Search results for "sulfoximine"

showing 10 items of 32 documents

Glutathione in Cancer Biology and Therapy

2006

The glutathione (GSH) content of cancer cells is particularly relevant in regulating mutagenic mechanisms, DNA synthesis, growth, and multidrug and radiation resistance. In malignant tumors, as compared with normal tissues, that resistance associates in most cases with higher GSH levels within these cancer cells. Thus, approaches to cancer treatment based on modulation of GSH should control possible growth-associated changes in GSH content and synthesis in these cells. Despite the potential benefits for cancer therapy of a selective GSH-depleting strategy, such a methodology has remained elusive up to now. Metastatic spread, not primary tumor burden, is the leading cause of cancer death. Fo…

Programmed cell deathClinical BiochemistryApoptosisBiologyGeneral Biochemistry Genetics and Molecular BiologyProinflammatory cytokinechemistry.chemical_compoundCancer stem cellNeoplasmsmedicineAnimalsHumansNeoplasm MetastasisButhionine SulfoximineBiochemistry (medical)CancerGlutathionemedicine.diseaseGlutathionePrimary tumorExtravasationGenes bcl-2chemistryCancer cellImmunologyCancer researchCritical Reviews in Clinical Laboratory Sciences
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Glutathione regulates telomerase activity in 3T3 fibroblasts.

2004

Changes in telomerase activity have been associated either with cancer, when activity is increased, or with cell cycle arrest when it is decreased. We report that glutathione, a physiological antioxidant present at high intracellular concentrations, regulates telomerase activity in cells in culture. Telomerase activity increases in 3T3 fibroblasts before exponential cell growth. The peak of telomerase activity takes place 24 h after plating and coincides with the maximum levels of glutathione in the cells. When cells are treated with buthionine sulfoximine, which decreases glutathione levels in cells, telomerase activity decreases by 60%, and cell growth is delayed. Glutathione depletion in…

TelomeraseAntioxidantCell cycle checkpointTime FactorsCell divisionmedicine.medical_treatmentBlotting WesternImmunoblottingE2F4 Transcription FactorBiochemistryGene Expression Regulation Enzymologicchemistry.chemical_compoundMicemedicineAnimalsButhionine sulfoximineColoring AgentsMolecular BiologyButhionine SulfoximineTelomeraseInhibitor of Differentiation Protein 2Cell growthCell CycleCell BiologyGlutathione3T3 CellsTrypan BlueCell cycleFibroblastsFlow CytometryMolecular biologyGlutathioneDNA-Binding ProteinsRepressor ProteinschemistryOxidation-ReductionCell DivisionTranscription FactorsThe Journal of biological chemistry
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''Deferoxamine blocks death induced by glutathione depletion in PC 12 cells''

2013

Chouraqui, E. | Leon, A. | Repesse, Y. | Prigent-Tessier, A. | Bouhallab, S. | Bougle, D. | Marie, C. | Duval, D.; International audience; ''The purpose of the present work was to investigate the mechanisms by which glutathione depletion induced by treatment with buthionine sulfoximine (BSO) led within 24-30 h to PC 12 cells apoptosis. Our results showed that treatment by relatively low concentrations (10-30 mu M) of deferoxamine (DFx), a natural iron-specific chelator, almost completely shielded the cells from BSO-induced toxicity and that DFx still remained protective when added up to 9-12 h after BSO treatment. On the other hand, phosphopeptides derived from milk casein and known to carr…

