Search results for "Peroxynitrite"

showing 10 items of 62 documents

New Laboratory Protocol to Determine the Oxidative Stress Profile of Human Nasal Epithelial Cells Using Flow Cytometry

2021

Several studies have shown the importance of oxidative stress (OS) in respiratory disease pathogenesis. It has been reported that the nasal epithelium may act as a surrogate for the bronchial epithelium in several respiratory diseases involving OS. However, the sample yields obtained from nasal biopsies are modest, limiting the number of parameters that can be determined. Flow cytometry has been widely used to evaluate cellular OS profiles. It has the advantage that analyses can be performed using a small amount of sample. Therefore, we aimed to set up a new method based on flow cytometry to assess the oxidative profile of human nasal epithelial cells which could be used in research on resp…

0301 basic medicinelcsh:MedicineOxidative phosphorylationrare respiratory diseasesmedicine.disease_causeArticleFlow cytometryNitric oxide03 medical and health scienceschemistry.chemical_compound0302 clinical medicinemedicineoxidative stressreactive oxygen specieschemistry.chemical_classificationReactive oxygen speciesmedicine.diagnostic_testSuperoxidebusiness.industryflow cytometrylcsh:RGeneral MedicineGlutathioneMolecular biologynasal epithelium030104 developmental biologychemistry030220 oncology & carcinogenesisbusinessPeroxynitriteOxidative stressJournal of Clinical Medicine
researchProduct

Endogenous peroxynitrite modulates PGHS-1–dependent thromboxane A2 formation and aggregation in human platelets

2008

Aggregation of activated platelets is considerably mediated by the autocrine action of thromboxane A2 (TxA2) which is formed in a prostaglandin endoperoxide H2 synthase-1 (PGHS-1 or COX-1)-dependent manner. The activity of PGHS-1 can be stimulated by peroxides, an effect termed "peroxide tone", that renders PGHS-1 the key regulatory enzyme in the formation of TxA2. Activated platelets release nitric oxide (*NO) and superoxide (O*2) but their interactions with the prostanoid pathway have been controversially discussed in platelet physiology and pathophysiology. The current study demonstrates that endogenously formed peroxynitrite at nanomolar concentrations, originating from the interaction …

1303 BiochemistryPlatelet AggregationSuperoxideProstanoid610 Medicine & healthBiochemistryNitric oxideCell biologychemistry.chemical_compoundPeroxynitrous acidThromboxane A2Thromboxane A22737 Physiology (medical)BiochemistrychemistryPhysiology (medical)Peroxynitrous Acid10209 Clinic for CardiologyCyclooxygenase 1Humanslipids (amino acids peptides and proteins)PlateletPlatelet activationPeroxynitrite
researchProduct

Cyclooxygenase 2-selective and nonselective nonsteroidal anti-inflammatory drugs induce oxidative stress by up-regulating vascular NADPH oxidases.

2008

Cyclooxygenase 2-selective inhibitors (coxibs) and nonselective nonsteroidal anti-inflammatory drugs (NSAIDs) are associated with an increase in cardiovascular events. The current study was designed to test the effect of coxibs and nonselective NSAIDs on vascular superoxide and nitric oxide (NO) production. mRNA expression of endothelial NO synthase (eNOS) and of the vascular NADPH oxidases was studied in spontaneously hypertensive rats (SHR) and in human endothelial cells. The expression of Nox1, Nox2, Nox4, and p22phox was increased markedly by the nonselective NSAIDs diclofenac or naproxen and moderately by rofecoxib or celecoxib in the aorta and heart of SHR. The up-regulation of NADPH …

AdultMalePharmacologychemistry.chemical_compoundEnosRats Inbred SHRAnimalsHumansPharmacologyNADPH oxidasebiologyCyclooxygenase 2 InhibitorsNitrotyrosineAnti-Inflammatory Agents Non-SteroidalNOX4NADPH Oxidasesbiology.organism_classificationRatsUp-RegulationOxidative StresschemistryCyclooxygenase 2NOX1Apocynincardiovascular systembiology.proteinMolecular MedicineFemaleP22phoxEndothelium VascularPeroxynitriteThe Journal of pharmacology and experimental therapeutics
researchProduct

Mitochondrial aldehyde dehydrogenase (ALDH-2)--maker of and marker for nitrate tolerance in response to nitroglycerin treatment.

