Search results for "Micronucleus"

showing 10 items of 44 documents

Modulating effects of humic acids on genotoxicity induced by water disinfectants in Cyprinus carpio

2005

The use of chlorinated disinfectants during drinking-water production has been shown to generate halogenated compounds as a result of interactions of humic acids with chlorine. Such chlorinated by-products have been shown to induce genotoxic effects and consumption of chlorinated drinking-water has been correlated with increased risk for cancer induction in human populations. The aim of this work was to test the potential genotoxic effects on circulating erythrocytes of the fish Cyprinus carpio exposed in vivo to well-waters disinfected with sodium hypochlorite (NaClO), chlorine dioxide (ClO2) or peracetic acid (CH3COO2H, PAA), in the absence or presence of standard humic acids (HA). The ef…

CarpsErythrocytesDrinking-water disinfectantsSodium HypochloriteHealth Toxicology and MutagenesisHumic acidschemistry.chemical_elementmedicine.disease_causeWater PurificationFish erythrocytesToxicologychemistry.chemical_compoundMicronucleus testPeracetic acidpolycyclic compoundsGeneticsChlorinemedicineAnimalsHumic acidPeracetic AcidFood scienceComet assayHumic Substanceschemistry.chemical_classificationChlorine dioxideMicronucleus TestsComet assay; Drinking-water disinfectants; Fish erythrocytes; Humic acids; Micronucleus testOxidesComet assaySettore BIO/18 - GeneticachemistrySodium hypochloriteMicronucleus testChlorine CompoundsGenotoxicityDNA DamageDisinfectantsMutation Research/Genetic Toxicology and Environmental Mutagenesis
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Induction of micronucleated and binucleate cells in Chinese hamster ovary (CHO) cells by cis-diamminedichloroplatinum (II): a morphological and morph…

1990

Abstract The mutagenicity and cytotoxicity of cis -diamminedichloroplatinum (II) (cisplatin) at doses of 5, 10 and 20 μg/ml in Chinese hamster ovary (CHO) cells have been examined. A morphological characterization of several cell types induced by cisplatin was carried out. The frequencies of both cells with micronuclei and binucleate cells as a time-dependent parameter have also been studied. Whilst the number of cells with micronuclei was found to decrease with time, the number of binucleate cells increased. The possible kinetic mechanism for the production of binucleate cells and cells with micronuclei is discussed. A morphometric analysis was also performed. The nuclear area in both trea…

Cell NucleusGeneticsCisplatinCis diamminedichloroplatinum iiCell typeMicronucleus TestsDose-Response Relationship DrugChinese hamster ovary cellNuclear areaBiologyToxicologyMolecular biologyCricetinaeMicronucleus testGeneticsmedicineAnimalsCisplatinCytotoxicityInterphaseCell DivisionCells CulturedAfter treatmentmedicine.drugMutation Research/Genetic Toxicology
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Genotoxicity of 1,4-benzoquinone and 1,4-naphthoquinone in relation to effects on glutathione and NAD(P)H levels in V79 cells.

1989

1,4-Benzoquinone is cytotoxic in V79 Chinese hamster cells and induces gene mutations and micronuclei. The cell-damaging effects of quinones are usually attributed to thiol depletion, oxidation of NAD(P)H, and redox-cycling involving the formation of semiquinone radicals and reactive oxygen species. To elucidate the role of these mechanisms in the genotoxicity of 1,4-benzoquinone, we measured various genotoxic effects, cytotoxicity, and the levels of glutathione, NADPH, NADH, and their oxidized forms all in the same experiment. 1,4-Naphthoquinone, which does not induce gene mutations in V79 cells, was investigated for comparative reasons. The quinones had a similar effect on the levels of c…

Cell SurvivalHealth Toxicology and MutagenesisGlutathione reductaseGene mutationBiologymedicine.disease_causeCell Linechemistry.chemical_compoundBenzoquinonesmedicineAnimalschemistry.chemical_classificationReactive oxygen speciesMutagenicity TestsQuinonesPublic Health Environmental and Occupational HealthGlutathioneNADGlutathioneBiochemistrychemistryMicronucleus testNAD+ kinaseOxidation-ReductionNADPGenotoxicityOxidative stressMutagensNaphthoquinonesResearch ArticleEnvironmental Health Perspectives
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Clastogenic and aneuploidizing effects of antiblastic busulphan revealed by kinetochore immunofluorescence in CHO cells.

