Search results for "Transduction"

showing 10 items of 2149 documents

Cholinergic signaling controls immune functions and promotes homeostasis

2020

Abstract Acetylcholine (ACh) was created by nature as one of the first signaling molecules, expressed already in procaryotes. Based on the positively charged nitrogen, ACh could initially mediate signaling in the absence of receptors. When evolution established more and more complex organisms the new emerging organs systems, like the smooth and skeletal muscle systems, energy-generating systems, sexual reproductive system, immune system and the nervous system have further optimized the cholinergic signaling machinery. Thus, it is not surprising that ACh and the cholinergic system are expressed in the vast majority of cells. Consequently, multiple common interfaces exist, for example, betwee…

0301 basic medicineNervous systemCell signalingImmunologyCholinergic AgentsBiology03 medical and health sciences0302 clinical medicineImmune systemMemorymedicineAnimalsHomeostasisHumansImmunologic FactorsLearningImmunology and AllergyReceptorOrganismPharmacologyImmunity030104 developmental biologymedicine.anatomical_structureImmune System030220 oncology & carcinogenesisCholinergicNeuroscienceHomeostasisAcetylcholineSignal Transductionmedicine.drugInternational Immunopharmacology
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Extracellular vesicles: interneural shuttles of complex messages.

2016

A core function of neural cells is the exchange and integration of information. Extracellular vesicles such as exosomes and microvesicles recently entered the scene of neuroscience as novel vehicles transmitting complex signals between neural cells. Carrying a defined but mixed cargo of biomolecules, extracellular vesicles possess versatile biological activities with the ability to profoundly modulate the molecular configuration and behaviour of target cells. Extracellular vesicles are suggested to carry out functions during neural development and maintenance, they appear to spread neuropathology and furthermore, convey neuroprotection and regeneration. Understanding the molecular mechanism…

0301 basic medicineNervous systemGeneral NeuroscienceRegeneration (biology)BiologyExosomesMicrovesiclesCell biologyCell-Derived Microparticles03 medical and health sciencesCrosstalk (biology)Extracellular Vesicles030104 developmental biologymedicine.anatomical_structureCell-Derived MicroparticlesmedicineHumansSignal transductionNeural developmentNeuroscienceIntracellularSignal TransductionCurrent opinion in neurobiology
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Profilin 1 delivery tunes cytoskeletal dynamics toward CNS axon regeneration

2020

After trauma, regeneration of adult CNS axons is abortive, causing devastating neurologic deficits. Despite progress in rehabilitative care, there is no effective treatment that stimulates axonal growth following injury. Using models with different regenerative capacities, followed by gain- and loss-of-function analysis, we identified profilin 1 (Pfn1) as a coordinator of actin and microtubules (MTs), powering axonal growth and regeneration. In growth cones, Pfn1 increased actin retrograde flow, MT growth speed, and invasion of filopodia by MTs, orchestrating cytoskeletal dynamics toward axonal growth. In vitro, active Pfn1 promoted MT growth in a formin-dependent manner, whereas localizati…

0301 basic medicineNervous systemGrowth ConesNeuromuscular Junctionmacromolecular substancesGlial scar03 medical and health sciencesMiceProfilins0302 clinical medicineTransduction GeneticmedicineAnimalsAxonGrowth coneCytoskeletonSpinal Cord InjuriesMice KnockoutbiologyRegeneration (biology)General MedicineGenetic TherapyDependovirusSciatic NerveCell biologyNerve Regeneration030104 developmental biologymedicine.anatomical_structurenervous system030220 oncology & carcinogenesisForminsbiology.proteinSciatic nerveFilopodiaResearch Article
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Impairment of learning and memory performances induced by BPA Evidences from the literature of a MoA mediated through an ED

2018

International audience; Many rodent studies and a few non-human primate data report impairments of spatial and non-spatial memory induced by exposure to bisphenol A (BPA), which are associated with neural modifications, particularly in processes involved in synaptic plasticity. BPA-induced alterations involve disruption of the estrogenic pathway as established by reversal of BPA-induced effects with estrogenic receptor antagonist or by interference of BPA with administered estradiol in ovariectomized animals. Sex differences in hormonal impregnation during critical periods of development and their influence on maturation of learning and memory processes may explain the sexual dimorphism obs…

