.2-2.8 in all groups. The group on 3600 ppm of green tea had a significantly higher tumor multiplicity than the control group on AOM and water. Also, the group on 3600 ppm of green tea had a significantly higher tumor multiplicity than the group on 360 ppm. The tea products did not affect the development aspects of the tumors in most groups. The mechanisms underlying these findings rest on the fact that azoxymethane is metabolized mainly by cytochrome P450 2E1, and this enzyme system is not affected by tea.

Animals↗

Tea polyphenols as inhibitors of mutagenicity of major classes of carcinogens.

Previous research suggested that the mutagenicity of some genotoxic carcinogens, mainly heterocyclic amines, was decreased by green or black tea extracts, or tea polyphenol fractions. Thus, it seemed important to test a variety of genotoxic carcinogens with distinct chemical structures and means of biochemical activation as regards modification of mutagenicity in appropriate strains of Salmonella typhimurium by 3 concentrations of polyphenols 60, 100, or B, standard commercial polyphenol preparations from green or black tea. Polyphenols sharply decreased the mutagenicity of a number of aryl- and heterocyclic amines, of aflatoxin B1, benzo[a]pyrene, 1,2-dibromoethane, and more selectively, of 2-nitropropane, all involving an induced rat liver S9 fraction. Good inhibition was found with 2 nitrosamines that required a hamster S9 fraction for biochemical activation. No effect was found with 1-nitropyrene, and with the direct-acting (no S9) 2-chloro-4-methyl-thiobutanoic acid. Thus, with some exceptions, polyphenols considerably decreased the mutagenicity of diverse types of carcinogens.

Amines↗

Inhibition of 2-Amino-1-methyl-6-phenylimidazo[4,5]pyridine-induced lymphoma formation by oltipraz.

2-Amino-l-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) is a mutagenic and carcinogenic heterocyclic amine present in pyrolysate products of meat and fish and has been shown to induce tumors in the colon, mammary gland, and possibly lymphatic system. Experiments were designed to examine the lymphoma-inducing capacity of PhIP and to test the inhibitory effects of oltipraz on PhIP-induced lymphomas in male F344 rats. Beginning at 5 weeks of age, groups of rats were fed the diets containing 0, 200, and 400 ppm oltipraz with or without 100-400 ppm PhIP. All animals were continued on this regimen until the 58th week. The results indicate that administration of PhIP produced lymphomas in 75% of rats. Most of the large lymphomas were thymomas (65%), and these lymphomas developed in less than 6 months. Death of animals during the course of the study was due to suffocation produced by a large lymphoma that filled the entire thoracic cavity, resulting in collapse of the lungs. Administration of 200-400 ppm oltipraz significantly protected rats from PhIP-induced toxicity; most of the rats survived until termination of the experiments. It is noteworthy that the addition of oltipraz at 200 and 400 ppm in the diet suppressed the PhIP-induced lymphomas to 90-100%. In conclusion, PhIP-induced lymphomas in the laboratory rat appears to be a very useful model to analyze the genesis of lymphomas, and oltipraz serves as a potential chemopreventive agent for lymphomas.

Animals↗

Chemopreventive efficacy of arylalkyl isothiocyanates and N-acetylcysteine for lung tumorigenesis in Fischer rats.

The purpose of this study is to evaluate the efficacy of three promising sulfur-containing compounds, 6-phenylhexyl isothiocyanate (PHITC), phenethyl isothiocyanate (PEITC), and N-acetylcysteine (NAC), as chemopreventive agents in a long-term bioassay for lung tumorigenesis in F344 rats. PEITC occurs as a constituent of certain cruciferous vegetables, PHITC is a synthetic homologue, and NAC is an endogenous substance. Male F344 rats were treated with the tobacco-specific nitrosamine 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) by s.c. injection at a dose of 1.5 mg/kg body weight three times weekly for 20 weeks. This dose regimen induced a 67% tumor incidence in the lung, a major target organ of NNK. PHITC or PEITC administered in the diet for 22 weeks, a period covering from 1 week before to 1 week after the NNK treatment, exhibited significant inhibition of lung tumorigenesis induced by NNK. The lung tumor incidences in the NNK-treated groups, fed a diet containing 4 mmol/kg (876 ppm) or 2 mmol/kg (438 ppm) PHITC, were 24 and 19% and were 9 and 17% in groups fed PEITC at concentrations of 8 mmol/kg (1304 ppm) or 4 mmol/kg (652 ppm), respectively. In contrast to isothiocyanates, NAC given in the diet at 80 mmol/kg (13056 ppm) or 40 mmol/kg (6528 ppm) exerted no inhibitory effects on the NNK-induced lung tumorigenesis. At the dose studied, NNK did not induce liver and pancreatic tumors in the treated animals, but a significant increase of nasal cavity tumor incidence was observed in the NNK-treated group. However, none of the test compounds showed any effect on the tumorigenesis in this tissue. This study demonstrated that PHITC and PEITC were potent chemopreventive agents for the NNK-induced lung tumorigenesis in F344 rats, whereas NAC was not active at all. These results support further evaluation of these compounds in chemoprevention studies.