2008

The hemodynamic and anti-ischemic effects of nitroglycerin (GTN) are rapidly blunted as a result of the development of nitrate tolerance. Long-term nitrate treatment also is associated with decreased vascular responsiveness caused by changes in intrinsic mechanisms of the tolerant vasculature itself. According to the oxidative stress concept, increased vascular superoxide and peroxynitrite production as well as an increased sensitivity to vasoconstrictors secondary to activation of protein kinase C as well as vascular NADPH oxidases contribute to the development of tolerance. Recent experimental work has defined new tolerance mechanisms, including inhibition of the enzyme that bioactivates …

Aldehyde dehydrogenasePharmacologyToxicologymedicine.disease_causeProstacyclin synthasechemistry.chemical_compoundNitroglycerinDrug tolerancemedicineHumansEndothelial dysfunctionchemistry.chemical_classificationReactive oxygen speciesNitratesbiologyAldehyde Dehydrogenase MitochondrialGeneral MedicineDrug ToleranceAldehyde Dehydrogenasemedicine.diseaseMitochondriaOxidative StresschemistryBiochemistrycardiovascular systembiology.proteinSoluble guanylyl cyclasePeroxynitriteOxidative stresscirculatory and respiratory physiologyChemico-biological interactions
researchProduct

Drugs modulating the biological effects of peroxynitrite and related nitrogen species.

2007

The term “reactive nitrogen species” includes nitrogen monoxide, commonly called nitric oxide, and some other remarkable chemical entities (peroxynitrite, nitrosoperoxycarbonate, etc.) formed mostly from nitrogen monoxide itself in biological environments. Regardless of the specific mechanisms implicated in their effects, however, it is clear that an integrated pharmacological approach to peroxynitrite and related species is only just beginning to take shape. The array of affected chemical and pathological processes is extremely broad. One of the most conspicuous mechanisms observed thus far has been the scavenging of the peroxynitrite anion by molecules endowed with antioxidant activity. T…

AntioxidantChemistrymedicine.medical_treatmentGeneral MedicineOxidative phosphorylationFree Radical ScavengersLung injuryNitric OxideReactive Nitrogen SpeciesIn vitroAntioxidantsNitric oxidechemistry.chemical_compoundBiochemistryIn vivoPeroxynitrous AcidmedicineAnimalsHumansTyrosineReactive Oxygen SpeciesReactive nitrogen speciesPeroxynitriteDNA DamageMedicinal research reviews
researchProduct

Free radical biology of the cardiovascular system

2012

Most cardiovascular diseases (CVDs), as well as age-related cardiovascular alterations, are accompanied by increases in oxidative stress, usually due to increased generation and/or decreased metabolism of ROS (reactive oxygen species; for example superoxide radicals) and RNS (reactive nitrogen species; for example peroxynitrite). The superoxide anion is generated by several enzymatic reactions, including a variety of NADPH oxidases and uncoupled eNOS (endothelial NO synthase). To relieve the burden caused by this generation of free radicals, which also occurs as part of normal physiological processes, such as mitochondrial respiratory chain activity, mammalian systems have developed endogen…

AntioxidantFree Radicalsmedicine.medical_treatmentmedicine.disease_causeCardiovascular SystemAntioxidantsRenin-Angiotensin Systemchemistry.chemical_compoundmedicineAnimalsHumansReactive nitrogen speciesFree-radical theory of agingchemistry.chemical_classificationClinical Trials as TopicReactive oxygen speciesChemistrySuperoxideFree Radical ScavengersGeneral MedicinePPAR gammaOxidative StressMitochondrial respiratory chainBiochemistryCardiovascular DiseasesPeroxynitriteOxidative stressClinical Science
researchProduct

