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Biomedical subjects

M Ishidate

Publications and source records attributed to M Ishidate.

At least 19 recordsLinked to original sources

Regulation of G418 selection efficiency by cell-cell interaction in transfection.

We attempted to establish the optimum conditions for the calcium phosphate (CaPO4) precipitation protocol by counting G418 resistant (G418r) colonies after transfection of pSV2-neo DNA into BALB 3T3 cells. The amount and molecular size of carrier DNA, number of plating cells, treatment period of DNA-CaPO4 precipitates and expression time of G418 selection were found to be important factors in the induction of G418r colonies. Six G418r clones were derived from BALB 3T3, NIH 3T3 and FRSK cells, and cocultured with G418 sensitive (G418s) parent cells in G418 medium. The colony formation capacity of all G418r cell clones decreased with the increasing number of plated G418s cells. Cell-cell contact appeared to be necessary to reduce the colony formation of G418r cells, and contact-dependent G418r cell killing was probably not related to gap junction formation. Contact-mediated cell killing is a likely explanation for the observation that induction of G418r colonies is often reduced under conditions of high-density plating, long treatment of DNA-CaPO4 precipitates, and long expression time of G418 selection. These results suggest that in some instances transfection efficiency using pSV2-neo DNA should be carefully evaluated because culture conditions can mask the induction of G418r colonies.

Animals

A sensitive umu test system for the detection of mutagenic nitroarenes in Salmonella typhimurium NM1011 having a high nitroreductase activity.

A sensitive umu test system for the detection of mutagenic nitroarenes has been developed using a new tester strain Salmonella typhimurium NM1011 having a high nitroreductase activity. The new strain was constructed by subcloning the bacterial nitroreductase gene into a plasmid pACYC184 and introducing the plasmid into the original strain S. typhimurium TA1535/pSK1002 harboring a fusion gene umuC'-'lacZ (pSK1002). Thus, the tester strain enabled us to monitor the genotoxic activities of various nitroarene compounds by measuring the beta-galactosidase activity in the cells. The sensitivity of strain NM1011 was compared with that of the parent tester strain S. typhimurium TA1535/pSK1002 or a nitroreductase-deficient strain S. typhimurium NM1000 with respect to the induction of umuC gene expression by 17 mutagenic nitroarenes. The newly developed strain with high nitroreductase activity had about 3 times higher nitrofurazone-reductase activity than the parent strain and was highly sensitive to the compounds 2-nitrofluorene, 1-nitronaphthalene, 2-nitronaphthalene, 1-nitropyrene, m-dinitrobenzene, 4,4'-dinitrobiphenyl, 3-nitrofluoranthene, 3,7-dinitrofluoranthene, 3,9-dinitrofluoranthene, 5-nitroacenaphthene and 2,4-dinitrotoluene. By contrast, the enzyme-deficient strain did not show any considerable response to 2-nitrofluorene, m-dinitrobenzene, 1-nitronaphthalene, 2-nitronaphthalene, 1-nitropyrene, 4,4'-dinitrobiphenyl, 3-nitrofluoranthene, 3,7-dinitrofluoranthene, 2,4-dinitrotoluene and 5-nitroacenaphthene. These results suggest that the newly developed tester strain with high nitroreductase activity is very useful for the detection of potent mutagenic nitroarene compounds.

Cloning, Molecular

Mouse bone marrow micronucleus test using flow cytometry.

At present, the micronucleus test is the most popular short-term assay for the in vivo detection of clastogens or spindle poisons. As micronuclei are rare events, it has been argued that the conventional microscopical analysis based on 500-2000 cells per animal does not provide enough sensitivity. In addition, the manual scoring of micronuclei is time-consuming and tedious. As an attempt to solve these problems, an automated method for the analysis of micronuclei in mouse bone marrow erythrocytes was developed using flow cytometry. Femoral bone marrow cells, from mice treated with known in vivo clastogens [mitomycin C (MMC): 0.5, 1 or 2 mg/kg body weight intraperitoneally; benzene: 1000, 2000 or 4000 mg/kg body weight orally] or vehicles for the clastogens (physiological saline, olive oil; for control animals), were fixed with 1% glutaraldehyde, suspended in 70% ethanol for storing, stained with 4',6-diamidino-2-phenylindole (0.5 microgram/ml) and analyzed (50,000 cells per sample) in an EPICS V flow cytometer using a Coherent 5W UV laser at 150-200 mV. The frequency of micronucleated erythrocytes (MNEs) was calculated from the cytometer, by a computer program involving model fitting to normal Gaussian distribution. Correlations between MNE frequencies obtained by manual microscopic observations (1000-2000 cells per animal) and by the flow cytometric measurements were good for both group results (means of 4-5 mice; linear correlation coefficient r = 0.89-0.998) and individual data (r = 0.82-0.96). Repeated experiments with MMC showed good reproducibility for the flow cytometric scoring of micronuclei.

