Search results for "Nitric Oxide Donor"

showing 10 items of 39 documents

Microvesicle Formation Induced by Oxidative Stress in Human Erythrocytes

2020

Extracellular vesicles (EVs) released by different cell types play an important role in many physiological and pathophysiological processes. In physiological conditions, red blood cell (RBC)-derived EVs compose 4&ndash

0301 basic medicinePhysiologyClinical BiochemistryCell<i>tert-</i>Bytyl hydroperoxide t-BOOHmedicine.disease_causeBiochemistryband 3ArticleFlow cytometry03 medical and health sciences0302 clinical medicinecalcium ionophore A23187medicineoxidative stressViability assay<i>tert</i>-Bytyl hydroperoxide t-BOOHnitric oxide donorMolecular BiologyBand 3Hemichromemicroparticlesbiologymedicine.diagnostic_testChemistryMicrovesiclelcsh:RM1-950Cell Biologytert-Bytyl hydroperoxide t-BOOHvesiculationRed blood cell030104 developmental biologymedicine.anatomical_structurelcsh:Therapeutics. Pharmacology030220 oncology & carcinogenesisphysiologybiology.proteinBiophysicserythrocytesOxidative stressAntioxidants
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Inorganic nitrite and nitrate in cardiovascular therapy: A better alternative to organic nitrates as nitric oxide donors?

2017

In 1867 the organic nitrite, amyl nitrite, was introduced as a therapeutic agent in the treatment of angina pectoris and was later substituted by the organic nitrate nitroglycerin (NTG). Despite having a highly potent vasodilator capacity in veins>coronary arteries>arterioles, the vasodilator effects NTG are rapidly attenuated by the development of nitrate tolerance. We and others established that NTG treatment stimulates the production of reactive oxygen species such as superoxide and peroxynitrite with subsequent marked attenuation of the NTG vasodilator potency. The nitrite anion (NO2-) has more recently been characterized to possess novel pharmacotherapeutic actions such as modulation o…

0301 basic medicinePhysiologyVasodilator AgentsVasodilation030204 cardiovascular system & hematologyPharmacologyNitric OxideCardiovascular SystemNitric oxideAngina03 medical and health scienceschemistry.chemical_compound0302 clinical medicineNitratemedicineAnimalsHumansNitric Oxide DonorsNitriteNitritesPharmacologyNitratesSuperoxidemedicine.diseaseVasodilation030104 developmental biologychemistryBiochemistryCardiovascular DiseasesMolecular MedicineAmyl nitritePeroxynitriteSignal Transductionmedicine.drugVascular Pharmacology
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Protein kinase inhibitor-based cancer therapies: Considering the potential of nitric oxide (NO) to improve cancer treatment.

2020

The deregulation of a wide variety of protein kinases is associated with cancer cell initiation and tumor progression. Owing to their indispensable function in signaling pathways driving malignant cell features, protein kinases constitute major therapeutic targets in cancer. Over the past two decades, intense efforts in drug development have been dedicated to this field. The development of protein kinase inhibitors (PKIs) have been a real breakthrough in targeted cancer therapy. Despite obvious successes across patients with different types of cancer, the development of PKI resistance still prevails. Combination therapies are part of a comprehensive approach to address the problem of drug r…

0301 basic medicinemedicine.drug_class[SDV]Life Sciences [q-bio]Nitric OxideBiochemistry03 medical and health sciences0302 clinical medicineNeoplasmsAntineoplastic Combined Chemotherapy ProtocolsMedicineHumansNitric Oxide DonorsMolecular Targeted TherapyProtein kinase AProtein Kinase InhibitorsPharmacologybusiness.industryKinaseCancerProtein kinase inhibitormedicine.disease3. Good health030104 developmental biologyDrug developmentTumor progressionDrug Resistance Neoplasm030220 oncology & carcinogenesisCancer cellCancer researchSignal transductionbusinessProtein KinasesSignal TransductionBiochemical pharmacology
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NO donors. Part 16: investigations on structure-activity relationships of organic mononitrates reveal 2-nitrooxyethylammoniumnitrate as a high potent…

2007

The vasoactive properties of 14 organic mononitrates were investigated in vitro using PGF(2alpha)-precontracted porcine pulmonary arteries. A surprisingly wide range of vasorelaxant potencies was observed (pD(2): 3.36-7.50). Activities showed to be highly sensitive to the molecular structure and the substituents at the molecular carrier of the nitrate group. A correlation between lipophilicity and vasorelaxant potency could not be recognized. 2-Nitrooxyethylammoniumnitrate (1) was found to be slightly superior to the high potency trinitrate GTN.