Time FactorsIronApoptosisDeferoxaminePharmacologyIron Chelating AgentsToxicologymedicine.disease_causePC12 Cellschemistry.chemical_compoundOXIDATIVE-STRESSPARKINSONS-DISEASECaseinmedicineAnimalsHomeostasisButhionine sulfoximineButhionine SulfoximineNeuronsCELLULAR IRONDose-Response Relationship DrugbiologyChemistryGeneral NeuroscienceGlutathioneGlutathioneIRON CHELATORRatsDeferoxamineFerritinSYMPATHETIC NEURONSISCHEMIC-STROKEBiochemistryBRAIN IRONCELLULAR IRON''CytoprotectionApoptosisToxicity[ SCCO.NEUR ] Cognitive science/Neurosciencebiology.proteinSERUM DEPRIVATIONHEME OXYGENASE-1NEURODEGENERATIVE DISORDERSOxidative stress''OXIDATIVE-STRESSmedicine.drug
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Effects of Tumor Necrosis Factor-Alpha on Growth and Doxorubicin Sensitivity of Multidrug Resistant Tumor Cell Lines

1993

Biological agents might offer various therapeutic opportunities in the treatment of cancer, including a direct and/or host- mediated antiproliferative effect as well as the possibility to favourably modulate tumor sensitivity to antineoplastic drugs (Alexander et al., 1987; Kikuchi et al., 1992; Wadler and Schwartz, 1990). However, information on their activity on chemoresistant tumors is still scanty (Billi et al., 1991; Bonavida et al., 1989; D’Alessandro, 1993; Fruehauf et al., 1991; Liddill et al., 1988; Mihich and Ehrke, 1991). Here we have focused on tumor necrosis-alpha (TNF-α) and studied its in vitro effects on the growth of two tumor cell lines, the mouse B16 melanoma and Friend e…

VincristineChemistrymedicine.medical_treatmentCancermedicine.diseaseIn vitroMultiple drug resistancechemistry.chemical_compoundCytokinemedicineCancer researchTumor necrosis factor alphaButhionine sulfoximineDoxorubicinmedicine.drug
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[3+2]‐Cycloadditions of N ‐Cyano Sulfoximines with 1,3‐Dipoles

2020

Involving the cyano group of N‐cyano sulfoximines in [3+2]‐cycloaddition reactions with 1,3‐dipoles provides practical routes for the construction of 5‐membered heterocycles bearing sulfoximinoyl moieties. An ytterbium‐catalyzed cycloaddition utilizing hydrazonoyl chlorides was developed, as well as a reaction involving imidoyl chlorides proceeding without the aid of a catalyst. Following these protocols, a range of sulfoximines with N‐1,2,4‐triazolyl and N‐1,2,4‐oxadiazolyl substituents was prepared. peerReviewed

betaiinisulfoximinebioaktiiviset yhdisteetOrganic ChemistryTriazoleOxadiazoleCycloadditiontriazolechemistry.chemical_compoundDipolechemistryPolymer chemistrybetaine13-dipolePhysical and Theoretical Chemistry13-dipolecycloadditionoxadiazoleorgaaniset yhdisteetEuropean Journal of Organic Chemistry
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Tumoricidal Activity of Endothelial Cells

2001

The mechanism of NO- and H(2)O(2)-induced tumor cytotoxicity was examined during B16 melanoma (B16M) adhesion to the hepatic sinusoidal endothelium (HSE) in vitro. We used endothelial nitric-oxide synthetase gene disruption and N(G)-nitro-l-arginine methyl ester-induced inhibition of nitric-oxide synthetase activity to study the effect of HSE-derived NO on B16M cell viability. Extracellular H(2)O(2) was removed by exogenous catalase. H(2)O(2) was not cytotoxic in the absence of NO. However, NO-induced tumor cytotoxicity was increased by H(2)O(2) due to the formation of potent oxidants, likely ( small middle dot)OH and (-)OONO radicals, via a trace metal-dependent process. B16M cells culture…

biologyEndotheliumChemistryEbselenCell BiologyGlutathioneBiochemistryMolecular biologychemistry.chemical_compoundmedicine.anatomical_structureBiochemistryCatalasebiology.proteinmedicineCytotoxic T cellButhionine sulfoximineViability assayCytotoxicityMolecular BiologyJournal of Biological Chemistry
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Palladium-catalyzed heteroaryl thioethers synthesis overcoming palladium dithiolate resting states inertness: Practical road to sulfones and NH-sulfo…

