Search results for "sulfoximine"

showing 10 items of 32 documents

γ-Glutamyl transpeptidase overexpression increases metastatic growth of B16 melanoma cells in the mouse liver

2002

B16 melanoma (B16M) cells with high glutathione (GSH) content show rapid proliferation in vitro and high metastatic activity in the liver in vivo. gamma-Glutamyl transpeptidase (GGT)-mediated extracellular GSH cleavage and intracellular GSH synthesis were studied in vitro in B16M cells with high (F10) and low (F1) metastatic potential. GGT activity was modified by transfection with the human GGT gene (B16MF1/Tet-GGT cells) or by acivicin-induced inhibition. B16MF1/Tet-GGT and B16MF10 cells exhibited higher GSH content (35 +/- 6 and 40 +/- 5 nmol/10(6) cells, respectively) and GGT activity (89 +/- 9 and 37 +/- 7 mU/10(6) cells, respectively) as compared (P <.05) with B16MF1 cells (10 +/- 3 n…

HepatologyCell growthGlutathioneTransfectionBiologydigestive systemMolecular biologydigestive system diseasesIn vitrochemistry.chemical_compoundchemistryBiochemistryCell cultureIn vivobiology.proteinButhionine sulfoximineGamma-glutamyltransferaseHepatology
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Depletion of tumour glutathione in vivo by buthionine sulphoximine: modulation by the rate of cellular proliferation and inhibition of cancer growth.

1993

We have investigated in Ehrlich-ascites-tumour-bearing mice the effect of buthionine sulphoximine (BSO), a selective inhibitor of GSH synthesis, on the rate of GSH depletion of tumour versus normal tissues and its relation to tumour cell proliferation. In normal tissues, GSH and GSSG remain unchanged or close to normal values during tumour growth, even at the last stage of growth when the animal is close to death. After administration of a single dose of BSO (4 mmol/kg), the rates of GSH depletion and recovery in the tumour and in several normal tissues are very different. BSO depletes GSH in cancer cells to a level of 0.3-0.4 mumol/g. The fall in GSH levels is faster when tumour cells do n…

MaleAntimetabolites AntineoplasticIntracellular pHPharmacologyBiologyBiochemistrychemistry.chemical_compoundMiceIn vivoMethionine SulfoximineAnimalsButhionine sulfoximineCarcinoma Ehrlich TumorMolecular BiologyButhionine SulfoximineProtein kinase CDose-Response Relationship DrugCell growthCell BiologyGlutathioneGlutathioneDose–response relationshipchemistryBiochemistryCancer cellCell DivisionResearch Article
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Induction of hepatic heme oxygenase-1 by diclofenac in rodents: role of oxidative stress and cytochrome P-450 activity

2003

Abstract Background/Aims : The role of oxidative stress in diclofenac hepatotoxicity is still not clear. This study examined whether the drug induced heme oxygenase-1 (HO-1), a stress protein. Methods : HO-1 mRNA and HO activity were measured in mouse liver and in rat hepatocytes after treatment with diclofenac parallel to release of serum alanine aminotransferase (ALT) and sorbitol dehydrogenase (SDH) as a marker of hepatic damage. Results : HO-1 was transcriptionally and dose-dependently induced by diclofenac in mouse liver and rat hepatocytes. HO-1 mRNA, ALT and SDH peaked at the same time. Mechanistic studies revealed that the drug synergized with buthionine sulfoximine (BSO) in lowerin…

MaleCarcinoma HepatocellularDiclofenacCytochromeMice Inbred StrainsOxidative phosphorylationPharmacologymedicine.disease_causeMicechemistry.chemical_compoundCytochrome P-450 Enzyme SystemCell Line TumormedicineAnimalsCytochrome P-450 Enzyme InhibitorsHumansButhionine sulfoximineEnzyme InhibitorsButhionine SulfoximineDose-Response Relationship DrugHepatologybiologyLiver NeoplasmsMembrane ProteinsCytochrome P450GlutathioneAcetylcysteineRatsHeme oxygenaseOxidative Stressstomatognathic diseasesmedicine.anatomical_structureLiverchemistryBiochemistryEnzyme InductionHepatocyteHeme Oxygenase (Decyclizing)Hepatocytesbiology.proteinFemaleHeme Oxygenase-1Oxidative stressJournal of Hepatology
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Glutathione and the rate of cellular proliferation determine tumour cell sensitivity to tumour necrosis factor in vivo.