Algorithms

Flow cytometric micronucleus test with mouse peripheral erythrocytes.

Flow cytometric (FC) analysis was applied to micronucleus test with mouse peripheral blood erythrocytes. The method is based on the measurement of peak fluorescence (PFL) of sphered glutaraldehyde-fixed erythrocytes before and after staining with 4',6-diamidino-2-phenylindole (DAPI), in an EPICS V flow cytometer. The frequency of micronucleated erythrocytes (MNEs) is calculated by a computer program comparing PFL data obtained with and without DAPI. To evaluate the method, male ddY mice were treated with 6-mercaptopurine and benzene and blood was collected from tail vein at intervals of 4-7 days. Both microscopic and FC analysis showed a steady increase in the incidence of MNEs, reaching a plateau when about a month had passed from the start of the treatments. The effects of benzo[a]pyrene, mitomycin C,N-ethyl-N-nitrosourea, bromodichloromethane and potassium chromate (VI) were also studied with both the manual and FC assay in samples collected a week after five weekly treatments. The percentages of MNEs obtained manually and by the FC measurements showed good correlation, the former three chemicals being positive and the latter two negative or, in the FC analysis, difficult to classify. Because of the high number of cells examined (50,000/animal), the FC analysis was probably more sensitive than the manual method where only 2000 cells were scored per animal. This was further suggested by (i) steady time responses, also for individual animals, in the FC results on 6-mercaptopurine and benzene, (ii) overall reduced inter-individual variation in the FC measurements, and (iii) detection of MNE induction by mitomycin C at a lower dose level with the FC than the manual analysis.(ABSTRACT TRUNCATED AT 250 WORDS)

Algorithms

Gene transfer into mammalian cells by rapid freezing.

In this paper, we describe a simple technique to introduce DNA into cells through cracks and/or pores in cell membranes caused by intracellular ice crystal formation induced by liquid nitrogen. We mixed mouse BALB 3T3 cells and pSV2-neo DNA and froze the cell suspension under various conditions to determine those optimum for the introduction of DNA into mammalian cells. We found that brief treatment with liquid nitrogen, which showed only moderate cell killing, resulted in the induction of G-418 resistant colonies. These results suggest that this new technique is useful for transfection of genes into mammalian cells.

Animals

Isolation of a menadione-resistant subclone from Chinese hamster lung (CHL) cells in culture.

Menadione-resistant subclones were selected from cultured Chinese hamster lung (CHL) cells which had been mutagenized with MNNG or ENU. The frequency of surviving colonies and the level of resistance were higher in mutagenized cells than in non-mutagenized cells. A subclone (designated MM1) was isolated from MNNG-treated cells and showed the highest level of resistance, 3 times higher than the parental CHL cells. The level of resistance was stable in non-selective medium over 3 months. The MM1 cells were also 2-3 times more resistant to other naphthoquinones. The activity of NADPH-cytochrome P-450 reductase, which is thought to play an important role in activation of menadione, was reduced in the MM1 cells to half that in the parental CHL cells. On the other hand, no differences between MM1 and CHL cells were found in the activity of superoxide dismutase and catalase which are assumed to defend against the cytotoxicity of menadione. Karyotype analyses indicated that one small chromosome was lost in the MM1 cells. The MM1 cells showed a 3-fold resistance to menadione in the chromosomal aberration test. The frequencies of chromosomal aberrations induced by adriamycin and mitomycin C which could be activated by NADPH-cytochrome P-450 reductase were almost the same in the MM1 and CHL cells, suggesting that the reductive activation of these compounds by this enzyme in microsomes may not be involved in the induction of chromosomal aberrations.

Animals

Mutagenicity of 30 chemicals in Salmonella typhimurium strains possessing different nitroreductase or O-acetyltransferase activities.

Salmonella typhimurium YG1021, YG1024, YG1026 and YG1029 are new derivatives of the Ames tester strains TA98 and TA100, with elevated 'classical' nitroreductase or acetyl-CoA:N-hydroxyarylamine O-acetyltransferase level. Thirty mutagens with different structures were tested using these strains and the sensitivities were compared with those of the conventional strains and of the enzyme-deficient strains. Elevated O-acetyltransferase activity of the indicator strains specifically increased their ability to detect the mutagenicity of aromatic nitro, amino and hydroxylamino compounds, whereas the strains with high nitroreductase activity were very sensitive to some nitroaromatics. The combined use of the isogenic tester strains with different metabolic capacities was quite useful to assess the intracellular metabolic activation and detoxification mechanisms of chemical mutagens.