2018

International audience; We provide efficient synthetic access to heteroaryl sulfones in two-steps using a simple palladium-1,1'-bis [(diphenyl)phosphanyl]ferrocene catalyst to form in high yields variously functionalized heteroaromatic thioethers. Pyridinyl-containing substrates can be subsequently selectively oxidized into sulfones and NH-sulfoximines by using very mild oxidation conditions with a high functional group tolerance. In the palladium catalyzed C-S coupling of heteroaromatic thiols, reactivity limitation is attached with electron-deficient thiols. We show that this limitation can be resolved by the successful use of 2-bromoheteroarenes in the C-S coupling. We established herein…

bond formationarenessulfideschemistry.chemical_element010402 general chemistry01 natural sciencesCatalysisefficientCatalysischemistry.chemical_compounds-arylation[CHIM]Chemical SciencesReactivity (chemistry)SulfonesResting statethiols[PHYS]Physics [physics]010405 organic chemistryProcess Chemistry and TechnologyGeneral Chemistryindolesacid saltsCombinatorial chemistry0104 chemical sciencesThiolatesC-S couplingchemistryFerroceneNH-sulfoximinesReagentElectrophileFunctional groupH functionalizationdirecting groupPalladiumStoichiometryPalladiumCatalysis Communications
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The Effect of Phosphinothricin (Glufosinate) on Glutathione Synthesis in Plants

1990

The inhibitory effect of DL-phosphinothricin (glufosinate) on glutathione synthesis was studied in vivo and in vitro. The influence of phosphinothricin on γ-glutamylcysteine synthetase was compared with the already known effects of l-buthionine sulfoximine and l-methionine sulfoximine. The results showed that phosphinothricin and buthionine sulfoximine are inhibitors of γ-glutamylcysteine synthetase of plants. With both substances the enzyme was inhibited by 50 % at a concentration of 7 . 10−4M (pI50 = 3.15). Methionine sulfoximine reduced the enzyme activity by 50% at 5 . 10−2 M (pI50 = 1.30). It is discussed that the target enzyme of phosphinothricin is the glutamine synthetase whereas th…

chemistry.chemical_classificationPlant ScienceMetabolismGlutathioneBiologyEnzyme assaychemistry.chemical_compoundEnzymechemistryBiosynthesisBiochemistryGlufosinateGlutamine synthetasebiology.proteinButhionine sulfoximineBotanica Acta
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Oral glutathione increases hepatic glutathione and prevents acetaminophen toxicity

1990

Administration of oral glutathione (GSH) increases hepatic GSH levels in fasted rats, in mice treated with GSH depletors such as diethylmaleate and in mice treated with high doses of paracetamol. An increase in hepatic GSH levels after administration of oral GSH does not occur in animals treated with buthionine suphoximine, an inhibitor of GSH synthesis. Administration of oral GSH leads to an increase in the concentration of L-cysteine, a precursor of GSH, in portal blood plasma. Oral administration of L-methio-nine to fasted rats produced a significant decrease of hepatic ATP, but not in fed rats. Administration of N-acetyl-cysteine or GSH did not affect the hepatic ATP levels. The results…

chemistry.chemical_classificationchemistry.chemical_compoundchemistryOral administrationHepatic glutathionePortal bloodHigh dosesButhionine sulfoximineGlutathionePharmacologyACETAMINOPHEN TOXICITYAmino acid
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Regio- and Stereoselective Chloro Sulfoximidations of Terminal Aryl Alkynes Enabled by Copper Catalysis and Visible Light

2021

Advanced synthesis & catalysis 2552-2556 (2021). doi:10.1002/adsc.202100162

copper catalysisvinyl sulfoximine660StereochemistryAryldifunctionalizationchemistry.chemical_elementGeneral Chemistryalkyne additionCoppervisible-light photoredox catalysisCatalysischemistry.chemical_compoundTerminal (electronics)chemistryddc:660StereoselectivityVisible spectrum
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