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[Characteristics of the heterogeneity of the physical properties of the lipid phase of synaptic membranes from the rat brain using the fluorescent probe pyrene].

A theoretical analysis of the dependence of pyrene excimerization on its concentration in biological membranes was carried out. It was shown that in synaptic membranes the concentration dependencies of pyrene excimerization parameter upon direct stimulation appear as nonlinear, thus being reflective of the heterogeneity of physical properties of the lipid phase. Upon pyrene excitation at the expense of the energy transfer from tryptophanyl residues the dependence is linear, which points to the homogeneity of the anular lipid pool. It was assumed that a comparison of microviscosity of the anular and bilayer lipids requires independent measurements of the coefficient of the probe distribution between the lipids or of the anular lipid content in the membrane.

Animals↗

Predisposition of cloned fetal hamster lung epithelial cells to transformation by a precarcinogen, benzo(a)pyrene, using growth hormone supplementation and collagen gel substratum.

A cloned fetal Syrian hamster lung epithelial cell line (M3E3/C3) was used to compare the influence of two different culture conditions on the degree of cellular differentiation and susceptibility of the cells to undergo malignant transformation by a precarcinogen, benzo(a)pyrene. Conventional conditions consisted of growth medium containing Roswell Park Memorial Institute Medium 1640, pyruvate, and fetal bovine serum and a substratum of plastic. Complex conditions comprised the growth medium supplemented with insulin, hydrocortisone, estradiol, epidermal growth factor, transferrin, and cholera toxin and a substratum of collagen gel. Under the complex culture conditions, there was extensive development of endoplasmic reticulum and Golgi vesicles, whereas under conventional conditions these organelles were only minimally developed. This was correlated with 1.5-1.8 times enhancement of ethoxycoumarin deethylase and reduced nicotinamide adenine dinucleotide phosphate-dependent cytochrome c reductase activities. Decomposition of added benz(a)anthracene into water-soluble compounds increased with the period of incubation and reached about 40% of initial benz(a)anthracene (50 micrograms/10 ml/flask) at 48 h under the complex conditions, whereas under the conventional conditions only less than 4% decomposition occurred. Benzo(a)pyrene in the dose range 2-8 micrograms/ml was strongly cytotoxic and caused significant anchorage independent transformation only under complex culture conditions. Transformed cells produced tumors in two of four hamsters during 8 months following s.c. injection within 48 h of birth. These results suggest that the complex culture conditions predisposed the cloned fetal epithelial cells to malignant transformation by benzo(a)pyrene through stimulation of cellular differentiation and development of enzyme systems capable of activating it metabolically.

Animals↗

Identification of mutagenic metabolites of indeno[1,2,3-cd]pyrene formed in vitro with rat liver enzymes.

Indeno[1,2,3-cd]pyrene (IP) is a major environmental pollutant which is carcinogenic on mouse skin and in rat lung. Unlike benzo(a)pyrene, IP is a nonalternant polycyclic aromatic hydrocarbon which is devoid of a bay region. IP was mutagenic in Salmonella typhimurium TA100 in the presence of a 9000 X g supernatant from the livers of Aroclor-pretreated rats. Using a similar activation system, the major metabolites of IP were isolated and identified by comparison with synthetic reference standards. trans-1,2-Dihydro-1,2-dihydroxy-IP, 8-, 9-, and 10-hydroxy-IP, 8- and 9-hydroxy-trans-1,2-dihydro-1,2-dihydroxy-IP, and IP-1,2-quinone are among the metabolites formed in vitro. The 1,2-epoxide of indeno[1,2,3-cd]pyrene is a potent direct-acting mutagen. 8- and 9-hydroxy-IP were mutagenic with metabolic activation. 1-,2-, and 6-hydroxy-IP and the trans-1,2-dihydrodiol had no significant mutagenic activity in S. typhimurium TA100 with metabolic activation. These data suggest that the K-region oxides of IP and of 8- and 9-hydroxy-IP are ultimately responsible for its mutagenic activity.

Animals↗

Benzo(a)pyrene binding to DNA in organ cultures of human endometrium.

