Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Pyrenes”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 883 records · Page 49Linked to original sources

Synthesis of 3-nitrobenzo[a]pyrene bay-region trans-7,8-diol anti-9,10-epoxide and the corresponding N2-deoxyguanosine adduct.

3-Nitrobenzo[a]pyrene (3-nitro-BaP) is a potent mutagenic environmental contaminant, and its biological activities have been intensively studied. It is significant to prepare its reactive metabolites and the corresponding modified DNA adducts for biological studies. The synthesis of its oxidized proximate metabolite trans-7,8-dihydro-3-nitrobenzo[a]pyrene (3-nitro-BaP-trans-7,8-dihydrodiol, 1), its oxidized ultimate metabolite trans-7,8-dihydroxy-anti-9,10-epoxy-7,8,9,10-tetrahydro-3- nitrobenzo[a]pyrene (3-nitro-BaP-DE, 2), and the corresponding DNA adduct 10-(deoxyguanosin-N2-yl)-7,8,9-trihydroxy-7,8,9,10-tetrahydro-3- nitrobenzo[a]pyrene is described.

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

Synthesis of 1- and 3-fluorobenzo[a]pyrene.

Fluoro-substituted aromatic hydrocarbons are useful probes for studying mechanistic details of oxygen transfer in metabolism catalyzed by cytochrome P450. Benzo[a]pyrene (BP) is a particularly suitable substrate for investigating this mechanism. Because 3-hydroxybenzo[a]-pyrene is one of the major metabolites of BP, preparation of 3-fluorobenzo[a]pyrene (3-FBP) was undertaken. Synthesis of 3-FBP was achieved in five steps starting from 6-chlorobenzo[a]pyrene (6-ClBP). In this synthesis 1-FBP was also produced. The overall yield was 16% for both 1-FBP and 3-FBP. After nitration of 6-ClBP at C-1 and C-3 with N2O4 and reduction by SnCl2 to the amino group, diazotization with NaNO2 in the presence of NaBF4 followed. The diazonium tetrafluoroborate salts were reacted with (CH3)2NH to produce the dimethyltriazonium tetrafluoroborate salts. By heating in toluene, a mixture of 1-F-6-ClBP and 3-F-6-ClBP was obtained. The two isomers were separated by normal-phase medium-pressure liquid chromatography. The chloro substituent was then selectively removed from both isomers by hydrogenolysis to yield 1-FBP and 3-FBP.

Benzo(a)pyrene↗

Quantitative synthesis and formation of cyclopenta[cd]pyrene 3,4-oxide under simulated atmospheric conditions.

Cyclopenta[cd]pyrene 3,4-oxide (2) has been synthesized in a one-step, quantitative reaction using dimethyldioxirane. The oxide, or its thermal rearrangement products cyclopenta[cd]-pyren-3(4H)-one and cyclopenta[cd]pyren-4(3H)-one, is formed from cyclopenta[cd]pyrene (1) under simulated environmental conditions. In one case these products are formed when 1 is adsorbed on model particulates and then exposed to the reaction products of tetramethylethylene and ozone in the gas phase.

Atmosphere↗

Synthesis and characterization of nucleosides and oligonucleotides with a benzo[a]pyren-6-ylmethyl adduct at adenine N6 or guanine N2.

Benzo[a]pyrene (1) can be converted to reactive electrophilic species by a number of metabolic pathways, of which the route to the mutagenic and carcinogenic diol epoxide(s) is the best studied. An alternative and interesting pathway to a highly genotoxic electrophile is through alkylation at the 6 position to 6-methylbenzo[a]pyrene (2) followed by oxidation of the methyl group to give 6-hydroxymethylbenzo[a]pyrene (3). Esterification of 3, especially to sulfate ester 4, gives compounds which are both mutagenic and carcinogenic. The major DNA adduct identified from exposure of rats and mice to 4 is the guanine N(2) adduct [2'-deoxy-N(2)-(benzo[a]pyren-6-ylmethyl)guanosine, 5] which is also formed via activation of 2 to a radical cation species by horseradish peroxidase/H(2)O(2) or iodine. To study the biological and structural properties of this adduct and the analogous adenine N(6) adduct (6), a nonbiomimetic synthesis of the adducted nucleosides 5 and 6 has been developed and has been extended to preparation of oligonucleotides containing 5 or 6 at a single site.

