Search results for "Tachykinin"

showing 10 items of 22 documents

Tachykinin NK(2) receptors facilitate acetylcholine release from guinea-pig isolated trachea.

2000

The release of newly synthesised [3H]acetylcholine was evoked by electrical field stimulation (5 Hz, 600 pulses) of epithelium-deprived guinea-pig trachea strips after sensory neuropeptides depletion with 3 microM capsaicin. The selective tachykinin NK(2) receptor agonist [betaAla(8)]neurokinin A-(4-10) increased in a concentration-dependent manner the electrically-induced release of [3H]acetylcholine. The facilitatory effect was antagonised by the selective non-peptide tachykinin NK(2) receptor antagonist, SR 48968 (apparent pK(B) 8.9). The tachykinin NK(1) and NK(3) receptor agonists substance P methyl ester and senktide (both 10 and 100 nM), respectively, did not affect the evoked releas…

AgonistMalemedicine.medical_specialtymedicine.drug_classNeurokinin AGuinea PigsSubstance PIn Vitro TechniquesCholinechemistry.chemical_compoundPiperidinesInternal medicinemedicineAnimalsReceptorPharmacologyNeuronsReceptors Neurokinin-2Receptor antagonistAcetylcholineElectric StimulationPeptide FragmentsTracheaEndocrinologychemistryCapsaicinBenzamidesNeurokinin ACapsaicinTachykinin receptorAcetylcholinemedicine.drugEuropean journal of pharmacology
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Role for NK1 and NK2 receptors in the motor activity in mouse colon

2007

The present study examined the effects induced by endogenous and exogenous activation of NK(1) and NK(2) receptors on the mechanical activity of mouse proximal colon. Experiments were performed in vitro recording the changes in intraluminal pressure from isolated colonic segments. Electrical field stimulation in the presence of atropine and guanethidine produced a small relaxation, followed by nonadrenergic noncholinergic (NANC) contraction. SR140333, NK(1) receptor antagonist, or SR48968, NK(2) receptor antagonist, significantly reduced the contraction, although SR48968 appeared more efficacious. The co-administration of SR140333 and SR48968 virtually abolished the NANC contraction. [Sar(9…

AtropineAgonistmedicine.medical_specialtyContraction (grammar)Colonmedicine.drug_classNeurokinin AMuscarinic AntagonistsTetrodotoxinSubstance PSettore BIO/09 - FisiologiaNK1 receptorNitric oxideMicechemistry.chemical_compoundNeurokinin-1 Receptor Antagonistsnitric oxideInternal medicinemedicineAnimalsNK2 receptorReceptorGuanethidinePharmacologyAntagonistReceptors Neurokinin-2Receptors Neurokinin-1Electric StimulationPeptide FragmentsMice Inbred C57BLEndocrinologychemistryTetrodotoxinNANC contractionCholinergicTachykininMuscle ContractionSodium Channel Blockersmedicine.drugEuropean Journal of Pharmacology
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Endotoxin inhibits gastric emptying in rats via a capsaicin-sensitive afferent pathway.

2001

The effects of endotoxin on gastric emptying of a solid nutrient meal and the neural mechanisms involved in such a response were investigated in conscious rats. The intraperitoneal (i.p.) administration of E. coli endotoxin (40 mug/kg) significantly reduced the 4-h rate of gastric emptying of a standard solid nutrient meal. Ablation of primary afferent neurons by systemic administration of high doses of capsaicin (20+30+50 mg/kg s.c.) to adult rats did not modify the rate of gastric emptying in control animals but prevented the delay in gastric transit induced by endotoxin. Local application of capsaicin to the vagus nerve rather than application of capsaicin to the celiac ganglion signific…

AtropineLipopolysaccharidesMaleendotoxinmedicine.medical_specialtyCalcitonin Gene-Related PeptidePharmacology toxicologyMuscarinic AntagonistscapsaicinRats Sprague-Dawleychemistry.chemical_compoundgastric emptyingtransitNeurons EfferentCalcitonin Gene-Related Peptide Receptor AntagonistsInternal medicinemedicineAnimalsDrug InteractionsCGRPNeurons AfferenttachykininsPhentolamineAfferent PathwayAdrenergic alpha-AntagonistsPharmacologyMealAfferent PathwaysGastric emptyingdigestive oral and skin physiologyGeneral MedicinePeptide FragmentsRatsEndocrinologychemistryGastric EmptyingCapsaicinCapsaicinNaunyn-Schmiedeberg's archives of pharmacology
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Evidence for a modulatory role of cannabinoids on the excitatory NANC neurotransmission in mouse colon

2007

Abstract It is well accepted that endogenous cannabinoids and CB1 receptors are involved in the regulation of smooth muscle contractility and intestinal motility, through a mechanism mainly related to reduction of acetylcholine release from cholinergic nerve endings. Because, few data exist on a possible modulatory action of the cannabinoid agents on the non-adrenergic non-cholinergic (NANC) excitatory and inhibitory neurotransmission, the aim of the present study was to investigate the effects of cannabinoid drugs on the NANC responses elicited by electrical field stimulation (EFS) in the circular muscle of mouse proximal colon. Colonic contractions were monitored as changes in endoluminal…