Benzo(a)pyrene was found to bind to DNA in human endometrial tissue in vitro. Among specimens from 41 individuals examined, there was a 70-fold range in the observed specific activities of carcinogen binding to DNA. To determine whether this interindividual variability was correlated with the hormonally determined state of differentiation of the endometrial tissue, this population was subdivided to separate postmenopausal patients from premenopausal patients; among premenopausal patients, further division was made according to location within the menstrual cycle. Tissue obtained late in the proliferative phase or early in the secretory phase of the menstrual cycle had the highest mean specific activity of benzo(a)pyrene binding. In spite of the relatively small group sizes, the observed difference between this and the level of benzo(a)pyrene binding in the mid- and late secretory phases was statistically significant. The average binding level among the small number of patients studied who had entered a natural menopause was lower than the average binding for any of the subgroups of premenopausal patients and significantly lower than the mean for the whole population of premenopausal patients.

Adult↗

Inhibition in vivo of the formation of adducts between metabolites of benzo(a)pyrene and DNA by aryl hydrocarbon hydroxylase inducers.

The lungs of A/HeJ mice are susceptible to benzo(a)pyrene (BP)-induced neoplasia whereas the livers are resistant. Following p.o. administration of a carcinogenic dose of [3H]BP, radioactivity was associated with the DNA of both lung and liver. Analysis of the deoxyribonucleosides by high-pressure liquid chromatography showed that the major adduct in both tissues chromatographed as the (+/-)-7 beta, 8 alpha-dihydroxy-9 alpha, 10 alpha-epoxy-7,8,9,10-tetrahydrobenzo(a)pyrene (BPDEI)-deoxyguanosine adduct. The (+/-)-7 beta, 8 alpha-dihydroxy-9 beta, 10 beta-epoxy-7,8,9,10-tetrahydrobenzo(a)pyrene (BPDEII)-deoxyguanosine adduct was 9 to 15% of the BPDEI adduct in both lung and liver. Although total DNA-associated radioactivity was approximately 12-fold higher in liver than in lung, the specific activities of the BP diol-epoxide adducts were approximately the same in these organs. Treatment of animals with beta-naphthoflavone (beta NF), an inhibitor of pulmonary adenoma formation, markedly decreased the amount of the BDPEI and BPDEII adducts in the lung and the liver. The decrease in the amount of these adducts in the lung correlates with the inhibition of tumorigenesis by beta NF. The inhibition of total DNA-associated radioactivity was significantly less than the BP diol-epoxide adducts. Thus, beta NF appears to inhibit BP-induced pulmonary neoplasia by reducing the amount of the BPDEI-deoxyguanosine adduct. Other inducers of aryl hydrocarbon hydroxylase were also tested for their effect on the formation of BP-deoxyribonucleoside adducts. Both 2,3,7,8-tetrachlorodibenzo-p-dioxin and Aroclor 1254 significantly reduced the amount of the BPDEI adduct in both lung and liver. These data would suggest that both 2,3,7,8-tetrachlorodibenzo-p-dioxin and Aroclor 1254, like beta NF, should protect against BP-induced pulmonary neoplasia. The effects of aryl hydrocarbon hydroxylase inducers on the binding of BP to DNA in vivo markedly contrast with their effect in vitro. Treatment of animals with aryl hydrocarbon hydroxylase inducers stimulates the formation of BP diol-epoxide adducts in vitro. The reason for the differences between our in vivo results and those predicted from in vitro studies is unclear.

Animals↗

Binding of benzo(a)pyrene derivatives to specific proteins in nuclei of intact hamster embryo cells.

In hamster embryo cells incubated for 24 hr with 4 microM [3H]benzo(a)pyrene, a major portion of the nonextractable radioactivity in nuclear preparations copurifies with the protein fraction. When these proteins are analyzed by sodium dodecyl sulfate:polyacrylamide gel electrophoresis, significant variations in the labeling intensities of the various proteins are seen. Control experiments demonstrate that the labeling is due to covalent binding to protein. Histones H3 an H2A are heavily labeled while the other histones of the nucleosome core, H2B and H4, are devoid of radioactivity. Large amounts of label are associated with proteins with mobilities similar to the very lysine-rich histones H1. However, the results of differential extraction experiments suggest that the labeled proteins do not belong to either the H1 or the high-mobility-group class of chromosomal proteins. During 6 hr of inhibition of protein synthesis by cycloheximide, the metabolism of [3H]benzo(a)pyrene, as monitored by high-pressure liquid chromatography, remained normal. Patterns of labelling of nuclear proteins after 3 or 6 hr were identical in the presence and absence of cycloheximide. This finding strongly suggests that binding of benzo(a)pyrene derivatives to nuclear proteins occurs in situ.

