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Pulmonary microsomal metabolism of benzo[a]pyrene following exposure of rats to silica.

Because some evidence suggests that there may be an increased incidence of lung cancer in silicosis and because previous studies have shown that exposure of rats to silica alters the pulmonary cytochrome P-450 system, we studied the effects of exposing rats to silica on the lung microsomal metabolism of benzo[a]pyrene (BaP). Rats were exposed to silica by intratracheal administration, lung microsomes were obtained 2 wk later from untreated and silica-treated animals, and the amounts of microsomal tissue and metabolites formed during the in vitro microsomal metabolism of BaP were measured. When the formation of BaP metabolites in equal amounts of lung microsomal tissue from the 2 treatment groups is compared, 3-OH BaP, BaP 4,5-diol, and BaP 9,10-diol are reduced by 45-70%, but the formation of BaP 7,8-diol or the BaP-quinones is not significantly altered following exposure to silica. In fact, the ratio of the BaP diols and BaP quinones, potentially toxic metabolites, to the relatively nontoxic 3-OH BaP produced by equal amounts of lung microsomal tissue is increased more than threefold following exposure of rats to silica. Since exposure of rats to silica leads to increased levels of lung microsomal protein, the amounts of BaP metabolites that could be produced by all microsomal tissue in the lungs were calculated. In silica-treated animals, the calculated total lung production of 3-OH BaP, BaP 4,5-diol, and BaP 9,10-diol tends to be increased by 1.2- to 2.0-fold, but BaP 7,8-diol and the BaP quinones are increased by 3.5-fold. These results demonstrate that exposure of rats to silica may alter the capacity of the lungs to metabolize benzo[a]pyrene, and the greatest effect seems to be enhanced accumulation of BaP 7,8-diol and the BaP quinones.

Animals↗

Oxidation of erythrocyte protein and lipid, and hemolysis in rabbit red blood cells treated with benzo[a]pyrene or adriamycin.

A number of free-radical-generating carcinogens catalyze the oxidative modification of macromolecules. Malondialdehyde (MDA), carbonyl content, alanine formation, and hemolysis were used as biomarkers of oxidative stress, and were determined in rabbit erythrocytes treated in vitro with benzo[a]pyrene or adriamycin. MDA and carbonyl content were significantly increased in a concentration-dependent manner by carcinogens. Alanine formation was also increased in a concentration-dependent manner in rabbit erythrocytes treated with carcinogens. Hemolysis occurred in erythrocytes treated with benzo[a]pyrene (540 microM) or adriamycin (300 microM) between 4 and 8 h of incubation, respectively. The hemolysis pattern correlated with increases in MDA, carbonyl content, and alanine formation. These data indicate that lipid peroxidation as measured by MDA may be the most sensitive indicator for oxidative stress in erythrocytes. Hemolysis could thus be applicable to free-radical-induced cellular damage as an alternative biomarker of oxidative stress.

Alanine↗

Differential carcinogenicity of benzo[a]pyrene in male and female CD-1 mouse lung.

Benzo[a]pyrene (BaP) is known to induce tumors in lung, forestomach, and skin in experimental animals. Earlier studies have suggested that glutathione S-transferase pi (GST pi) is involved in the detoxification of the "ultimate" carcinogenic metabolite of BaP, 7 beta, 8 alpha-dihydroxy-9 alpha, 10 alpha-oxy-7,8,9,10-tetrahydrobenzo[a]pyrene (BPDE). The constitutive expression of GST pi in the liver of the male CD-1 mouse is higher than that of the female, and BHA has been shown to preferentially induce GST pi in the female as compared with the male mouse. The present studies were therefore designed to compare the susceptibility of male and female CD-1 mice to the carcinogenic effects of BaP and the protective effect of BHA. Results of these studies show that the female CD-1 mice are more susceptibile to the carcinogenic effect of BaP than the males and that the attenuation of BaP-induced carcinogenesis by BHA appears to be restricted only to the females.

