scholarly article | Q13442814 |
P2093 | author name string | Alexandra Madeira | |
Daniel Vergé | |||
Genevieve Daval | |||
Jacqueline Fischer | |||
Marie Conrath | |||
Marie-Jeanne Brisorgueil | |||
Rozenn Bernard | |||
Stéphane Doly | |||
P2860 | cites work | Autoradiographic localization of 5-hydroxytryptamine1A, 5-hydroxytryptamine1B and 5-hydroxytryptamine1C/2 binding sites in the rat spinal cord | Q72878525 |
5-HT2A receptor subtype is involved in the thermal hyperalgesic mechanism of serotonin in the periphery | Q77153074 | ||
NK1, NMDA, 5HT1a, and 5HT2 receptor binding sites in the rat lumbar spinal cord: modulation following sciatic nerve crush | Q77753576 | ||
A review of central 5-HT receptors and their function | Q28142963 | ||
Cloning of the human serotonin 5-HT2 and 5-HT1C receptor subtypes | Q28283410 | ||
Cellular and subcellular distribution of the serotonin 5-HT2A receptor in the central nervous system of adult rat | Q28565096 | ||
Subcellular distribution of 5-hydroxytryptamine2A and N-methyl-D-aspartate receptors within single neurons in rat motor and limbic striatum | Q28580135 | ||
Synaptic control of motoneuronal excitability. | Q30360691 | ||
Serotoninergic and noradrenergic axonal contacts associated with premotor interneurons in spinal pathways from group II muscle afferents. | Q30857290 | ||
Coupling between serotoninergic and noradrenergic neurones and gamma-motoneurones in the cat. | Q30916446 | ||
Serotonin 2A receptor-like immunoreactivity is detected in astrocytes but not in oligodendrocytes of rat spinal cord | Q31885736 | ||
Fine structure and synaptic architecture of HRP-labelled primary afferent terminations in lamina IIi of the rat dorsal horn | Q33544773 | ||
The role of serotonin in reflex modulation and locomotor rhythm production in the mammalian spinal cord | Q34134149 | ||
Serotonin immunoreactive boutons make synapses with feline phrenic motoneurons. | Q34537839 | ||
Descending control of pain | Q34659433 | ||
5-Hydroxytryptamine2A serotonin receptors in the primate cerebral cortex: possible site of action of hallucinogenic and antipsychotic drugs in pyramidal cell apical dendrites | Q35743814 | ||
Direct immunocytochemical localization of 5-hydroxytryptamine receptors in the adult rat spinal cord: a light and electron microscopic study using an anti-idiotypic antiserum | Q36736816 | ||
Ultrastructural immunolabeling shows prominent presynaptic vesicular localization of delta-opioid receptor within both enkephalin- and nonenkephalin-containing axon terminals in the superficial layers of the rat cervical spinal cord | Q39757583 | ||
5-Hydroxytryptamine receptor subtype messenger RNAs in rat peripheral sensory and sympathetic ganglia: a polymerase chain reaction study | Q43547955 | ||
Distribution of serotonin 2A, 2C and 3 receptor mRNA in spinal cord and medulla oblongata | Q43581473 | ||
Expression of 5-HT2A receptor mRNA in rat spinal dorsal horn and some nuclei of brainstem after peripheral inflammation | Q43590178 | ||
Distribution of serotonin 2A and 2C receptor mRNA expression in the cervical ventral horn and phrenic motoneurons following spinal cord hemisection | Q43611980 | ||
Changes of the expression of 5-HT receptor subtype mRNAs in rat dorsal root ganglion by complete Freund's adjuvant-induced inflammation | Q43662583 | ||
5-HT(2A) receptors: location and functional analysis in intestines of wild-type and 5-HT(2A) knockout mice | Q43964308 | ||
Similar ultrastructural distribution of the 5-HT(2A) serotonin receptor and microtubule-associated protein MAP1A in cortical dendrites of adult rat. | Q44068203 | ||
Locomotor recovery in the chronic spinal rat: effects of long-term treatment with a 5-HT2 agonist. | Q44112603 | ||
5-HT2A receptor subtype in the peripheral branch of sensory fibers is involved in the potentiation of inflammatory pain in rats | Q44140967 | ||
Serotonin potentiation of glycine-activated whole-cell currents in the superficial laminae neurons of the rat spinal dorsal horn is mediated by protein kinase C. | Q44173999 | ||
Antinociceptive effect of ketanserin in mice: involvement of supraspinal 5-HT2 receptors in nociceptive transmission | Q44192019 | ||
Ultrastructural localization of serotonin2A receptors in the middle layers of the rat prelimbic prefrontal cortex | Q44283555 | ||
5-HT2 receptors promote plateau potentials in turtle spinal motoneurons by facilitating an L-type calcium current. | Q44307018 | ||
Activation of delta opioid receptors induces receptor insertion and neuropeptide secretion | Q44340257 | ||
Localization and regulation of the delta-opioid receptor in dorsal root ganglia and spinal cord of the rat and monkey: evidence for association with the membrane of large dense-core vesicles | Q44347921 | ||
Apposition of enkephalin- and neurotensin-immunoreactive neurons by serotonin-immunoreactive varicosities in the rat spinal cord. | Q47930652 | ||
The cellular localization of 5-HT2A receptors in the spinal cord and spinal ganglia of the adult rat. | Q47962801 | ||
Distribution of the serotonin 5-HT2 receptor family mRNAs: comparison between 5-HT2A and 5-HT2C receptors | Q48149092 | ||
Effects of 5,7-dihydroxytryptamine on serotonin1 and serotonin2 receptors throughout the rat central nervous system using quantitative autoradiography | Q48205947 | ||
