Literature DB >> 1889006

Structure/activity investigations in eight arylalkyltriazenes comparison of chemical stability, mode of decomposition, and SCE induction in Chinese hamster V79-E cells.

R Thust1, M Schneider, U Wagner, D Schreiber.   

Abstract

A series of seven 1-aryl-3.3-dialkyltriazenes, including 1-phenyl-3.3-dimethyltriazene (DMPT), 1-phenyl-3.3-di-(trideuteromethyl)-triazene (DMPT-ds), 1-p-methylphenyl-3.3-dimethyltriazene (DMpMPT), 1-p-nitrophenyl-3.3-dimethyltriazene (DMpNPT), 1-phenyl-3.3-diethyltriazene (DEPT), 1-phenyl-3.3-di-n-propyltriazene (DnPrPT) and 1-phenyl-3.3-diisopropyltriazene (DiPrPT) and 1.3-diphenyl-3-methyltriazene (DPMT), was synthesized and characterized by UV/VIS, IR and 1H-NMR spectroscopy. Chemical half-life was determined in phosphate buffer at 37 degrees using UV/VIS spectroscopy. With the exception of DMpNPT, which was stable, the triazenes underwent pH-dependent hydrolytic decomposition (acid catalysis). By means of UV/VIS spectra, TLC and HPLC, phenol, aniline and secondary azocoupling products were identified after complete hydrolytic cleavage of the parent compounds. Pathways of spontaneous hydrolysis are proposed and discussed. Genotoxic activity of the triazenes was assayed by measurement of sister chromatid exchanges (SCE) in V79-E cells without and with rat liver S9 mix as an exogenous metabolizing system. In the direct SCE assay (without S9 mix), all triazenes except DMpNPT exerted a toxic action (cell cycle delay) in a narrow concentration range between no effect and overt cytotoxicity. This non-specific toxicity depended on the pH of the incubation system and was inversely proportional to chemical half-life. The toxicity of these agents is most likely due to the arenediazonium cation which is a relatively stable intermediate. In a sublethal concentration range most triazeness induced significant increases of SCE rates. These are interpreted as an indirect consequence of cytotoxicity. Upon metabolic activation, the compounds were genotoxic in a dose-dependent fashion. Their SCE-inducing capacity depended on the nature of the alkylating species generated, i.e., the alkyldiazonium cation, and on chemical stability. Surprisingly, no deuterium isotope effect was observed in DMPT-d6. The order of genotoxic activity among the aryldialkyltriazenes was DMpNPT much greater than DMPT = DMPT-ds greater than DMpMPT much greater than DEPT greater than DnPrPT greater than or equal to DiPrPT. DPMT was a marginal SCE inducer but very toxic upon metabolic activation. As monooxygenation of DPMT, like spontaneous hydrolysis, should generate a phenyldiazonium cation, the results suggest that arylation of DNA causes a very low SCE induction, if any.

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Year:  1991        PMID: 1889006     DOI: 10.1007/bf00122828

Source DB:  PubMed          Journal:  Cell Biol Toxicol        ISSN: 0742-2091            Impact factor:   6.691


  35 in total

1.  Rat and mouse tissue-mediated mutagenicity of ring-substituted 3,3-dimethyl-1-phenyltriazenes in Salmonella typhimurium.

Authors:  C Malaveille; G F Kolar; H Bartsch
Journal:  Mutat Res       Date:  1976-07       Impact factor: 2.433

2.  Relationship between cell killing, chromosomal aberrations, sister-chromatid exchanges and point mutations induced by monofunctional alkylating agents in Chinese hamster cells. A correlation with different ethylation products in DNA.

Authors:  A T Natarajan; J W Simons; E W Vogel; A A van Zeeland
Journal:  Mutat Res       Date:  1984-08       Impact factor: 2.433

3.  Structure-activity dependence in some novel ring-substituted 3,3-dimethyl-1-phenyltriazenes. Genetic effects in Drosophila melanogaster and in Saccharomyces cerevisiae by a direct and a host-mediated assay.

Authors:  G F Kolar; R Fahrig; E Vogel
Journal:  Chem Biol Interact       Date:  1974-11       Impact factor: 5.192

4.  Effects of high osmotic strength on chromosome aberrations, sister-chromatid exchanges and DNA strand breaks, and the relation to toxicity.

Authors:  S M Galloway; D A Deasy; C L Bean; A R Kraynak; M J Armstrong; M O Bradley
Journal:  Mutat Res       Date:  1987-09       Impact factor: 2.433

5.  Single-dose toxicokinetics of N-nitrosomethylethylamine and N-nitrosomethyl (2,2,2-trideuterioethyl)amine in the rat.

Authors:  A J Streeter; R W Nims; L M Anderson; Y H Heur; E von Hofe; P Kleihues; V C Nelson; B A Mico; L K Keefer
Journal:  Arch Toxicol       Date:  1990       Impact factor: 5.153

6.  Cytogenetic effects of mutagens/carcinogens after activation in a microsomal system in vitro I. Induction of chromosome aberrations and sister chromatid exchanges by diethylnitrosamine (DEN) and dimethylnitrosamine (DMN) in CHO cells in the presence of rat-liver microsomes.

Authors:  A T Natarajan; A D Tates; P P Van Buul; M Meijers; N De Vogel
Journal:  Mutat Res       Date:  1976-10       Impact factor: 2.433

7.  Mutagenic and alkylating activities of 3-methyl-1-phenyltriazenes and their possible role as carcinogenic metabolites of the parent dimethyl compounds.

Authors:  C Malaveille; G Brun; G Kolar; H Bartsch
Journal:  Cancer Res       Date:  1982-04       Impact factor: 12.701

8.  Interindividual variation of carcinogen activation by human liver homogenates. A study using dimethylnitrosamine (DMN) and cyclophosphamide (CP) as precursor genotoxic agents and clastogenicity and induction of sister chromatid exchanges in Chinese hamster V79-E cells as endpoints.

Authors:  R Thust
Journal:  Arch Geschwulstforsch       Date:  1982

9.  Mechanism of carcinogenesis with 1-aryl-3,3-dialkyl-triazenes. 3. In vivo methylation of RNA and DNA with 1-phenyl-3,3-( 14 C)-dimethyltriazene.

Authors:  F W Krüger; R Preussmann; N Niepelt
Journal:  Biochem Pharmacol       Date:  1971-03       Impact factor: 5.858

10.  The interaction of Hoechst 33258 and BrdU substituted DNA in the formation of sister chromatid exchanges.

Authors:  D G Stetka; A V Carrano
Journal:  Chromosoma       Date:  1977-08-18       Impact factor: 4.316

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  1 in total

Review 1.  Six-Membered Aromatic Polyazides: Synthesis and Application.

Authors:  Sergei V Chapyshev
Journal:  Molecules       Date:  2015-10-21       Impact factor: 4.411

  1 in total

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