1998
Galanin–5-hydroxytryptamine interactions: electrophysiological, immunohistochemical and in situ hybridization studies on rat dorsal raphe neurons with a note on galanin R1 and R2 receptors
Xu Z, Zhang X, Pieribone VA, Grillner S, Hökfelt T. Galanin–5-hydroxytryptamine interactions: electrophysiological, immunohistochemical and in situ hybridization studies on rat dorsal raphe neurons with a note on galanin R1 and R2 receptors. Neuroscience 1998, 87: 79-94. PMID: 9722143, DOI: 10.1016/s0306-4522(98)00151-1.Peer-Reviewed Original ResearchConceptsDorsal raphe neuronsRaphe neuronsRat dorsal raphe neuronsCell bodiesOutward currentsInhibitory effectGalanin-like immunoreactivityDorsal raphe nucleusDose-dependent hyperpolarizationExtracellular potassium concentrationGalaninergic mechanismsSitu hybridization studiesGalanin receptorsRaphe nucleusSynaptic contactsNerve endingsPostsynaptic receptorsSoma levelGalaninImmunohistochemical analysisR2 receptorsGalanin R1NeuronsMood regulationPhysiological concentrations
1991
Initial observations on the localization of mRNA for α and β adrenergic receptors in brain and peripheral tissues of rat using in situ hybridization
Nicholas A, Pieribone V, Elde R, Hökfelt T. Initial observations on the localization of mRNA for α and β adrenergic receptors in brain and peripheral tissues of rat using in situ hybridization. Molecular And Cellular Neuroscience 1991, 2: 344-350. PMID: 19912818, DOI: 10.1016/1044-7431(91)90065-v.Peer-Reviewed Original ResearchCerebral cortexAdrenergic receptorsSpinal gray matterMedullary raphe nucleiDorsal root gangliaBeta-adrenergic receptorsLocation of alphaPrevious autoradiographic studiesSelective labeling patternsRaphe nucleusBasal gangliaRoot gangliaPeripheral organsSpinal cordPeripheral tissuesSpecific radioligandHippocampal formationAdrenal medullaCerebellar cortexPharmacological manipulationGray matterAutoradiographic studyKidneyBrainCortex