CB1 receptorIndolesCannabinoid receptormedicine.medical_treatmentSynaptic TransmissionSettore BIO/09 - FisiologiaEnteric Nervous SystemReceptor Cannabinoid CB2Micechemistry.chemical_compoundPiperidinesReceptor Cannabinoid CB1Fatty acid amide hydrolaseCannabinoid receptor type 2musculoskeletal neural and ocular physiologyAnandamideSmooth muscle contractionRimonabantAgonistmedicine.medical_specialtyColonPolyunsaturated Alkamidesmedicine.drug_classMorpholinesNeuromuscular JunctionArachidonic AcidsIn Vitro TechniquesNaphthalenesTachykininsInternal medicineCannabinoid Receptor ModulatorsIntestinal motilitymedicineAnimalsCannabinoidReceptors TachykininPharmacologyDose-Response Relationship DrugCannabinoidsExcitatory Postsynaptic PotentialsNANC relaxationURB597Electric StimulationBenzoxazinesMice Inbred C57BLEndocrinologyInhibitory Postsynaptic PotentialschemistryPyrazolesNANC contractionCannabinoidGastrointestinal MotilityEndocannabinoidsPharmacological Research
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Role of NK1 and NK2 receptors in mouse gastric mechanical activity

2006

1. The aim of the present study was to examine the role of NK1 and NK2 receptors in the control of mechanical activity of mouse stomach. In this view, the motor effects induced by NK1 and NK2 receptor agonists and antagonists were analyzed, measuring motility as intraluminal pressure changes in mouse-isolated stomach preparations. In parallel, immunohistochemical studies were performed to identify the location of NK1 and NK2 receptors on myenteric neurons and smooth muscle cells. 2. Substance P (SP) induced biphasic effects: a contraction followed by relaxation; neurokinin A (NKA) and [beta-Ala8]-NKA(4-10), selective agonist of NK2 receptors, evoked concentration-dependent contractions, whe…

Dose-Response Relationship Drugsubstance PMice Inbred StrainsReceptors Neurokinin-2Receptors Neurokinin-1ImmunohistochemistrySettore BIO/09 - FisiologiaPeptide FragmentsMice Inbred C57BLMiceneurokinin ANeurokinin-1 Receptor Antagonistsgastric relaxationnitric oxidePapersAnimalsTachykininGastrointestinal Motility
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Fine mapping of the 2p11 dyslexia locus and exclusion of TACR1 as a candidate gene.

2003

Developmental dyslexia, or reading disability, is a multigenic complex disease for which at least five loci, i.e. DYX1-3 and DYX5-6, have been clearly identified from the human genome. To date, DYX1C1 is the only dyslexia candidate gene cloned. We have previously reported linkage to 2p11 and 7q32 in 11 Finnish pedigrees. Here, we report the fine mapping of the approximately 40-cM linked region from chromosome 2 as we increased marker density to one per 1.8 cM. Linkage was supported with the highest NPL score of 3.0 (P=0.001) for marker D2S2216. Association analysis using the six pedigrees showing linkage pointed to marker D2S286/rs3220265 (P value0.001) in the near vicinity of D2S2216. We w…

Genetic MarkersCandidate geneLocus (genetics)Quantitative trait locusBiologyPolymorphism Single NucleotideDyslexia03 medical and health sciences0302 clinical medicineGene mappingGenetic linkageGeneticsmedicineHumansGenetics (clinical)FinlandReceptors Tachykinin030304 developmental biologyGenetics0303 health sciencesGene Expression ProfilingHaplotypeDyslexiaChromosome Mappingmedicine.diseaseBlotting NorthernPedigreeGenetic markerChromosomes Human Pair 2030217 neurology & neurosurgeryMicrosatellite RepeatsHuman genetics
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The Tachykinin Neuroimmune Connection in Inflammatory Pain

1991

Inflammationbusiness.industryCalcitonin Gene-Related PeptideGeneral NeuroscienceModels NeurologicalNeuropeptidesGenes fosPainSubstance PInflammatory painArthritis ExperimentalNervous SystemGeneral Biochemistry Genetics and Molecular BiologyRatsConnection (mathematics)History and Philosophy of ScienceTachykininsAnimalsHumansMedicineNervous System Physiological PhenomenaNeurons AfferentbusinessNeuroscienceAnnals of the New York Academy of Sciences
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Pancreatic polypeptide stimulates mouse gastric motor activity through peripheral neural mechanisms