1991

We utilized, in CHO cells, the cytoplasm preservation technique to evaluate the micronucleus frequency at different busulphan concentrations, and the indirect immunofluorescence technique, using sera obtained from patients with scleroderma (CREST variant), to analyze if busulphan-induced micronuclei have kinetochores. Results show that this alkylating agent is capable of causing a significant increase of micronuclei in vitro, a great part (40%) of them having CREST-positive kinetochores. These findings confirm the clastogenic effect of busulphan and reveal a considerable capability of this agent to induce aneuploidy. These results are examined taking into account the high incidence of secon…

CentromereAneuploidyFluorescent Antibody TechniqueBiologyImmunofluorescenceCell LineAcetoneClastogenhemic and lymphatic diseasesmedicineHumansBusulfanMicronuclei Chromosome-DefectiveChromosome AberrationsMicronucleus TestsScleroderma Systemicmedicine.diagnostic_testDose-Response Relationship DrugGeneral Medicinemedicine.diseaseAneuploidyMolecular biologyIn vitroCell cultureMicronucleus testMicronucleusBusulfanmedicine.drugMutation research
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Possible relationship between micronucleated and binucleated cells induced by cisplatin in cultured CHO cells

1993

Abstract Chinese hamster ovary (CHO) cells were treated with a single dose (10 μg/ml) of cis-diammino-dichloroplatinum (II) (cisplatin) for 1 h and the effect of the drug on the kinetics of proliferation of the cultures was studied. It was found that the drug produces a delay in the proliferation rates of the treated cultures. The induction of micronuclei and binucleated cells (BC) at different times after treatment have also been studied, and the ability of these cells to undergo DNA synthesis (measured as the ability to incorporate [3H]thymidine) is shown. It was found that cisplatin induced a particular type of BC that contains one or more micronuclei rather than a pure population of BC.…

Cisplatineducation.field_of_studyDNA synthesisChinese hamster ovary cellBinucleated cellsPopulationHamsterCHO CellsBiologyToxicologycomplex mixturesMolecular biologychemistry.chemical_compoundchemistryCricetinaeMicronucleus testGeneticsmedicineAnimalsCisplatineducationThymidineCell DivisionMicronuclei Chromosome-Defectivemedicine.drugMutation Research/Environmental Mutagenesis and Related Subjects
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Micronucleus frequencies and clonogenic cell survival in TK6 cells exposed to changing dose rates under controlled temperature conditions.

2014

In most exposure scenarios the dose rate of exposure is not constant. Despite this, very little information exists on the possible biological effects of exposing cells to radiation under the conditions of a changing dose rate. The current study highlights interesting effects following exposure under these conditions.We constructed a new exposure facility that allows exposing cells inside an incubator and used it to irradiate human lymphoblastoid TK6 cells both after a moderate (0.48 Gy) and a high (1.1 Gy) dose, where the change in dose rate was, respectively, ≈ 17-fold (2.2-37 mGy/min) and ≈ 39-fold (2.7-106 mGy/min). Clonogenic survival and micronuclei (MN) induction were the chosen endpo…

Clonogenic survivalDNA RepairCell SurvivalBiologyCell LineAndrologyRadiation IonizingHumansRadiology Nuclear Medicine and imagingLymphocytesPoisson DistributionInterphaseCytokinesisChromosome AberrationsMicronucleus TestsRadiological and Ultrasound TechnologyLymphoblastX-RaysTemperatureDose-Response Relationship RadiationClonogenic cellArea Under CurveImmunologyMicronucleus testDose rateMicronucleusModerate-DoseDNA DamageInternational journal of radiation biology
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New aspects of photogenotoxicity testing: Prevalidation of the photo-micronucleus test and the photo-comet assay

2006

Comet assayChromatographyChemistryMicronucleus testToxicologyToxicology
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On the relevance of genotoxicity for fish populations II: genotoxic effects in zebrafish (Danio rerio) exposed to 4-nitroquinoline-1-oxide in a compl…

