Search results for "Pentaerythritol tetranitrate"

showing 10 items of 13 documents

Number of nitrate groups determines reactivity and potency of organic nitrates: a proof of concept study in ALDH-2−/− mice

2007

Background and purpose: Mitochondrial aldehyde dehydrogenase (ALDH-2) has been shown to provide a pathway for bioactivation of organic nitrates and to be prone to desensitization in response to highly potent, but not to less potent, nitrates. We therefore sought to support the hypothesis that bioactivation by ALDH-2 critically depends on the number of nitrate groups within the nitrovasodilator. Experimental approach: Nitrates with one (PEMN), two (PEDN; GDN), three (PETriN; glyceryl trinitrate, GTN) and four (pentaerithrityl tetranitrate, PETN) nitrate groups were investigated. Vasodilatory potency was measured in isometric tension studies using isolated aortic segments of wild type (WT) an…

Pharmacologychemistry.chemical_classificationbiologyAldehyde dehydrogenasePentaerythritol tetranitrateDehydrogenaseNitric oxidechemistry.chemical_compoundEnzymeBiochemistrychemistrymedicinebiology.proteinStructure–activity relationshipPotencyNitrovasodilatormedicine.drugBritish Journal of Pharmacology
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Monitoring White Blood Cell Mitochondrial Aldehyde Dehydrogenase Activity: Implications for Nitrate Therapy in Humans

2009

Recent animal data suggest that reduced lipoic acid (LA) prevents oxidative inhibition of the nitrate bioactivating enzyme, the mitochondrial aldehyde dehydrogenase (ALDH-2), and that pentaerythritol tetranitrate (PETN) does not induce nitrate tolerance because of its intrinsic antioxidative properties, thereby preserving ALDH-2 activity. We sought to determine whether ALDH-2 activity in circulating white blood cells (WBCs) can be used to monitor nitrate tolerance and whether LA can prevent nitroglycerin tachyphylaxis in humans. Eight healthy male volunteers received, in randomized order, a single dose of glyceryl trinitrate (GTN; 0.8 mg), PETN (80 mg), or GTN plus LA (600 mg) orally. GTN (…

MaleMyocardial IschemiaAldehyde dehydrogenasePentaerythritol tetranitrateVasodilationTachyphylaxisPharmacologymedicine.disease_causeMitochondria Heartchemistry.chemical_compoundAnimal dataWhite blood cellLeukocytesmedicineAnimalsHumansRats WistarPharmacologyNitratesbiologyAldehyde DehydrogenaseRatsEnzyme ActivationVasodilationLipoic acidmedicine.anatomical_structurechemistrybiology.proteinMolecular MedicineOxidative stresscirculatory and respiratory physiologyJournal of Pharmacology and Experimental Therapeutics
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Mitochondrial oxidative stress and nitrate tolerance – comparison of nitroglycerin and pentaerithrityl tetranitrate in Mn-SOD+/- mice

2006

Abstract Background Chronic therapy with nitroglycerin (GTN) results in a rapid development of nitrate tolerance which is associated with an increased production of reactive oxygen species (ROS). According to recent studies, mitochondrial ROS formation and oxidative inactivation of the organic nitrate bioactivating enzyme mitochondrial aldehyde dehydrogenase (ALDH-2) play an important role for the development of nitrate and cross-tolerance. Methods Tolerance was induced by infusion of wild type (WT) and heterozygous manganese superoxide dismutase mice (Mn-SOD+/-) with ethanolic solution of GTN (12.5 μg/min/kg for 4 d). For comparison, the tolerance-free pentaerithrityl tetranitrate (PETN, 1…

Mitochondrial ROSMaleHeterozygotelcsh:Diseases of the circulatory (Cardiovascular) systemVasodilator AgentsAldehyde dehydrogenaseOxidative phosphorylationMitochondrionPharmacologyIn Vitro Techniquesmedicine.disease_causeDrug Administration ScheduleMitochondria HeartCell LineSuperoxide dismutaseMiceNitroglycerinmedicineAnimalsHumansPentaerythritol TetranitrateRNA MessengerRats WistarHeart metabolismAortachemistry.chemical_classificationReactive oxygen speciesbiologybusiness.industrySuperoxide DismutaseAldehyde Dehydrogenase MitochondrialBilirubinDrug ToleranceFree Radical ScavengersAldehyde DehydrogenaseAcetylcholineRatsVasodilationOxidative Stresschemistrylcsh:RC666-701Anesthesiabiology.proteinCardiology and Cardiovascular MedicinebusinessReactive Oxygen SpeciesOxidative stressHeme Oxygenase-1Research ArticleBMC Cardiovascular Disorders
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Non-Hemodynamic Effects of Organic Nitrates and the Distinctive Characteristics of Pentaerithrityl Tetranitrate