Adenine↗

Identification and characterization of novel stable deoxyguanosine and deoxyadenosine adducts of benzo[a]pyrene-7,8-quinone from reactions at physiological pH.

Benzo[a]pyrene (B[a]P) is an archetypal member of the family of polycyclic aromatic hydrocarbons (PAHs) and is a widely distributed environmental pollutant. B[a]P is known to induce cancer in animals, and B[a]P-containing complex mixtures are human carcinogens. B[a]P exerts its genotoxic and carcinogenic effects through metabolic activation forming reactive intermediates that damage DNA. DNA adduction by B[a]P is a complex phenomenon that involves the formation of both stable and unstable (depurinating) adducts. One pathway by which B[a]P can mediate genotoxicity is through the enzymatic formation of B[a]P-7,8-quinone (BPQ) from B[a]P-7,8-diol by members of the aldo-keto-reductase (AKR) family. Once formed, BPQ can act as a reactive Michael acceptor that can alkylate cellular nucleophiles including DNA and peptides. Earlier studies have reported on the formation of stable and depurinating adducts from the reaction of BPQ with DNA and nucleosides, respectively. However, the syntheses and characterization of the stable adducts from these interactions have not been addressed. In this study, the reactivity of BPQ toward 2'-deoxyguanosine (dG) and 2'-deoxyadenosine (dA) nucleosides under physiological pH conditions is examined. The identification and characterization of six novel BPQ-nucleoside adducts obtained from the reaction of BPQ and dG or dA in a mixture of phosphate buffer and dimethylformamide are reported. The structures of these adducts were determined by ultraviolet spectroscopy, electrospray mass spectrometry, and NMR experiments including (1)H, (13)C, two-dimensional COSY, one-dimensional NOE, ROESY, HMQC, HSQC, and HMBC. The reaction of BPQ with dG afforded four unique Michael addition products: two diastereomers of 8-N(1),9-N(2)-deoxyguanosyl-8,10-dihydroxy-9,10-dihydrobenzo[a]pyren-7(8H)-one (BPQ-dG(1,2)) and two diastereomers of 10-(N(2)-deoxyguanosyl)-9,10-dihydro-9-hydroxybenzo[a]pyrene-7,8-dione (BPQ-dG(3,4)). The BPQ-dG(1,2)( )()adducts suggest a 1,6-Michael addition reaction of dG, an oxidation of the hydroquinone to the quinone, a 1,4-Michael addition of water, and an internal cyclization. The BPQ-dG(3,4)( )()adducts suggest a 1,4-Michael addition reaction of dG, an oxidation of the hydroquinone to the quinone, and a 1,6-Michael addition of water. Under similar but extended reaction conditions, the reaction of BPQ with dA produced only one diastereomeric pair of adducts identified as 8-N(6),10-N(1)-deoxyadenosyl-8,9-dihydroxy-9,10-dihydrobenzo[a]pyren-7(8H)-one (BPQ-dA(1,2)). The BPQ-dA(1,2)( )()adducts suggest a 1,4-Michael addition reaction of dA, an oxidation of the hydroquinone to the quinone, a 1,6-Michael addition of water, and an internal cyclization. As considerable efforts have been placed in documenting the genotoxic effects of BPQ, this first report of the identification and characterization of these stable adducts of BPQ formed under physiological pH conditions is expected to contribute significantly to the area of BPQ-mediated genotoxicity and carcinogenesis.

Benzo(a)pyrene↗

Sorption and desorption of benzo(a)pyrene in aquatic systems.