1997

Low rates of cellular proliferation are associated with low GSH content and enhanced sensitivity of Ehrlich ascites-tumour (EAT) cells to the cytotoxic effects of recombinant human tumour necrosis factor (rhTNF-alpha). Buthionine sulphoximine, a selective inhibitor of GSH synthesis, inhibited tumour growth and increased rhTNF-alpha cytoxicity in vitro. Administration of sublethal doses (10(6)units/kg per day) of rhTNF-alpha to EAT-bearing mice promoted oxidative stress (as measured by increases in intracellular peroxide levels, O2(-); generation and mitochondrial GSSG) and resulted in a slight reduction (19%) in tumour cell number when controls showed the highest rate of cellular proliferat…

MaleNecrosisCell SurvivalMice Inbred StrainsBiologyPharmacologymedicine.disease_causeBiochemistrychemistry.chemical_compoundMiceIn vivomedicineTumor Cells CulturedCytotoxic T cellAnimalsHumansCytotoxicityCarcinoma Ehrlich TumorMolecular BiologyButhionine SulfoximineTumor Necrosis Factor-alphaDrug SynergismCell BiologyGlutathioneGlutathioneRecombinant ProteinsKineticschemistryBiochemistryCancer cellmedicine.symptomOxidative stressIntracellularCell DivisionResearch ArticleThe Biochemical journal
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Glutathione protects metastatic melanoma cells against oxidative stress in the murine hepatic microvasculature.

1998

Calcein-labeled B16 melanoma (B16M) cells were injected intraportally, and in vivo video microscopy was used to study the distribution and damage of cancer cells arrested in the liver microvasculature over a period of 4 hours. The contribution of glutathione (GSH)-dependent antioxidant machinery to the possible oxidative stress-resistance mechanism of B16M cell was determined by in vitro incubation with the selective inhibitor of GSH synthesis L-buthionine (S,R)-sulphoximine (BSO) before B16M cell injection in untreated and 0.5-mg/kg lipopolysaccharide (LPS)-treated mice. In addition, untreated and LPS-treated isolated syngeneic hepatic sinusoidal endothelial cells (HSE) were used to determ…

MalePathologymedicine.medical_specialtyCellMelanoma ExperimentalVideo RecordingVideo microscopyBiologymedicine.disease_causeAndrologychemistry.chemical_compoundMiceIn vivomedicineCell AdhesionTumor Cells CulturedAnimalsEnzyme InhibitorsNeoplasm MetastasisCell damageButhionine SulfoximineHepatologyMicrocirculationLiver NeoplasmsCell PolarityGlutathionemedicine.diseaseGlutathioneMice Inbred C57BLOxidative Stressmedicine.anatomical_structurechemistryLiverCancer cellOxidative stressIntracellularHepatology (Baltimore, Md.)
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Glutamine potentiates TNF-α-induced tumor cytotoxicity

2001

L-glutamine (Gln) sensitizes tumor cells to tumor necrosis factor (TNF)-alpha-induced cytotoxicity. The type and mechanism of cell death induced by TNF-alpha was studied in Ehrlich ascites tumor (EAT)-bearing mice fed a Gln-enriched diet (GED; where 30% of the total dietary nitrogen was from Gln). A high rate of Gln oxidation promotes a selective depletion of mitochondrial glutathione (mtGSH) content to approximately 58% of the level found in tumor mitochondria of mice fed a nutritionally complete elemental diet (standard diet, SD). The mechanism of mtGSH depletion involves a glutamate-induced inhibition of GSH transport from the cytosol into mitochondria. The increase in reactive oxygen in…

MaleProgrammed cell deathFree RadicalsCell SurvivalGlutamineApoptosisCytochrome c GroupMitochondrionBiologyBiochemistryMembrane PotentialsMiceNecrosischemistry.chemical_compoundAdenosine TriphosphateSuperoxidesPhysiology (medical)Tumor Cells CulturedAnimalsButhionine sulfoximineCaspase 3Tumor Necrosis Factor-alphaDrug SynergismHydrogen PeroxideGlutathioneGlutathioneMolecular biologyDietMitochondriaCell biologyOxygenGlutamineOxidative StressCytosolProto-Oncogene Proteins c-bcl-2chemistryApoptosisCaspasesReactive Oxygen SpeciesOxidation-ReductionCell DivisionIntracellularFree Radical Biology and Medicine
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Down-regulation of Glutathione and Bcl-2 Synthesis in Mouse B16 Melanoma Cells Avoids Their Survival during Interaction with the Vascular Endothelium

2003

B16 melanoma (B16M) cells with high GSH content show high metastatic activity. However, the molecular mechanisms linking GSH to metastatic cell survival are unclear. The possible relationship between GSH and the ability of Bcl-2 to prevent cell death was studied in B16M cells with high (F10) and low (F1) metastatic potential. Analysis of a Bcl-2 family of genes revealed that B16M-F10 cells, as compared with B16M-F1 cells, overexpressed preferentially Bcl-2 (approximately 5.7-fold). Hepatic sinusoidal endothelium-induced B16M-F10 cytotoxicity in vitro increased from approximately 19% (controls) to approximately 97% in GSH-depleted B16M-F10 cells treated with an antisense Bcl-2 oligodeoxynucl…