2009

Organic nitrates are among the oldest and yet most commonly employed drugs in the long-term therapy of coronary artery disease and congestive heart failure. While they have long been used in clinical practice, our understanding of their mechanism of action and side effects remains incomplete. For instance, recent findings provide evidence of previously unanticipated, non-hemodynamic properties that include potentially beneficial mechanisms (such as the induction of a protective phenotype that mimics ischemic preconditioning), but also toxic effects (such as endothelial and autonomic dysfunction, rebound angina, tolerance). To date, the most commonly employed organic nitrates are isosorbide …

medicine.medical_specialtyHeart DiseasesVasodilator AgentsIsosorbide DinitratePharmacologyDrug Administration ScheduleAnginaCoronary artery diseaseNitroglycerinmedicineIsosorbide mononitrateAnimalsHumansPentaerythritol TetranitratePharmacology (medical)NitroglycerinNitratesbusiness.industryDrug ToleranceGeneral Medicinemedicine.diseaseSurgeryEastern europeanOxidative StressHeart failureIschemic preconditioningIsosorbide dinitrateReactive Oxygen SpeciesCardiology and Cardiovascular Medicinebusinessmedicine.drugAmerican Journal of Cardiovascular Drugs
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Pentaerithrityl tetranitrate improves angiotensin II induced vascular dysfunction via induction of heme oxygenase-1

2010

The organic nitrate pentaerythritol tetranitrate is devoid of nitrate tolerance, which has been attributed to the induction of the antioxidant enzyme heme oxygenase (HO)-1. With the present study, we tested whether chronic treatment with pentaerythritol tetranitrate can improve angiotensin II–induced vascular oxidative stress and dysfunction. In contrast to isosorbide-5 mononitrate (75 mg/kg per day for 7 days), treatment with pentaerythritol tetranitrate (15 mg/kg per day for 7 days) improved the impaired endothelial and smooth muscle function and normalized vascular and cardiac reactive oxygen species production (mitochondria, NADPH oxidase activity, and uncoupled endothelial NO synthase)…

medicine.medical_specialtyAntioxidantNitric Oxide Synthase Type IIImedicine.medical_treatmentVasodilator AgentsBlotting WesternFluorescent Antibody TechniquePentaerythritol tetranitratemedicine.disease_causePentaerythritolArticlechemistry.chemical_compoundInternal medicineRats Inbred SHRInternal MedicinemedicineAnimalsPentaerythritol TetranitrateEndothelial dysfunctionchemistry.chemical_classificationReactive oxygen speciesAnalysis of VarianceAngiotensin IImedicine.diseaseAngiotensin IIMitochondriaRatsHeme oxygenaseOxidative StressEndocrinologychemistryHeminEndothelium VascularReactive Oxygen SpeciesOxidative stressHeme Oxygenase-1
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Effects of nitroglycerin or pentaerithrityl tetranitrate treatment on the gene expression in rat hearts: evidence for cardiotoxic and cardioprotectiv…

2009

Nitroglycerin (NTG) and pentaerithrityl tetranitrate (PETN) are organic nitrates used in the treatment of angina pectoris, myocardial infarction, and congestive heart failure. Recent data show marked differences in the effects of NTG and PETN on the generation of reactive oxygen species. These differences are attributed to different effects of NTG and PETN on the expression of antioxidative proteins like the heme oxygenase-I. To analyze the expressional effects of NTG and PETN in a more comprehensive manner we performed whole genome expression profiling experiments using cardiac total RNA from NTG- or PETN-treated rats and DNA microarrays containing oligonucleotides representing 27,044 rat…

Malemedicine.medical_specialtyPentaerithrityl tetranitrateCardiotonic Agentsgenetic structuresPhysiologyBiologyCardiotoxinsAnginaNitroglycerinInternal medicineGene expressionGeneticsmedicineAnimalsPentaerythritol TetranitrateMyocardial infarctionRats WistarNitroglycerinDNA PrimersOligonucleotide Array Sequence AnalysisReverse Transcriptase Polymerase Chain ReactionGene Expression ProfilingMyocardiummedicine.diseaseMolecular biologyeye diseasesOrganic nitratesRatsGene Expression RegulationHeart failureCardiologysense organsmedicine.drugPhysiological genomics
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Vascular Dysfunction in Experimental Diabetes Is Improved by Pentaerithrityl Tetranitrate but Not Isosorbide-5-Mononitrate Therapy

2011

OBJECTIVE Diabetes is associated with vascular oxidative stress, activation of NADPH oxidase, and uncoupling of nitric oxide (NO) synthase (endothelial NO synthase [eNOS]). Pentaerithrityl tetranitrate (PETN) is an organic nitrate with potent antioxidant properties via induction of heme oxygenase-1 (HO-1). We tested whether treatment with PETN improves vascular dysfunction in the setting of experimental diabetes. RESEARCH DESIGN AND METHODS After induction of hyperglycemia by streptozotocin (STZ) injection (60 mg/kg i.v.), PETN (15 mg/kg/day p.o.) or isosorbide-5-mononitrate (ISMN; 75 mg/kg/day p.o.) was fed to Wistar rats for 7 weeks. Oxidative stress was assessed by optical methods and o…

