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Hydrolysis of acyloxy nitroso compounds yields nitroxyl (HNO).

Nitroxyl (HNO/NO(-)), the reduced form of nitric oxide, has gained attention based on its separate chemistry and biology from nitric oxide. The inherent reactivity of HNO requires new and mechanistically unique donors for the detailed study of HNO chemistry and biology. Oxidation of cyclohexanone oxime with lead tetraacetate yields 1-nitrosocyclohexyl acetate, whereas oxidation of oximes in the presence of excess carboxylic acid gives various acyloxy nitroso compounds. These bright blue compounds exist as monomers as indicated by their infrared, proton, and carbon NMR spectra, and X-ray crystallographic analysis reveals the nitroso groups possess a "nitroxyl-like" bent configuration. Hydrolysis of these compounds produces nitrous oxide, the dimerization and dehydration product of HNO, and provides evidence for the intermediacy of HNO. Both thiols and oxidative metal complexes inhibit nitrous oxide formation. Hydrolysis of these compounds in the presence of ferric heme complexes forms ferrous nitrosyl complexes providing further evidence for the intermediacy of HNO. Kinetic analysis shows that the rate of hydrolysis depends on pH and the structure of the acyl group of the acyloxy nitroso compound. These compounds relax pre-constricted rat aortic rings similar to known HNO donors. Together, these results identify acyloxy nitroso compounds as a new class of HNO donors.

Animals↗

Formation of an activated N-nitroso compound in nitrite-treated fava beans (Vicia faba).

Fava beans are prominent in the diet of the Colombian population at high gastric cancer risk. Upon nitrite treatment under simulated gastric conditions, a potent mutagen was formed as detected by a forward mutation assay using Salmonella typhimurium TM677 without microsomal activation. The promutagen was partially purified by preparative t.l.c. and normal phase h.p.l.c. of the acetone-soluble portion of a dried aqueous extract. The nitrosated promutagen fully accounted for the mutagenicity observed with whole fava beans. One gram of fresh fava beans yielded approximately 0.35 nmol of mutagen. Mutagenicity data indicated that this mutagen was more potent than N-methyl-N'-nitro-N-nitrosoguanidine. The characteristics of the mutagen were typical of an activated N-nitroso compound, that is a compound in which the N-nitroso moiety is attached to an activating group, such as a carbonyl group. Irradiation of the mutagen yielded a Griess positive reaction. By reverse-phase h.p.l.c. photohydrolysis, a single peak could be ascribed to the mutagen. Its stability varied as a function of pH, being most unstable under alkaline conditions. Cysteine and phosphate concentration had no effect on its rate of decomposition, thereby strongly suggesting that the mutagen is an N-nitrosourea. The results obtained in this study support the hypothesis of carcinogenesis via the intragastric production of activated N-nitroso compounds.

Fabaceae↗

An in vitro model of human pancreas carcinogenesis: effects of nitroso compounds.

It has been possible to maintain adult human pancreas in organ culture in a chemically defined medium. Under these conditions, all cell types demonstrated at least a limited ability to proliferate. This in vitro model was employed to study the effects of three nitroso compounds, DMNA, MNU, and BHP, on adult human pancreas. The major effects of three nitroso compounds, DMNA, MNU, and BHP, on adult human pancreas. The major effects of these compounds in cytotoxicity, proliferation, and oncogenicity was evaluated morphologically. DMNA and MNU were both carcinogenic but with varying rapidity of induction. MNU produced greater necrosis but gave more rapid induction. BHP produced cytotoxicity sufficient to prevent any rating of its oncogenic potential. Morphologically malignant tissue were tested for growth potential in nude mice. All nude mice developed multiple subcutaneous tumor nodules within eight weeks after inoculation. The tumor nodules ranged morphologically from undifferentiated scirrhous carcinoma to well-differentiated papillary adenocarcinoma.

Adenocarcinoma, Papillary↗

N-nitroso compounds and mutagens in Chinese fermented (sour) corn pancakes.