Distribution of 5-hydroxytryptamine-immunoreactive boutons on immunohistochemically-identified Renshaw cells in cat and rat lumbar spinal cord | Q48253548 | ||
Spinal cord location of the motoneurons innervating the abdominal, cutaneous maximus, latissimus dorsi and longissimus dorsi muscles in the cat. | Q48255486 | ||
Functional chemical neuroanatomy of serotonergic neurons and their targets: antibody production and immunohistochemistry (IHC) for 5-HT, its precursor (5-HTP) and metabolite (5-HIAA), biosynthetic enzyme (TPH), transporter (SERT), and three receptor | Q48294684 | ||
Serotonin innervation of physiologically identified lamina I projection neurons | Q48355559 | ||
Evidence for nonsynaptic serotonergic and noradrenergic innervation of the rat dorsal horn and possible involvement of neuron-glia interactions | Q48369577 | ||
Quantitative autoradiographic mapping of serotonin receptors in the rat brain. II. Serotonin-2 receptors | Q48436879 | ||
Topographic principles in the spinal projections of serotonergic and non-serotonergic brainstem neurons in the rat. | Q48481465 | ||
Serotoninergic axonal contacts on identified cat spinal dorsal horn neurons and their correlation with nucleus raphe magnus stimulation | Q48629578 | ||
Immunohistochemical localization of 5-HT2A receptors in peripheral sensory axons in rat glabrous skin | Q48655679 | ||
Association of serotonin-like immunoreactive axons with nociceptive projection neurons in the caudal spinal trigeminal nucleus of the rat | Q48656361 | ||
Autoradiographic mapping of 5-HT1, 5-HT1A, 5-HT1B and 5-HT2 receptors in the rat spinal cord | Q48719545 | ||
Serotonin immunoreactive boutons form close appositions with respiratory neurons of the dorsal respiratory group in the cat. | Q48971994 | ||
Origins of serotonergic projections to the spinal cord in rat: an immunocytochemical-retrograde transport study | Q49135237 | ||
5-Hydroxytryptamine responses in neonate rat motoneurones in vitro. | Q51725023 | ||
Monoclonal antibodies to substance P: production, characterization of their fine specificities, and use in immunocytochemistry. | Q54329382 | ||
A study of 5-HT-receptors associated with afferent nerves located in normal and inflamed rat ankle joints | Q68019036 | ||
Receptor mediation of 5-HT-induced inflammation and nociception in rats | Q68053225 | ||
Analgesic profile of centrally administered 2-methylserotonin against acute pain in rats | Q68063229 | ||
Serotonin and L-norepinephrine as mediators of altered excitability in neonatal rat motoneurons studied in vitro | Q68123074 | ||
Serotonergic innervation of the dorsal horn of rat spinal cord: light and electron microscopic immunocytochemical study | Q70190518 | ||
Presence or absence of TrkA protein distinguishes subsets of small sensory neurons with unique cytochemical characteristics and dorsal horn projections | Q70871638 | ||
Restoration of extensor excitability in the acute spinal cat by the 5-HT2 agonist DOI | Q71276636 | ||
Fine structure of serotonin-containing axons in the marginal zone of the rat spinal cord | Q71788311 | ||
Two types of synaptic glomeruli and their distribution in laminae I-III of the rat spinal cord | Q71841031 | ||
Ultrastructural morphology, synaptic relationships, and CGRP immunoreactivity of physiologically identified c‐fiber terminals in the monkey spinal cord | Q72073789 | ||
5-Hydroxytryptamine2a, 5-hydroxytryptamine2B, and 5-hydroxytryptamine2C receptor mRNA expression in the spinal cord of rat, cat, monkey and human | Q72110352 | ||
Immunocytochemical identification of serotonin axonal contacts on characterized neurons in laminae I and II of the cat dorsal horn | Q72704928 | ||
Pharmacological characterization of the effects of 5-hydroxytryptamine and different prostaglandins on peripheral sensory neurons in vitro | Q72795628 | ||
P433 | issue | 4 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 496-511 | |
P577 | publication date | 2004-05-01 | |
P1433 | published in | The Journal of Comparative Neurology | Q3186907 |
P1476 | title | The 5-HT2A receptor is widely distributed in the rat spinal cord and mainly localized at the plasma membrane of postsynaptic neurons | |
P478 | volume | 472 |
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Q42839466 | A pronociceptive role for the 5-HT2 receptor on spinal nociceptive transmission: an in vivo electrophysiological study in the rat |
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Q37353266 | Locomotor-activated neurons of the cat. I. Serotonergic innervation and co-localization of 5-HT7, 5-HT2A, and 5-HT1A receptors in the thoraco-lumbar spinal cord |
Q41598791 | Monoamine Release in the Cat Lumbar Spinal Cord during Fictive Locomotion Evoked by the Mesencephalic Locomotor Region |
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Q50850838 | Repeated administration of mirtazapine attenuates oxaliplatin-induced mechanical allodynia and spinal NR2B up-regulation in rats. |
Q50123272 | Review: 5-Ht1, 5-Ht2, 5-Ht3, And 5-Ht7 Receptors And Their Role In The Modulation Of Pain Response In The Central Nervous System. |
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