Adenocarcinoma↗

Comparison of benzo[a]pyrene DNA adduct formation in the skin of two strains of mice selected for resistance (DBA/2) or susceptibility (C3H/HeN) to contact dermatitis.

Two strains of mice were selected for resistance (DBA/2) or susceptibility (C3H/HeN) to contact dermatitis. Benzo[a]pyrene-DNA adduct formations was compared in the two mouse strains by a postlabeling procedure to determine if there was a significant effect. Results showed that adduct profiles in DBA/2 and C3H/HeN dermis were qualitatively similar. The total binding levels were higher in DBA/2 mice on the d 2 and the d 10. DNA adduct formation has been shown to inversely correlate with skin allergy induction. Data suggest that the expression of the genes responsible for the differences in responsiveness to chemical induced contact dermatitis in mouse may play an important role in benzo[a]pyrene-DNA adduct formation.

Animals↗

Benzo(a)pyrene in Brazilian vegetable oils.

Samples of vegetable oils on the Brazilian market including rape seed, corn, soybean, sunflower, rice, palm and garlic were analysed for benzo(a)pyrene (B(a)P). The analytical method involved liquid-liquid extraction, clean-up on silica gel column and determination by high performance liquid chromatography using fluorescence detection. The limit of detection was 0.5 microgram/kg. Benzo(a)pyrene was detected in almost all samples, at levels up to 58.9 micrograms/kg. The mean levels of B(a)P in rice, sunflower, soybean, corn and palm oils were 1.8, 0.2, 2.2, 10.8 and 2.1 micrograms/kg respectively. No B(a)P was detected in garlic and rape seed oils. The data indicate that the levels of B(a)P found in Brazilian corn oils are relatively higher than those published in the literature for European corn oils.

Benzo(a)pyrene↗

Linear dichroism studies of conformations of carcinogen-DNA adducts application to covalent complexes derived from the reactions of the two enantiomers of 9,10-epoxy-9,10,11,12-tetrahydrobenzo(e)pyrene with DNA.

The conformations of the adducts derived from the covalent binding of the two enantiomeric forms of 9,10-epoxy-9,10,11,12-tetrahydrobenzo(e)pyrene (BePE) with native DNA were investigated by the electric linear dichroism technique. Both enantiomers give rise to two major adducts, one of which appears to be a quasi-intercalative site (I) while the other one is an external binding site (II). While the overall linear dichroism spectra are similar, in the case of the (-) enantiomer there is a greater contribution of site II adducts. These results are markedly different from the ones obtained with the two enantiomers of anti-benzo(a)pyrene-7,8-diol-9,10-epoxide (BaPDE), where the (+) enantiomer gives rise almost exclusively to site II binding, while the (-) enantiomer gives rise to both site I and site II covalent binding. The differences in the heterogeneity of binding between BePE and anti-BaPDE enantiomers may be due to the absence of hydroxyl groups in BePE which, in the case of BaPDE, are an important factor in determining the stereoselective properties of the covalent binding to double-stranded DNA.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

No effect of short-term exposure to GSM-modulated low-power microwaves on benzo(a)pyrene-induced tumours in rat.

PURPOSE: In view of current interest in the biological effects of amplitude-modulated microwaves arising from the rapid development of mobile communications, the effects of low-level microwaves on cancer development were investigated using a rat sarcoma model. MATERIALS AND METHODS: Two-month-old female Sprague-Dawley rats were treated by injection of benzo(a)pyrene and irradiated with GSM (Global System for Mobile)-modulated 900-MHz microwaves in an anechoic chamber at 55 or 200 microW cm(-2) (75 and 270 mW kg(-1) average whole-body SAR, 2h daily for 2 weeks). Rats were exposed from day 20, 40 or 75 after carcinogen injection. Additional groups of rats were sham-exposed in a second anechoic chamber. Anti-phosphatidylinositol autoantibody levels were evaluated in sera to monitor malignant transformation. RESULTS: Microwave exposure had no effect on the development of tumours. No acceleration or delays in tumour onset were observed. Animal survival was not modified and serum autoantibody levels were similar in exposed and sham-exposed groups. CONCLUSION: Low-level GSM microwave exposure of rat bearing benzo(a)pyrene-induced tumours had no effect on auto-antibody levels, tumour appearance and survival. The low exposure levels used here correspond to exposure limits for whole-body exposure of humans.