2003

In order to characterize the impact of genotoxic potentials on populations of aquatic organisms in surface waters, zebrafish (Danio rerio) were exposed to the model genotoxicant 4-nitroquinoline-1-oxide (NQO) in a complete life-cycle test. Fish exposed to mean NQO concentrations of 0, 0.1, 0.3, 1.1, and 2.9 microg/l were examined by several genotoxicity assays with different endpoints. Assays included the unscheduled DNA synthesis (UDS) test, the comet assay, the alkaline filter elution, and the micronucleus test. The genotoxicity assays revealed an increasing genotoxicity, ranging from induction of DNA repair (even at the lowest concentration tested) to primary and secondary DNA alteration…

DNA ReplicationDNA RepairDNA repairHealth Toxicology and Mutagenesis4-Nitroquinoline 1-oxideDanioAquatic ScienceBiologymedicine.disease_causechemistry.chemical_compoundmedicineEcotoxicologyAnimalsToxicity Tests ChronicZebrafishGeneticsMicronucleus TestsDose-Response Relationship DrugMutagenicity Testsbiology.organism_classificationMolecular biology4-Nitroquinoline-1-oxideComet assaychemistryMicronucleus testToxicityComet AssayGenotoxicityMutagensAquatic toxicology (Amsterdam, Netherlands)
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In Vitro Assessment of the Genotoxic Hazard of Novel Hydroxamic Acid- and Benzamide-Type Histone Deacetylase Inhibitors (HDACi)

2020

Histone deacetylase inhibitors (HDACi) are already approved for the therapy of leukemias. Since they are also emerging candidate compounds for the treatment of non-malignant diseases, HDACi with a wide therapeutic window and low hazard potential are desirable. Here, we investigated a panel of 12 novel hydroxamic acid- and benzamide-type HDACi employing non-malignant V79 hamster cells as toxicology guideline-conform in vitro model. HDACi causing a &ge

DNA damageApoptosisHydroxamic AcidsDNA damage responseArticleCatalysisCell LineHistonesInorganic Chemistrylcsh:Chemistrychemistry.chemical_compoundHDAC inhibitorsCricetinaeDNA strand breaksmedicineAnimalsHumansDNA Breaks Double-StrandedDNA Breaks Single-StrandedPhosphorylationPhysical and Theoretical Chemistrynormal tissue toxicityMolecular BiologyVorinostatlcsh:QH301-705.5SpectroscopyVorinostatMicronucleus TestsHydroxamic acidMutagenicity TestsEntinostatOrganic ChemistryHistone H2AXgenetic instabilityGeneral MedicineComputer Science ApplicationsHistone Deacetylase Inhibitorschemistrylcsh:Biology (General)lcsh:QD1-999BenzamidesCancer researchComet AssayHistone deacetylasegenotoxic hazardDNAMutagensNucleotide excision repairmedicine.drugInternational Journal of Molecular Sciences
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Genomic instability induced by α-pinene in Chinese hamster cell line.

2012

Here, we report the effects of exposure of mammalian cells to α-pinene, a bicyclic monoterpene used in insecticides, solvents and perfumes. Morphological analysis, performed in V79-Cl3 cells exposed for 1 h to increasing concentrations (25 up to 50 μM) of α-pinene, indicated a statistically significant increase in micronucleated and multinucleated cell frequencies; apoptotic cells were seen at 40 and 50 μM. This monoterpene caused genomic instability by interfering with mitotic process; in fact, 50% of cells (versus 19% of control cells) showed irregular mitosis with multipolar or incorrectly localised spindles. Cytogenetic analysis demonstrated high-frequency hypodiploid metaphases as well…

DNA damageHealth Toxicology and MutagenesisApoptosisToxicologymedicine.disease_causeChinese hamsterGenomic InstabilityColony-Forming Units AssayImmunoenzyme TechniquesMultinucleateCricetulusGenomic instability hamster cell lines a-pineneCricetinaeGeneticsmedicineAnimalsMitosisGenetics (clinical)Cells CulturedMicronuclei Chromosome-DefectiveBicyclic MonoterpenesChromosome AberrationsMicronucleus Testsbiologybiology.organism_classificationMolecular biologyComet assaySettore BIO/18 - GeneticaOxidative StressCell cultureMicronucleus testMonoterpenesComet AssayReactive Oxygen SpeciesOxidative stressDNA DamageMutagenesis
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