Search results for "β adrenoceptor"

showing 4 items of 4 documents

Expression and Signaling of β-Adrenoceptor Subtypes in the Diabetic Heart.

2020

Diabetes is a chronic, endocrine disorder that effects millions of people worldwide. Cardiovascular complications are the major cause of diabetes-related morbidity and mortality. Cardiac β1- and β2-adrenoceptor (AR) stimulation mediates positive inotropy and chronotropy, whereas β3-AR mediates negative inotropic effect. Changes in β-AR responsiveness are thought to be an important factor that contributes to the diabetic cardiac dysfunction. Diabetes related changes in β-AR expression, signaling, and β-AR mediated cardiac function have been studied by several investigators for many years. In the present review, we have screened PubMed database to obtain relevant articles on this topic. Our s…

0301 basic medicineChronotropicCardiac function curveInotropeHeart DiseasesStimulationReview030204 cardiovascular system & hematologyDiabetic heartBioinformaticsβ adrenoceptor03 medical and health sciences0302 clinical medicineDiabetes mellitusReceptors Adrenergic betamedicineDiabetes MellitusEndocrine systemHumansbeta adrenoceptorlcsh:QH301-705.5diabetesbusiness.industryMyocardiumHeartGeneral Medicinemedicine.disease030104 developmental biologylcsh:Biology (General)businessSignal TransductionCells
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α1-adrenoceptor activity of β-adrenoceptor ligands – An expected drug property with limited clinical relevance

2020

Many β-adrenoceptor agonists and antagonists including several clinically used drugs have been reported to also exhibit binding to α1-adrenoceptors. Such promiscuity within the adrenoceptor family appears to occur more often than off-target effects of drugs in general. It should not be considered surprising based on the amino acid homology among the nine adrenoceptor subtypes including the counter-ions for binding the endogenous catecholamines. When β-adrenoceptor ligands also bind to α1-adrenoceptors, they almost always act as antagonists, regardless of being agonists or antagonists at the β-adrenoceptor. The α1-adrenoceptor affinity of β-adrenoceptor ligands in most cases is at least one,…

0301 basic medicinePharmacologyDrugAdrenergic receptorChemistrymedia_common.quotation_subjectEndogenyPharmacologyα1 adrenoceptorIn vitroβ adrenoceptor03 medical and health sciences030104 developmental biology0302 clinical medicineClinical significanceReceptor030217 neurology & neurosurgerymedia_commonEuropean Journal of Pharmacology
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Molecular connectivity to find β-blockers with low toxicity

1997

Abstract Molecular connectivity has been used to find new β-blocker drugs using linear discriminant analysis and connectivity functions with different topological descriptors. Among the selected compounds stands out the probucol and the β-carotene. Both of them interact with β adrenoceptors.

Molecular modelLow toxicityChemistryStereochemistryOrganic ChemistryClinical BiochemistryProbucolPharmaceutical ScienceLinear discriminant analysisBiochemistryβ adrenoceptorDrug DiscoverymedicineMolecular Medicineβ adrenergic receptorMolecular Biologymedicine.drugBioorganic & Medicinal Chemistry Letters
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The pharmacological rationale for combining muscarinic receptor antagonists and beta-adrenoceptor agonists in the treatment of airway and bladder dis…

2014

Highlights • Muscarinic receptors increase smooth muscle tone in airways and urinary bladder. • β-Adrenoceptors relax smooth muscle tone and oppose muscarinic contraction. • Opposition involves transmitter release, signal transduction and receptor expression. • This supports the combined use of muscarinic antagonists and β-adrenoceptor agonists.

medicine.medical_specialtyUrologyDiseaseMuscarinic AntagonistsPharmacologyArticleβ adrenoceptorchemistry.chemical_compoundInternal medicineReceptors Adrenergic betaMuscarinic acetylcholine receptorDrug DiscoveryMuscarinic acetylcholine receptor M4RAT URINARY-BLADDERMedicineAnimalsHumansCyclic adenosine monophosphateADRENERGIC RELAXATIONLung Diseases ObstructivePROTEIN-KINASE-CReceptorTRACHEAL SMOOTH-MUSCLEPharmacologybusiness.industryUrinary Bladder DiseasesMuscarinic acetylcholine receptor M3Muscarinic acetylcholine receptor M2ACETYLCHOLINE-RELEASEAdrenergic beta-Agonistsmedicine.diseaseReceptors MuscarinicEndocrinologyNONNEURONAL CHOLINERGIC SYSTEMchemistryGUINEA-PIG TRACHEADrug Therapy CombinationCYCLIC ADENOSINE-MONOPHOSPHATECA2+-ACTIVATED K+ CHANNELAirwaybusinessUrinary bladder diseaseAUTORADIOGRAPHIC VISUALIZATIONAcetylcholinemedicine.drug
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