0301 basic medicineNervous systemNervous systemendocrine systemmedicine.drug_classEndocrine disruptionBiologyEndocrine DisruptorsBiochemistryLearning and memory03 medical and health scienceschemistry.chemical_compound0302 clinical medicineEndocrinologyMESH: PhenolsBisphenol APhenolsMemorymedicineMESH: Benzhydryl CompoundsAnimalsHumansBenzhydryl compoundsMESH: MemoryBenzhydryl CompoundsMode of actionMolecular BiologyBehavior Animalurogenital systemBrainCognitionEnvironmental exposureEnvironmental ExposureReceptor antagonistMESH: Endocrine Disruptors030104 developmental biologymedicine.anatomical_structurechemistrySynaptic plasticity[SDV.SPEE]Life Sciences [q-bio]/Santé publique et épidémiologieSignal transductionNeuroscience030217 neurology & neurosurgeryhormones hormone substitutes and hormone antagonists
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The Action of Di-(2-Ethylhexyl) Phthalate (DEHP) in Mouse Cerebral Cells Involves an Impairment in Aryl Hydrocarbon Receptor (AhR) Signaling

2018

Di-(2-ethylhexyl) phthalate (DEHP) is used as a plasticizer in various plastic compounds, such as polyvinyl chloride (PVC), and products including baby toys, packaging films and sheets, medical tubing, and blood storage bags. Epidemiological data suggest that phthalates increase the risk of the nervous system disorders; however, the impact of DEHP on the brain cells and the mechanisms of its action have not been clarified. The aim of the present study was to investigate the effects of DEHP on production of reactive oxygen species (ROS) and aryl hydrocarbon receptor (AhR), as well as Cyp1a1 and Cyp1b1 mRNA and protein expression in primary mouse cortical neurons and glial cells in the in vit…

0301 basic medicineNervous systemendocrine systemCYP1B1Gene ExpressionNeocortexToxicologyMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineDiethylhexyl PhthalateGliaCytochrome P-450 CYP1A1medicineAnimalsCyp1a1RNA MessengerCells Culturedchemistry.chemical_classificationNeuronsReactive oxygen speciesMessenger RNADose-Response Relationship DrugbiologyDEHPChemistryGeneral NeuroscienceAhRPhthalateROSrespiratory systemAryl hydrocarbon receptorIn vitroCell biology030104 developmental biologymedicine.anatomical_structureReceptors Aryl HydrocarbonCytochrome P-450 CYP1B1biology.proteinOriginal ArticleSignal transductionReactive Oxygen SpeciesNeuroglia030217 neurology & neurosurgerySignal TransductionNeurotoxicity Research
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Lactate as a Metabolite and a Regulator in the Central Nervous System

2016

More than two hundred years after its discovery, lactate still remains an intriguing molecule. Considered for a long time as a waste product of metabolism and the culprit behind muscular fatigue, it was then recognized as an important fuel for many cells. In particular, in the nervous system, it has been proposed that lactate, released by astrocytes in response to neuronal activation, is taken up by neurons, oxidized to pyruvate and used for synthesizing acetyl-CoA to be used for the tricarboxylic acid cycle. More recently, in addition to this metabolic role, the discovery of a specific receptor prompted a reconsideration of its role, and lactate is now seen as a sort of hormone, even invol…

0301 basic medicineNervous systemlactate transporterCentral nervous systemReviewBiologyBlood–brain barrierlactate receptorsNeuroprotectionCatalysislcsh:ChemistryInorganic Chemistry03 medical and health sciences0302 clinical medicineSettore BIO/10 - Biochimicalactate receptormedicineAnimalsHumanslactate transportersPhysical and Theoretical ChemistryReceptorExerciselcsh:QH301-705.5Molecular BiologySpectroscopyOrganic ChemistryNeurodegenerationlactic acidBrainGeneral MedicineMetabolismblood-brain barriermedicine.diseaseComputer Science ApplicationsCitric acid cycle030104 developmental biologymedicine.anatomical_structurelcsh:Biology (General)lcsh:QD1-999Biochemistrybrain metabolismActic acidexercise and lactateEnergy MetabolismNeuroscience030217 neurology & neurosurgerySignal Transductionactic acid; brain metabolism; lactate transporters; blood-brain barrier; lactate receptors; exercise and lactate
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New functions of Semaphorin 3E and its receptor PlexinD1 during developing and adult hippocampal formation

2018

AbstractThe development and maturation of cortical circuits relies on the coordinated actions of long and short range axonal guidance cues. In this regard, the class 3 semaphorins and their receptors have been seen to be involved in the development and maturation of the hippocampal connections. However, although the role of most of their family members have been described, very few data about the participation of Semaphorin 3E (Sema3E) and its receptor PlexinD1 during the development and maturation of the entorhino-hippocampal (EH) connection are available. In the present study, we focused on determining their roles both during development and in adulthood. We determined a relevant role for…