The sorptive behaviour of polycyclic aromatic hydrocarbons (PAHs) is critical to controlling their transport, fates and effects in the environment. Experiments are described which detail the behaviour of a model compound (benzo(a)pyrene) under simulated aquatic conditions. The kinetics of sorption were comparable to those of other PAH compounds. The sorption equilibrium was extensively studied and found to be affected by several key parameters, notably sediment concentration. The sorption coefficient decreased substantially with the sediment concentration, from 9580 ml g(-1) at a sediment concentration of 0.067 g l(-1) to 1,110 ml g(-1) at a sediment concentration of 9.8 g l(-1). The results are consistent with previous reports and often explained by the presence of colloids. In this paper the dry weight concentration of colloids was determined and used for deriving the true sorption coefficient, which is up to an order of magnitude higher than the observed partition coefficient. The sorption of benzo(a)pyrene was also dependent on some of the particle properties, and the sorption coefficient was found to increase with the organic carbon content and specific surface area of sediment particles. The desorption of benzo(a)pyrene from sediment was shown to be relatively rapid, with implications for the potential remobilisation of benzo(a)pyrene and similar compounds.

Adsorption↗

Intercalating nucleic acids (INAs) with insertion of N-(pyren-1-ylmethyl)-(3R,4R)-4-(hydroxymethyl)pyrrolidin-3-ol. DNA (RNA) duplex and DNA three-way junction stabilities.

N-(Pyren-1-ylmethyl)-(3R,4R)-4-(hydroxymethyl)pyrrolidin-3-ol was synthesised from (3R,4R)-4-(hydroxymethyl)pyrrolidin-3-ol and (3R,4S)-4-[(1S)-1,2-dihydroxyethyl] pyrrolidin-3-ol using alkylation with 1-(chloromethyl)pyrene or reductive amination with pyrene-1-carbaldehyde and NaCNBH3. The incorporation of N-(pyren-1-ylmethyl)azasugar moiety into oligodeoxynucleotides (ODN) as a bulge to form an intercalating nucleic acid (INA) induced a slight destabilization of INA-DNA duplex, whereas the INA-RNA duplex was strongly destabilized and 9 degrees C difference per modification in thermal stability between INA-DNA over INA-RNA duplexes was observed. The stabilization of a DNA three way junction (TWJ) was improved when the intercalator moiety was inserted into the junction region as a bulge.

Base Sequence↗

Phosphatidylethanolamine and phosphatidylglycerol are segregated into different domains in bacterial membrane. A study with pyrene-labelled phospholipids.

To detect and characterize membrane domains that have been proposed to exist in bacteria, two kinds of pyrene-labelled phospholipids, 2-pyrene-decanoyl-phosphatidylethanolamine (PY-PE) and 2-pyrene-decanoyl-phosphatidylglycerol (PY-PG) were inserted into Escherichia coli or Bacillus subtilis membrane. The excimerization rate coefficient, calculated from the excimer-to-monomer ratio dependencies on the probe concentration, was two times higher for PY-PE than for PY-PG at 37 degrees C. This was ascribed to different local concentrations rather than to differences in mobility. The extent of mixing between the two fluorescent phospholipids, estimated by formation of their heteroexcimer, was found very low both in E. coli and B. subtilis, in contrast to model membranes. In addition, these two pyrene derivatives exhibited different temperature phase transitions and different detergent extractability, indicating that the surroundings of these phospholipids in bacterial membrane differ in organization and order. Inhibition of protein synthesis, leading to condensation of nucleoid and presumably to dissipation of membrane domains, indeed resulted in increased formation of heteroexcimers, broadening of phase transitions and equal detergent extractability of both probes. It is proposed that in bacterial membranes these phospholipids are segregated into distinct domains that differ in composition, proteo-lipid interaction and degree of order; the proteo-lipid domain being enriched by PE.

Bacillus subtilis↗

The environmental pollutant pyrene induces the production of IL-4.