Organic Nitrates and Nitrate Tolerance—State of the Art and Future Developments

2010

The hemodynamic and antiischemic effects of nitroglycerin (GTN) are lost upon chronic administration due to the rapid development of nitrate tolerance. The mechanism of this phenomenon has puzzled several generations of scientists, but recent findings have led to novel hypotheses. The formation of reactive oxygen and nitrogen species in the mitochondria and the subsequent inhibition of the nitrate-bioactivating enzyme mitochondrial aldehyde dehydrogenase (ALDH-2) appear to play a central role, at least for GTN, that is, bioactivated by ALDH-2. Importantly, these findings provide the opportunity to reconcile the two “traditional” hypotheses of nitrate tolerance, that is, the one postulating …

AntioxidantSuperoxideMechanism (biology)medicine.medical_treatmentMitochondrionmedicine.disease_causeHeme oxygenasechemistry.chemical_compoundchemistryNitrateBiochemistrymedicinePeroxynitriteOxidative stress
researchProduct

Efficacy of the antioxidant ebselen in experimental uveitis.

1999

Inflammation results in the production of free radicals. In a model of experimental uveitis upon subcutaneous injection of endotoxin to Lewis rats, i.e., endotoxin-induced experimental uveitis (EIU), we have evaluated the status of the antioxidant capacity of ocular tissues. EIU results in a decrease of glutathione (GSH) content and glutathione peroxidase (GPx) activity in whole eye homogenates 24-h after endotoxin administration. Furthermore, an increase in malondialdehyde (MDA) content was observed in these same samples, thus confirming the involvement of oxidative stress in the pathophysiology of the process. In view of the ability of the antioxidant ebselen as GPx enzyme mimic, we teste…

AzolesAntioxidantFree Radicalsmedicine.medical_treatmentDrug Evaluation PreclinicalPharmacologyIsoindolesmedicine.disease_causeBiochemistryAntioxidantsUveitischemistry.chemical_compoundSubcutaneous injectionPhysiology (medical)MalondialdehydeOrganoselenium CompoundsmedicineEscherichia coliAnimalschemistry.chemical_classificationGlutathione PeroxidaseEbselenGlutathione peroxidaseAnti-Inflammatory Agents Non-SteroidalGlutathioneMalondialdehydeGlutathioneeye diseasesRatsEndotoxinsBiochemistrychemistryRats Inbred Lewsense organsPeroxynitriteOxidative stressFree radical biologymedicine
researchProduct

Isoprenylhydroquinone glucoside: a new non-antioxidant inhibitor of peroxynitrite-mediated tyrosine nitration

2004

Abstract Three hydroquinone glucosides and four caffeoylquinic esters were examined for their effect on tyrosine nitration, as well as on the oxidation of dihydrorhodamine (DHR) 123 and cytochrome c 2+ induced by peroxynitrite. All these phenolics, which had previously been characterized as the active principles of the plant Phagnalon rupestre , were fairly active in preventing the oxidation of DHR 123, though inefficient in the cytochrome c test. While their antioxidant potency is associated with the presence of a caffeoyl moiety, not so an obvious chemical character was correlated to a greater activity against nitration of tyrosine. Here, the highest potency corresponded to 2-isoprenylhyd…

Cancer ResearchAntioxidantCytochromePhysiologymedicine.medical_treatmentClinical BiochemistryAsteraceaeBiochemistrychemistry.chemical_compoundGlucosidesGlucosidePeroxynitrous AcidNitrationmedicineTyrosineNitratesMolecular StructurebiologyHydroquinoneRhodaminesCytochrome cCytochromes cHydroquinoneschemistryBiochemistrybiology.proteinTyrosineOxidation-ReductionPeroxynitriteNitric Oxide
researchProduct

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
researchProduct