Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Polycyclic Compounds”

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 685 records · Page 38Linked to original sources

[Organic compounds in urban aerosols and their mutagenicity].

The determination of the total particulate matter (TPM), the ether extractable organic matter (EEOM) and the polycyclic aromatic hydrocarbons (PAH) in urban aerosols of Berlin-Wedding and their biological testing (Ames test) has shown that: 1. the concentrations of EEOM and TPM are probably dependent on the wind direction whereas an influence of wind velocity and temperature cannot be stated on basis of our data. 2. in most cases the concentrations of EEOM and TPM are higher on workdays than on weekends, 3. the concentration of EEOM decreases from January till May, 4. the main portion of EEOM and nearly all PAH are concentrated in the smaller particles (aerodynamic diameters less than 1.4 micrometer), 5. the PAH with four and less than four benzene nuclei show maximal concentrations on workdays whereas higher condensed PAH show a maximum on weekends, 6. most of the ether-extracts exhibits mutagenicity in the Ames test, 7. extracts of the probably lung penetrating fractions 5 and 6 (impactor stages) mostly cause higher rates of mutation than those of the combined fractions 2-4 (main site of impaction: nose and bronchi), 8. the highest rates of mutations are received with EEOM from february-samples.

Aerosols↗

Deposition fluxes of lead, cadmium, copper and polynuclear aromatic hydrocarbons (PAH) on the verges of a major highway.

Deposition fluxes of Pb, Cd, Cu and a range of 11 PAH compounds have been determined at distances of 3.8-220 m from the M6 motorway in northwest England over a period of 21 months. Considerable temporal variation is seen in the deposition fluxes, but time-averaged data show that fluxes of Cd, Cu and the PAH compounds are highly elevated close to the road, decreasing to background levels within 20-40 m. Whilst lead also shows considerable roadside enhancement, its deposition continues to decline over the full 220-m measurement interval. Background deposition levels for all pollutants measured are of the same order as other reported data. Analysis of deposition samples for organic compounds by gas chromatography-mass spectrometry revealed a wide range of mainly hydrocarbon compounds.

Cadmium↗

Efficient isolation of polyaromatic fraction from aliphatic compounds in complex extracts using dimethylformamide-pentane partitionings.

A liquid-liquid partitioning method was optimized for the rapid and quantitative separation of polycyclic aromatic hydrocarbons (PAHs) and polychlorinated biphenyls (PCBs) from aliphatic hydrocarbons in complex primary extracts. This technique was based on the selective extraction of PAHs and PCBs from an aliphatic solvent into dimethylformamide (DMF). Partition experiments demonstrated that the optimal performance was achieved with a DMF (5% H2O)-n-pentane binary system. The optimized application of two consecutive DMF (5% H2O)-n-pentane treatments to extracts from two different polluted sediments facilitated the elimination of alkanes and unresolved complex mixture by more than 94% while the average recoveries of spiked deuterated-PAHs and 13C labeled PCBs ranged from 84 to 94 and 75 to 96%, respectively.

Dimethylformamide↗

Peroxidase-mediated formation of glutathione conjugates from polycyclic aromatic dihydrodiols and insecticides.

Using two peroxidative systems (prostaglandin H synthase/arachidonic acid and horseradish peroxidase/H2O2) we observed GSH conjugate formation with a number of compounds including polycyclic aromatic hydrocarbon-diols (PAH-diols), insecticides, and steroids. Several of the conjugates were characterized by chromatography, uv-vis spectrophotometry, and FAB mass spectroscopy. Conjugate formation is dependent upon a functioning peroxidase, GSH, and is markedly enhanced (3- to 10-fold) by the inclusion of a number of reducing cosubstrates including phenol, uric acid, phenylbutazone, and acetaminophen. The mechanism of conjugate formation appears to involve addition of thiyl radical to alkene bonds conjugated to an electron releasing group probably by resonance stabilization of the carbon-centered radical intermediate. Thiyl radicals are formed either directly by GSH reduction of the peroxidase or indirectly by GSH reduction of radicals formed from reducing cosubstrates. The nitrone spin trap, 5,5-dimethyl-1-pyrroline N-oxide, which traps thiyl radicals, totally inhibits production of GSH conjugates in both peroxidative systems. Conjugation of PAH-diols, some of which are penultimate carcinogens, would prevent their metabolism to the diol-epoxides, an ultimate carcinogenic species of PAH. Conjugation by peroxidases appears to be a general pathway for glutathione conjugate formation that may lead to potential detoxification of chemicals.

