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Metal-mediated efficient synthesis, structural characterization, and skeletal rearrangement of octasubstituted semibullvalenes.

The first metal-mediated efficient synthesis of octasubstituted semibullvalenes, including octaalkyl and mixed tetraalkyl and tetraphenyl derivatives, was developed. The structures of these semibullvalenes were determined by single-crystal X-ray structural analysis. Their intramolecular skeletal rearrangement and reaction chemistry were investigated.

Crystallography, X-Ray↗

Synthesis of oxepanes and trans-fused bisoxepanes via biomimetic, endo-regioselective tandem oxacyclizations of polyepoxides.

[reaction: see text] This communication describes the first examples of tandem endo-regioselective and stereospecific oxacyclizations of 1, 5-diepoxides to oxepane products and a similar tandem oxacyclization of 1,5,9-triepoxides to fused bisoxepane cyclic carbonates. A mechanism for these biomimetic oxacyclizations is proposed in which the epoxides act as both electrophilic and nucleophilic reaction partners.

Epoxy Compounds↗

Role of dissolution rate and solubility in biodegradation of aromatic compounds.

Strains of Moraxella sp., Pseudomonas sp., and Flavobacterium sp. able to grow on biphenyl were isolated from sewage. The bacteria produced 2.3 to 4.5 g of protein per mol of biphenyl carbon, and similar protein yields were obtained when the isolates were grown on succinate. Mineralization of biphenyl was exponential during the phase of exponential growth of Moraxella sp. and Pseudomonas sp. In biphenyl-supplemented media, Flavobacterium sp. had one exponential phase of growth apparently at the expense of contaminating dissolved carbon in the solution and a second exponential phase during which it mineralized the hydrocarbon. Phase-contrast microscopy did not show significant numbers of cells of these three species on the surface of the solid substrate as it underwent decomposition. Pseudomonas sp. did not form products that affected the solubility of biphenyl, although its excretions did increase the dissolution rate. It was calculated that Pseudomonas sp. consumed 29 nmol of biphenyl per ml in the 1 h after the end of the exponential phase of growth, but 32 nmol of substrate per ml went into solution in that period when the growth rate had declined. In a medium with anthracene as the sole added carbon source, Flavobacterium sp. converted 90% of the substrate to water-soluble products, and a slow mineralization was detected when the cell numbers were not increasing. Flavobacterium sp. and Beijerinckia sp. initially grew exponentially and then arithmetically in media with phenanthrene as the sole carbon source. Calculations based on the growth rates of these bacteria and the rates of dissolution of phenanthrene suggest that the dissolution rate of the hydrocarbon may limit the rate of its biodegradation.

Biodegradation, Environmental↗

Liver regeneration as influenced by the structure of aromatic and heterocyclic compounds.

The effect of aromatic hydrocarbons and derivatives and heterocyclic agents administered s.c. daily for the first 7 days or as dietary supplements was ascertained on the extent of liver regeneration in partially hepatectomized male rats over a period of 10 days. The monoalkylbenzenes proved ineffective by injection except for ethylbenzene and possibly n-propylbenzene and the introduction of the double or triple bond in the side-chain as exemplified by styrene and phenylacetylene, led to little change over the respective controls. A number of noncarcinogenic hydrocarbons accelerated the regenerative process but much higher s.c. dosages were required as compared to the carcinogenic hydrocarbons. As tested by the dietary route, the optimum effect among the phenylmethanes was reached with diphenylmethane, toluene, tri- and tetraphenylmethanes and the Sn analog, tin tetraphenyl being inactive. With the diets, carcinogens as BP or DBA at 0.10% were without effect whereas acenaphthene or fluoranthene at this level accelerated the regeneration. Although diets supplemented with anthracene or octahydroanthracene led to little change in liver increment, 9,10-dihydroanthracene, anthraquinone and anthrone comprised liver stimulants, an activity which did not extend to phenanthraquinone. Aniline and triphenylamine did not alter the control increment but diphenylamine was active as was also the case with o- and m-terphenyls, the p-isomer being ineffective. Although naphthalene lacked activity by either route, 1- and 2-phenylnaphthalenes proved stimulatory by injection and 1- and 2-naphthylamines, by diet. Among other derivatives, phenyl sulfide and its sulfoxide and sulfone were quite stimulatory in addition to heterocyclic S compound as benzothiophene, phenothiazine, phenoxathiin and thianthrene but not thianaphthene at the dietary levels screened. Several series were conducted with intact rats under the above conditions; ethyl-benzene and phenathrene injected s.c. at high levels did not alter the control dry- or wet liver-body weight ratios. The findings are summarized in Table 4.

