Search results for "Methylhydrazines"

showing 10 items of 27 documents

Crystal structure of human gamma-butyrobetaine hydroxylase.

2010

Gamma-butyrobetaine hydroxylase (GBBH) is a 2-ketoglutarate-dependent dioxygenase that catalyzes the biosynthesis of l-carnitine by hydroxylation of gamma-butyrobetaine (GBB). l-carnitine is required for the transport of long-chain fatty acids into mitochondria for generating metabolic energy. The only known synthetic inhibitor of GBBH is mildronate (3-(2,2,2-trimethylhydrazinium) propionate dihydrate), which is a non-hydroxylatable analog of GBB. To aid in the discovery of novel GBBH inhibitors by rational drug design, we have solved the three-dimensional structure of recombinant human GBBH at 2.0A resolution. The GBBH monomer consists of a catalytic double-stranded beta-helix (DBSH) domai…

EGF-like domainStereochemistrygamma-Butyrobetaine DioxygenaseBiophysicsDrug designBiochemistryHydroxylationchemistry.chemical_compoundDioxygenaseCatalytic DomainHumansEnzyme InhibitorsMolecular BiologyHistidinechemistry.chemical_classificationCrystallographybiologyActive siteCell BiologyRecombinant ProteinsZincEnzymeBiochemistrychemistryCyclic nucleotide-binding domainDrug Designbiology.proteinProtein MultimerizationMethylhydrazinesBiochemical and biophysical research communications
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Tumor dedifferentiation: an important step in tumor invasion.

1985

Tumor invasion in vivo was studied by light and electron microscopy as well as by immunofluorescence microscopy. Special regard was paid to the grade of tumor differentiation. Dimethylhydrazine-induced murine colonic carcinomas comprising a differentiated and an undifferentiated tumor type with low and high invasiveness respectively, were used. At the invasion front of both tumor types a striking dissociation of the organized tumor cell complexes into isolated tumor cells was found together with a loss of most of the cytological features of differentiation. It is supposed that this process mobilizes the tumor cells from the main tumor bulk enabling them to invade the host tissue by active l…

MaleCancer ResearchCD30BiologyAdenocarcinomaMicrofilamentCell junctionIn vivoSurgical oncologyCell MovementmedicineAnimalsNeoplasm InvasivenessCytoskeletonBasement membraneDimethylhydrazinesRats Inbred StrainsGeneral MedicineDesmosomesCell biology12-DimethylhydrazineRatsIsolated Tumor CellsMicroscopy Electronmedicine.anatomical_structureCell Transformation NeoplasticOncologyMicroscopy FluorescenceCytoplasmColonic NeoplasmsImmunologic TechniquesMicroscopy Electron ScanningClinicalexperimental metastasis
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Neuroprotective properties of mildronate, a mitochondria-targeted small molecule.

2010

Mildronate, a representative of the aza-butyrobetaine class of drugs with proven cardioprotective efficacy, was recently found to prevent dysfunction of complex I in rat liver mitochondria. The present study demonstrates that mildronate also acts as a neuroprotective agent. In a mouse model of azidothymidine (anti-HIV drug) neurotoxicity, mildronate reduced the azidothymidine-induced alterations in mouse brain tissue: it normalized the increase in caspase-3, cellular apoptosis susceptibility protein (CAS) and iNOS expression assessed by quantitative and semi-quantitative analysis. Mildronate also normalized the changes in cytochrome c oxidase (COX) expression, reduced the expression of glia…

MaleCell signalingAnti-HIV AgentsNitric Oxide Synthase Type IIMice Inbred StrainsMitochondrionPharmacologyNeuroprotectionElectron Transport Complex IVMiceCellular Apoptosis Susceptibility ProteinGlial Fibrillary Acidic ProteinmedicineAnimalsLymphocytesNeuroinflammationGlial fibrillary acidic proteinbiologyCaspase 3General NeuroscienceNeurodegenerationNeurotoxicityBrainmedicine.diseaseDisease Models AnimalNeuroprotective AgentsBiochemistrybiology.proteinNeurotoxicity SyndromesZidovudineCellular apoptosis susceptibility proteinMethylhydrazinesNeuroscience letters
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Mildronate enhances learning/memory and changes hippocampal protein expression in trained rats.