Acetylcysteine↗

Dose-response effects of dietary fiber on NMU-induced mammary tumorigenesis, estrogen levels and estrogen excretion in female rats.

The dose-related effects of the fiber-rich isolate, soft white wheat bran (SWWB), and the pure fiber, cellulose, on N-nitrosomethylurea (NMU)-induced mammary tumorigenesis was assessed in F344 female rats. SWWB (45% total dietary fiber, TDF) was added to the AIN-76A high-fat diet at 9, 12, 15 and 18%; cellulose (98% TDF) was added to the same diet at 4.5, 6, 7.5 and 9%, to give equivalent amounts of TDF. The experimental diets were fed 3 days post-NMU and continued for a period of 25 weeks, at which time the experiment was terminated and tumors enumerated. It was found that significant inhibition of mammary carcinoma occurred only at 9% SWWB, non-significant inhibition occurred at 12% SWWB, and no inhibition was seen at higher doses. Cellulose-fed animals exhibited consistently higher tumor yields regardless of dose. The difference in tumor yields between the 9% SWWB group and the remaining seven groups was attributable to an increased incidence in tumors characterized histologically as intraductal proliferation and ductal carcinoma in situ in the latter. Analysis of blood, urine and fecal estrogens was conducted to test whether dietary fiber exerted its tumor-inhibiting effect by altering the enterohepatic recycling of estrogens. Although SWWB, in general, lowered urinary estrogen excretion, increased fecal estrogen excretion and lowered blood estrogens, there was no consistent correlation between the amount of SWWB consumed, estrogen status and tumor yields. These results suggest that (i) wheat bran fiber at 9%, or minor constituents associated with it, contain anti-promoting properties that cellulose lacks; (ii) SWWB appears to exert its effects by suppressing the clonal expansion phase of mammary carcinogenesis; (iii) there is an upper limit (12-15% w/w) to the protective effects of SWWB; and (iv) the effects of SWWB on mammary tumorigenesis may not be attributed to alterations in the enterohepatic recycling of estrogens.

Animals↗

Five leading U.S. commercial brands of moist snuff in 1994: assessment of carcinogenic N-nitrosamines.

BACKGROUND: Moist snuff is the only tobacco product in the United States with increasing sales (an increase of 38.4% between 1981 and 1993) and with increased consumption, primarily by male adolescents aged 12-18 years old and young adults aged 19 years old or older. It is known from previous studies that levels of nicotine and the proportion of unprotonated (free) nicotine, as well as the pH, which affects nicotine delivery, vary considerably among the leading snuff brands. Whether concentrations of major carcinogens, such as the nicotine-derived tobacco-specific N-nitrosamines (TSNAs), like N'-nitrosonornicotine (NNN) and 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK), also vary among these brands has not been determined previously. PURPOSE: Our purpose was threefold: 1) to determine the concentrations of major carcinogenic nicotine-derived N-nitrosamines in each of the five most popular moist snuff brands; 2) to analyze the quantitative differences in the various snuff components (e.g., NNN) between two major brand categories: a category comprising the brands known to have high levels of unprotonated nicotine (Copenhagen, Skoal fine cut, and Kodiak) versus a category comprising the brands known to have low levels (Hawken and Skoal Bandits); and 3) to compare the differences in the concentrations of nicotine (previously determined), NNN, NNK, and total TSNAs between these two major brand categories. METHODS: Three boxes of each of the five leading U.S. moist snuff brands were bought in July 1994 from retailers in six areas and transferred immediately to the analytical laboratory. After extraction, N-nitrosamino acids and TSNAs were determined on a gas chromatograph interfaced with a thermal energy analyzer (GC-TEA) and integrator. Each 5-g sample of ground, freeze-dried tobacco was extracted twice, and each extract was analyzed twice by GC-TEA. All P values reported are two sided. RESULTS: Copenhagen, Skoal fine cut, and Kodiak as a group had statistically significant higher levels of nicotine (P = .0017), NNN (P < .0001), NNK (P = .0119), and total TSNAs (P < .0001) than the Hawken and Skoal Bandits group. Concentrations (means +/- SD) of nicotine, NNN, NNK, and total TSNAs comparing the two major brand categories are as follows: nicotine--11.6 +/- 1.01 mg/g versus 6.96 +/- 3.62 mg/g (P = .0017), NNN--7.74 +/- 1.70 micrograms/g versus 4.17 +/- 1.35 micrograms/g (P < .0001), NNK--1.23 +/- 0.68 micrograms/g versus 0.61 +/- 0.41 micrograms/g (P = .0119), and total TSNAs--14.3 +/- 3.82 micrograms/g versus 6.3 +/- 2.56 micrograms/g (P < .0001). CONCLUSIONS: The three leading U.S. snuff brands (Copenhagen, Skoal fine cut, and Kodiak; making up 92% of the U.S. market) showed not only high levels of pH, nicotine, and unprotonated (free) nicotine, but also high concentrations of the strongly carcinogenic TSNAs in comparison with the fourth and fifth best selling moist snuff brands, Hawken and Skoal Bandits (3% of the U.S. market).