0301 basic medicineNeurobiologia del desenvolupamentScienceHippocampusNerve Tissue ProteinsSemaphorinsBiologyHippocampal formationHippocampusArticle03 medical and health sciencesMice0302 clinical medicineSemaphorinmedicineAnimalsDevelopmental neurobiologyProgenitor cellReceptorCells CulturedGlycoproteinsNeuronsMultidisciplinaryMembrane GlycoproteinsHippocampus properDentate gyrusQRIntracellular Signaling Peptides and ProteinsGene Expression Regulation DevelopmentalMembrane ProteinsProteinsEmbryonic stem cellCytoskeletal Proteins030104 developmental biologymedicine.anatomical_structurenervous systemMutationMedicineNeuroscienceProteïnes030217 neurology & neurosurgerySignal Transduction
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Precise Somatotopic Thalamocortical Axon Guidance Depends on LPA-Mediated PRG-2/Radixin Signaling

2016

Summary Precise connection of thalamic barreloids with their corresponding cortical barrels is critical for processing of vibrissal sensory information. Here, we show that PRG-2, a phospholipid-interacting molecule, is important for thalamocortical axon guidance. Developing thalamocortical fibers both in PRG-2 full knockout (KO) and in thalamus-specific KO mice prematurely entered the cortical plate, eventually innervating non-corresponding barrels. This misrouting relied on lost axonal sensitivity toward lysophosphatidic acid (LPA), which failed to repel PRG-2-deficient thalamocortical fibers. PRG-2 electroporation in the PRG-2−/− thalamus restored the aberrant cortical innervation. We ide…

0301 basic medicineNeuroscience(all)ThalamusGrowth ConesSensory systemBiologyArticle03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineDiscrimination PsychologicalThalamusRadixinLysophosphatidic acidNeural PathwaysmedicineAnimalsPhosphorylationGrowth coneCerebral CortexMice KnockoutGeneral NeuroscienceMembrane ProteinsAxon GuidanceCytoskeletal Proteins030104 developmental biologymedicine.anatomical_structurechemistryCerebral cortexAxon guidanceSignal transductionLysophospholipidsNeuroscience030217 neurology & neurosurgerySignal TransductionNeuron
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Astrocyte sodium signaling and the regulation of neurotransmission.

2015

The transmembrane Na(+) concentration gradient is an important source of energy required not only to enable the generation of action potentials in excitable cells, but also for various transmembrane transporters both in excitable and non-excitable cells, like astrocytes. One of the vital functions of astrocytes in the central nervous system (CNS) is to regulate neurotransmitter concentrations in the extracellular space. Most neurotransmitters in the CNS are removed from the extracellular space by Na(+) -dependent neurotransmitter transporters (NeuTs) expressed both in neurons and astrocytes. Neuronal NeuTs control mainly phasic synaptic transmission, i.e., synaptically induced transient pos…

0301 basic medicineNeurotransmitter transporterSynaptic cleftNeurotransmitter uptakeSodiumBiologyNeurotransmissionSynaptic Transmission03 medical and health sciencesCellular and Molecular Neurosciencechemistry.chemical_compound030104 developmental biology0302 clinical medicineNeurologychemistryPostsynaptic potentialNeurotransmitter receptorAstrocytesBiophysicsAnimalsNeurotransmitterNeuroscience030217 neurology & neurosurgeryIonotropic effectSignal TransductionGlia
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Pathogenesis of antiphospholipid syndrome: recent insights and emerging concepts

2018

Introduction: Even though our understanding of the antiphospholipid syndrome (APS) has improved tremendously over the last decades, we are still not in a position to replace symptomatic anticoagulation by pathogenesis based causal treatments. Areas covered: Recent years have provided further insights into pathogenetically relevant mechanisms. These include a differentiation of pathogenic subtypes of antiphospholipid antibodies (aPL), novel mechanisms modulating disease activity, for example, extracellular vesicles and microRNA, and novel players in pathogenesis, for example, neutrophils and neutrophil extracellular traps (NETs). Expert commentary: It is evident that aPL induce a proinflamma…

0301 basic medicineNeutrophilsImmunologyBioinformaticsExtracellular TrapsExtracellular vesiclesProinflammatory cytokinePathogenesisExtracellular VesiclesGenetic Heterogeneity03 medical and health sciences0302 clinical medicineimmune system diseasesAntiphospholipid syndromemicroRNAHumansImmunology and AllergyMedicineFetal lossBlood CoagulationComplement Activation030203 arthritis & rheumatologybusiness.industryNeutrophil extracellular trapsAntiphospholipid Syndromemedicine.diseaseMicroRNAs030104 developmental biologyAntibodies AntiphospholipidSignal transductionbusinessExpert Review of Clinical Immunology
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