2013

Previously we demonstrated that mildronate [3-(2,2,2-trimethylhydrazinium) propionate dihydrate], a representative of the aza-butyrobetaine class of compounds, protects mitochondrial metabolism under conditions such as ischemia. Mildronate also acted as a neuroprotective agent in an azidothymidine-induced mouse model of neurotoxicity, as well as in a rat model of Parkinson's disease. These observations suggest that mildronate may stimulate processes involved in cell survival and change expression of proteins involved in neurogenic processes. The present study investigated the influence of mildronate on learning and memory in the passive avoidance response (PAR) test and the active condition…

MaleClinical BiochemistryGlutamate decarboxylaseBlotting WesternNerve Tissue ProteinsPharmacologyHippocampal formationToxicologyBiochemistryNeuroprotectionHippocampusBehavioral Neurosciencechemistry.chemical_compoundMemorymedicineAnimalsLearningRats WistarBiological PsychiatryPharmacologyChemistryGlutamate DecarboxylaseNeurotoxicitymedicine.diseaseAcetylcholinesteraseNeural stem cellRatsBromodeoxyuridineAcetylcholinesteraseCholinergicNeuroscienceBromodeoxyuridineMethylhydrazinesPharmacology, biochemistry, and behavior
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Fatty acid oxidation and related gene expression in heart depleted of carnitine by mildronate treatment in the rat.

2004

The metabolic and genic effects induced by a 20-fold lowering of carnitine content in the heart were studied in mildronate-treated rats. In the perfused heart, the proportion of palmitate taken up then oxidized was 5-10% lower, while the triacylglycerol (TAG) formation was 100% greater than in controls. The treatment was shown to increase the maximal capacity of heart homogenates to oxidize palmitate, the mRNA level of carnitine palmitoyltransferase I (CPT-I) isoforms, the specific activity of CPT-I in subsarcolemmal mitochondria and the total carnitine content of isolated mitochondria. Concomitantly, the increased mRNA expression of lipoprotein lipase, fatty acid translocase and enzymes of…

MaleClinical BiochemistryPalmitic AcidBlood lipidsBiologyMitochondrionIn Vitro TechniquesMitochondria HeartOxygen ConsumptionCarnitinemedicineAnimalsCarnitineRNA MessengerRats WistarMolecular BiologyBeta oxidationHeart metabolismTriglycerideschemistry.chemical_classificationLipoprotein lipaseCarnitine O-PalmitoyltransferaseEsterificationMyocardiumFatty AcidsFatty acidBiological TransportCardiovascular AgentsCell BiologyGeneral MedicineRatsPerfusionLipoprotein LipasechemistryBiochemistryGene Expression RegulationCarnitine palmitoyltransferase IOxidation-Reductionmedicine.drugMethylhydrazinesMolecular and cellular biochemistry
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Search for Stroke-Protecting Agents in Endothelin-1-Induced Ischemic Stroke Model in Rats

2012

Background and Objective. Ischemic stroke may initiate a reperfusion injury leading to brain damage cascades where inflammatory mechanisms play a major role. Therefore, the necessity for the novel stroke-protecting agents whose the mechanism of action is focused on their anti-inflammatory potency is still on the agenda for drug designers. Our previous studies demonstrated that cerebrocrast (a 1,4-dihydropyridine derivative) and mildronate (a representative of the aza-butyrobetaine class) possessed considerable anti-inflammatory and neuroprotective properties in different in vitro and in vivo model systems. The present study investigated their stroke-protecting ability in an endothelin-1 (ET…

MaleDihydropyridinesDrug Evaluation PreclinicalInfarctionBrain damagePharmacologyNeuroprotectionIn vivomedicineAnimalsRats WistarStrokeEndothelin-1business.industryGeneral Medicinemedicine.diseaseRatsStrokeDisease Models AnimalNeuroprotective AgentsMechanism of actionendothelin-1; ischemic stroke; neurodegeneration; protection; cerebrocrast; mildronateDrug Therapy Combinationmedicine.symptombusinessReperfusion injuryEx vivoMethylhydrazinesMedicina; Volume 48; Issue 10; Pages: 77
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Endothelium- and nitric oxide-dependent vasorelaxing activities of gamma-butyrobetaine esters: possible link to the antiischemic activities of mildro…

2004

Mildronate [3-(2,2,2-trimethylhydrazine) propionate (THP)] is an antiischemic drug acting mainly via inhibition of fatty acid beta-oxidation. Some effects of the drug cannot be explained by the latter mechanism. We tested the eventual nitric oxide (NO) dependence of the mildronate action. Mildronate, gamma-butyrobetaine (GBB) and GBB methyl ester induced transient increases in nitric oxide (NO) concentrations in rat blood and myocardium. In vitro, these compounds neither modified the activities of purified neuronal and endothelial recombinant nitric oxide synthases (NOSs) nor were able to interact with their active site. GBB induced vasodilatation at high concentrations only (EC50 = 5 x 10(…

MaleEndotheliumNitric Oxide Synthase Type IIIStereochemistryDrug Evaluation PreclinicalMyocardial IschemiaVasodilationAorta ThoracicNitric OxideMuscle Smooth VascularNitric oxidechemistry.chemical_compoundCarnitinemedicineAnimalsEndotheliumRats WistarPharmacologychemistry.chemical_classificationbiologyElectron Spin Resonance SpectroscopyActive siteFatty acidDrug SynergismRatsNitric oxide synthaseBetaineVasodilationDrug Combinationsmedicine.anatomical_structureEnzymeNG-Nitroarginine Methyl Esterchemistrybiology.proteinPropionateNitric Oxide SynthaseDitiocarbMethylhydrazinesEuropean journal of pharmacology
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Mitochondria as the target for mildronate's protective effects in azidothymidine (AZT)-induced toxicity of isolated rat liver mitochondria

