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Biomedical subjects

C Borek

Publications and source records attributed to C Borek.

At least 37 records · Page 2Linked to original sources

Toxicity and biochemical mechanisms of ozone.

Ozone is a reactive environmental oxidant molecule whose deleterious effects are enhanced by interaction with other photochemical oxidants. While the pulmonary system is the primary target for ozone toxicity, at a morphological and biochemical level, extrapulmonary toxic effects are well documented. The consequences of exposure to ozone depend on its concentration and are influenced by genetic and host factors. Ozone damage is in part mediated via free radicals formed in the processes of direct peroxidation of polyunsaturated fatty acids by ozone and oxidation of proteins, amines, and thiols. Antidoxidants such as Vitamin E which scavenge the chain-propagating free radicals and stop antioxidation serve as protectors in ozone-induced toxicity.

Animals↗

Distinctive transforming genes in x-ray-transformed mammalian cells.

DNAs from hamster embryo cells and mouse C3H/10T1/2 cells transformed in vitro by x-irradiation into malignant cells transmit the radiation transformation phenotype by producing transformed colonies (transfectants) in two mouse recipient lines, the NIH 3T3 and C3H/101/2 cells, and in a rat cell line, the Rat-2 cells. DNAs from unirradiated cells or irradiated and visibly untransformed cells do not produce transformed colonies. The transfectants grow in agar and form tumors in nude mice. Treatment of the DNAs with restriction endonucleases prior to transfection indicates that the same transforming gene (oncogene) is present in each of the transformed mouse cells and is the same in each of the transformed hamster cells. Southern blot analysis of 3T3 or Rat-2 transfectants carrying oncogenes from radiation-transformed C3H/10T1/2 or hamster cells indicates that the oncogenes responsible for the transformation of 3T3 cells are not the Ki-ras, Ha-ras, or N-ras genes, nor are they neu, trk, raf, abl, or fms, although quick blot analysis using 11 oncogene probes detected increased transcripts of c-abl and c-fms in the 3T3 transformants containing oncogenic sequences from the x-ray-transformed C3H/10T1/2 cells. The work demonstrates that DNAs from mammalian cells transformed into malignancy by direct exposure in vitro to radiation contain genetic sequences with detectable transforming activity in three recipient cell lines. The results provide evidence that DNA is the target of radiation carcinogenesis induced at a cellular level in vitro. The experiments indicate that malignant radiogenic transformation in vitro of hamster embryo and mouse C3H/10T1/2 cells involves the activation of unique non-ras transforming genes, which heretofore have not been described.

Animals↗

Antagonistic action of a tumor promoter and a poly(adenosine diphosphoribose) synthesis inhibitor in radiation-induced transformation in vitro.

Transformation of mouse C3H 10T1/2 cells by X-irradiation in vitro was blocked by the addition of 1 mM 3-aminobenzamide, an inhibitor of polyadenosine diphosphoribose (poly[ADP-ribose]) synthesis immediately after irradiation. 3-Aminobenzamide also inhibited an increase in the frequency of transformants caused by the addition of the tumor promoter, 12-O-tetradecanoylphorbol-13-acetate, 7 days after irradiation. These results demonstrate a role for poly(ADP-ribose) synthesis during the initiation and promotion stages of transformation. From previous studies it is known that poly(ADP-ribose) synthesis is stimulated by the DNA damage caused by X rays during initiation. During promotion, however, 12-O-tetradecanoylphorbol-13-acetate acted as a mitogen but did not induce detectable DNA damage, and we could detect no stimulation of poly(ADP-ribose) synthetase. The roles of poly(ADP-ribose) during initiation and during promotion must, therefore, be significantly different.

Animals↗

Selenium and vitamin E inhibit radiogenic and chemically induced transformation in vitro via different mechanisms.

Results from in vivo and in vitro studies showing that antioxidants may act as anticarcinogens support the role of active oxygen in carcinogenesis and provide impetus for exploring the functions of dietary antioxidants in cancer prevention by using in vitro models. We examined the single and combined effects of selenium, a component of glutathione peroxidase, and vitamin E, a known antioxidant, on cell transformation induced in C3H/10T-1/2 cells by x-rays, benzo[a]pyrene, or tryptophan pyrolysate and on the levels of cellular scavenging systems and peroxide destruction. Incubation of C3H/10T-1/2 cells with 2.5 microM Na2SeO3 (selenium) or with 7 microM alpha-tocopherol succinate (vitamin E) 24 hr prior to exposure to x-rays or the chemical carcinogens resulted in an inhibition of transformation by each of the antioxidants with an additive-inhibitory action when the two nutrients were combined. Cellular pretreatment with selenium resulted in increased levels of cellular glutathione peroxidase, catalase, and nonprotein thiols (glutathione) and in an enhanced destruction of peroxide. Cells pretreated with vitamin E did not show these biochemical effects, and the combined pretreatment with vitamin E and selenium did not augment the effect of selenium on these parameters. The results support our earlier studies showing that free radical-mediated events play a role in radiation and chemically induced transformation. They indicate that selenium and vitamin E act alone and in additive fashion as radioprotecting and chemopreventing agents. The results further suggest that selenium confers protection in part by inducing or activating cellular free-radical scavenging systems and by enhancing peroxide breakdown while vitamin E appears to confer its protection by an alternate complementary mechanism.

Animals↗

Some protease inhibitors are also inhibitors of poly(ADP-ribose) polymerase.

