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Biomedical subjects

C N Frantz

Publications and source records attributed to C N Frantz.

44 records · Page 3Linked to original sources

The tumor promoter 12-O-tetradecanoyl-phorbol-13-acetate enhances the proliferative response of Balb/c-3T3 cells to hormonal growth factors.

Stimulation of Balb/c-3T3 cell growth by TPA requires factors found in serum. We examined the interaction between TPA and serum growth factors in the stimulation of cell growth. The number of cells synthesizing DNA (incorporating 3H-thymidine) within 24 to 30 hours after the addition of TPA and the growth factors to density-inhibited Balb/c-3T3 cultures in serum-free medium was determined by autoradiography. With no additions or with TPA (30--300 ng/ml) alone, only 3--7% of cells synthesized DNA. However, TPA synergistically promoted DNA synthesis in combination with each of the defined serum growth fractions, platelet derived growth factor and platelet poor plasma. TPA also synergistically promoted DNA synthesis in combination with purified growth factors including fibroblast growth factor, insulin (10(-6)--10(-5)M), and epidermal growth factor. In all conditions, TPA enhancement of DNA synthesis also resulted in an increase in cell number. Because TPA synergistically enhanced the activity of each growth factor tested, it did not act identically to any of the growth factors.

Animals↗

Bromodeoxyuridine resistance induced in mouse lymphoma cells by microsomal activation of dimethylnitrosamine.

Many chemicals are not mutagenic per se, but when metabolized by mammalian tissues yield mutagenic products. Dimethylnitrosamine (DMN) is such a promutagen. It has no effect on cell growth or mutant frequency when incubated alone with L5178Y mouse lymphoma cells, but exerts both mutagenic and toxic effects when incubated in a microsome reaction mixture. Microsomes were prepared from C3H/f We 16-wk-old male mice by the calcium preciptation technique. L5178Y continuously cultured mouse lymphoma cells heterozygous for thymidine kinase (TK+/-) were incubated for 15 min with calcium-precipitated microsomes and various concentrations of DMN in appropriate reaction mixtures. After a 48-hr expression time, treated cells were cloned in soft agar with and without bromodeoxyuridine (BUdR) (50 mug/ml); 10 days later colonies grown to greater than about 200 mum diameter were counted. The frequency of BUdR-resistant (mutant) colonies increased linearly with the DMN concentration. A reconstruction experiment showed that the assay conditions did not significantly alter the relationship between parent and BUdR-resistant cells in growth and cloning efficiency. The smallest dose of DMN used in these experiments was 100mumol/liter, the one-sided (100 mumol greater than control frequency) -p value is 0.036. The locus is extremely sensitive to mutagenesis by DMN compared with other known mutagens at similar levels of cell survival.

Animals↗

Factors affecting metabolism and mutagenicity of dimethylnitrosamine and diethylnitrosamine.

For exploration of the factors affecting dimethylnitrosamine (DMN) mutagenicity, for gathering of information on the metabolism of DMN, a frequently used and relatively well-understood carcinogen, and for explanation of metabolic variations in DMN carcinogenicity, parallel in vitro assays of the microsomal activation of DMN to a mutagen and of DMN demethylation were performed. Salmonella typhimurium G46 reversions to histidine independence increase linearly with time of incubation for 30 min. At low concentrations of microsomal protein, increases in protein yield a more than proportional increase in mutations. Increasing DMN concentration saturates the enzyme, yielding less demethylation and fewer mutations proportionately. Mutagenesis is completely inhibited by 1 mM 2-diethyl-aminoethyl-2,2-diphenylvalerate. When both DMN and microsomal protein are varied at high concentrations, there is a simple linear relationship between mutagenicity and DMN demethylase activity. Thus DMN demethylase activity may be the primary controlling factor in the metabolism of DMN to a mutagen, and probably to a carcinogen; other simultaneous pathways of DMN metabolism proportional to demethylation have not been ruled out. Induction with both phenobarbital and 3-methylcholanthrene (3-MC) increased rat and mouse liver DMN demethylase activity. Mouse liver microsomes from the C57BL/6 strain demethylate DMN at a markedly lower rate than do microsomes from the C3H strain, but after 3-MC induction the relationship is reversed. Strain differences in activation of DMN were not found in the activation of diethylnitrosamine to a mutagen. Hepatic dealkylation of DMN and diethylnitrosamine to active mutagenic metabolites is increased in both rats and mice by both 3-MC and phenobarbital induction, which is in contrast to the findings of others that 3-MC and phenobarbital induction, which is in contrast to the findings of others that 3-MC decreases the incidence of DMN-induced hepatic tumors in rats, and phenobarbital decreases the incidence of diethylnitrosamine-induced hepatic tumors in mice.

Animals↗