2-nitrooxyethylammoniumnitrateNitratesChemistryStereochemistryVasodilator AgentsOrganic ChemistryClinical BiochemistryPharmaceutical ScienceVasodilationBiochemistryChemical synthesisIn vitroNo donorsQuaternary Ammonium CompoundsStructure-Activity RelationshipDrug DiscoveryLipophilicityMolecular MedicinePotencyStructure–activity relationshipNitric Oxide DonorsMolecular BiologyBioorganicmedicinal chemistry letters
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Relaxation and cyclic GMP levels in response to sildenafil in human pulmonary arteries from donors.

2005

We measured cyclic GMP formation and relaxation response to sildenafil given either alone or in combination with sodium nitroprusside (SNP) in pulmonary arteries obtained from 13 multi-organ donors. Sildenafil (10(-9)-10(-4) M) caused concentration-dependent relaxations and amplified the relaxation induced by SNP. Relaxation was unaffected by endothelium removal or by pre-treatment with the inhibitor of nitric oxide synthase L-NMMA (10(-4) M). SNP (10(-7) M) caused elevation of cyclic GMP levels that was potentiated by sildenafil (10(-6) M). Thus, the enhancement of SNP-induced relaxation by sildenafil is mainly due to an increase in cyclic GMP accumulation.

AdultMaleNitroprussideEndotheliumSildenafilPhosphodiesterase InhibitorsVasodilator AgentsVasodilationPharmacologyIn Vitro TechniquesPulmonary ArteryPiperazinesSildenafil CitrateNitric oxidechemistry.chemical_compound3'5'-Cyclic-GMP PhosphodiesterasesmedicineHumansNitric Oxide DonorsSulfonesCyclic GMPPharmacologybiologyChemistryDrug SynergismMiddle Agedrespiratory tract diseasesNitric oxide synthaseVasodilationmedicine.anatomical_structureBiochemistryEnzyme inhibitorPurinesCirculatory systemcardiovascular systembiology.proteinFemaleSodium nitroprussidemedicine.drugEuropean journal of pharmacology
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Influence of St John's wort on catecholamine turnover and cardiovascular regulation in humans

2004

BACKGROUND: St John's wort (Hypericum perforatum) is a popular over-the-counter antidepressant. Its antidepressive effect has been attributed in part to inhibition of monoamine transporters and monoamine oxidase, on the basis of in vitro studies. METHODS: In a double-blind, randomized, placebo-controlled, crossover study, 16 healthy subjects (11 men and 5 women; mean age, 31 +/- 5 years) ingested either St John's wort (300 mg three times daily) or placebo for 7 days. Imipramine treatment (50 mg three times daily) in 7 subjects served as a positive control. After treatment, physiologic and biochemical tests included cardiovascular reflex testing, graded head-up tilt testing, and plasma catec…

AdultMaleNitroprussideImipraminemedicine.medical_specialtyPosturePharmacologyAutonomic Nervous SystemPlaceboMethoxyhydroxyphenylglycolNorepinephrine uptakeCardiovascular Physiological PhenomenaNorepinephrineCatecholaminesDouble-Blind MethodInternal medicineHeart rateSupine PositionmedicineHumansNitric Oxide DonorsPharmacology (medical)PeryleneAnthracenesPharmacologyCross-Over StudiesAdrenergic Uptake Inhibitorsbusiness.industryHemodynamicsHypericum perforatumEndocrinologyBlood pressureMonoamine neurotransmitterCatecholamine34-Dihydroxyphenylacetic AcidAntidepressantFemalebusinessHypericummedicine.drugClinical Pharmacology &amp; Therapeutics
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Topical treatment with a two-component gel releasing nitric oxide cures C57BL/6 mice from cutaneous leishmaniasis caused by Leishmania major.

2016

C57BL/6medicine.medical_specialty030231 tropical medicineDrug Evaluation PreclinicalLeishmaniasis CutaneousTopical treatmentDermatologyPharmacologyAdministration CutaneousBiochemistryNitric oxide030207 dermatology & venereal diseases03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCutaneous leishmaniasismedicineAnimalsLeishmania majorNitric Oxide DonorsMolecular BiologyLeishmania majorbiologybusiness.industryLeishmaniasisbiology.organism_classificationmedicine.diseaseDermatologyMice Inbred C57BLchemistrybusinessGelsExperimental dermatology
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Influence of nitric oxide on the generation and repair of oxidative DNA damage in mammalian cells

2002

We have analysed the effects of endogenously and exogenously generated nitric oxide (NO) in cultured mammalian fibroblasts on: (i) the steady-state (background) levels of oxidative DNA base modifications; (ii) the susceptibility of the cells to the induction of additional DNA damage and micronuclei by H(2)O(2); and (iii) the repair kinetics of various types of DNA modifications. Steady-state levels of oxidative DNA base modifications, measured by means of an alkaline elution assay in combination with the repair endonuclease Fpg protein, were similar in NO-overproducing B6 mouse fibroblasts stably transfected with an inducible NO synthase (iNOS) and in control cells. Increased oxidative dama…