Alkanes↗

Fjord- and bay-region diol-epoxides investigated for stability, SOS induction in Escherichia coli, and mutagenicity in Salmonella typhimurium and mammalian cells.

The fjord-region diol-epoxides of benzo(c)phenanthrene combine high mutagenic and carcinogenic activity with low chemical reactivity. To study whether this is a unique property of these compounds or a more general characteristic of fjord-region diol-epoxides, we have synthesized the anti- and syn-diastereomers of r-9,t-10-dihydroxy-11,12-oxy-9,10,11,12-tetrahydrobenzo(c)chrysene and r-11-t-12-dihydroxy-13,14-oxy-11,12,13,14-tetrahydrobenzo(g)chrysene. These compounds as well as the anti- and syn-diastereomers of the fjord-region diol-epoxides of benzo(c)phenanthrene and of the bay-region diol-epoxides of phenanthrene, chrysene, and benzo(a)pyrene were investigated for their half-lives in a physiological buffer, for their mutagenicity in Salmonella typhimurium (reversion of the his- strains TA97, TA98, TA100, and TA104), for induction of SOS response in Escherichia coli (SOS chromotest in strain PQ37) and for their mutagenicity in V79 Chinese hamster cells (acquisition of resistance to 6-thioguanine). All six of the investigated fjord-region diol-epoxides were more stable in physiological buffer at 37 degrees C (t1/2 greater than 2 h) than the six bay-region diol-epoxides (t1/2 = 0.011 to 1.2 h). The half-lives correlated negatively with the calculated delta Edeloc values for the formation of the benzylic carbocations, and were consistently shorter for the syn- than for the corresponding anti-diastereomer. All fjord-region diol-epoxides showed extraordinarily high activity in all six genotoxicity assays used. In mammalian cells, the anti-diol-epoxide of benzo(c)chrysene was 8.6 and 12 times more active than the anti-diol-epoxides of benzo(c)phenanthrene and benzo(a)pyrene, respectively, which were the most potent mutagens among the reference compounds. The other three newly available fjord-region diol-epoxides were also markedly more mutagenic in mammalian cells than the reference compounds. Whereas the syn-diastereomers of the simple bay-region diolepoxides were clearly less mutagenic in mammalian cells than the corresponding anti-diastereomers, the differences in potency between diastereomers were small for the fjord-region diol-epoxides. In conclusion, the diol-epoxides of benzo(c)phenanthrene are not unique in their high biological activities. The two newly available diastereomeric pairs of fjord-region diol-epoxides of benzo(g)- and benzo(c)chrysene proved to be even more active. For one of them, the diol-epoxides of benzo(g)chrysene, the delta Edeloc value for the formation of the benzylic carbocation is lower than for the benzo(c)phenanthrene diol-epoxides, for the other it is higher.

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

[Aromatic hydrocarbons: environmental pollution and biological effects].

A complete explanation of the problem concerning aromatic hydrocarbons as polluting materials is presented. Both collective and individual sources of pollution, the collective sources, due to the human work activities, and the individual ones, caused by the habit to smoking have ben considered. The effects these compounds have in the human organism and particularly the carcinogenic action of polycyclic hydrocarbons have also ben discussed.

Air Pollutants↗

Gas chromatographic profile analysis of basic nitrogen-containing aromatic compounds (azaarenes) in high protein foods.

A method is described for the determination of basic nitrogen-containing polycyclic aromatic compounds (N-PACs, azaarenes) in meat. The enrichment procedure includes liquid-liquid partition (dimethylformamide-water-cyclohexane), extraction of N-PACs by sulfuric acid, reextraction after neutralization by cyclohexane or, alternatively, by nonadsorbing ion exchange chromatography. Further purification is performed by column chromatography on Sephadex LH 20 using a closed system to avoid sample contamination by laboratory pollutants. N-PACs are analyzed by capillary gas chromatography and measured by comparing to the corresponding peak areas of an internal standard (e.g., 10-azabenzo(a)pyrene). The limit of detection of this method ranges from 0.1 to 0.4 ng for benzacridines, dibenzacridines, and their methyl derivatives. The results of a collaborative study, stimulated by IUPAC, are reported: Coefficients of variation for the various azaarenes were 4.0-13.6% for the check analysis and 10.4-25.4% for a spiked ham sample. Consequently, IUPAC suggests this procedure as a recommended method.

