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Genetic method for pre-classification of genotoxins into monofunctional or cross-linking agents
E W Vogel1, J A Zijlstra, M J Nivard
1MGC, Department of Radiation Genetics & Chemical Mutagenesis, University of Leiden, The Netherlands.
Abstract:
To characterize environmental carcinogens, there is a need to distinguish monofunctional genotoxic agents from those having cross-linking potential, because chemicals which can cross-link DNA are among the most potent carcinogens in rodents [Barbin and Bartsch, 1989] and humans [Allen et al., 1988; Kaldor et al., 1988]. Here we provide a genetic method for a pre-classification of genotoxins with respect to their functionality--monofunctional versus cross-linking. The procedure is based on the determination of relative clastogenic efficiency by a two-endpoint comparison in Drosophila: (i) induction of chromosome loss (CL), (ii) incidence of recessive lethal mutations (RL). Analysis of CL/RL ratios of 53 genotoxins, all mutagens in Drosophila, permitted distinction of 45 into two major categories: (i) 21 monofunctional agents with CL/RL indices generally < or = 1; (ii) 24 agents with ratios > 2 exhibiting DNA cross-linking properties. Within the group of monofunctional agents, CL/RL ratios tend to be low for SN1 agents, i.e., for N-ethyl-N-nitrosourea, N-ethyl-N'-nitro-N-nitrosoguanidine, and for N-nitrosodiethylamine. With cross-linking agents, the number of reactive groups appeared of minor importance as bi-, tri-, and tetrafunctional agents showed no significant differences in their CL/RL indices. Among 8 chemicals which could not be grouped into one of the two categories are two (adriamycin, daunomycin) regarded as intercalating agents. It is concluded that this two-endpoint analysis in Drosophila has prognostic value and can assist in the characterization of genotoxic agents with unknown mode of action.
Insights
Researchers developed a genetic test in Drosophila to classify genotoxic chemicals. This method distinguishes monofunctional agents from DNA cross-linking agents, crucial for understanding carcinogen potency and risk.
Area of Science:
- Toxicology
- Genetics
- Molecular Biology
Background:
- Environmental carcinogens pose significant risks to human health.
- Distinguishing between monofunctional genotoxins and DNA cross-linking agents is critical due to the higher potency of the latter.
- Existing methods for classifying genotoxins can be complex and time-consuming.
Purpose of the Study:
- To develop and validate a genetic method for pre-classifying genotoxins based on their functionality.
- To differentiate between monofunctional genotoxic agents and those with DNA cross-linking capabilities.
- To assess the prognostic value of this method for characterizing environmental carcinogens.
Main Methods:
- A two-endpoint genetic assay was employed in Drosophila.
- The assay measured the relative clastogenic efficiency (CL/RL ratio).
- Key endpoints included the induction of chromosome loss (CL) and the incidence of recessive lethal mutations (RL).
Main Results:
- Analysis of 53 genotoxins revealed distinct categories based on CL/RL ratios.
- 21 monofunctional agents showed CL/RL indices generally less than or equal to 1.
- 24 agents with CL/RL ratios greater than 2 exhibited DNA cross-linking properties.
- 8 chemicals, including intercalating agents like adriamycin, did not fit neatly into these categories.
Conclusions:
- The Drosophila two-endpoint assay effectively distinguishes between monofunctional and DNA cross-linking genotoxins.
- This genetic method has prognostic value for characterizing agents with unknown modes of action.
- The findings aid in the risk assessment of environmental carcinogens.
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