Acetyltransferases

Clastogenicity of 1-nitropyrene, dinitropyrenes, fluorene and mononitrofluorenes in cultured Chinese hamster cells.

The chromosomal aberration test using a Chinese hamster lung cell line (CHL) was carried out on 1-nitropyrene (NP), 3 dinitropyrenes (DNPs), fluorene and 4 mononitrofluorenes with and without metabolic activation (rat S9 mix). The 3 DNPs (1,3-, 1,6- and 1,8-DNP) induced chromosomal aberrations in the absence of S9 mix. The frequencies of cells with aberrations after treatment for 48 h were 43% at 2 micrograms/ml of 1,3-DNP, 55% at 0.1 microgram/ml of 1,6-DNP and 45% at 0.025 microgram/ml of 1,8-DNP, indicating the order of clastogenic potency as 1,8- greater than 1,6- greater than 1,3-DNP. On the other hand, 1-NP, which is known to be a direct-acting mutagen in bacteria, was negative in the chromosomal aberration test without S9 mix, but clearly positive with S9 mix. This effect was dependent on the concentration of the S9 fraction in the reaction mixture. High-pressure liquid chromatography analysis showed that 1-NP was converted by S9 mix to several metabolites, including 1-aminopyrene (AP). The clastogenic activity of 1-AP, however, was equivocal without S9 mix, suggesting that active clastogens other than 1-AP exist. Fluorene induced chromosomal aberrations only in the presence of S9 mix (61.8% at 25 micrograms/ml). 1-, 2-, 3- and 4-nitrofluorene (NF) were more clastogenic in the presence of S9 mix than in the absence of S9 mix, suggesting that NFs were converted to more active clastogens by S9 mix.

Animals

Mutagenicity of wood smoke condensates in the Salmonella/microsome assay.

Smoke condensates of woods used for food preservation and aromatization in Nigeria were tested for mutagenic activity using Salmonella typhimurium TA98 and TA100. The woods were: white mangrove (Avicennia nitida), red mangrove (Rhizophora racemosa), mahogany Khaya sp.), abura (Mitragyna ciliata), alstonia (Alstonia boonei) and black afara (Terminalia ivorensis). Cigarette tar was tested for comparison. The condensates induced dose-dependent increases in the number of His+ revertants mainly with S9 mix. With the exception of mahogany and cigarette smoke condensate, the smoke condensates induced more revertants/microgram condensate in TA100 than in TA98. The number of revertants/microgram condensate ranged between 0.04 and 0.9 for the wood smoke condensates and was 0.12 for the cigarette smoke in TA100. The range was between 0.1 and 0.30 for the wood smoke condensates and 0.18 revertants/microgram condensate for cigarette smoke condensate in TA98. Concentrations of 7 polycyclic aromatic hydrocarbons (PAHs) in the condensates were determined namely, pyrene, benzo[a]pyrene, benz[a]anthracene, benzo[k]fluoranthene, benzo[b]chrysene, benzo[g,h,i]perylene and dibenzo[a,e]pyrene. The condensates contained varying concentrations of the individual PAHs and those with higher concentrations generally showed greater mutagenic activities. However, the order of mutagenic potency in the bacterial strains differed from the order of PAH concentrations, which were lower than the concentrations at which they are reported to induce mutations. When 6 of the PAHs were mixed in the concentrations in which they were found in the individual condensates, the mixtures did not induce mutation so that the contribution of the PAHs to the mutagenic activities of the condensates could not be determined.

Microsomes

Decreased clastogenicity of dinitropyrenes in Chinese hamster lung (CHL) subclone cells with low NADPH-cytochrome P-450 reductase activity.

Clastogenic potentials of 1,3-, 1,6- and 1,8-dinitropyrenes (DNPs) were compared between Chinese hamster lung (CHL) cells and its subclone MM1 cells, which were recently isolated as menadione-resistant cells after treatment with MNNG. NADPH-cytochrome P-450 reductase activity of the MM1 cells decreased to 50% of that in the parental CHL cells. All 3 DNPs induced chromosomal aberrations without exogenous metabolic activation systems in the CHL cells. 1,6- and 1,8-DNP showed equivalent clastogenic potency: the maximum frequency of cells with chromosomal aberrations was about 50% for both chemicals. The clastogenic potential of 1,3-DNP was lower than that of 1,6- and 1,8-DNP: the maximum frequency of aberrant cells was 10%. In the MM1 cells, in contrast, the frequencies of aberrant cells decreased to about 30% of those observed for the parental CHL cells after treatment with 1,6- and 1,8-DNP, and to the same level as that of the concurrent control after treatment with 1,3-DNP. These results suggest a possibility that the reduced clastogenic effect of 3 DNPs in MM1 cells may correlate with the reduced activity of NADPH-cytochrome P-450 reductase which is thought to contribute to the metabolic conversion of these DNPs to their clastogenic forms in the CHL cells.

