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International Pig-a gene mutation assay trial (stage III): results with N-methyl-N-nitrosourea
Anthony M Lynch1, Amanda Giddings, Laura Custer
1GlaxoSmithKline, Ware, Hertfordshire, United Kingdom. anthony.m.lynch@gsk.com
Abstract:
N-methyl-N-nitrosourea (MNU) was evaluated in the in vivo Pig-a mutation assay as part of an International Collaborative Trial to investigate laboratory reproducibility, 28-day study integration, and comparative analysis with micronucleus (MN), comet, and clinical pathology endpoints. Male Sprague Dawley rats were treated for 28 days with doses of 0, 2.5, 5, and 10 mg MNU/kg/day in two independent laboratories, GlaxoSmithKline (GSK) and Bristol Myers Squibb (BMS). Additional studies investigated the low-dose region (<2.5 mg/kg/day). Reticulocytes were evaluated for Pig-a phenotypic mutation, CD59-negative reticulocytes/erythrocytes (RETs(CD592-)/ RBCs(CD592-)) on Days 1, 4, 15, 29, 43, and 57, and for micronucleated reticulocytes (MN-RETs) on Days 4 and 29. Comet analysis was conducted for liver and whole blood, and hematology and clinical chemistry was investigated. Dose-dependent increases in the frequency of RETs(CD592-) and RBCs(CD592-) were observed by Day 15 or 29, respectively. Dose-dependent increases were observed in %MN-RET on Days 4 and 29, and in mean %tail intensity in liver and in blood. Hematology/clinical chemistry data demonstrated bone marrow toxicity. Data comparison between GSK and BMS indicated a high degree of concordance with the Pig-a mutation assay results, consistent with previous observations with MNU and N-ethyl-N-nitrosourea. These data confirm that complementary genotoxicity endpoints can be effectively incorporated into routine toxicology studies, a strategy that can provide information on gene mutation, chromosome damage, and DNA strand breaks in a single repeat dose rodent study. Collectively, this would reduce animal usage while providing valuable genetic toxicity information within the context of other toxicological endpoints.
Insights
The in vivo Pig-a mutation assay effectively detects genotoxicity, showing dose-dependent increases in mutations and DNA damage. Integrating this assay with other endpoints reduces animal use while providing comprehensive genetic toxicity data.
Area of Science:
- Toxicology
- Genetics
- In vivo studies
Background:
- The N-methyl-N-nitrosourea (MNU) assay is crucial for evaluating genotoxicity.
- Assessing laboratory reproducibility and study integration is vital for reliable results.
Purpose of the Study:
- To evaluate the in vivo Pig-a mutation assay's performance within an international collaborative trial.
- To compare the Pig-a assay with micronucleus, comet, and clinical pathology endpoints.
- To assess the integration of genotoxicity assays into 28-day toxicology studies.
Main Methods:
- Male Sprague Dawley rats were treated with MNU (0-10 mg/kg/day) over 28 days in two independent laboratories.
- Pig-a phenotypic mutations (CD59-negative cells) and micronucleated reticulocytes (MN-RETs) were assessed.
- Comet analysis, hematology, and clinical chemistry were performed.
Main Results:
- Dose-dependent increases in Pig-a mutations and MN-RETs were observed.
- Comet assay showed increased DNA strand breaks in liver and blood.
- Hematology data indicated bone marrow toxicity.
- High concordance was found between laboratories for the Pig-a assay.
Conclusions:
- The in vivo Pig-a assay is reproducible and can be integrated into routine toxicology studies.
- Complementary genotoxicity endpoints provide comprehensive genetic toxicity information.
- This integrated approach reduces animal usage and enhances toxicological data acquisition.
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