Blood GlucoseMalemedicine.medical_specialtyXanthine OxidaseEndocrinology Diabetes and MetabolismVasodilator AgentsOxidative phosphorylationIsosorbide Dinitratemedicine.disease_causeWeight GainNitric oxideDiabetes Mellitus Experimentalchemistry.chemical_compoundEnosInternal medicineInternal MedicinemedicineAnimalsPentaerythritol TetranitrateGene SilencingEndothelial dysfunctionRats WistarXanthine oxidaseGTP CyclohydrolaseNADPH oxidasebiologyNADPH Oxidasesmedicine.diseasebiology.organism_classificationStreptozotocinPharmacology and TherapeuticsRatsOxidative StressEndocrinologychemistryVasoconstrictionbiology.proteinEndothelium VascularReactive Oxygen SpeciesOxidative stressHeme Oxygenase-1medicine.drugDiabetes
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Maternal Treatment of Spontaneously Hypertensive Rats With Pentaerythritol Tetranitrate Reduces Blood Pressure in Female Offspring

2014

Pentaerythritol tetranitrate is devoid of nitrate tolerance and shows no reproductive or developmental toxicity in animal studies. Recently, pentaerythritol tetranitrate has been demonstrated to reduce the risk of intrauterine growth restriction and the risk of preterm birth in women with abnormal placental perfusion. This study was conducted to test the perinatal programming effect of pentaerythritol tetranitrate in spontaneously hypertensive rats, a rat model of genetic hypertension. Parental spontaneously hypertensive rats were treated with pentaerythritol tetranitrate (50 mg/kg per day) during pregnancy and lactation periods; the offspring received standard chow without pentaerythritol …

Malemedicine.medical_specialtyGPX1Nitric Oxide Synthase Type IIIOffspringVasodilator AgentsDevelopmental toxicityBlood PressureVasodilationPentaerythritol tetranitratePentaerythritolchemistry.chemical_compoundPregnancyRats Inbred SHRInternal medicineInternal MedicinemedicineAnimalsPentaerythritol Tetranitratebusiness.industryGene Expression Regulation DevelopmentalDNARatsVasodilationHeme oxygenaseEndocrinologyBlood pressureAnimals NewbornchemistryMaternal ExposureHypertensionPregnancy AnimalFemaleEndothelium VascularbusinessHypertension
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Vascular biotransformation of organic nitrates is independent of cytochrome P450 monooxygenases

2020

Background and Purpose Organic nitrates such as nitroglycerin (NTG) or pentaerythritol tetranitrate (PETN) have been used for over a century in the treatment of angina or ischaemic heart disease. These compounds are prodrugs which release their nitrovasodilators upon enzymic bioactivation by aldehyde dehydrogenase (ALDH2) or cytochromes P450 (CYP). Whereas ALDH2 is known to directly activate organic nitrates in vessels, the contribution of vascular CYPs is unknown and was studied here. Experimental Approach As all CYPs depend on cytochrome P450 reductase (POR) as electron donor, we generated a smooth muscle cell-specific, inducible knockout mouse of POR (smcPOR−/−) to investigate the contri…

0301 basic medicineAldehyde dehydrogenasePharmacologyMiceNitroglycerin03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCytochrome P-450 Enzyme SystemAnimalsPentaerythritol Tetranitrateddc:610NitriteBiotransformationVascular tissuePharmacologyNitratesbiologyChemistryCytochrome P450Cytochrome P450 reductaseMetabolismMonooxygenase030104 developmental biologybiology.proteinMicrosome030217 neurology & neurosurgeryBritish Journal of Pharmacology
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Organic-Inorganic Hybrid Mesoporous Materials as Regenerable Sensing Systems for the Recognition of Nitroaromatic Explosives

2013

[EN] Fluorescent organic-inorganic mesoporous hybrid materials have been prepared and characterised, and their behaviour against nitroaromatic explosives have been tested. MCM-41 silica was used as an inorganic scaffold and pyrene (P derivative containing trialkoxysilane moieties), dansyl and fluorescein (D and F derivatives also containing trialkoxysilane groups, respectively) fluorophores have been anchored on hybrid materials by a co-condensation method to obtain a homogenous distribution of dyes into the pores of the support. Six sensing materials have been prepared, of which SP, SD, SF were hydrophilic and SPh, SDh, SFh were hydrophobic. Template-free hydrophilic materials (SP, SD, SF)…

INGENIERIA DE LA CONSTRUCCIONFluorogenic recognitionQUIMICA INORGANICAPentaerythritol tetranitratePicric acidGeneral ChemistryFluorophoresTetrylFluorescenceNitroaromatic explosivesMesoporous materialsNitrobenzenechemistry.chemical_compoundQUIMICA ORGANICAchemistryQUIMICA ANALITICAOrganic chemistryPyreneHybrid materialsMesoporous materialHybrid materialNuclear chemistry
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