Search results for "SOS chromotest"

showing 5 items of 5 documents

Evaluation of the SOS/umu-test post-treatment assay for the detection of genotoxic activities of pure compounds and complex environmental mixtures.

2000

This study presents an evaluation of the SOS/umu-test after introducing an additional dilution and incubation in the post-treatment assay. This treatment reduces the influence of coloured test compounds that otherwise affect the colorimetric determination of the beta-galactosidase activity and the bacterial growth measurement during the testing of complex environmental samples. The post-treatment assay significantly increased the beta-galactosidase activity and consequently the enzyme induction ratios at higher doses of model genotoxins 4-nitroquinoline-N-oxide, N-methyl-N'-nitro-N-nitrosoguanidine, 2-aminoanthracene, benzo(a)pyrene with low or no effect on the sensitivity of the test itsel…

Salmonella typhimuriumMethylnitronitrosoguanidineHealth Toxicology and MutagenesisSegmented filamentous bacteriaRecombinant Fusion ProteinsSOS/umu-test; post-treatment assay; S.typhimurium; SOS response; genotoxicity assay; filamentous bacteria; environmental pollutionEnvironmental pollutionDNA-Directed DNA PolymeraseBacterial growthBiologyMicrobiologyAmes testBacterial ProteinsGeneticsBenzo(a)pyreneFood scienceSOS responseSOS Response GeneticsIncubationAnthracenesDose-Response Relationship DrugMutagenicity TestsEscherichia coli Proteinsbiology.organism_classificationbeta-Galactosidase4-Nitroquinoline-1-oxideSOS chromotestEnvironmental PollutantsBacteriaCell DivisionMutagensMutation research
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Genotoxicity of six pesticides by Salmonella mutagenicity test and SOS chromotest.

1997

Abstract Two in vitro tests (Ames test and SOS chromotest), one for bacterial mutagenicity and one for primary DNA damage, were assayed to determine the genotoxic activity of 6 pesticides (atrazine, captafol, captan, chlorpyrifosmethyl, molinate and tetrachlorvinphos). Assays were carried out both in the absence and presence of S9 fractions of liver homogenate from rat (Sprague–Dawley) pretreated with Aroclor 1254. Captan and captafol were genotoxic on both the Ames test and the SOS chromotest. Comparisons with mutagenesis data in Salmonella indicated that the SOS assay detected as genotoxic the pesticides that were mutagenic on the Salmonella test. Non-genotoxic effects were not detected i…

Salmonella typhimuriumSalmonellaInsecticidesHealth Toxicology and MutagenesisBiologyGene mutationmedicine.disease_causeAmes testMicrobiologyTetrachlorvinphosRats Sprague-Dawleychemistry.chemical_compoundGeneticsmedicineEscherichia coliAnimalsAtrazineSOS Response GeneticsCaptanDose-Response Relationship DrugHerbicidesMutagenicity Testsfood and beveragesFungicides IndustrialRatsSOS chromotestchemistryLiverMicrosomes LiverGenotoxicityDNA DamageMutation research
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Does Probiotic Yeast Act as Antigenotoxin?

2005

The effect of probiotic yeast Saccharomyces boulardii on genotoxicity induced by the well-known mutagen 4-nitroquinoline-N-oxide (4-NQO), as well as antibacterial (furazolidone) and antibiotic (nalidixic acid) drugs, has been studied using the short-term bacterial assay, SOS chromotest, with Escherichia coli PQ 37 as the test organism. It has been shown that S. boulardii possesses antigenotoxic activity, revealed by SOS chromotest, when coincubated with these genotoxins. A weaker antigenotoxic activity against the same compounds was observed with S. carlsbergensis, too.

Saccharomyces boulardiiSOS chromotestlcsh:Food processing and manufacturelcsh:TP368-456lcsh:Biotechnologylcsh:TP248.13-248.65antigenotoxicitygenotoxinsSaccharomyces boulardii; genotoxins; SOS chromotest; antigenotoxicityFood Technology and Biotechnology
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The effect of probiotics on the genotoxicity of furazolidone.

2004

Antigenotoxic activity of probiotic bacteria against furazolidone was studied using the short-term bacterial assay SOS chromotest, with Escherichia coli PQ37 as the test organism. The supernatants from probiotic and furazolidone co-incubation exhibited rather strong suppression on SOS induction produced by furazolidone on E. coli PQ 37 (sfiA: lacZ). Genotoxicity inhibition was found for all strains of the examined bacteria belonging to three genera. The highest genotoxicity inhibition was detected for Bifidobacterium lactis Bb-12 (92.0%) and for Lactobacillus acidophilus T20 (81.9%).

FurazolidoneBifidobacterium lactismedicine.disease_causeMicrobiologyMicrobiologylaw.inventionProbioticLactobacillus acidophiluslawmedicineSOS Response GeneticsEscherichia colibiologyMutagenicity TestsProbioticsFurazolidoneGeneral Medicinebiology.organism_classificationSOS chromotestLactobacillusAnti-Infective Agents LocalbacteriaBifidobacteriumBacteriaGenotoxicityFood Sciencemedicine.drugInternational journal of food microbiology
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Evaluation of genotoxicity and DNA protective effects of mangiferin, a glucosylxanthone isolated from Mangifera indica L. stem bark extract.

2012

Abstract Mangiferin is a glucosylxantone isolated from Mangifera indica L. stem bark. Several studies have shown its pharmacological properties which make it a promising candidate for putative therapeutic use. This study was focused to investigate the in vitro genotoxic effects of mangiferin in the Ames test, SOS Chromotest and Comet assay. The genotoxic effects in bone marrow erythrocytes from NMRI mice orally treated with mangiferin (2000 mg/kg) were also evaluated. Additionally, its potential antimutagenic activity against several mutagens in the Ames test and its effects on CYP1A1 activity were assessed. Mangiferin (50–5000 μg/plate) did not increased the frequency of reverse mutations …

MaleStereochemistryDNA damageBinucleated cellsXanthonesPharmacologyToxicologymedicine.disease_causeAmes testRats Sprague-Dawleychemistry.chemical_compoundMicemedicineAnimalsMangiferinMangiferaPlant StemsChemistryMutagenicity TestsPlant ExtractsGeneral MedicineDNARatsComet assaySOS chromotestComet AssayMicronucleusGenotoxicityFood Science
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