Animals↗

Inhibition in vivo of the formation of adducts between metabolites of benzo(a)pyrene and DNA by butylated hydroxyanisole.

Antioxidants have been shown to inhibit the carcinogenic effects of a variety of chemical carcinogens. For example, the phenolic antioxidant butylated hydroxyanisole (BHA) has been shown to be a potent inhibitor of benzo(a)pyrene (BP)-induced neoplasia in mouse lung and forestomach. The objective of the present study was to determine whether or nt BHA, under conditions known to result in inhibition of BP-induced neoplasia, affects the formation of BP metabolite:DNA adducts. Following p.o. administration of a carcinogenic dose of [3H]BP to A/HeJ mice, radioactivity was detected in the DNA of both lung and liver. Analysis of the deoxyribonucleosides by high-pressure liquid chromatography showed that the major adduct in both tissues cochromatographed with the (+/-)-7 beta, 8 alpha-dihydroxy-9 alpha, 10 alpha-epoxy-7,8,9,10-tetrahydrobenzo(a)pyrene (BPDEI):deoxyguanosine adduct. The 7 beta, 8 alpha-dihydroxy-9 beta, 10 beta-epoxy-7,8,9,10-tetrahydrobenzo(a)pyrene (BPDEII):deoxyguanosine adduct was 10 to 15% of the BPDEI adduct in both lung and liver. Another adduct, possibly derived from BP phenol(s), was also detected in lung and was 10 to 20% of the BPDEI adduct. Treatment of animals with BHA decreased the amount of the BPDEI adduct in the lung and the liver approximately 55 and 75%, respectively. The decrease in the amount of this adduct in the lung appears to correlate with the inhibition of pulmonary adenoma formation (L. W. Wattenberg, J. Natl. Cancer Inst., 50: 1541-1544, 1973; J. L. Speier, L. K. Lam, and L. W. Wattenberg, J. Natl. Cancer Inst., 60: 605-609, 1978). Thus, BHA appears to inhibit BP-induced pulmonary adenoma formation by inhibiting the amount of the BPDE:DNA adducts formed in lung. Possible mechanisms by which BHA treatment inhibits the formation of BPDE:DNA adducts are discussed.

Animals↗

Characterization of reversible, physical binding of benzo[a]pyrene derivatives to DNA.

The carcinogen, 7r,8t-dihydroxy-9t,10t-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene, and a number of its noncarcinogenic derivatives form a reversible physical complex with DNA in vitro. The absorbance spectrum of the hydrocarbon in the complex shifts approximately 10 nm to the red. Fluorescence from the physically bound hydrocarbon is significantly quenched, and binding levels are decreased by the addition of 1) spermine, 2) MgCl2, and 3) NaCl, with their relative effectiveness in reducing complex formation following the same order. Equilibrium data and the change in superhelicity of simian virus 40 DNA as a result of physical binding were used to calculate an unwinding angle for each of the benzo[a]pyrene derivatives of 13 degrees, while under the same conditions ethidium bromide unwound the duplex approximately 30 degrees. The weight of this evidence indicates that the carcinogen and its noncarcinogenic derivatives reversibly bind to DNA by intercalation of their planar aromatic system into the stacked base pairs of the duplex. The results of this and previous studies suggest that covalent binding of the carcinogenic derivative of benzo[a]pyrene to DNA is preceded by a physical intercalation step.

Animals↗

Induction of squamous cell carcinoma with 3,4-benzo[a]pyrene in the human bronchus transplanted into nude mice.

By the intraluminal injection of 3,4-benzo[a]pyrene into human bronchial grafts in nude mice, squamous cell carcinoma was induced in one bronchial graft out of 17 benzo[a]pyrene-treated grafts. As benzo[a]pyrene is one of the most common carcinogens in the human environment, this experimental system should serve as an excellent model system for studying the process of carcinogenesis in the human respiratory tract.

Animals↗

Clearance of benzo(a)pyrene by isolated rat liver and lung: alterations in perfusion and metabolic capacity.