Aza Compounds↗

Toxicity of azaarenes.

Heterocyclic compounds by far outnumber the homocyclic PAHs. In addition, they are often more soluble in water, which may imply a greater biological significance of these heterocycles. Yet, most research focuses on the homocyclics, based on the implicit assumption that the mostly higher concentration of the homocyclics rank these compounds as priority compounds. This review critically examines the available evidence and poses questions on the biological activity and environmental risk of one small group of heterocyclics, the azaarenes, which contain one nitrogen atom in one of the aromatic rings. In different sections, the biotransformation and different types of toxicity are discussed in comparison to those of homocyclic PAHs. The last section focuses on the implications for risk assessment of PAHs. Two- and three-ringed azaarenes can be relatively easily transformed by bacteria, fungi, invertebrates, and vertebrates. The presence of the N-moiety in the smaller azaarenes leads to metabolic routes that partly differ from those of the homoaromatic analogues. Major metabolic products of the azaarenes appear to be ketones and mono- or dihydroxylated azaarenes. Microorganisms can further degrade these into multiple oxygen-containing compounds or they can open up the aza-containing aromatic ring and fully metabolize the products. Fungi and vertebrates were shown to produce the mutagenic dihydrodiol metabolites. The metabolism of the larger azaarenes in vertebrates proceeds analogous to homoaromatic PAH, because in these larger molecules the N-moiety has less influence. Transformation of the larger azaarenes by microorganisms proceeds much slower if occurring at all. Direct toxicity data of azaarenes are mostly restricted to the effects of acridine and quinoline on a relatively small number of species. From this limited set it becomes clear that differences between species are relatively small. As with homocyclic PAHs, toxicity generally increases with increasing number of rings, and baseline toxicity models based on homocyclic PAHs do apply. Toxicity differences between isomers indicate that azaarene toxicity cannot be explained by molecular size-related parameters alone, indicating that electronic forces may be important as well. Considering chronic toxicity it becomes clear that the often-used acute-to-chronic-ratios often underestimate specific chronic toxicity, even within the very limited set of chronic data available. In contrast with homocyclic PAHs, photodegradation of azaarenes shows the same degradation products as biological transformation involving monooxygenases. In general, as for homocyclic PAHs, the degree of phototoxicity is related to the UV absorption characteristics of the azaarenes, which makes it possible to apply the QSAR models developed for homocyclic PAHs to azaarenes as well. Recent research on algae showed that UV-A is the main cause of photoenhanced toxicity. Together with the fact that in the water column UV-B is almost absent, this clearly demonstrates the relevance of phototoxicity in the field. Mutagenicity of azaarenes generally proceeds through similar pathways as in homocyclic PAHs, with bay region diol epoxides as major genotoxic metabolites. The N-moiety can, however, result in differences in genotoxic activities between isomers. Carcinogenicity of azaarenes in mammals is generally restricted to four-ringed and larger structures, and mechanisms leading to cancer are similar to those of homocyclic aromatics. An exception to this general pattern is quinoline, which has been shown to induce liver cancer. The present risk assessment for PAHs is solely based on homocyclic PAHs. Yet, from the present review it becomes clear that this approach fails to protect against a vast number of heterocyclic compounds and biotransformation products that may exhibit stronger or other toxic effects than their homocyclic analogues. Therefore, incorporating the role of heterocyclic compounds and their metabolism appears to be a necessity for a reliable risk assessment for polycyclic aromatic compounds. In addition, reliable long-term protection against PAHs demands data on chronic toxicity, including teratogenicity, both for homocyclic as for heterocyclic compounds.

Animals↗

Identification of occupational cancer risks using a population-based cancer registry.