Animals↗

Differential sensitivity of Ah-responsive mice to beta-naphthoflavone-induced metabolism and mutagenesis of benzo[a]pyrene and aflatoxin B1.

Effects of the administration to C57BL/6ha (Ah-responsive) mice of a low (10 mg/kg) and a high dose (150 mg/kg) of beta-naphthoflavone (BNF) on the hepatic microsome-mediated mutagenesis and metabolism of benzo[a]pyrene (BP) and aflatoxin B1 (AFB1) were studied. Hepatic microsome-mediated mutagenesis of benzo[a]pyrene was not enhanced by the low dose (10 mg/kg) but at the high dose (150 mg/kg) the mutagenic activation was enhanced several fold relative to control (corn oil-treated). Mutagenic activity of aflatoxin B1 was however depressed by both the low and the high doses of beta NF. These results are consistent with the effects of beta NF administration on hepatic microsome-mediated metabolism of BP to its phenolic products and on the metabolism of aflatoxin B1 to aflatoxin M1 catalyzed by aflatoxin B1-4-hydroxylase. Relative to control, pretreatment of the mice with 10 mg/kg beta NF did not induce aryl hydrocarbon hydroxylase activity (a measure of BP metabolism), however, the same pretreatment induced the metabolism of AFB1 to AFM1 by 2.7 to 4.7-fold. Microsomal preparations from 150 mg/kg beta NF-pretreated mice showed a 3-fold induction of aryl hydrocarbon hydroxylase activity and a 6.8-fold induction of AFB1-4-hydroxylase activity. These results suggest that two different enzyme systems are involved in the metabolism of BP and the metabolism of AFB1 to AFM1.

Aflatoxin B1↗

6-Nitrobenzo[a]pyrene can be denitrated during mammalian metabolism.

Nitropolycyclic aromatic hydrocarbons (nitroarenes), including 6-nitrobenzo[a]pyrene (6-NBap), occur in our environment and are mutagenic in bacterial mutagenesis assays. The mutagenicity of 6-NBaP is enhanced when rat liver S9 is added. To investigate the cause of this increased activity, the metabolism of 6-NBaP was carried out with a total rat liver homogenate obtained from 3-methylcholanthrene- (MC-) induced rats, a 9000 X g supernatant enzyme, and with both unwashed and washed microsomes. Ring-hydroxylated 6-NBaP was detected. On the basis of retention times for known standards in a high-performance liquid chromatographic system, benzo[a]pyrene (BaP) and 6-acetoxy-BaP (6-OAcBaP) were isolated as products. BaP was further characterized via ultraviolet (UV) and mass spectra and 6-OAcBaP by UV, mass, and nuclear magnetic resonance (NMR) spectra. 6-HydroxyBaP (6-OHBaP) was also detected by UV and mass spectra. It is suggested that BaP is formed via a nitroanion radical of 6-NBaP and undergoes metabolism, while the 6-OHBaP is acetylated to form 6-OAcBaP. The acetyl donor remains to be identified.

Animals↗

Physiological significance of benzo(alpha)pyrene adsorbed to carbon blacks: elution studies, AHH determinations.