BACKGROUND: Epidemiologic studies and experiments with mouse models suggest that polyaromatic hydrocarbons contained in, among others, diesel exhaust particles can promote the development of allergy. OBJECTIVE: Because IL-4 organizes allergic responses in vivo, we have investigated whether pyrene, a major compound of diesel exhaust particles, can affect the production of IL-4. METHODS: IL-4 production by primary human T cells was assessed by ELISA and messenger RNA transcription was detected by Northern blotting. Activation of the IL-4 promoter was tested in reporter gene assays with transiently transfected cell lines. RESULTS: Pyrene induced transcription of IL-4 messenger RNA and expression of IL-4 protein in primary human T cells. Pyrene, but not related polyaromatic hydrocarbons, enhanced basal transcription of the human and mouse IL-4 promoter. CONCLUSION: Our results suggest that pyrene may promote allergic diseases by inducing the production of IL-4.

Animals↗

Vitamin A status and metabolism of benzo[a]pyrene in the rat.

Male Sprague-Dawley rats were maintained on a vitamin A-deficient diet for a period of five weeks. At the end of that time, hepatic cytochrome P450 levels in vitamin A-deficient rats were 65% that of rats fed a complete diet. However, the hepatic rate of benzo[a]pyrene metabolism was significantly greater (2 times) in vitamin A-deficient rats compared with those fed a complete diet. The pattern of metabolites separable by thin-layer chromatography was similar in both groups of rats. Benzo[a]pyrene induced its own metabolism by a slightly greater amount in the vitamin-sufficient rats, but it was not to the level of the deficient group, although the levels of cytochrome P450 were still below those of the deficient rats. In discussing lung microsomes, benzo[a]pyrene pre-treatment of deficient rats resulted in slightly elevated levels of cytochrome P450 and a slightly greater rate of metabolism of benzo[a]pyrene compared with rats fed the complete diet.

Animals↗

Levels of benzo[a]pyrene and other polycyclic aromatic hydrocarbons in liquid smoke flavour and some smoked foods.

In order to investigate the levels of the polycyclic aromatic hydrocarbons, mainly benzo[a]pyrene because of its carcinogenicity, 55 samples of smoke flavour and smoked foods were analysed. The samples tested included 11 samples of liquid smoke flavour and 44 samples of smoked foods like bacon, loin, turkey, sausage, ox rib, etc. from different brands. A liquid chromatographic method was developed using a fluorescence detector. Benzo[a]pyrene was found in 73% of the liquid smoke flavour samples analysed. The levels varied from 0.1 to 336.6 micrograms/kg. Three liquid smoke flavour samples showed levels of benzo[a]pyrene above the maximum level recommended by FAO/WHO (10 micrograms/kg). From the total of 44 smoked food samples analysed, benzo(a)pyrene was detected in 23 samples (52%). The levels varied from 0.1 to 5.9 micrograms/kg. Anthracene and fluoranthene, non-carcinogenic polycyclic aromatic hydrocarbons, were found in almost all the samples analysed. Benzo[ghi]perylene, 3,4-benzofluoranthene and 1,2,3,4-dibenzopyrene were not found in any of the 55 samples analysed.

Benzo(a)pyrene↗

Modulation of rat liver aryl hydrocarbon (benzo[a]pyrene) hydroxylase activity by nutritional effects.

Rats malnourished since birth and fed a protein-free diet for 2 wk showed almost undetectable levels of liver microsomal aryl hydrocarbon (benzo[a]pyrene) hydroxylase. Treatment with benzo[a]pyrene rapidly enhanced this activity to levels higher than those observed with untreated normal rats. The carbon-monoxide-reduced cytochrome P-450 spectral peak was shifted from 452 nm in malnourished untreated rats to 448 nm in malnourished benzo[a]pyrene-injected rats and resulted in increases in the intensity of several microsomal protein bands (MW range 46,000-60,000) separated by gel electrophoresis. Malnourished rats then fed with a protein diet exhibited an important increase in aryl hydrocarbon hydroxylase activity, an increase in the intensity of microsomal protein electrophoretic bands (MW range 46,000-60,000), and a shift of the carbon-monoxide-reduced cytochrome P-450 spectral peak from 452 nm to 450 nm. These results suggest that alterations in cytochrome P-450 species related to benzo[a]pyrene metabolism might explain the modulation of this activity by nutritional effects.