Animals

The expert system for toxicity prediction of chemicals based on structure-activity relationship.

The prediction systems of chemical toxicity has been developed by means of structure-activity relationship based on the computerized fact database (BL-DB). Numbers and ratio of elements, side chains, bonding, position, and microenvironment of side chains were used as structural factors of the chemical for the prediction. Such information was obtained from the BL-DB database by Wiswesser line-formula chemical notation. In the present study, the Salmonella/microsome assay was chosen as indicative of the target toxicity of chemicals. A set of chemicals specified with mutagenicity data was retrieved, and necessary information was extracted and transferred to the working file. Rules of the relations between characteristics of chemical structure and the assay result are extracted as parameters for rules by experts on the rearranged data set. These were analyzed statistically by the discriminant analysis and the prediction with the rules were evaluated by the elimination method. Eight kinds of rules to predict Salmonella/microsome assay were constructed, and currently results of the assay on aliphatic and heterocyclic compounds can be predicted as accurately as +90%.

Algorithms

Quantitative evaluation on the genotoxic potency of chemicals.

Two in vitro tests with different genetic end points, gene mutation and chromosomal damage, and an in vivo test, preferably the micronucleus test in mice, were recommended as a battery system for the primary assessment of genotoxic effects of chemicals. From our comparative studies on the mutagenic potency of chemicals, it was pointed out that results should be evaluated quantitatively rather than qualitatively, since the potency varies extensively, at range of 10(7) fold, among different chemicals, and the in vitro genotoxins relatively weak tend to be negative in in vivo mutagenicity tests as well as in carcinogenicity tests in rodents. New Salmonella tester strains, called YG-series, were established, which showed a high nitroreductase or acetyltransferase activity and specifically sensitive to nitroarens or aromatic anmines in the reverse mutation assays (Ames test). These strains could detect a small amount of mutagenic aromatic amines containing in the urine of cigarette smokers. A new technique in the micronucleus test using peripheral blood erythrocytes was introduced. A cumurative genotoxic effect of benzene, for an example, was detected in the peripheral blood even several weeks after treatment every week by gavage. A cyto-flowmetric analysis can be also applied to monitoring of such effects.

Animals

Effects of quercetin, a plant flavonol, on the two-stage transformation in vitro.

Quercetin was examined for the effects on the two-stage chemical transformation of BALB/3T3 cells. Quercetin showed initiating action to induce transformation in the cells which were treated with quercetin and subsequently with 0.49 microM 12-O-tetradecanoyl-phorbol-13-acetate (TPA). Both the proportion of dishes with transformed foci and the average number of foci per dish increased with the concentration of quercetin (15-45 microM). However, initiating treatment with quercetin did not induce transformation without subsequent TPA treatment. Quercetin inhibited the promotion caused by 0.49 microM TPA in the transformation initiated by 1.9 microM 2-methylcholanthrene (MCA). The inhibitory effect of 30 microM quercetin was 56% in the number of foci per dish. Thus quercetin was found to have initiating effect on the transformation of BALB/3T3 cells, but to restrain the promotion by TPA.

Animals

Sensitive method for the detection of mutagenic nitroarenes and aromatic amines: new derivatives of Salmonella typhimurium tester strains possessing elevated O-acetyltransferase levels.

Acetyl-CoA: N-hydroxyarylamine O-acetyltransferase is an enzyme involved in the intracellular metabolic activation of arylhydroxylamines derived from mutagenic nitroarenes and aromatic amines. The acetyltransferase gene of Salmonella typhimurium TA1538 was cloned into pBR322 and the plasmids harboring the gene were introduced into TA98 and TA100. The resulting strains (YG1024 and YG1029) had about 100 times higher 2-hydroxyamino-6-methyldipyrido[1,2-a:3',2'-d]-imidazole (N-hydroxy-Glu-P-1) O-acetyltransferase activity than TA1538 containing pBR322, and were extremely sensitive to the mutagenic actions of 2-nitrofluorene, 1-nitropyrene, 1,8-dinitropyrene, 2-amino-6-methyldipyrido[1,2-a:3',2-d)-imidazole (Glu-P-1), 2-aminofluorene and 2-aminoanthracene. These results indicate that the new strains permit the efficient detection of the mutagenicity of environmental nitroarenes and aromatic amines.

Acetyltransferases