Desorption of benzo(alpha)pyrene from commercial carbon blacks by tissue fluids in vitro is compared to arylhydrocarbon hydroxylase induction in mice at three levels of carbon black exposure. Less than 0.005% of the adsorbed benzo(alpha)pyrene content determined by soxhlet extraction in toluene is eluted by human plasma, swine serum, swine lung homogenate and swine lung washings. Statistically significant differences in elution efficiency are observed by the various tissue fluids and carbon blacks. There is no detectable increase in AHH level in mouse lung or liver tissues even at the highest carbon black exposure and consumption rate of 1g/g bdywt/year.

Adsorption↗

[Transport of benzo(a)pyrene into animal organs following the feeding of activated sludge from swine manure].

In feeding experiments with pigs and fish (carp and trout) the test animals received quotas of activated sludge of 7.5 and 15% DM (pigs) and 20% (carp) in their mixed feed. In an experiment with trout in an aquarium the quota of activated sludge was increased from 20% to 50%. The benzo(a)pyrene content was ascertained in selected organs of the pigs (kidney, liver, bacon, muscles) and the edible parts of the fish. As a result of this experiment one can say that the feeding of activated sludge from pig manure does not result in an increased benzo(a)pyrene content in the tested organs of the pigs and the edible parts of the fish.

Animal Feed↗

Oxygen diffusion in biological and artificial membranes determined by the fluorochrome pyrene.

Quenching of pyrene fluorescence by oxygen was used to determine oxygen diffusion coefficients in phospholipid dispersions and erythrocyte plasma membranes. The fluorescence intensity and lifetime of pyrene in both artificial and natural membranes decreases about 80% in the presence of 1 atm O2, while the fluorescence excitation and emission spectra and the absorption spectrum are unaltered. Assuming the oxygen partition coefficient between membrane and aqueous phase to be 4.4, the diffusion coefficients for oxygen at 37 degrees C are 1.51 X 10(-5) cm2/s in dimyristoyl lecithin vesicles, 9.32 X 10(-6) cm2/s in dipalmitoyl lecithin vesicles, and 7.27 X 10(-6) cm2/s in erythrocyte plasma membranes. The heats of activation for oxygen diffusion are low (less than 3 kcal/degree-mol). A dramatic increase in the diffusion constant occurs at the phase transition of dimyristoyl and dipalmitoyl lecithin, which may result from an increase in either the oxygen diffusion coefficient, partition coefficient, or both. The significance of the change in oxygen diffusion below and above the phase transition for biological membranes is discussed.

Cell Membrane↗

Benzo[a]pyrene: kinetics of in vitro bioactivation in relation to inhibition of viral interferon induction.

The kinetics of benzo[a]pyrene (BaP) bioactivation by rat liver S9 fraction was characterized on the basis of inhibition of influenza virus induction of interferon-alpha/beta (IFN-alpha/beta) in mammalian LLC-MK2 cell cultures. Both viral IFN induction and production phases were sensitive to the adverse effects of bioactivated BaP. The integral role of S9 for BaP bioactivation and the resultant inhibition of viral IFN induction was substantiated by dose-response relationships, time-dependency of effects, and reversibility of adverse reactivity. When preceded by the analog, benzo[e]pyrene (BeP), the inhibitive action of bioactivated BaP on IFN induction was abrogated. That the ability of exogenous IFN to confer antiviral cellular resistance was unaffected by bioactivated BaP indicates that neither requisite cellular protein nor enzyme syntheses were impaired. In cells pretreated with bioactivated BaP, influenza virus multiplication reached a level that was more than twofold higher than in normal cells which was a reflection of decreased IFN production. These findings further imply that neither virus inducer-cell interactions (attachment and penetration) nor requisite viral protein and RNA syntheses were affected appreciably. BaP was selectively cyto-antagonistic to critical inducer-processing phases of IFN induction. Of 32 different mammalian cell cultures tested for indigenous metabolizing enzyme-bioactivation of BaP, based on approximately equal to 50% resultant inhibition of IFN induction, only 37.5% were responsive.

Animals↗

Metabolic activation of benzo[a]pyrene by a human hepatoma cell line.

