Journal Article

·2013

Inhibition of the mutagenic effects ofN-methyl-N'-nitro-N-nitrosoguanidine and 9-Aminoacridine by indenopyridines in theSalmonella typhimuriumtester strain 1537 andE. coli

Kadir Turhan YTU , Arda Öztürkcan YTU , Zuhal Turgut YTU , Mehmet Karadayı , Medine Güllüce

Drug and Chemical Toxicology

Abstract

The goal of the present research was to determine the protective potential of five newly synthesized indenopyridine derivatives against N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) and 9-aminoacridine (9-AA) induced mutagenesis. MNNG sensitive Escherichia coli WP2uvrA and 9-AA sensitive Salmonella typhimurium TA1537 were chosen as the bacterial tester strains. All of the test compounds showed significant antimutagenic activity at various tested concentrations. The inhibition rates ranged from 25.6% (Compound 2 - 1 mM/plate) to 68.2% (Compound 1 - 2.5 mM/plate) for MNNG and from 25.7% (Compound 4 - 1 mM/plate) to 76.1% (Compound 3 - 2.5 mM/plate) for 9-AA genotoxicity. Moreover, the mutagenicity of the test compounds was investigated by using the same strains. None of the test compounds has mutagenic properties on the bacterial strains at the highest concentration of 2.5 mM. Thus, the findings of the present study give valuable clues to develop new strategies for chemical prevention from MNNG and 9-AA genotoxicity by using synthetic indenopyridine derivatives.

Keywords

Salmonella Genotoxicity Mutagenesis Methylnitronitrosoguanidine Chemistry Strain (injury) Escherichia coli Mutagen Ames test Enterobacteriaceae Carcinogen Bacteria Microbiology Mutation Biochemistry Biology Toxicity Genetics Organic chemistry Gene

Subject Areas

Carcinogens and Genotoxicity Assessment ·Cancer Research ·Life Sciences
Plant Genetic and Mutation Studies ·Plant Science ·Life Sciences
Pharmaceutical and Antibiotic Environmental Impacts ·Pollution ·Physical Sciences

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