Carcinogens↗

Enhancement of experimental colon carcinogenesis by dietary 6-phenylhexyl isothiocyanate.

Naturally occurring and related synthetic isothiocyanates are known to exert chemopreventive effects in several organs in rodent models. The present study was designed to investigate the efficacy of 6-phenylhexyl isothiocyanate (PHITC), a potent chemopreventive agent in the lung tumor model in strain A mice, on azoxymethane-induced colon tumorigenesis. Another aim was to study the modulating effect of PHITC on colonic mucosal and tumor phospholipase A2 (PLA2), phosphatidylinositol-specific phospholipase C (PI-PLC), lipoxygenase (LOX), and cyclooxygenase (COX) activities. At 5 weeks of age, groups of male F344 rats were fed control diet or diets containing 320 or 640 ppm of PHITC representing 40 and 80% maximum tolerated dose levels, respectively. At 7 weeks of age, all animals except those in the vehicle-treated groups were given two weekly s.c. injections of azoxymethane at a dose rate of 15 mg/kg body weight/week. All animals continued on their respective dietary regimen for 52 weeks after the carcinogen treatment; then the study was terminated. Colonic mucosa and tumors were analyzed for PLA2, PI-PLC, prostaglandin (PG) E2, COX, and LOX activities. Intestinal tumors were evaluated histopathologically and classified as invasive or noninvasive adenocarcinomas. Intestinal tumor incidence (percentage of animals with tumors) and tumor multiplicity (tumors/animal; tumors/tumor-bearing animal) were compared among the dietary groups. At the 640-ppm dose level, dietary PHITC significantly increased the incidence of intestinal (small intestine plus colon) adenocarcinomas (P < 0.05) as well as the multiplicities of invasive and noninvasive adenocarcinomas of the colon (P < 0.05 to 0.01). At the 320-ppm dose level, PHITC increased the multiplicity (tumors/animal) of noninvasive adenocarcinomas and total (invasive plus noninvasive) adenocarcinomas of the colon (P < 0.05). Dietary PHITC also increased the colon tumor volume (2- to 4.3-fold) in a dose-dependent manner. Moreover, PHITC significantly enhanced the activities of PLA2 (50-100%) and levels of PGE2 (2-fold) in the colonic mucosa and in tumors, but it had no significant effect (P > 0.05) on PI-PLC activity. The formation of COX metabolites, particularly PGE2, PGF2 alpha, PGD2, 6-keto PGF1 alpha, and thromboxane B2, as well as LOX metabolites such as 8(S)-, 12(S)- and 15 (S)-hydroxyeicosatetraenoic acids, were significantly increased in the colonic mucosa and tumors of animals that were fed 640 ppm of PHITC. Although the exact mechanism by which PHITC promotes colon tumorigenesis remains to be elucidated, it is likely that the tumor-promoting effects of PHITC may, at least in part, be related to increased eicosanoid metabolism in the colon.

Animals↗

Chemoprevention of colon carcinogenesis by sulindac, a nonsteroidal anti-inflammatory agent.

