Search results for " CGM"

showing 5 items of 5 documents

Type 5 phosphodiesterase (PDE5) and the vascular tree: from embryogenesis to aging and disease

2020

Highlights • Vascular development depends on the timely differentiation of endothelial and smooth muscle cells, that mutually influence their developmental fate. • Endothelial and vascular smooth muscle cell (VSMC) compartments can mutually influence cell and tissue modifications during vascular aging and in vascular disease. • Keeping in mind that PDE5 is mainly expressed in VSMCs, we surveyed the literature on the role of PDE5 in vascular development, aging and disease. • Although most results have been obtained by PDE5 pharmacological inhibition, no data are available, to date, on vascular development, aging or disease following PDE5 genetic ablation.

0301 basic medicineCell typeAgingVascular smooth muscleMyocytes Smooth MuscleVSMCsEmbryonic DevelopmentECsContext (language use)DiseaseBiologyMuscle Smooth VascularArticle03 medical and health sciences0302 clinical medicinenitric oxidevascular smooth muscle cellsHumansBioresorbable vascular scaffoldCyclic Nucleotide Phosphodiesterases Type 5ECEmbryogenesisPhosphodiesteraseVascular agingCell biologycGMPSettore MED/23ECs; PDE5; VSMCs; cGMP; nitric oxide030104 developmental biologyVascular aging; vascular smooth muscle cells; phosphodiesterasePDE5phosphodiesterase030217 neurology & neurosurgeryFunction (biology)Developmental Biology
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Glycemic variability Using 48-Hour continuous Gglucose monitoring and endothelial function in the Metabolic Syndrome

2009

glycemic variability CGM endothelial function FMD diabetes
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Alteraciones de la neurotransmisión en hipocampo de ratas hiperamonémicas. papel de la neuroinflamación. modulación por GMPc extracelular

2021

La Encefalopatía Hepática (EH) es un síndrome neuropsiquiátrico complejo producido por un fallo hepático. Cuando el hígado falla se producen hiperamonemia (HA) e inflamación que actúan sinérgicamente produciendo neuroinflamación, lo que da lugar a alteraciones en la neurotransmisión y alteraciones cognitivas y motoras. Estudios anteriores del grupo han demostrado que el aumento de los niveles de GMPc extracelular disminuye la neuroinflamación y revierte las alteraciones cognitivas y motoras observadas en ratas hiperamonémicas. Sin embargo, los mecanismos responsables se desconocían. En la presente tesis doctoral hemos demostrado que la hiperamonemia crónica reduce la respuesta de los recept…

GABAextracellular cGMPnervous systemhyperammonemiaNMDAAMPAUNESCO::CIENCIAS DE LA VIDA:CIENCIAS DE LA VIDA [UNESCO]neuroinflammation
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Involvement of nitric oxide-soluble guanylyl cyclase pathway in the control of maximal dentate gyrus activation in the rat.

2006

Summary Nitric oxide=soluble Guanylyl cyclase (NO=sGC) pathway on the maximal dentate gyrus activation (MDA) was studied in rats. The cerebral NO levels were modified by administrating 7-Nitroindazole (7-NI), a selective inhibitor of neuronal NOS, and L-arginine, a precursor of the synthesis of NO. 1H-[1,2,4]Oxadiazole[4,3-a]quinoxalin-1-one (ODQ), a specific inhibitor of the NO-sGC pathway, was administered to study the involvement of cGMP pathway. The epileptic activity of the dentate gyrus was obtained through the repetitive stimulation of the angular bundle; MDA parameters studied were: onset time, MDA duration and post-stimulus afterdischarge (AD) duration. 7-NI caused an increase of M…

Malemedicine.medical_specialtyIndazolesArginineNitric Oxide Synthase Type IIIReceptors Cytoplasmic and NuclearKeywords: Maximal dentate activation nitric oxide cGMP modulationArginineNitric OxideNitric oxidechemistry.chemical_compoundSoluble Guanylyl CyclaseInternal medicineMalondialdehydeQuinoxalinesmedicineAnimalsEnzyme InhibitorsRats WistarReceptorBiological PsychiatryOxadiazolesDentate gyrusNitric Oxide Synthase Type IIIIontophoresisRatsElectrophysiologyPsychiatry and Mental healthMetabolic pathwayEndocrinologyNeurologychemistryGuanylate CyclaseDentate GyrusNeurology (clinical)Signal transductionSoluble guanylyl cyclaseSignal TransductionJournal of neural transmission (Vienna, Austria : 1996)
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Differential roles of cAMP and cGMP in megakaryocyte maturation and platelet biogenesis

2012

The cyclic nucleotides cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP) regulate the activity of protein kinase A (PKA) and protein kinase G (PKG), respectively. This process helps maintain circulating platelets in a resting state. Here we studied the role of cAMP and cGMP in the regulation of megakaryocyte (MK) differentiation and platelet formation. Cultured, platelet-producing MKs were differentiated from fetal livers harvested from 13.5 days postcoital mouse embryos. MK development was accompanied by a dramatic increase in cAMP production and expression of soluble guanylate cyclase, PKG, and PKA as well as their downstream targets vasodilator-stimulated ph…

Blood PlateletsCancer Researchmegakaryocytes; cAMP; cGMP; plateletsPhosphodiesterase 3BiologyArticleAdenylyl cyclaseMicechemistry.chemical_compoundPregnancyCyclic AMPGeneticsAnimalsCyclic adenosine monophosphatePhosphorylationProtein kinase ACyclic GMPMolecular BiologyCyclic guanosine monophosphateMicrofilament ProteinsCell DifferentiationCell BiologyHematologyPhosphoproteinsCyclic AMP-Dependent Protein KinasesCell biologyMice Inbred C57BLCytoskeletal ProteinsThrombopoietinchemistrycAMP-dependent pathwayFemalePDE10ASignal transductionCell Adhesion MoleculesMegakaryocytesExperimental Hematology
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