2008

Previously mildronate, an aza-butyrobetaine derivative, was shown to be a cytoprotective drug, through its mechanism of action of inhibition of carnitine palmitoyltransferase-1, thus protecting mitochondria from long-chain fatty acid accumulation and subsequent damage. Recently in an azidothymidine (AZT)-induced cardiotoxicity model in vivo (in mice), we have found mildronate's ability of protecting heart tissue from nuclear factor kappaB abnormal expression. Preliminary data also demonstrate cerebro- and hepatoprotecting properties of mildronate in AZT-toxicity models. We suggest that mildronate may target its action predominantly to mitochondria. The present study in isolated rat liver mi…

MaleMitochondrial DiseasesBioenergeticsAntimetabolitesCell RespirationClinical BiochemistryMitochondria LiverIn Vitro TechniquesMitochondrionPharmacologyBiologymedicine.disease_causeBiochemistryPermeabilityRespiratory electron transport chainDrug Delivery SystemsmedicineAnimalsCarnitineRats WistarCardiotoxicityCell BiologyGeneral MedicineRatsDisease Models AnimalMechanism of actionBiochemistryToxicitymedicine.symptomEnergy MetabolismZidovudineOxidative stressMethylhydrazinesmedicine.drug
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Neuroprotective Properties of Mildronate, a Small Molecule, in a Rat Model of Parkinson’s Disease

2010

Previously, we have found that mildronate [3-(2,2,2-trimethylhydrazinium) propionate dihydrate], a small molecule with charged nitrogen and oxygen atoms, protects mitochondrial metabolism that is altered by inhibitors of complex I and has neuroprotective effects in an azidothymidine-neurotoxicity mouse model. In the present study, we investigated the effects of mildronate in a rat model of Parkinson’s disease (PD) that was generated via a unilateral intrastriatal injection of the neurotoxin 6-hydroxydopamine (6‑OHDA). We assessed the expression of cell biomarkers that are involved in signaling cascades and provide neural and glial integration: the neuronal marker TH (tyrosine hydroxylase); …

MaleNitric Oxide Synthase Type IIlcsh:ChemistryUbiquitinNeurotoxinlcsh:QH301-705.5Receptor Notch3SpectroscopyNeuronsReceptors NotchbiologyGlial fibrillary acidic proteinMicrofilament ProteinsGeneral MedicineComputer Science ApplicationsCell biologySubstantia NigraNitric oxide synthaseNeuroprotective Agentsmedicine.anatomical_structureBiochemistryNeurogliaNeurogliaMethylhydrazinesneuroimmunological biomarkersTyrosine 3-Monooxygenasesmall moleculeSubstantia nigraParkinson’s disease; 6-OHDA model; neuroimmunological biomarkers; mildronate; small moleculeNeuroprotectionArticleCatalysisInorganic ChemistryGlial Fibrillary Acidic ProteinmedicineAnimalsParkinson Disease SecondaryRats WistarPhysical and Theoretical ChemistryOxidopamineMolecular BiologyTyrosine hydroxylase6-OHDA modelCalcium-Binding ProteinsmildronateOrganic ChemistryCorpus StriatumRatslcsh:Biology (General)lcsh:QD1-999nervous systemParkinson’s diseasebiology.proteinBiomarkersInternational Journal of Molecular Sciences
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Mildronate, the inhibitor of l-carnitine transport, induces brain mitochondrial uncoupling and protects against anoxia-reoxygenation

2013

Abstract The preservation of mitochondrial function is essential for normal brain function after ischaemia-reperfusion injury. l -carnitine is a cofactor involved in the regulation of cellular energy metabolism. Recently, it has been shown that mildronate, an inhibitor of l -carnitine transport, improves neurological outcome after ischaemic damage of brain tissues. The aim of the present study was to elucidate the mitochondria targeted neuroprotective action of mildronate in the model of anoxia-reoxygenation-induced injury. Wistar rats were treated daily with mildronate ( per os ; 100 mg/kg) for 14 days. The acyl-carnitine profile was determined in the brain tissues. Mitochondrial respirati…

Malemedicine.medical_specialtyBioenergeticsCell RespirationMitochondrionBiologyNeuroprotectionCarnitine transportAdenosine TriphosphateCarnitineInternal medicineRespirationmedicineAnimalsCarnitineRats WistarHypoxiaPharmacologyBrainMetabolismMitochondriaRatsOxygenCitric acid cycleNeuroprotective AgentsEndocrinologyCarnitine AcyltransferasesAcyl Coenzyme AMethylhydrazinesmedicine.drugEuropean Journal of Pharmacology
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