Stomach cancer rates in rural Linqu County, Shandong Province, China, are exceptionally high. A previous case-control study revealed that the risk of stomach cancer was 30% higher among those who consumed sour (fermented) corn pancakes at least daily. A previous study of the sour pancakes reported volatile nitrosamines in most specimens, and almost half reportedly showed mutagenic activity. Few households currently consume sour pancakes, and the duration of fermentation has been shortened. We tested specimens of pancake batter and sour pancakes from Linqu County for mutagenic activity using the Ames test; for N-nitroso compounds (NOC) we used the Nitrolite-thermal energy analysis (TEA) method. Results of the Ames test were inconclusive: only 1 out of 15 cooked pancakes showed a positive mutagenic response, and all 15 batter specimens were negative; however, several batter specimens showed a weakly positive trend of mutagenicity with extract concentration. Our assay for total nitroso compounds was weakly positive in only 1 out of 15 specimens of sour pancake batter. That specimen was also tested by gas chromatography-TEA for nitrosaminoacids and volatile nitrosamines, but none were detected. It seems unlikely that the Chinese sour pancakes are significantly contaminated by NOC or other mutagens.

Animals↗

The ene reactions of nitroso compounds involve polarized diradical intermediates.

The ene reactions of nitroso compounds were studied with B3LYP/6-31G* geometry optimizations and energy calculations, along with single point energy evaluations using CASPT2/6-31G** and UCCSD(T)/6-311+G* methods. Reactions of HNO with propene and of MeNO and p-NO2C6H4NO with propene or substituted alkenes were also studied. The reaction mechanism is stepwise and involves a polarized diradical intermediate. The electronic structure of this intermediate is between that of a closed shell polar species and that of a pure diradical, and it is stabilized by polar solvents. A weak C-N bonding interaction combined with a CH-O hydrogen bond leads to heightened barriers to rotation about formally single bonds compared to conventional diradicals. Consequently, rotation is slower than hydrogen abstraction and cyclization to form an aziridine N-oxide. This aziridine N-oxide does not lead to ene products without subsequent ring opening but provides a mechanism for the RNO moiety to translate from one end of the alkene to the other. B3LYP calculations are also able to reproduce kinetic isotope effects and regioselectivity.

Journal Article↗

An improved method for analysis of total N-nitroso compounds in gastric juice.

An improved procedure for the analysis of total N-nitroso compounds (NOC) in human gastric juice was developed by modifying previous methods. The gastric juice sample, treated with sulfamic acid to remove nitrite, is injected directly into refluxing ethyl acetate containing either acetic acid for determining thermo/acetic acid-labile-thermal energy analyser (TEA)-responsive compounds (TAC), or into hydrogen bromide for the analysis of TAC and NOC. The nitric oxide (NO) levels released are measured by chemiluminescence by TEA, and the difference between the two determinations represents the concentrations of NOC in gastric juice. This method also allows the determination of nitrite and is not affected by nitrate concentrations up to 1,000 mumol/l. The method was found to be reproducible and sensitive (detection limit, 0.02 mumol NOC/l), requiring only small volumes of gastric juice and no prior extraction. Because the difficulties arising from the 'system response' to the denitrosating agent and variability of NO release by acetic acid from nitrite were eliminated, this improved method can more accurately distinguish NOC from most other TEA-responsive species. Suitable techniques for stabilizing gastric juice samples from duodenal ulcer/atrophic gastritis patients and the influence of the time and storage conditions on NOC concentrations have been studied.

Gastric Juice↗

[Inhibition of grape procyanidin on the expression of SSTR-2 mRNA in the hepatic cells induced by N-nitroso compounds].

OBJECTIVE: To study the effect of grape procyanidin (GPC) on the expression of somatostatin receptor 2 mRNA induced by N-nitroso compounds in the hepatic cells of rats. METHODS: NaNO2 was fed to Wistar rats to induce hepatocytes' mutation, and GPC was given in dose of 100mg/kg and 10mg/kg respectively through mouths to the rats of the two experimental groups at the same time. After eight weeks, situ hybridization was applied to measure the expression level of SSTR-2 mRNA in rats' hepatic cells. RESULTS: The positive cells rate of SSTR-2 mRNA expressed in the injury comparison group and the high-dose GPC group were 19.89% and 7.83% respectively and the difference between the two groups had statistical significance (P < 0.05). CONCLUSION: GPC had inhibitory effect on N-nitroso compounds-induced abnormal expression of SSTR-2 mRNA in hepatic cells of rats.