Animals↗

Characterization of benzo[a]pyrene metabolism and related cytochrome P-450 isozymes in Syrian hamster livers.

Cytochrome P-450 monooxygenases of golden Syrian hamsters were characterized with respect to benzo[a]pyrene metabolism. Male hamsters were treated with phenobarbital, 3-methylcholanthrene, dexamethasone, benzoflavone, or ethanol, and the activity of aryl hydrocarbon hydroxylase and benzo[a]pyrene activation was determined by mutagenicity testing in hepatic microsomes. Aryl hydrocarbon hydroxylase activity was induced markedly by treatment with phenobarbital but not with 3-methylcholanthrene, nor with other chemicals. The degree of benzo[a]pyrene activation on mutagenicity testing was significantly elevated by treatment with 3-methylcholanthrene and phenobarbital but was reduced with dexamethasone. Immunoinhibition of these activities and Western blotting of hepatic microsomes using antibodies against cytochrome P-450 isozymes suggested that the isozymes responsible for benzo[a]pyrene metabolism in Syrian hamsters belong to the CYP1A, CYP2A, and CYP3A families, a result that differs from observations in rats.

Animals↗

[Determination of the benzo(a)pyrene content of microbial biomasses and protein feed].

A method for the fluorimetric determination of benzo(a)pyrene content is presented consisting of classical clean-up steps. The method was applied to microbial biomasses and different feed stuffs. The investigated yeasts grown on carbohydrates keep the limit of 5 ppb benzo(a)-pyrene recommended by the IUPAC. Yeast samples of the VEB Petrolchemisches Kombinat Schwedt grown on petroleum distillate have a constant quality with benzo(a)pyrene contents at 1 ppb. A selection of bacterial biomasses shows also contents less than 5 ppb. The benzo(a)pyrene contents of biomasses cultivated on liquid manure exceed the given limit.

Animal Feed↗

Retinoids inhibit 2,3,7,8-tetrachlorodibenzo-p-dioxine-induced activity of benzo[a]pyrene metabolizing enzymes in human diploid fibroblasts.

Retinoids are known to inhibit the substrate mediated enzyme induction of benzo[a]pyrene metabolizing enzymes. Consequently, the effect of two retinoids on the induction of benzo[a]pyrene metabolizing enzymes by the more potent inductor 2,3,7,8-tetrachlorodibenzo-p-dioxine (TCDD) was investigated. The studies were performed with human diploid fibroblasts in culture. Vitamin A palmitate and all-trans-retinoic-acid were found to prevent the TCDD induced increase of benzo[a]pyrene metabolism in a dose-dependent manner. The fact that this effect was immediately reversible makes it unlikely that it was due to non-specific toxic effects. The data suggest that retinoids cause a preferential inhibition of the de novo synthesis of benzo[a]pyrene metabolizing enzymes.

Anticarcinogenic Agents↗

A new sensitive fluorometric assay for the metabolism of (--)-7,8-dihydroxy-7,8-dihydrobenzo[a]pyrene by human hair follicles.

A new sensitive fluorometric assay was established to measure the stereospecific formation of benzo[alpha]pyrene tetrols formed after cytochrome P450-dependent metabolism of (--)-7,8-dihydroxy-7,8- dihydrobenzo[a]pyrene by human hair follicles. This simple assay requires three human hair follicles and a low (0.5-2.0 microM) substrate concentration and has a limit of detection of approximately 0.3 fmol of tetrols. Freshly isolated human hair follicles from 20 adult volunteers (10 non-smokers and 10 smokers) were assayed. While intersubject and seasonal variations were observed, the assay was found to be reproducible for a given subject. This rapid and non-invasive assay provides a new means for metabolic phenotyping of human subjects for their capacity to metabolize (--)-7,8-dihydroxy-7,8-dihydrobenzo[alpha]pyrene to its carcinogenic form (+)anti-benzo[a]pyrene diolepoxide.