The ability of isolated rat livers and lungs to clear circulating benzo(a)pyrene was examined under conditions of altered perfusion and pretreatment with 3-methylcholanthrene (3-MC). In isolated organs from control rats, pulmonary benzo(a)pyrene clearance was low (approximately 1 ml/min) and independent of flow between 10 and 45 ml/min, whereas hepatic clearance was greater and flow dependent, increasing from 3.2 +/- 0.2 ml/min at a flow of 7 ml/min to 13.2 +/- 0.7 ml/min at a flow of 20 ml/min. 3-MC pretreatment increased markedly the arylhydrocarbon hydroxylase activity of broken cell preparations from both organs. However, clearance of benzo(a)pyrene was not increased in isolated livers by 3-MC pretreatment. On the other hand, clearance did increase and became flow dependent in isolated lungs of 3-MC-pretreated rats. In fact, when organs from these animals were perfused at flows occurring in vivo, hepatic and pulmonary clearance were about equal. These results indicate that flow and metabolic capacity are important determinants of both hepatic and pulmonary clearance of xenobiotic compounds and suggest that alterations in either factor may affect the relative roles of these organs in the total body disposition of xenobiotic compounds.

Animals↗

[Action of F- on liver metabolism of dimethylnitrosamine and benzo(a)pyrene in the rat].

The authors carried out this study according to three parameters (dose, level, age of the rats and way of administration) on the action of fluor study in liver metabolism of dimethylnitrosamine and benzo(a)pyrene. The results showed that, in parallel with the increase of the dose level, at certain concentrations, it occurs generally an induction of dimethylnitrosamine-demethylase and a decrease in the amount of cytochrome P450 either by intraperitoneal injection, by ingestion or by inhalation. On the other hand, fluoride does not affect benzo(a)pyrene metabolism. Moreover, inhalation of FH looks the most suitable for this study. It allows to keep a relatively constant rate of F' in the blood and bring about more important changes in the metabolism of dimethylnitrosamine (30 to 70% induction) and in the amount of cytochrome P450 (10 to 40% decrease), as compared to the controls. The results suggest that, in the conditions of our experiments, fluoride would exert an favourable effect on the carcinogenic power of dimethylnitrosamine without affecting benzo(a)pyrene one.

Animals↗

Dose-response relationships for the binding of benzo(a)pyrene metabolites to DNA and protein in lung, liver, and forestomach of control and butylated hydroxyanisole-treated mice.

In this study, the formation of benzo(a)pyrene (BP) metabolite:DNA adducts in lung, liver, and forestomach of control and butylated hydroxyanisole (BHA)-treated (5 mg/g diet) female A/HeJ mice was examined as a function of BP dose (p.o.), ranging from 2 to 1351 mumol/kg. The major identified adduct in each tissue at each dose was the (+)-7 beta,8 alpha-dihydroxy-9 alpha,10 alpha-epoxy-7,8,9,10-tetrahydrobenzo(a)pyrene (BPDEI):deoxyguanosine adduct. A 7 beta,8 alpha-dihydroxy-9 beta,10 beta-epoxy-7,8,9,10-tetrahydrobenzo(a)pyrene:deoxyguanosine adduct, a(-)-BPDEI:deoxyguanosine adduct, and an unidentified adduct were also observed. In lung and liver of untreated animals, the dose-response curves for BPDEI:DNA adduct levels were sigmoidal. In forestomach, there was no indication of saturation of DNA binding over the BP dose range examined. The dose-response curves became linear as BP dose approached zero and thus, no threshold dose existed below which binding of BPDEI to DNA did not occur, at least in lung, liver, and forestomach of these mice. In forestomach, the dose-response curve for BPDEI:DNA adducts in BHA-treated mice, 0.5% of diet for 2 weeks, was parallel to the curve for control animals and thus, the inhibition (45%) of adduct formation is independent of BP dose. In contrast, BHA treatment diminished the curvilinear nature of the dose-response curves for BPDE adducts in lung and liver. The inhibition of BPDEI:DNA adduct formation by BHA in lung and liver was dose dependent. The inhibition of lung (68%) and liver (82%) adduct formation was highest at a BP dose of 270 mumol/kg. As the BP dose approached zero, the inhibition of BPDEI:DNA adduct formation by BHA decreased with BP dose and approached values of approximately 40% (lung) and 55% (liver). The dose dependency of the binding of BP metabolites to protein was also examined. BPDEI:DNA adduct concentrations ranged from 2 to 10% of protein binding concentrations in liver of untreated animals, from 3 to 7% in forestomach, and from 5 to 7% in lung. The dose-response curves for protein binding of BP metabolites in lung and liver from BHA-treated animals were essentially parallel to those in control animals and thus, the inhibition of protein binding by BHA treatment had no dose dependency in these organs. No consistent BHA effect was observed on the amount of binding of BP metabolites to forestomach protein.