Animals↗

Alkylation of DNA related to organ-specific carcinogenesis by N-nitroso compounds.

Alkylation of DNA by a number of methylating and ethylating carcinogens, mainly N-nitroso compounds, has been examined in target and non-target organs of rats and Syrian hamsters. Six hours after administration by gavage of small doses identical to those given twice weekly for several months to elicit tumours, animals were killed and dissected. DNA was isolated from several organs and hydrolysed, and the content of methyl- and ethylguanines was measured using high-performance liquid chromatography for separation. In most experiments, radiolabelled carcinogen was used, but in some cases measurement of alkylguanines was by fluorescence. Methylation, O6- and N7-, by methylating compounds was much more extensive than ethylation by the corresponding ethyl compounds, irrespective of their relative potencies in inducing tumours. Similar patterns of alkylation were found in target organs and in non-target organs of the carcinogens. Only marginal differences in methylation were seen with N-nitro-sobis(2-oxopropyl)amine between male and female rat livers, although liver tumours are induced only in females, in feminized males and in old males. Deuterium labelling of the methylene of N-nitrosoethylmethylamine had little effect on methylation or ethylation of DNA in rat liver, although the deuterated compound was a much more potent liver carcinogen. The conclusion is that reactions of the carcinogen other than alkylation of DNA are important in giving rise to tumours.

Alkylation↗

Endogenously formed N-nitroso compounds and nitrosating agents in human cancer etiology.

Humans are exposed to preformed N-nitroso compounds (NOC), but also to a wide range of precursors and nitrosating agents which can react in vivo to form potentially carcinogenic NOC and diazo compounds. Nitrite, nitrate and nitrosating agents can also be synthesized endogenously in enzymic reactions mediated by bacteria, activated macrophages and neutrophils. The latter two cell types generate, via the enzyme nitric oxide synthase, the nitric oxide radical that is involved in cytotoxicity, and is believed to be involved in formation of carcinogenic nitrosamines, DNA base deamination and oxidative damage. Thus endogenous NOC formation, DNA damage and gene mutations in humans could occur at various sites of the body such as the stomach and chronically infected or inflamed organs. Sensitive procedures to estimate the exposure of humans to NOC have been developed and applied in ecological and cross-sectional studies. These have shown that inhabitants of high-risk areas for stomach and esophageal cancer, patients with urinary tract infections (at risk for bladder cancer) and Thai subjects infected with liver fluke (at risk for cholangiocarcinoma) had significantly higher exposure to endogenous NOC. Clinical studies have examined the model of stomach carcinogenesis based on intragastric nitrosation, but the precise roles of bacterial overgrowth and of Helicobacter pylori infection in NOC synthesis and/or inducing oxidative stress in stomach mucosa remain to be clarified. Together these results support the role of NOC and other nitrite-derived mutagens in human cancer etiology, in particular when exposure starts early in life and persists over a long period.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenoma, Bile Duct↗

Local application to mouse skin as a carcinogen specific test system for non-volatile nitroso compounds.

Using the epicutaneous test as an experimental model for detecting carcinogenicity, 3 doses each of nitrosomethylurea (NMU), nitrosonornicotine (NNN) and nitrosocarbaryl (NC) were administered to the skin of 65 female CFLP mice/group. To compare the carcinogenic potency of the nitroso compounds, benzo[a]pyrene (BaP) was taken as reference substance. Dose-response relationships were obtained for NMU and NC as well as for BaP. NNN exhibited only a weak carcinogenic effect in the dose range from 12.5 micrograms to 200 micrograms tested in the skin painting model. It showed, however, no dose dependent activity. After probit analysis of the results, the carcinogenic potencies of the nitroso compounds investigated in this system rank as follows: NC, 0.18; NMU, 0.04; NNN, 0.008 (BaP, 1.00).

Administration, Topical↗

Effects of nitroso compounds and aromatic amines on fetal tracheal explants.