2016

Background Pancreatic polypeptide (PP) is supposed to be one of the major endogenous agonists of the neuropeptide Y4 receptor. Pancreatic polypeptide can influence gastrointestinal motility, acting mainly through vagal mechanisms, but whether PP acts directly on the stomach has not been explored yet. The aims of this study were to investigate the effects of PP on mouse gastric emptying, on spontaneous tone of whole stomach in vitro and to examine the mechanism of action. Methods Gastric emptying was measured by red phenol method after i.p. PP administration (1–3 nmol per mouse). Responses induced by PP (1–300 mmol L−1) on gastric endoluminal pressure were analyzed in vitro in the presence o…

Male0301 basic medicinemedicine.medical_specialtyPhysiologyGastric emptyingMuscarinic AntagonistsBiologyEndocrine and Autonomic SystemMice03 medical and health sciencesOrgan Culture Techniques0302 clinical medicineInternal medicineMuscarinic acetylcholine receptormedicineAnimalsPancreatic polypeptidePeripheral NervesPancreatic polypeptideReceptorAntrumDose-Response Relationship DrugGastric emptyingEndocrine and Autonomic SystemsStomachGastroenterologyMotilityAcetylcholineReceptors Neuropeptide YMice Inbred C57BL030104 developmental biologyEndocrinologymedicine.anatomical_structureMechanism of actionTachykininmedicine.symptomEnteric nervous systemGastrointestinal Motility030217 neurology & neurosurgeryAcetylcholinemedicine.drug
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Altered tachykinergic influence on gastric mechanical activity in mdx mice

2006

Abstract This study investigated whether alterationsin gastric activity in dystrophic mdx mouse can beattributed to dysfunctions of tachykinins. Endolumi-nal pressure was recorded and the expression ofneuronal nitric oxide synthase (nNOS), NK1 and NK2neurokinin receptors was investigated by immunoh-istochemistry. SR48968, NK2 receptor antagonist, butnot SR140333, NK1 receptor antagonist, decreased thetone only in mdx gastric preparations. In the presenceof N x -nitro- L -arginine methyl ester ( L -NAME), inhib-itor of NOS, SR48968 reduced the tone also in normalstomach. [Sar 9 , Met(O 2 ) 11 ]-SP, agonist of NK1 recep-tors, caused tetrodotoxin-sensitive relaxations, antag-onized by SR140333…

MaleAgonistQuinuclidinesmedicine.medical_specialtymdx mouseManometryPhysiologymedicine.drug_classNitric Oxide Synthase Type ISettore BIO/09 - FisiologiaNitric oxideMicechemistry.chemical_compoundimmunohistochemistry mdx mouse nitric oxide stomach tachykininsOrgan Culture TechniquesNeurokinin-1 Receptor AntagonistsPiperidinesTachykininsInternal medicinemedicineAnimalsEnzyme InhibitorsReceptorbiologyEndocrine and Autonomic SystemsStomachStomachGastroenterologyAntagonistMuscle SmoothReceptors Neurokinin-2Receptors Neurokinin-1musculoskeletal systemImmunohistochemistryMuscular Dystrophy DuchenneNitric oxide synthaseDisease Models AnimalNG-Nitroarginine Methyl Estermedicine.anatomical_structureEndocrinologychemistryMuscle TonusBenzamidesMice Inbred mdxbiology.proteinNK1 receptor antagonistGastrointestinal MotilityMuscle Contraction
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Alterations in striatal neuropeptide mRNA produced by repeated administration of L-DOPA, ropinirole or bromocriptine correlate with dyskinesia induct…

2002

Chronic administration of L-DOPA to MPTP-treated common marmosets induces marked dyskinesia while repeated administration of equivalent antiparkisonian doses of ropinirole and bromocriptine produces only mild involuntary movements. The occurrence of dyskinesia has been associated with an altered balance between the direct and indirect striatal output pathways. Using in situ hybridisation histochemistry, we now compare the effects of these drug treatments on striatal preproenkephalin-A (PPE-A) and adenosine A(2a) receptor mRNA expression as markers of the indirect pathway and striatal preprotachykinin (PPT) mRNA and preproenkephalin-B (PPE-B, prodynorphin) mRNA expression as markers of the d…

MaleDyskinesia Drug-Inducedmedicine.medical_specialtyIndolesCaudate nucleusStriatumIndirect pathway of movementAntiparkinson AgentsLevodopachemistry.chemical_compoundDopamine Uptake InhibitorsParkinsonian DisordersTachykininsInternal medicineNeural PathwaysmedicineAnimalsheterocyclic compoundsRNA MessengerProtein PrecursorsBromocriptineGeneral NeuroscienceMPTPPutamenNeuropeptidesReceptors Purinergic P1CallithrixEnkephalinsMazindoldopamine agonists peptide mRNAs L-DOPA 1-methyl-4-phenyl-1236-tetrahydropyridine primates dyskinesiaBromocriptinenervous system diseasesNeostriatumRopiniroleEndocrinologynervous systemchemistryDyskinesiaSettore BIO/14 - FarmacologiaFemalemedicine.symptommedicine.drugNeuroscience
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