Epidemiological and laboratory animal model studies have suggested that nonsteroidal anti-inflammatory drugs reduce the risk of development of colon cancer. The present study was designed to investigate the chemopreventive action of 160 and 320 ppm (equivalent to 40 and 80% maximum tolerated doses) sulindac, a nonsteroidal anti-inflammatory drug, fed during initiation and postinitiation stages and 320 ppm sulindac fed during promotion/progression stages of azoxymethane-induced colon carcinogenesis in male F344 rats. Also investigated was the modulating effect of this agent on the colonic mucosal and tumor phospholipase A2, phosphatidylinositol-specific phospholipase C, lipoxygenase, and cyclooxygenase activities. At 5 weeks of age, groups of male F344 rats were fed control diet or diets containing 160 and 320 ppm of sulindac. At 7 weeks of age, all animals except those in the vehicle-treated groups were given two weekly s.c. injections of azoxymethane at a dose rate of 15 mg/kg body weight/week. Animals intended for tumor promotion/progression study were administered 320 ppm of sulindac in diet starting at 14 weeks after a second azoxymethane treatment. All animals continued on their respective dietary regimen until the termination of the experiment at 52 weeks after the carcinogen treatment. Colonic tumors were evaluated histopathologically. Colonic mucosa and tumors were analyzed for phospholipase A2, phosphatidylinositol-specific phospholipase C, prostaglandin E2, cyclooxygenase, and lipoxygenase activities. The levels of sulindac and its metabolites in stomach, cecal, and fecal contents and in serum were analyzed. The results indicate that dietary sulindac at 160 and 320 ppm levels inhibited the incidence of invasive and noninvasive adenocarcinomas of the colon (P < 0.01-0.001) as well as their multiplicity (P < 0.01-0.0001) in a dose-dependent manner. Also, feeding sulindac during promotion/progression stages significantly suppressed the incidence (P < 0.0001) and multiplicity (P < 0.0001) of colonic adenocarcinomas. Dietary sulindac also suppressed the colon tumor volume by > 52-62% compared to the control diet. Dietary sulindac significantly decreased the activities of phosphatidylinositol-specific phospholipase C (32-51%) and levels of prostaglandin E2 (> 40%) in the colonic mucosa and tumors, but it had no significant (P > 0.05) effect on phospholipase A2 activity. The formation of cyclooxygenase metabolites, particularly prostaglandin E2, prostaglandin F2 alpha, prostaglandin D2, 6-ketoprostaglandin F1 alpha, and thromboxane B2, and lipoxygenase metabolites such as 8(S)- and 12(S)-hydroxyeicosatetraenoic acids were significantly reduced in colonic mucosa and tumors of animals fed 320 ppm sulindac.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenocarcinoma↗

Sampling method as a key factor in identifying K-ras oncogene mutations in preneoplastic colorectal lesions.

The development of sensitive polymerase chain reaction (PCR)-based techniques in recent years has enabled us to verify the possible presence of mutated oncogenes and tumor suppressor genes in stages preceding tumor formation. Early detection of mutants serves as a powerful tool for detecting exposure to carcinogens and can assist in diagnosis. In studies performed in the past few years, we have identified mutant ras alleles in preneoplastic samples of patients with and without colorectal cancer. Our studies have shown (i) that mutant ras alleles are present at low incidence in normal appearing tissues of patients with colorectal cancer. Such mutations are also found in colonic effluents of patients at risk for developing this tumor type; and (ii) that the method of sampling is critical to ensure true representation of the entire colonic mucosa. The implications of identifying ras mutations in patients without evidence for neoplasma are discussed.

Biomarkers, Tumor↗

Genotoxicity and carcinogenicity in rats and mice of 2-amino-3,6-dihydro-3-methyl-7H-imidazolo[4,5-f]quinolin-7- one: an intestinal bacterial metabolite of 2-amino-3-methyl-3H-imidazo[4,5-f]quinoline.