The low-molecular-weight peptide protease inhibitors, tosyl-lysine-chloromethyl ketone, antipain and leupeptin, inhibited poly(ADP-ribose) [poly(ADP-Rib)] polymerase in permeable cells. The concentrations required for 50% inhibition were 3.6, 5 and 29 mM, respectively. Two peptides without protease inhibitor activity, fibrinopeptide A and phenylalanine-leucine-(glutamine)2-leucine, also inhibited poly (ADP-Rib) synthesis; doses required for 50% inhibition were 0.37 and 11.2 mM, respectively. These concentrations lie within a range bracketed by the 50% inhibition concentrations of the strong and weak poly(ADP-Rib) synthesis inhibitors, 3-amino-benzamide (0.15 mM) and caffeine (greater than 100 mM), respectively. N-Ethylmaleimide also inhibited poly(ADP-Rib) synthesis, at a 50% inhibitory dose of 0.3 mM, in the absence of exogenous thiol reagents. High-molecular-weight protease inhibitors, such as soybean (including Bowman-Birk reagent) and lima bean trypsin inhibitors and human alpha 1-protease inhibitor, had no effect on poly(ADP-Rib) synthesis up to 2 mg/ml. Interference with transformation and other cellular effects that have been reported in carcinogen-damaged cells treated with low-molecular-weight peptide protease inhibitors may therefore involve common mechanisms with poly(ADP-Rib) inhibitors. Similar effects of high-molecular-weight protease inhibitors presumably involve different mechanisms.

Antipain↗

Ozone acts alone and synergistically with ionizing radiation to induce in vitro neoplastic transformation.

Ozone, a major chemical oxidant in the atmosphere, is an environmental air pollutant whose ability to act as a direct carcinogen is unclear Using in vitro transformation, a technique which permits the study of oncogenesis in the absence of host specific effects, we report for the first time that ozone (5 p.p.m. for 5 min) induces neoplastic transformation in vitro in both primary hamster embryo cells and mouse fibroblast cultures (C3H/10-1/2). Exposure of the hamster and mouse cells to ozone also results in enhanced levels of free radical-mediated lipid peroxidation products. We also report for the first time on the carcinogenic interaction between ozone and ionizing radiation. Exposure of the cells to 3 or 4 Gy of gamma-rays, 2 h prior to O3 treatment, results in markedly enhanced rates of transformation, statistically consistent with a synergistic interaction between the agents. The results demonstrate that O3 acts as a direct carcinogen and co-carcinogen on susceptible cells, therefore having important consequences for public health.

Cell Line↗

Inhibition of radiogenic and chemically induced transformation in C3H/10T-1/2 cells by a polyprenoic acid (E-5166).

Using C3H/10T-1/2 mouse fibroblasts, we tested whether polyprenoic acid (E-5166) inhibits radiogenic and chemically induced transformation in vitro. Our results show that E-5166 markedly inhibits transformation by X rays and benzo[a]pyrene in a dose-related manner. Maximum inhibition was observed when cells were pretreated with E-5166 prior to carcinogen exposure, and lesser inhibition when E-5166 treatment followed carcinogen exposure. These results indicate that E-5166 can serve as a radio-protective and chemopreventive agent with anticarcinogenic potential.

Animals↗

Structure-function relationships of retinoids in their effects on retinol-binding protein metabolism in cultured H4II EC3 liver cells.

Studies were conducted to explore the structural features of retinoids that may be required to stimulate the secretion or production of retinol-binding protein (RBP) by H4II EC3 rat hepatoma cells in culture. Sixteen retinoids, that differed from all-trans-retinol in the cyclohexene ring, the polyene side chain, and/or the functional end group, were each incubated with H4II EC3 cells, and RBP secretion and accumulation were determined by radioimmunoassay. A number of retinoids, in addition to retinol, effectively stimulated RBP secretion. The results suggest that an intact cyclohexene ring may be necessary for the stimulation of RBP secretion. In contrast the system did not exhibit much specificity with regard to either the structure of the side chain or the nature of the end group. No relationship was found between the ability of a retinoid to stimulate RBP secretion and production and its biological activity. The biologically active retinoid, 13-cis-retinoic acid, was inactive in the present system, whereas the biologically inactive perhydromonoeneretinol was moderately effective in stimulating both RBP secretion and accumulation. In contrast, there appeared to be some relationship between the ability of different retinoids to stimulate RBP secretion and their ability to bind to RBP. In general, retinoids that had previously been shown to bind to RBP produced a greater stimulation of RBP secretion than those that did not bind to RBP. The secretion of RBP obtained with a given retinoid was not well correlated with the net accumulation of RBP. For example, retinoyl amide did not stimulate RBP secretion but was moderately effective in stimulating RBP accumulation. Thus, the secretion of RBP does not appear to be necessary for the stimulation of the net accumulation of RBP.

Animals↗

Sodium bisulfite protects against radiogenic and chemically induced transformation in hamster embryo and mouse C3H/10T-1/2 cells.

Pretreatment of hamster embryo cells or mouse C3H/10T-1/2 cells with sodium bisulfite (0.5, 2.5, 5.0 and 100 ppm) inhibits the oncogenic transformation of the cells following their exposure to x-rays or benzo(a)pyrene. The results suggest that low doses of bisulfite, a widely used food additive, can serve as a radioprotective and chemopreventive agent with anticarcinogenic potential.

Animals↗