Search results for "Agoni"

showing 10 items of 2493 documents

PPAR Agonists, Atherogenic Dyslipidemia and Cardiovascular Risk.

2016

Peroxisome proliferator-activated receptors (PPAR) are implicated in the pathology of several metabolic diseases including obesity, diabetes, and atherosclerosis. PPAR agonists exert multiple lipid modifying actions which are beneficial to the prevention of atherosclerosis. Such benefits in lipid lowering actions include improvements in atherogenic dyslipidemia that seems to be particularly expressed in individuals at higher cardiovascular (CV) risk. In addition, the favorable effects of PPAR agonists on different cardio-metabolic parameters are established in several metabolic conditions, such as diabetes mellitus, insulin resistance, and heightened systemic inflammation. The goal of this …

0301 basic medicinePeroxisome Proliferator-Activated Receptormedicine.medical_specialtyPeroxisome Proliferator-Activated ReceptorsPeroxisome proliferator-activated receptor030204 cardiovascular system & hematologyBioinformaticsSystemic inflammationPPAR agonist03 medical and health sciences0302 clinical medicineInsulin resistanceRisk FactorsCardiovascular DiseaseInternal medicineDiabetes mellitusDrug DiscoverymedicineAnimalsHumansDyslipidemiasHypolipidemic AgentsPharmacologychemistry.chemical_classificationClinical Trials as TopicHypolipidemic Agentmedicine.diagnostic_testAnimalbusiness.industryRisk FactorAtherogenic dyslipidemiaCardiovascular riskmedicine.diseaseAtherosclerosisObesityThiazoles030104 developmental biologyEndocrinologyDyslipidemiachemistryCardiovascular DiseasesAtherosclerosilipids (amino acids peptides and proteins)medicine.symptomLipid profilebusinessHumanLipoproteinCurrent pharmaceutical design
researchProduct

Pharmacological Profile of AZD8871 (LAS191351), a Novel Inhaled Dual M3 Receptor Antagonist/β2-Adrenoceptor Agonist Molecule with Long-Lasting Effect…

2019

AZD8871 is a novel muscarinic antagonist and β2-adrenoceptor agonist in development for chronic obstructive pulmonary disease. This study describes the pharmacological profile of AZD8871 in in vitro and in vivo assays. AZD8871 is potent at the human M3 receptor (pIC50 in binding assays: 9.5) and shows kinetic selectivity for the M3 (half-life: 4.97 hours) over the M2 receptor (half-life: 0.46 hour). It is selective for the β2-adrenoceptor over the β1 and β3 subtypes (3- and 6-fold, respectively) and shows dual antimuscarinic and β2-adrenoceptor functional activity in isolated guinea pig tissue (pIC50 in electrically stimulated trachea: 8.6; pEC50 in spontaneous tone isolated trachea: 8.8, r…

0301 basic medicinePharmacologyAgonistChemistrymedicine.drug_classAntagonistMuscarinic antagonistMuscarinic acetylcholine receptor M3Muscarinic acetylcholine receptor M2PropranololPharmacology03 medical and health sciences030104 developmental biology0302 clinical medicineIn vivoMuscarinic acetylcholine receptormedicineMolecular Medicine030217 neurology & neurosurgerymedicine.drugJournal of Pharmacology and Experimental Therapeutics
researchProduct

Agonist‐induced desensitisation of β 3 ‐adrenoceptors: Where, when, and how?

2019

β3 -Adrenoceptor agonists have proven useful in the treatment of overactive bladder syndrome, but it is not known whether their efficacy during chronic administration may be limited by receptor-induced desensitisation. Whereas the β2 -adrenoceptor has phosphorylation sites that are important for desensitisation, the β3 -adrenoceptor lacks these; therefore, it had been assumed that β3 -adrenoceptors are largely resistant to agonist-induced desensitisation. While all direct comparative studies demonstrate that β3 -adrenoceptors are less susceptible to desensitisation than β2 -adrenoceptors, desensitisation of β3 -adrenoceptors has been observed in many models and treatment settings. Chimeric …

0301 basic medicinePharmacologyAgonistMessenger RNAmedicine.medical_specialtyCell typePhosphorylation sitesAdrenergic receptormedicine.drug_classbusiness.industryChinese hamster ovary cellTransfection03 medical and health sciences030104 developmental biology0302 clinical medicineEndocrinologyInternal medicinemedicinebusinessReceptor030217 neurology & neurosurgeryBritish Journal of Pharmacology
researchProduct

The β3 -adrenoceptor agonist mirabegron increases human atrial force through β1 -adrenoceptors: an indirect mechanism?