BACKGROUND: Compounds formed on the surface of fried or grilled meat and fish may be associated with increased risk of colon cancer. Normal intestinal bacteria can convert one of these compounds, 2-amino-3-methyl-3H-imidazo[4,5-f]quinoline (IQ), to the 7-hydroxy metabolite, 2-amino-3,6-dihydro-3-methyl-7H-imidazolo[4,5-f]quinolin-7-o ne (7-OHIQ), a direct-acting mutagen. PURPOSE: We studied the genotoxicity and carcinogenicity of 7-OHIQ to determine if it is responsible for the colon-specific activity of IQ. METHODS: The effects of pure, synthetic 7-OHIQ on DNA were evaluated in the Ames Salmonella typhimurium TA98 test, with and without an induced rat liver S9 fraction, and in the Williams DNA repair test using freshly explanted rat hepatocytes. 7-OHIQ was also subjected to an in vivo bioassay for 21 months by long-term intrarectal infusion in male F344 rats, using IQ and N-nitrosomethylurea (NMU) given intrarectally as positive tumor-producing controls. The standard NIH-07 rodent diet was supplemented with 15% corn oil to maximize any effect of the infused materials on the colon. A parallel bioassay involved intraperitoneal injection of 7-OHIQ in newborn mice, followed by dietary administration from week 11 to week 67. Again, IQ and NMU were used as positive controls. RESULTS: We confirmed that 7-OHIQ is a direct-acting mutagen in the Ames test, with added S9 liver fraction giving higher mutagenicity. 7-OHIQ was negative in the Williams test, whereas IQ was positive. 7-OHIQ did not induce colon cancer in rats, and in the newborn mouse test it produced only a low incidence of liver neoplasms. CONCLUSIONS: 7-OHIQ is not genotoxic, for to be so classified it must be definitely positive in both the Ames and Williams tests; moreover, it is not carcinogenic, in marked contrast to IQ and NMU.

Animals↗

Dose response of promotion by butylated hydroxyanisole in chemically initiated tumours of the rat forestomach.

The antioxidant food preservative butylated hydroxyanisole (BHA) was tested in an initiation-promotion protocol in which male F344 rats (6 wk old), 27 per group, were gavaged with a single dose of 200 mg N-methyl-N'-nitro-N-nitrosoguanidine (MNNG)/kg. After 3 wk on control diet, test diets containing 0, 60, 300, 1000, 3000, 6000 or 12,000 ppm BHA were fed until termination of the experiment at approximately 110 wk, at which time most animals had died with stomach tumours. MNNG caused a high incidence of tumours in the glandular stomach and forestomach of all groups. Administration of 12,000 and 6000 ppm BHA, but not 3000 ppm or lower doses, caused statistically significant increases in the time-related incidence of MNNG-induced forestomach tumours as analyzed by life table analysis. BHA had no effect on the incidence of tumours in the glandular stomach or oesophagus. Tumour incidences in other organs were not related to BHA dose. No increase in hyperplasia in the oesophagus was evident in the high-dose BHA-treated animals compared with the MNNG-only group. This study provides corroboration that BHA affects only forestomach tumorigenesis and that the dose for enhancement of tumorigenesis is at least 1500-fold greater than human exposure.

Animals↗

Interactions between 4-HPR and diet in NMU-induced mammary tumorigenesis.

The present study was designed to determine whether the chemopreventive effect of the synthetic retinoid N(4-hydroxyphenyl)retinamide (4-HPR) on mammary tumorigenesis was influenced by diet. Three diets were used: the closed-formula grain-based Wayne Lab Blox, the open-formula grain-based NIH-07, and the casein-based semipurified AIN-76A. Groups of 25 virgin female F-344 rats were fed the experimental diets beginning one week before a single injection of N-methyl-N-nitrosourea (NMU, 45 mg/kg body wt i.v.) at 50 days of age. The experimental design was as follows: Group 1, unsupplemented AIN-76A; Group 2, AIN-76A supplemented with 4-HPR starting seven days before NMU until termination (-7); Group 3, AIN-76A supplemented with 4-HPR seven days after NMU until termination (+7); Group 4, Wayne (no 4-HPR); Group 5, Wayne (4-HPR, -7); Group 6, Wayne (4-HPR, +7); Group 7, NIH-07; Group 8, NIH-07 (4-HPR, -7). 4-HPR [782 mg/kg diet (2 mM)] was given to all supplemented groups. Termination was 25 weeks post-NMU. Analysis of tumor incidence, multiplicity, and latency indicated that 1) control rats fed the AIN-76A diet exhibited significantly higher mammary tumor yields than rats fed unsupplemented natural-ingredient diets (Wayne and NIH-07) and 2) 4-HPR inhibited mammary tumor development in the two grain-based diets but enhanced tumor development in the AIN-76A diet. Animals fed the AIN-76A diet gained weight to a greater extent than those fed the Wayne or NIH-07 diets and exhibited lower levels of circulating 4-HPR.

Animals↗