The liver-derived human cell line, Hep G2, has high benzo[a]pyrene-metabolizing activity and converts benzo[a]pyrene to intermediates that are mutagenic and that bind to DNA. This cell line will be useful for studying metabolic activation of polycyclic aromatic hydrocarbons and other xenobiotics by human tissue and as an activation system in short-term screening assays for identifying compounds with carcinogenic potential for humans.

Animals↗

Fluorescence and mass spectral evidence for the formation of benzo[a]pyrene anti-diol-epoxide-DNA and -hemoglobin adducts in humans.

Highly specific methods are required to detect and quantitate carcinogen-macromolecular adducts in humans who are exposed to complex mixtures of chemical carcinogens. High performance liquid chromatography and fluorescence spectroscopy have been used successfully to detect and identify residues of benzo[a]pyrene-7,10/8,9-tetrahydrotetrol (BP-7,10/8,9-tetrol) that were released upon mild acid hydrolysis of human DNA or hemoglobin. Synchronous fluorescence spectroscopy data indicate that levels of benzo[a]pyrene-diol-epoxide-DNA (BPDE-DNA) adducts as high as 1.54 fmol BPDE/micrograms DNA are formed (1 adduct in 5 million nucleotides) in peripheral blood lymphocytes of coke-oven workers; these data were subsequently corroborated by gas chromatography/mass spectroscopy single ion monitoring analysis (m/z 404+). Additionally, among lung cancer patients, 5 samples of tumor DNA were found to be negative and 1 of 4 samples of corresponding lung tissue was found to be positive. Extraction and purification of BP-7,10/8,9-tetrol from the hemoglobin of smokers suggested levels of bound carcinogen in excess of 1 ng BPDE/gm of hemoglobin. High performance liquid chromatography combined with synchronous fluorescence spectroscopy provides a highly specific method for the detection of covalently bound BP residues in both human hemoglobin and DNA.

Benzo(a)pyrene↗

Peroxyl radical-dependent epoxidation of cyclopenteno[c,d]pyrene.

We have reported previously that cyclopenteno[c,d]pyrene (CPP), an environmentally prevalent polycyclic aromatic hydrocarbon, is activated as a bacterial mutagen by several model systems which generate peroxyl radicals. In this report we present our findings on the chemical fate of CPP in these activating systems. The peroxyl radical systems employed are microsomal prostaglandin H synthase and arachidonic acid, the hematin-catalyzed decomposition of a lipid hydroperoxide, and the autoxidation of the sulfite anion. Reverse-phase HPLC analysis of stable products of CPP metabolism yielded qualitatively identical profiles from the first two systems. The three major products from these systems were analyzed by UV/visible and fluorescence spectroscopy, and a mass spectrum was obtained for the most abundant product. Based on these spectral analyses and on chromatographic behavior, the three products were identified as the cis- and trans-isomers of 3,4-dihydroxy-3,4-dihydro-CPP and 4-keto-(3H)-CPP. The identities of these products and their quantitative distributions relative to the epoxide hydrolase activities present in the microsomal system and the hematin system clearly establish 3,4-epoxy-CPP as the key intermediate and probable active mutagen generated in the peroxyl radical-dependent metabolism of CPP. This epoxidation of the activated aliphatic double bond of CPP extends the known range of peroxyl radical-dependent oxygenations by demonstrating the direct, one-step activation of a carcinogenic, environmentally relevant hydrocarbon. Strikingly different results are obtained in the sulfite-dependent system. The epoxide-derived metabolites seen with the peroxyl radical systems are very minor products. Instead, two product peaks elute near the solvent fron on reverse-phase HPLC. These are apparently monohydroxy-CPP sulfonates. Such products may form either by the direct addition of the sulfite anion radical to the activated double bond of CPP or by peroxyl radical-dependent epoxidation of CPP followed by nucleophilic addition of sulfite. Precedent for both of these reactions has been reported with analogous benzo[a]pyrene derivatives. The occurrence of these radical-dependent transformations in intact mammalian systems has not been investigated, but the ability of all three model systems employed to convert CPP to potent bacterial mutagens implies that these pathways should be studied further.