Animals↗

Analysis of benzo(a)pyrene:DNA adducts formed in cells in culture by immobilized boronate chromatography.

A chromatographic procedure using boronic acid residues linked to a cellulose support [(N-(N'-[m-(dihydroxyboryl)-phenyl]succinamyl)amino]ethyl cellulose), used by Sawicki et al. (Cancer Res., 43: 3212-3218, 1983) for analysis of 7,12-dimethylbenz(a)anthracene:DNA adducts, was modified to allow the analysis of benzo(a)pyrene (BaP):DNA adducts formed in cells in culture. Adducts resulting from reaction of 7 beta, 8 alpha-dihydroxy-9 alpha, 10 alpha-epoxy-7,8,9,10-tetrahydrobenzo(a)pyrene (anti-BaPDE) contain cis-vicinal hydroxyl groups that complex with the boronic acid residues; adducts resulting from 7 beta, 8 alpha-dihydroxy-9 beta, 10 beta-epoxy-7,8,9,10-tetrahydrobenzo(a)pyrene (syn-BaPDE) do not. A mixture of [3H]-syn-BaPDE:deoxyguanosine (dGuo) adduct and [14C]-anti-BaPDE:dGuo adduct was completely resolved on a column of boronate:cellulose. Early-passage cultures of Sencar mouse, Syrian hamster, and Wistar rat embryo cells and a culture of a human hepatoma cell line (Hep G2) were exposed to [3H]BaP, and the BaP:DNA adducts were resolved by boronate chromatography and high-performance liquid chromatography. The Hep G2 cells and mouse embryo cells contained two major adducts, a (+)-anti-BaPDE:dGuo adduct and a syn-BaPDE:dGuo adduct. Boronate chromatography permitted the resolution of an additional minor syn-BaPDE:deoxyribonucleoside adduct in the mouse embryo cells. The hamster and rat embryo cells contained a number of major BaP-DNA adducts that were resolved by boronate chromatography followed by high-performance liquid chromatography. The rat embryo cells contained three syn-BaPDE:deoxyribonucleoside adducts and approximately equal amounts of two adducts tentatively identified as dGuo adducts of the (+) and (-) enantiomers of anti-BaPDE. The boronate chromatography-high-performance liquid chromatography procedure improves the separation of the BaP:DNA adducts formed in biological systems and facilitates the identification of the BaP metabolite(s) responsible for the formation of these adducts.

Animals↗

Effects of a 6-fluoro substituent on the metabolism of benzo(a)pyrene 7,8-dihydrodiol to bay-region diol epoxides by rat liver enzymes.

Metabolism of trans-7,8-dihydroxy-7,8-dihydro-6-fluorobenzo(a)pyrene by liver microsomes from 3-methylcholanthrene-treated rats and by a highly purified monooxygenase system, reconstituted with cytochrome P-450c, has been examined. Although both the fluorinated and unfluorinated 7,8-dihydrodiol formed from benzo(a)pyrene by liver microsomes share (R,R)-absolute configuration, the fluorinated dihydrodiol prefers the conformation in which the hydroxyl groups are pseudodiaxial due to the proximate fluorine. The fluorinated 4,5- and 9,10-dihydrodiols are also greater than 97% the (R,R)-enantiomers. For benzo(a)pyrene, metabolism of the (7R,8R)-dihydrodiol to a bay-region 7,8-diol-9,10-epoxide in which the benzylic hydroxyl group and epoxide oxygen are trans constitutes the only known pathway to an ultimate carcinogen. With the microsomal and the purified monooxygenase system, this pathway accounts for 76-82% of the total metabolites from the 7,8-dihydrodiol. In contrast, only 32-49% of the corresponding diol epoxide is obtained from the fluorinated dihydrodiol and this fluorinated diol epoxide has altered conformation in that its hydroxyl groups prefer to be pseudodiaxial. Much smaller amounts of the diastereomeric 7,8-diol-9,10-epoxides in which the benzylic hydroxyl groups and the epoxide oxygen are cis are formed from both dihydrodiols. As the fluorinated diol epoxides are weaker mutagens toward bacteria and mammalian cells relative to the unfluorinated diol epoxides, conformation appears to be an important determinant in modulating the biological activity of diol epoxides. One of the more interesting metabolites of 6-fluorinated 7,8-dihydrodiol was a relatively stable arene oxide, probably the 4,5-oxide, which is resistant to the action of epoxide hydrolase.