Tracheas were excised from fetal Syrian golden hamsters on the 15th day of gestation. Tracheal explants were cultured in vitro and exposed to different dose-levels of well known carcinogens. We chose two nitroso compounds, N-Methyl-N-nitro-N-nitrosoguanidine (MNNG) and Diethylnitrosamine (DEN) and two aromatic amines, Aminofluorene (AF) and Acetylaminofluorene (AAF). The tracheal explants were treated for 24 h in vitro, then the carcinogens were washed off and the tracheas were kept for 21, 28 or 35 days in culture. After fixation tracheal explants were transversely cut with serial section techniques and scored for morphological changes of the epithelium by light microscopy. Most of the control explants completed differentiation and had a normal morphology at the end of the in vitro culture period. Occasionally we found a decrease of the number of ciliated cells and some areas with squamous metaplasia in the respiratory epithelium. Carcinogen treatment with nitroso compounds led to a significant increase of the morphologic changes of the epithelium. These effects were especially obvious after DEN treatment. Morphologic changes of the epithelium such as metaplasia and hyperplasia were discussed as carcinogen-related events. In vitro exposure with aromatic amines did not induce marked metaplastic or hyperplastic changes in the respiratory epithelium of tracheal explants.

Animals↗

[Growth-stimulating action of nitroso compounds on organ cultures of mouse and rat embryonic liver].

Transplacental and direct effects of nitroso-methylurea (NMU) on the organ cultures of the liver of 18-20-day embryos of CBA and C57BL mice and the action of diethylnitroso-amine on the embryo liver cultures of noninbred rats were studied. Nitroso-compounds acclerated explant adaptation, enhanced the culture survival as compared with the normal and induced hyperplastic proliferation of small basophilic cells, whose survival in the experiment and under normal conditions was higher than that in the normal embryonal hepatocytes. The growth-stimulating effect depended on the animal species and strain and on the carcinogen, as weel as on the route of administration.

Animals↗

Exposure of humans to endogenous N-nitroso compounds: implications in cancer etiology.

Two sensitive procedures to quantitate human exposure to endogenous N-nitroso compounds (NOC) and/or methylating agents have been developed. One, the NPRO test, is based on the excretion of N-nitrosoproline (NPRO) and other N-nitrosoamino acids in the urine, that are measured as an index of endogenous nitrosation, following ingestion of precursors. The NPRO test has been applied to human subjects in clinical and epidemiological studies, and the kinetics and dietary modifiers of endogenous nitrosation have been investigated. Results obtained after application of the NPRO test to subjects at high risk for cancers of the stomach, esophagus, oral cavity and urinary bladder are summarized. In most instances, higher exposures to endogenous NOC were found in high-risk subjects, but individual exposure was greatly affected by dietary modifiers or disease state. Vitamin C efficiently lowered the body burden of intragastrically formed NOC. In experimental animals 3-methyladenine (3-MeAde) is excreted in urine following exposure to methylating NOC. Humans normally excrete 3-MeAde, the origin of which remains unknown. Recently developed analytical methodology permits large numbers of human urine samples to be analyzed and a wide variation is observed. Preliminary results suggest a weak correlation between basal NPRO excretion and background 3-MeAde excretion. Taken together, the results point to an etiological role of endogenously formed NOC in certain human cancers, and provide an interpretation of epidemiological findings that have shown protective effects of fruits and vegetables against several malignancies.

Adenine↗

Formation of mutagenic N-nitroso compounds from the pesticides prometryne, dodine and carbaryl in the presence of nitrite at pH 1.

Environmental chemicals including pesticides carrying secondary and tertiary amino groups are suggested to be a health hazard to man since potentially carcinogenic nitroso compounds may be formed in the presence of nitrite at low pH values resembling conditions in the human stomach. Nitrosation of the isopropylamino-triazine Prometryne, the n-dodecyl guanidine Dodine and the N-methylcarbamate carbaryl was investigated in the presence of HCl and acetic acid at pH 1 and excess sodium nitrite for 4 h at 37 degrees C. The reaction products were extracted with CCl4 and were analyzed qualitatively and quantitatively by infrared spectroscopy, nuclear-resonance spectrometry, GC/mass spectrometry and by spectrophotometry. All compounds investigated formed N-nitroso derivatives in the following yields: carbaryl 67%, Dodine 12% and Prometryne 14%. The N-nitroso derivatives per se were not or only slightly mutagenic to Escherichia coli K12 or Salmonella typhimurium TA 1538. However, significantly increased mutation frequencies were seen after metabolic activation by mouse-liver microsomes. These results add to the observations that among environmental chemicals not only those containing methyl- or ethyl-substituted amino groups form potentially carcinogenic nitroso derivatives but also those with iso-propylamino groups as well as alkyl-substituted guanidine derivatives.