Cancer ResearchDNA RepairDNA damageDNA repairNitric Oxide Synthase Type IIMutagenAlkenesBiologyNitric OxideTransfectionmedicine.disease_causeMicechemistry.chemical_compoundmedicineAnimalsNitric Oxide DonorsDose-Response Relationship DrugHydrogen PeroxideGeneral MedicineTransfectionFibroblastsCell biologyBiochemistrychemistryNitric Oxide SynthaseDNAGenotoxicityPeroxynitriteOxidative stressDNA DamageCarcinogenesis
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The p53 Tumor Suppressor Network Is a Key Responder to Microenvironmental Components of Chronic Inflammatory Stress

2005

Abstract Activation of the p53 network plays a central role in the inflammatory stress response associated with ulcerative colitis and may modulate cancer risk in patients afflicted with this chronic disease. Here, we describe the gene expression profiles associated with four microenvironmental components of the inflammatory response (NO•, H2O2, DNA replication arrest, and hypoxia) that result in p53 stabilization and activation. Isogenic HCT116 and HCT116 TP53−/− colon cancer cells were exposed to the NO• donor Sper/NO, H2O2, hypoxia, or hydroxyurea, and their mRNA was analyzed using oligonucleotide microarrays. Overall, 1,396 genes changed in a p53-dependent manner (P &amp;lt; 0.001), wit…

Cancer ResearchTumor suppressor geneColorectal cancerInflammationBiologymedicine.disease_causeArticleGene expressionmedicineHumansNitric Oxide DonorsInflammationReverse Transcriptase Polymerase Chain ReactionGene Expression ProfilingCell CycleHydrogen PeroxideCell cycleHypoxia (medical)Flow CytometryHCT116 Cellsmedicine.diseaseCell HypoxiaGene expression profilingOxidative StressOncologyImmunologyNitrogen OxidesSpermineTumor Suppressor Protein p53medicine.symptomOxidative stressCancer Research
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S-nitrosylation of the death receptor fas promotes fas ligand-mediated apoptosis in cancer cells.

2011

International audience; BACKGROUND & AIMS: Fas belongs to the family of tumor necrosis factor receptors which induce apoptosis. Many cancer cells express Fas but do not undergo Fas-mediated apoptosis. Nitric oxide reverses this resistance by increasing levels of Fas at the plasma membrane. We studied the mechanisms by which NO affects Fas function. METHODS: Colon and mammary cancer cell lines were incubated with the NO donor glyceryl trinitrate or lipid A; S-nitrosylation of Fas was monitored using the biotin switch assay. Fas constructs that contained mutations at cysteine residues that prevent S-nitrosylation were used to investigate the involvement of S-nitrosylation in Fas-mediated cell…

MESH: NitroglycerinMESH: Signal TransductionTime FactorsMESH: Membrane MicrodomainsApoptosisMESH : Fas Ligand ProteinCytoplasmic partMESH: Lipid AFas ligandMiceNitroglycerin0302 clinical medicineMESH : Protein TransportMESH : FemaleMESH: AnimalsFADDLipid raft0303 health sciencesTumorbiologyColon CancerMESH : Lipid AMESH : BiotinylationGastroenterologyFas receptorMESH: Antigens CD95Protein TransportLipid AMESH : Colonic NeoplasmsMESH : Nitric OxideMESH : Nitric Oxide Donors030220 oncology & carcinogenesisColonic NeoplasmsDeath-inducing signaling complexFemale[ SDV.MHEP.HEG ] Life Sciences [q-bio]/Human health and pathology/Hépatology and GastroenterologyMESH : MutationMESH : TransfectionSignal TransductionMESH : Time FactorsMESH: Protein TransportFas Ligand ProteinMESH : Mammary Neoplasms ExperimentalMESH: MutationMESH: Cell Line TumorMESH: Mammary Neoplasms ExperimentalNitric OxideTransfectionCaspase 803 medical and health sciencesMembrane MicrodomainsCell Line TumorMESH : MiceAnimalsHumansBiotinylationNitric Oxide DonorsMESH: BiotinylationCysteinefas ReceptorMESH: MiceMESH : Protein Processing Post-Translational030304 developmental biologyMESH : Signal TransductionMESH: Colonic NeoplasmsMESH : CysteineMESH: HumansHepatologyMESH : Cell Line TumorMESH: ApoptosisMESH: TransfectionMESH : HumansMESH: Time FactorsMammary Neoplasms Experimental[SDV.MHEP.HEG]Life Sciences [q-bio]/Human health and pathology/Hépatology and GastroenterologyMESH: CysteineMESH: Nitric Oxide DonorsMolecular biologySignalingMESH: Fas Ligand ProteinMESH : NitroglycerinApoptosisLocalizationMESH: Nitric OxideMESH: Protein Processing Post-TranslationalMutationbiology.proteinMESH : Membrane MicrodomainsMESH : AnimalsMESH : Antigens CD95Protein Processing Post-TranslationalMESH: FemaleMESH : Apoptosis
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