MaleProgrammed cell deathPore complexCell SurvivalMelanoma ExperimentalDown-RegulationOxidative phosphorylationBiologyBiochemistryOligodeoxyribonucleotides AntisenseMicechemistry.chemical_compoundDownregulation and upregulationCell Line TumorAnimalsButhionine SulfoximineMolecular BiologyBase SequenceTransition (genetics)Cell BiologyGlutathioneGlutathioneMolecular biologyGenes bcl-2Cell biologyMice Inbred C57BLOxidative StressCytosolchemistryEndothelium VascularEffluxCell DivisionJournal of Biological Chemistry
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Elimination of Ehrlich tumours by ATP-induced growth inhibition, glutathione depletion and X-rays

1995

ATP-induced tumour growth inhibition is accompanied by a selective decrease in the content of the tripeptide glutathione (GSH) within the cancer cells in vivo. Depletion of cellular GSH sensitizes tumours to chemotherapy and radiation, but the usefulness of this depletion depends on whether the levels of GSH can be reduced in the tumour relative to normal tissues. We report here that administration of ATP in combination with diethylmaleate and X-rays leads to complete regression of 95% of Ehrlich ascites tumours in mice. This shows that an aggressive tumour can be eliminated by using a therapy based on modulation of GSH levels in cancer cells.

MaleRadiation-Sensitizing AgentsGlutamate-Cysteine Ligasemedicine.medical_treatmentAntineoplastic AgentsTripeptideBiologyGeneral Biochemistry Genetics and Molecular BiologyMicechemistry.chemical_compoundAdenosine TriphosphateIn vivoMethionine SulfoximinemedicineAnimalsButhionine sulfoximineEnzyme InhibitorsCarcinoma Ehrlich TumorButhionine SulfoximineChemotherapyX-RaysMaleatesGeneral MedicineGlutathioneHydrogen-Ion ConcentrationCombined Modality TherapyGlutathionechemistryBiochemistryCancer cellCancer researchGrowth inhibitionAdenosine triphosphateCell DivisionNature Medicine
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In vivo GSH depletion induces c-myc expression by modulation of chromatin protein complexes.

2009

Abstract We hypothesize that glutathione (GSH) fluctuations could have a prominent role in the modulation of c-myc expression through a mechanism affecting chromatin remodeling complexes. This could lead to an open chromatin structure accessible to transcription factors. We studied the in vivo effect of GSH depletion on these complexes bound to the c-myc promoter in the liver of l-buthionine-(S,R)-sulfoximine (BSO)-treated rats. Using chromatin immunoprecipitation we found that 3 h after BSO treatment the repressing complexes Id2 and Sin3A (part of a histone–deacetylase complex) were released from the c-myc promoter. STAT3 was phosphorylated and associated with its coactivator p300 with int…

MaleSTAT3 Transcription FactorTranscriptional ActivationTime FactorsBiologyBiochemistryChromatin remodelingHistone DeacetylasesProto-Oncogene Proteins c-mycHistone H3Physiology (medical)Gene expressionCoactivatorTranscriptional regulationAnimalsp300-CBP Transcription FactorsPhosphorylationRats WistarTranscription factorButhionine SulfoximineInhibitor of Differentiation Protein 2AcetylationChromatin Assembly and DisassemblyMolecular biologyGlutathioneChromatinRatsRepressor ProteinsSin3 Histone Deacetylase and Corepressor ComplexGene Expression RegulationLiverChromatin immunoprecipitationProtein BindingFree radical biologymedicine
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The depletion of nuclear glutathione impairs cell proliferation in 3t3 fibroblasts.

2009

BACKGROUND:Glutathione is considered essential for survival in mammalian cells and yeast but not in prokaryotic cells. The presence of a nuclear pool of glutathione has been demonstrated but its role in cellular proliferation and differentiation is still a matter of debate. PRINCIPAL FINDINGS:We have studied proliferation of 3T3 fibroblasts for a period of 5 days. Cells were treated with two well known depleting agents, diethyl maleate (DEM) and buthionine sulfoximine (BSO), and the cellular and nuclear glutathione levels were assessed by analytical and confocal microscopic techniques, respectively. Both agents decreased total cellular glutathione although depletion by BSO was more sustaine…

PhysiologyGlutathione reductaseCell Biology/Cell Growth and Divisionlcsh:MedicineBiology3T3 cellschemistry.chemical_compoundMicemedicineBiochemistry/Cell Signaling and Trafficking StructuresAnimalsButhionine sulfoximinelcsh:ScienceTranscription factorButhionine SulfoximineCell ProliferationGlutathione TransferaseCell NucleusMultidisciplinaryMicroscopy ConfocalCell growthlcsh:RMaleatesGlutathione3T3 CellsFibroblastsMolecular biologyGlutathioneCell biologyCell nucleusmedicine.anatomical_structureGlutathione ReductasechemistryCytoplasmlcsh:QResearch ArticlePloS one
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