2017

Background and Purpose Mirabegron has been classified as a β3-adrenoceptor agonist approved for overactive bladder syndrome. We investigated possible cardiac effects of mirabegron in the absence or presence of β-adrenoceptor subtype antagonists. In view of its phenylethanolamine structure, we investigated whether mirabegron has indirect sympathomimetic activity by using neuronal uptake blockers. Experimental Approach Right atrial trabeculae, from non-failing hearts, were paced and contractile force measured at 37°C. Single concentrations of mirabegron were added in the absence or presence of the phosphodiesterase inhibitor 3-isobutyl-1-methylxanthine (IBMX), β3 (L-748,337), β1 (CGP 20712A),…

0301 basic medicinePharmacologyAgonistmedicine.medical_specialtyIBMXContraction (grammar)PhenoxybenzamineChemistrymedicine.drug_classAdrenergicPharmacology03 medical and health scienceschemistry.chemical_compound030104 developmental biologyEndocrinologyInternal medicineDesipraminemedicinePhosphodiesterase inhibitorMirabegronmedicine.drugBritish Journal of Pharmacology
researchProduct

How β3 -adrenoceptor-selective is mirabegron?

2016

0301 basic medicinePharmacologybusiness.industryAdrenergic beta-3 Receptor AgonistsPharmacology03 medical and health sciences030104 developmental biology0302 clinical medicinemedicineβ3 adrenoceptorMirabegronbusiness030217 neurology & neurosurgerymedicine.drugBritish Journal of Pharmacology
researchProduct

2021

Angiotensin II (Ang II) has been implicated in the pathophysiology of various age-dependent ocular diseases. The purpose of this study was to test the hypothesis that Ang II induces endothelial dysfunction in mouse ophthalmic arteries and to identify the underlying mechanisms. Ophthalmic arteries were exposed to Ang II in vivo and in vitro to determine vascular function by video microscopy. Moreover, the formation of reactive oxygen species (ROS) was quantified and the expression of prooxidant redox genes and proteins was determined. The endothelium-dependent artery responses were blunted after both in vivo and in vitro exposure to Ang II. The Ang II type 1 receptor (AT1R) blocker, candesar…

0301 basic medicinePhysiologyClinical BiochemistryVideo microscopyVasodilation030204 cardiovascular system & hematologyPharmacologymedicine.disease_causeBiochemistry03 medical and health sciences0302 clinical medicinemedicineEndothelial dysfunctionMolecular BiologyAngiotensin II receptor type 1biologyChemistryCell Biologymedicine.diseaseAngiotensin IINitric oxide synthaseCandesartan030104 developmental biologycardiovascular systembiology.proteinhormones hormone substitutes and hormone antagonistsOxidative stressmedicine.drugAntioxidants
researchProduct

The Role of Sirtuin1 in Regulating Endothelial Function, Arterial Remodeling and Vascular Aging

2019

Sirtuin1 (SIRT1), which belongs to a highly conserved family of protein deacetylase, is one of the best-studied sirtuins. SIRT1 is involved in a variety of biological processes, including energy metabolism, cell proliferation and survival, chromatin dynamics, and DNA repair. In the vasculature, SIRT1 is ubiquitously expressed in endothelial cells, smooth muscle cells, and perivascular adipose tissues (PVAT). Endothelial SIRT1 plays a unique role in vasoprotection by regulating a large variety of proteins, including endothelial nitric oxide synthase (eNOS). In endothelial cells, SIRT1 and eNOS regulate each other synergistically through positive feedback mechanisms for the maintenance of end…

0301 basic medicinePhysiologyDNA repairvascular remodelingAdipose tissueReview030204 cardiovascular system & hematologylcsh:Physiology03 medical and health sciencesSIRT10302 clinical medicineEnosPhysiology (medical)lcsh:QP1-981biologyCell growthbiology.organism_classificationChromatinCell biologyenzymes and coenzymes (carbohydrates)030104 developmental biologyvascular agingPVATeNOSProtein deacetylaseVascular aginghormones hormone substitutes and hormone antagonistsFunction (biology)Frontiers in Physiology
researchProduct

How Can Interleukin-1 Receptor Antagonist Modulate Distinct Cell Death Pathways?