The study of Xuan Wei fuel use and lung cancer mortality and also the interim case-control study suggested an association between domestic smoky coal use and Xuan Wei lung cancer. The collaborative studies of physical characterization, chemical analysis, and toxicology further substantiated this linkage. The Xuan Wei residents who used smoky coal inhaled extremely high concentrations of mostly submicron-sized particles, which can be inhaled and deposited effectively deep in the lung. These fine particles were composed mostly of organic compounds (72%), including mutagenic and carcinogenic organic compounds, especially in the aromatic and polar fractions. These residents were exposed to polycyclic aromatic compounds, such as benzo[a]pyrene, at comparable or higher levels than those measured in coke oven plants and other occupational environments (International Agency for Research on Cancer 1984). In comparison with wood and smokeless coal combustion emissions, the organic extracts of smoky coal emission particles showed much higher activity of genotoxicity and carcinogenicity. These results all point to a strong etiological link between the complex organic mixtures from smoky coal emissions and Xuan Wei lung cancer. This study and studies reported by other investigators (de Koning et al. 1984) suggested little association between indoor open-fire wood smoke and lung cancer. The less efficient lung deposition of the larger particles from wood combustion, as well as the lower concentrations of biologically active organic compounds, may contribute to the low rate of lung cancer in the wood-burning communes. As to the smokeless coal emissions, the lower particulate concentration and the lower organic content of the particles emitted may also contribute to the low lung cancer rate in the commune using this fuel. In conclusion, the complex organic mixtures from combustion emissions are genotoxic and carcinogenic in animal and in vitro assays. The magnitude of the cancer risks from the complex organic mixtures in man depends on the degree of the exposure, the types of the compounds contained in the mixtures, and the concentrations of these biologically active compounds present in the combustion emissions.

Air Pollutants↗

A simple QSPR model for predicting soil sorption coefficients of polar and nonpolar organic compounds from molecular formula.

A quantitative structure-property relationship (QSPR) model is developed to predict the logarithm of the soil sorption coefficient of 82 organic compounds. The data set contains polar and nonpolar, saturated, unsaturated, aliphatic, aromatic, and polycyclic aromatic compounds covering a log K(oc) range from about 1 to 6 log units. The best correlation equation, containing only five constitutional descriptors (number of benzene rings, molecular weight, number of N, O, and S atoms), predicts log K(oc) with a squared correlation coefficient of 0.94, having a standard deviation, s, of 0.33. The model is validated with an external set of 43 compounds not included in the training set. The descriptors involved in the model can be obtained easily from the molecular formula without any further calculation; therefore, the model is ready to use by environmental scientists with no background in quantum chemistry or chemical graph theory or when no software is available.

Journal Article↗

A bio-effect directed fractionation study for toxicological and chemical characterization of organic compounds in bottom sediment.

The major aim of this study was to characterize toxic organic compounds in bottom sediments from a PCB polluted bay. To overcome difficulties in pinpointing toxicants in complex environmental samples we applied a bio-effect directed (BED) fractionation approach and investigated the relationships between aromaticity, teratogenicity, and aryl hydrocarbon receptor (AhR) mediated toxicity. Hepatic ethoxyresorufin O-deethylase (EROD) activities and malformations were investigated in rainbow trout (Oncorhynchus mykiss) larvae exposed by injecting sediment extract and fractions (separated by their degree of aromaticity) thereof into newly fertilized eggs. Our results imply that non-additive effects get more pronounced the more complex the exposure. The fraction mainly composed of dicyclic aromatic compounds (DACs), including PCBs, was surprisingly less teratogenic than the fraction mainly composed of polycyclic aromatic compounds (PACs). A major part of the latter potential was isolated in a subfraction mainly composed of three- and four-ring compounds (including alkylated and sulphur-heterocyclic compounds). Though no clear relationship between aromaticity and EROD induction was observed, both the DAC- and the PAC-fractions contributed equally to the EROD induction potential. A major part of the PAC-fraction's induction potential came from a subfraction containing compounds with more than five rings. No clear relationship between teratogenicity and EROD induction was observed, underlining the need for a battery of biomarkers in estimating environmental risk. Two specific malformations not previously described in literature-asymmetric yolk sac and fin edema-could be tracked through the fractionation steps, suggesting that this BED-fractionation strategy is a reliable tool for pinpointing toxic compounds in the environment.

Abnormalities, Drug-Induced↗