Adult↗

Effects of unsaturated fatty acids on metabolism of benzo[a]pyrene in an NADPH-fortified rat liver microsomal system.

Modulation of microsome mediated benzo[a]pyrene (BP) metabolism by oleic and linoleic acids was studied. Oleic and linoleic acids did not influence the apparent activity of aryl hydrocarbon hydroxylase or the relative ratios of BP-7,8-dihydrodiol to phenol metabolites on high performance liquid chromatography. The total binding of BP-metabolites to DNA was not influenced much by the presence of oleic acid, but was inhibited significantly by linoleic acid (p less than 0.05). The quantity of BP-metabolite bound adducts was determined by Sephadex LH-20 column chromatography with a methanol gradient. The amount of adducts bound with the anti-isomer of BP-7,8-dihydrodiol-9,10-oxide (diol-epoxide) was more than that with 9-hydroxybenzo[a]pyrene-4,5-oxide in the absence of fatty acids, and vice versa in the presence of fatty acids. The presence of 1, 2 or 5 microliters/ml oleic acid decreased the amounts of adducts with the anti- and syn-isomers of the diol-epoxide but not those with 9-hydroxybenzo[a]pyrene-4,5-oxides, whereas the presence of 0.08 - 2 microliters/ml of linoleic acid decreased the amounts of all these adducts but to different extents, resulting in predominance of 9-hydroxybenzo[a]pyrene-4,5-oxide derived adducts over anti-isomer adducts of the diol-epoxide. These observations suggest that endogenous materials that do not have any enzyme activity may have important influences on the metabolism of chemical carcinogens.

Animals↗

Cell specific activation of benzo[a]pyrene by fibroblasts and hepatocytes.

The cell specific activation of benzo[a]pyrene (BP) by embryonic fibroblasts and by mature hepatocytes to intermediates that can interact with DNA, or cause mutations in Chinese hamster V79 cells has been investigated. At BP concentrations of up to 15 muM, BP was activated to mutagenic intermediates for the V79 cells by embryonic fibroblasts but not by hepatocytes. However, hepatocytes from rats that had been pretreated with an inducer of the mixed function oxidases, 3-methylcholanthrene, did metabolize higher doses of BP (greater than 15 muM) to mutagenic intermediates. BP was extensively metabolized by both cell types, but the hepatocytes and fibroblasts showed differences both in the profiles of BP metabolites and the nature of the BP-DNA adducts formed. Hepatocytes metabolized BP principally to 4,5-dihydro-4,5-dihydroxybenzo[a]pyrene, phenols, and quinones, which underwent further metabolism to water-soluble metabolites. Metabolism of BP to 7,8-dihydro-7,8-dihydroxybenzo[a]-pyrene (BP-7,8-diol) occurred but proceeded rapidly to the formation of triols and tetraols. Fibroblasts metabolized BP predominantly toward the formation of BP-7,8-diol. The proportion of primary metabolites undergoing further metabolism to conjugates was less extensive than in the hepatocytes. Hepatocytes bound more BP to their DNA than the fibroblasts. In the hepatocytes the major DNA adducts formed were hydrophilic derivatives, and no [+/-]7 beta, 8 alpha-dihydroxy-9 alpha, 10 alpha-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene (BPDE) adducts were detected even after treatment with BP-7,8-diol. In the fibroblasts, the major BP--DNA adduct was derived from the reaction of BPDE with deoxyguanosine. These results suggest that the differences in the response of embryonic fibroblasts and mature hepatocytes in the activation of BP to a mutagen for mammalian cells is determined at least in part by the overall balance of oxidation and detoxification processes in the cells and, hence, by the levels of critical oxidative intermediates that interact with DNA.

Animals↗