Animals↗

Molecular dosimetry of DNA adducts and sister chromatid exchanges in human lymphocytes treated with benzo[a]pyrene.

We examined the relationship between benzo[a]pyrene-DNA adducts and sister chromatid exchanges (SCEs) in human lymphocytes. Cultures of isolated phytohemagglutinin (PHA)-stimulated lymphocytes from two normal donors were treated with 0.01-5.0 microM B[a]P from 24 to 72 h of culture. Using the highly sensitive 32P-postlabeling assay, we identified seven B[a]P-DNA adducts, one of which accounted for greater than 90% of the total DNA modifications. This adduct comigrated on polyethylenimine plates with the adduct produced by (+)-7 beta,8 alpha-dihydroxy-9 alpha,10 alpha-epoxy-7,8,9,10- tetrahydro-benzo[a]pyrene. B[a]P-DNA adduct levels ranged from 0.02 to 8 adducts/10(7) nucleotides. SCE frequencies measured in parallel cultures ranged from 8 to 46 SCEs/cell. At the same B[a]P concentrations, B[a]P-induced SCE frequencies and B[a]P-DNA adduct levels were higher in lymphocytes from donor 1 than in lymphocytes from donor 2. There was a linear correlation between the number of B[a]P-DNA adducts and the number of SCEs induced; slopes of the linear regressions of induced SCEs on B[a]P-DNA adducts were similar for both donors. Our data suggest that SCE induction by B[a]P in human lymphocytes results from covalent DNA modification.

Autoradiography↗

Spectroscopic characteristics and site I/site II classification of cis and trans benzo[a]pyrene diolepoxide enantiomer-guanosine adducts in oligonucleotides and polynucleotides.

The highly tumorigenic isomer (+)-7,8-dihydroxy-anti-9, 10-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene [(+)-anti-BPDE] and its non-tumorigenic enantiomer (-)-anti-BPDE are known to react predominantly with the exocyclic amino group (N2) of deoxyguanine in DNA and to form adducts of different conformations. The spectroscopic characteristics (UV absorbance, fluorescence and circular dichroism) of stereochemically defined (+)-trans, (-)-trans, (+)-cis and (-)-cis d(5'-CACATGBPDETACAC) adducts in the single-stranded form, or complexed with the complementary strand d(5'-GTGTACATGTG) in aqueous solution, were investigated. The spectroscopic characteristics of the double-stranded d(5'-CACATGBPDETACAC).d(5'-GTGTACATGTG) adducts can be interpreted in terms of two types of conformations. In site I-type conformations, there is an approximately 10 nm red shift in the absorption maxima, which is attributed to significant pyrenyl residue-base interactions; in site II-type adducts, the red shift is only approximately 2-3 nm, and the pyrene ring system is located at external, solvent-exposed binding sites. The spectroscopic characteristics of the BPDE-modified duplexes are of the site II type for the (+)- and (-)-trans, and of the site I type for the (+)- and (-)-cis adducts. In adducts derived from the binding of (+)-anti-BPDE to poly(dG-dC).(dG-dC) and poly(dG).(dC), the trans/cis BPDE-N2-dG adduct ratio is 6 +/- 1; in the case of (-)-anti-BPDE this ratio is only 0.4 +/- 0.1 and 0.6 +/- 0.15 in poly(dG-dC).(dG-dC) and poly(dG).(dC) respectively. The spectroscopic properties of these BPDE-modified polynucleotide adducts are consistent with those of the BPDE-modified oligonucleotide complexes; the cis adducts are correlated with site I adduct conformations, while the trans adducts are of the site II type. The correlations between adduct characteristics and biological activities of the two BPDE enantiomers are discussed.

Base Sequence↗