Animals↗

Polycyclic aromatic hydrocarbon (PAH) emissions from a coal-fired pilot FBC system.

Due to the extensive amount of data suggesting the hazards of these compounds, 16 polycyclic aromatic hydrocarbons (PAHs) are on the Environmental Protection Agency (EPA) Priority Pollutant List. Emissions of these PAHs in the flue gas from the combustion of four coals were measured during four 1000h combustion runs using the 0.1MW heat-input (MWth) bench-scale fluidized bed combustor (FBC). An on-line sampling system was designed for the 16 PAHs, which consisted of a glass wool filter, condenser, glass fiber filter, Teflon filter, and a Tenax trap. The filters and Tenax were extracted by methylene chloride and hexane, respectively, followed by GC/MS analysis using the selective ion monitoring (SIM) mode. In this project, the effects of operating parameters, limestone addition, chlorine content in the coal, and Ca/S molar ratio on the emissions of PAHs were studied. The results indicated that the emissions of PAHs in an FBC system are primarily dependent on the combustion temperature and excess air ratio. The injection of secondary air with high velocity in the freeboard effectively reduces PAH emissions. The addition of extra limestone can promote the formation of PAHs in the FBC system. Chlorine in the coal can possibly lead to large benzene ring PAH formation during combustion. The total PAH emission increases with an increase in the sulfur content of coal. Incomplete combustion results in PAHs with four or more benzene rings. High efficiency combustion results in PAHs with two or three benzene rings.

Air↗

Polycyclic aromatic hydrocarbons (PAHs) and estrogenic compounds in experimental flue gas streams.

The importance of combustion processes as a source of substances with estrogenic activity in the environment was investigated. Wood (nontreated and treated with wood preservatives), barbecue charcoal, meat, and kitchen waste were combusted in a laboratory-scale incinerator. Flue gas emissions (particulates and gaseous pollutants) were trapped in polyurethane foam cartridges. The cartridges were subjected to Soxhlet extraction and part of the extracts redissolved in dimethylsulfoxide (DMSO) for analyses of estrogenic activity by means of the yeast-based human estrogen receptor (hER) bioassay. A synthetic estrogen, 17-alpha-ethinylestradiol (EE2), was used as the reference estrogenic compound. Part of the extracts was analyzed for the 16 USEPA priority polycyclic aromatic hydrocarbons (PAHs). Estrogenic compounds in the flue gas (wood) were as high as 234 +/- 25 ng m(-3) EE2 equivalent compared with 27 to 81 ng m(-3) EE2 equivalent in flue gas from combustion of barbecue charcoal. Concentrations of polycyclic aromatic hydrocarbons in both flue gas streams were in the range of 21,000 +/- 2000 and 240 +/- 110 ng m(-3), respectively. In general, the concentrations of EE2 equivalent in the flue gas samples were at least a factor of 1000 lower than total PAH concentration. The EE2 levels were not related to the concentration of PAHs in any flue gas sample.

Air Pollutants↗

Synthesis and characterization of dendritic multichromophores based on rylene dyes for vectorial transduction of excitation energy.

The synthesis of dendritic multichromophores based on a rigid polyphenylene scaffold is presented. Different rylene chromophores are incorporated into the core, the branches, and the surface of the dendrimer. In this way, two generations of dendritic dyads consisting of a terrylenediimide core, a stiff polyphenylene scaffold, and a perylenemonoimide periphery were obtained. Furthermore, the first synthetic approach to a dendritic triad is introduced. The outer sphere of this macromolecule is formed by naphthalenemonoimide chromophores, whereas perylenemonoimide groups are located in the dendritic scaffold, and the terrylenediimide chromophore serves as a core molecule. This multichromophore absorbs over the whole range of the visible spectrum and shows well-separated absorption envelopes. In the course of dendrimer synthesis new attempts towards a straightforward functionalization strategy for rylene dyes are also presented.

Coloring Agents↗

Ladder polyether synthesis via epoxide-opening cascades using a disappearing directing group.

The combination of a trimethylsilyl group, a Brønsted base, a fluoride source, and a hydroxylic solvent enables the first construction of the tetrad of tetrahydropyran rings found in the majority of the ladder polyether natural products by way of a cascade of epoxide-opening events that emulates the final step of Nakanishi's proposed biosynthetic pathway. The trimethylsilyl group disappears during the course of the cascade, and thus these are the first epoxide ring-opening cascades that afford ladder polyether subunits containing no directing groups at the end of the cascade.