2018

Multiple mechanisms of cell death exist (apoptosis, necroptosis, pyroptosis) and the subtle balance of several distinct proteins and inhibitors tightly regulates the cell fate toward one or the other pathway. Here, by combining coimmunoprecipitation, enzyme assays, and molecular simulations, we ascribe a new role, within this entangled regulatory network, to the interleukin-1 receptor antagonist (IL-1Ra). Our study enlightens that IL-1Ra, which usually inhibits the inflammatory effects of IL-1α/β by binding to IL-1 receptor, under advanced pathological states prevents apoptosis and/or necroptosis by noncompetitively inhibiting the activity of caspase-8 and -9. Consensus docking, followed by…

0301 basic medicineProgrammed cell deathProtein ConformationGeneral Chemical EngineeringNecroptosis-Library and Information SciencesMolecular Dynamics SimulationInhibitor of apoptosis01 natural sciencesArticle03 medical and health sciences0103 physical sciencesReceptorsmedicineCaspaseCaspase 8010304 chemical physicsbiologyCell DeathChemistryNeurodegenerationPyroptosisComputational BiologyReceptors Interleukin-1General Chemistrymedicine.diseaseCaspase 9Computer Science ApplicationsCell biologyXIAPEnzyme ActivationInterleukin 1 Receptor Antagonist Protein030104 developmental biologyApoptosisbiology.proteinThermodynamicsInterleukin-1
researchProduct

E2F1 interacts with BCL-xL and regulates its subcellular localization dynamics to trigger cell death

2018

International audience; E2F1 is the main pro-apoptotic effector of the pRB-regulated tumor suppressor pathway by promoting the transcription of various pro-apoptotic proteins. We report here that E2F1 partly localizes to mitochondria, where it favors mitochondrial outer membrane permeabilization. E2F1 interacts with BCL-xL independently from its BH3 binding interface and induces a stabilization of BCL-xL at mitochondrial membranes. This prevents efficient control of BCL-xL over its binding partners, in particular over BAK resulting in the induction of cell death. We thus identify a new, non-BH3-binding regulator of BCL-xL localization dynamics that influences its anti-apoptotic activity.

0301 basic medicineProgrammed cell deathTranscription Geneticbcl-X ProteinRegulatorBcl-xL[SDV.CAN]Life Sciences [q-bio]/CancerBCL-xL mobilityMitochondrionBiochemistrylaw.invention[ SDV.CAN ] Life Sciences [q-bio]/CancerE2F1 Subject Category Autophagy & Cell Death03 medical and health sciences[SDV.CAN] Life Sciences [q-bio]/CancerlawBCL-2 familyCell Line TumorGeneticsJournal ArticleHumansE2F1Molecular BiologyCell DeathbiologyManchester Cancer Research CentreEffectorChemistryResearchInstitutes_Networks_Beacons/mcrcScientific ReportsapoptosisSubcellular localizationMitochondriaCell biologyProtein Transportbcl-2 Homologous Antagonist-Killer Protein030104 developmental biologyGene Expression RegulationProto-Oncogene Proteins c-bcl-2biology.proteinSuppressorbiological phenomena cell phenomena and immunityExtracellular SpaceE2F1 Transcription FactorProtein Binding
researchProduct

Pharmacological preclinical characterization of LAS190792, a novel inhaled bifunctional muscarinic receptor antagonist /β 2 -adrenoceptor agonist (MA…

2017

LAS190792 is a novel muscarinic antagonist and β2-adrenoceptor agonist in development for chronic respiratory diseases. This study investigated the pharmacological profile of LAS190792 in comparison to batefenterol, tiotropium, indacaterol and olodaterol. LAS190792 is potent at the human M3 receptor (pIC50: 8.8 in binding assays). It is selective for the β2-adrenoceptor over the β1-and β3-adrenoceptor, and shows a functional potency in a similar range to batefenterol and LABA compounds (pEC50 in spontaneous tone isolated trachea: 9.6). The relaxant potency of LAS190792 in electrically stimulated tissue is similar to batefenterol, with an antimuscarinic activity in presence of propranolol sl…

0301 basic medicinePulmonary and Respiratory MedicineAgonistmedicine.drug_classBiochemistry (medical)OlodaterolAntagonistMuscarinic acetylcholine receptor M3Muscarinic antagonistPropranololPharmacology03 medical and health scienceschemistry.chemical_compound030104 developmental biology0302 clinical medicine030228 respiratory systemchemistryCompetitive antagonistMuscarinic acetylcholine receptormedicinePharmacology (medical)medicine.drugPulmonary Pharmacology & Therapeutics
researchProduct