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G E Davidson

Publications and source records attributed to G E Davidson.

12 recordsLinked to original sources

The induction of somatic mutations in mouse embryos by benzo(a)pyrene.

With the object of establishing a test for specific locus mutations in the somatic cells of mice, the effect of benzo(a)pyrene on the developing pigment cells of mouse embryos was investigated. Embryos were heterozygous for genes affecting coat-colour so that mutations could be scored as spots on the adult mouse. If the pregnant female was treated, with 2 mg/day orally, before day 7 or after day 10 of pregnancy no mutations were seen in the offspring. Treatment at any time from day 7 to day 10 was effective in producing mutations with no day giving a peak response. The effect of treatment on consecutive days appears to be additive. It is suggested that further chemicals be investigated lest differing rates of uptake and metabolism should alter the period in which treatment should be given in order to detect a mutagenic effect.

Animals↗

The metabolic consequences of vitamin B-12/methionine deficiency in rats.

The synthesis of liver pteroylglutamates (folates) from injected [3-H]-pteroylglutamic acid was investigated in vitamin B-12 methionine-deficient rats and pair-fed controls using improved extraction and chromatographic procedures to identify the monoglutamyl derivatives present. Livers from deficient animals had significantly increased levels of radioactive 5-methyltetrahydropteroylglutamate detected after conjugase treatment of extracts and significantly decreased levels of radioactive tetrahydropteroylglutamate and formylated derivatives. However, that this is only a temporary effect and the result of a decreased rate of equilibration of the exogenous radioactivity was shown by measuring the fully equilibrated endogenous pools. This was done by microbiological assay of the endogenous liver folates with Lactobacillus casei. No significant difference was found between deficient animals and controls in the proportion of the endogenous microbiologically active derivatives present. These results in the rat do not support the idea that in vitamin B-12 deficiency the cellular folates accumulate as the reduced 5-methyl derivative, resulting in inadequate amount of the other cofactors to partipicate in nucleic acid biosynthesis.

Animals↗

Nursing service.

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