Ciguatoxins↗

Use of bioassay methods to evaluate mutagenicity of ambient air collected near a municipal waste combustor.

An ambient air sampling study was conducted around a municipal waste combustor; a primary goal was to develop procedures and methods to evaluate the emissions of organic mutagens resulting from incomplete combustion of municipal waste. The products of incomplete combustion from incineration include complex mixtures of organics, particularly polycyclic aromatic compounds, which are present after atmospheric dilution and cooling in emissions as semi-volatile or particle bound organic compounds. Combustion emissions are generally recognized as a potential cancer risk since they contain many carcinogenic and mutagenic polycyclic aromatic hydrocarbons. Analyzing such a complex mixture for the presence of even a few selected chemicals is difficult and provides risk information on only a fraction of the chemicals present. Bioassay methods, however, may be directly applied to evaluate the mutagenic and potential carcinogenic activity of the complex organics from combustion emissions. The Salmonella (Ames) assay was used to determine the mutagenicity associated with particles from ambient air collected near a municipal waste combustor. Dose-response data was generated, and mutagenicity concentrations were calculated to demonstrate the utility of bioassay in assessing the potential impact of emissions from municipal waste combustion. This phase of study quantified mutagenicity concentrations in ambient air but did not detect organic mutagens that could be attributed to incinerator emissions.

Air Pollutants, Occupational↗

Comparative DNA binding of polynuclear aromatic hydrocarbons and their dihydrodiol and bay region diolepoxide metabolites in newborn mouse lung and liver.

Bay region diolepoxides of polynuclear aromatic hydrocarbons (PAHs) generally are more tumorigenic than their parent PAHs in newborn mice. This contrasts to the results obtained in mouse skin, in which the same diolepoxides are frequently less tumorigenic than their parents. In order to evaluate mechanism(s) responsible for this behavior we have investigated the binding of metabolites of [3H]benzo[a]pyrene (B[a]), [3H]5- and [3H6]6-methyl-chrysene (5-MeC and 6-MeC) and their corresponding dihydrodiols and bay region diolepoxides to pulmonary and hepatic DNA in male and female newborn mice and compared the results with their tumorigenic activities. Groups of 1 day old mice were treated with 0.4 or 4 nmol of the appropriate compounds in DMSO by i.p. injection. HPLC analysis of DNA hydrolysates obtained 24 h after treatment indicated that levels of diolepoxide-DNA adducts following treatment with (+-)-[3H]7,8-dihydroxy-7,8-dihydroB[a]P and (+-)-[3H]anti-7,8-dihydroxy-9,10-epoxy-7,8,9,10-tetrahydroB[a] P are 5- and 10-fold higher than those formed from [3H]B[a]P. The major products (70-80%) released upon enzymatic hydrolysis of DNA following treatment with [3H]B[a]P, [3H]5-MeC and [3H]6-MeC were unidentified polar compounds. Levels of these unknown products were lower and formation of diolepoxide--DNA adducts higher when test compounds were changed from parent PAHs to the corresponding dihydrodiols and diolepoxides. Comparison of these results with those of tumorigenesis studies indicates a correlation between formation of B[a]P-diolepoxide--DNA adducts and induction of tumors in newborn mouse lung, but not in liver. These observations are consistent with the high sensitivity of the newborn mouse lung towards the tumorigenic effects of bay region diolepoxides. Previous studies have demonstrated that 1R,2S-dihydroxy-3S,4R,epoxy, 1,2,3,4-tetrahydro-5-MeC (5-MeC-1R,2S-diol-3S,4R-epoxide) is a potent lung tumorigen while the corresponding diol-epoxide of 6-MeC had no effect in newborn mice. From the results of the present study, we estimate that at equimolar doses the formation of diolepoxide--DNA adducts from 5-MeC-1R,2S-diol-3S,4R-epoxide would be at least 20-fold greater than from the corresponding diolepoxide of 6-MeC in newborn mouse lung. Thus, the higher tumorigenic activity of 5-MeC-1R,2S-diol-3S,4R-epoxide compared to that of the corresponding diol epoxide of 6-MeC is partially due to its greater extent of DNA damage.

Animals↗