Carbaryl↗

Dietary nitrates, nitrites, and N-nitroso compounds and cancer risk: a review of the epidemiologic evidence.

Experimental animal studies have shown N-nitroso compounds (NOC) to be potent carcinogens. Epidemiologic evidence of the carcinogenic potential of dietary NOC and precursor nitrates and nitrites in humans remains inconclusive with regard to the risk of stomach, brain, esophageal, and nasopharyngeal cancers. Inadequate available data could obscure a small to moderate effect of NOC.

Animals↗

N-nitroso compounds and human cancer: where do we stand?

Humans are exposed not only to preformed N-nitroso compounds (NOC) but also to a wide range of nitrogen-containing compounds and nitrosating agents which can react in vivo to form NOC, a versatile class of carcinogens. Nitrosating agents and NOC can also be synthesized endogenously in reactions mediated by bacteria and activated macrophages. Thus, endogenous formation of NOC can occur at various sites in the body. A sensitive procedure (the N-nitrosoproline (NPRO) test) has been developed to estimate exposure of humans to exogenous and endogenous NOC. Results of studies in human subjects with this test led to the following conclusions: (1) The process of endogenous nitrosation in humans is influenced by many factors; therefore, determination only of nitrate and nitrite in body fluids is insufficient to assess the extent of nitrosation in man in vivo. (2) In clinical studies to examine the model of gastric carcinogenesis based on bacterial colonization and nitrosation in vivo, progress has been made in explaining some steps, but several controversies remain. Although bacterial strains possessing enzymes that catalyse N-nitrosamine formation at neutrality have been isolated from the gastric juice of achlorhydric subjects, their precise role in gastric carcinogenesis remains to be clarified. (3) Formation of endogenous NOC was assessed by the NPRO test in: (i) subjects living in high- and low-incidence areas for stomach cancer in northern Japan, Costa Rica and Poland; (ii) subjects with different habits of betel-quid chewing and tobacco use; (iii) patients with urinary bladder infections; and (iv) subjects infested with liver fluke in Thailand. In all instances, greater exposure to endogenous NOC was found in high-risk subjects, but individual exposure was greatly affected by dietary modifiers of disease state: ascorbic acid efficiently lowered the body burden of intragastrically formed NOC. (4) Increased nitrosation is also observed in tobacco smokers, adding to the body burden of ingested or inhaled tobacco-related carcinogens. These results, together with the knowledge that NOC produce tumours in 40 animal species, clearly underline the potential role of NOC (and other nitrite-reactive compounds) in human cancer etiology, particularly when exposure starts early in life and persists over a long period. The demonstrated efficacy of certain vitamins as nitrosation inhibitors also provides a plausible interpretation of epidemiological findings that have shown protective effects of fruits and vegetables (sources of vitamins and polyphenols) against various malignancies and particularly stomach cancer.(ABSTRACT TRUNCATED AT 400 WORDS)

Esophageal Neoplasms↗

An investigation of the endogenous formation of apparent total N-nitroso compounds in conventional microflora and germ-free rats.

The endogenous formation of apparent total N-nitroso compounds (ATNC) has been investigated in germ-free (GF) and conventional (CV) microflora rats as a function of the drinking-water nitrate concentration. ATNC levels were below the 40 micrograms (N-NO)/kg detection limit in the blood, liver, kidney, spleen and small intestine of all CV and GF rats. For the CV rats ATNC were detected in concentrations of up to 370 micrograms (N-NO)/kg in the large intestine and up to 50 micrograms (N-NO)/kg in the stomach and there was a significant positive correlation between ATNC formation and the drinking-water nitrate level. Comparison of these results with those from GF rats showed that the ATNC in the stomach and large intestine of the CV animals were formed by microbial action, most probably involving bacterial nitrate-reductase activity.

Animals↗