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

Prostaglandin endoperoxide synthetase and the activation of benzo(a)pyrene to reactive metabolites in vivo in guinea pigs.

The role of prostaglandin endoperoxide synthetase in the in vivo activation of benzo(a)pyrene to reactive metabolites capable of interacting irreversibly with cellular macromolecules was studied in guinea pig liver, lung, kidney, spleen, small intestine, colon, and brain. DNA and protein covalent binding experiments were made after systemic administration of acetylsalicylic acid (200 mg/kg) followed by radiolabeled benzo(a)pyrene (4 microgram/kg). Results are compared with a control situation in which the prostaglandin endoperoxide synthetase inhibitor (acetylsalicylic acid) was not administered. No decrease in the level of DNA or protein benzo(a)pyrene-derived covalent binding was observed in any of the tissues studied.

Animals↗

[Verification of Forster's concept of inductive-resonance energy transfer for the tryptophanyl-pyrene pair].

The mechanism of quenching to tryptophan fluorescence was studied for a number of proteins and membranes of sarcoplasmic reticulum. The inductive-resonance energy transfer from tryptophanyls to pyrene was shown to be absent though all the necessary and sufficient Förster's conditions were met. The quenching proceeds by a dynamic mechanism. The quenching efficiency characterises the sterical accessibility of tryptophanyls for pyrene. The simultaneously observed rise of luminescence of the quencher is trivial. It was concluded that measuring intermolecular distances and defining protein conformational states using Förster's theory is wrong in case of the tryptophany-pyrene pair.

Animals↗

Mutagenesis and morphological transformation of mammalian cells by a non-bay-region polycyclic cyclopenta(cd)pyrene and its 3,4-oxide.

Cyclopenta(cd)pyrene, a constituent of environmental emissions, has been found to mutate and transform mammalian cells in culture. Cyclopenta(cd)pyrene 3,4-oxide, a presumed metabolite, was found to be a direct-acting mutagen and to transform mammalian cells. These results suggest that cyclopenta(cd)pyrene 3,4-oxide may be an ultimate mutagenic form of the parent hydrocarbon.

Animals↗

Potent mammary carcinogenicity in female CD rats of a fjord region diol-epoxide of benzo[c]phenanthrene compared to a bay region diol-epoxide of benzo[a]pyrene.

Two diol-epoxide metabolites of benzo[c]phenanthrene and benzo[a]pyrene, polynuclear aromatic hydrocarbons which occur in the environment, were tested for carcinogenicity by direct injection into the mammary fat pads of female CD rats. The compounds anti-3,4-dihydroxy-1,2-epoxy-1,2,3,4-tetrahydrobenzo[c]phenanthrene (BcPDE), a fjord region diol-epoxide, and anti-7,8-dihydroxy-9,10-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene, a bay region diol-epoxide, were applied at total doses of 12.2 mumol. 6-Nitrochrysene was applied at the same dose as a positive control (K. El-Bayoumy, A. Rivenson, P. Upadhyaya, Y-H. Chae, and S. S. Hecht, Cancer Res. 53: 3719-3722, 1993). The sterically hindered fjord region diol-epoxide BcPDE was a powerful mammary tumorigen and carcinogen, rapidly inducing significantly more fibroadenoma and adenocarcinoma than either of the other compounds. Anti-7,8-dihydroxy-9,10-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene was a weaker mammary tumorigen than BcPDE and 6-nitrochrysene. The results of this study provide the first evidence for mammary tumorigenicity of polynuclear aromatic hydrocarbon diol-epoxides and demonstrate the potent mammary carcinogenicity of BcPDE.

Adenocarcinoma↗