Publication |
Sentence |
Publish Date |
Extraction Date |
Species |
K Toyoshima, Y Seta, T Toyono, S Taked. Merkel cells are responsible for the initiation of taste organ morphogenesis in the frog. The Journal of comparative neurology. vol 406. issue 1. 1999-05-11. PMID:10100896. |
in the same fashion as type iii cells in mammalian taste buds, these basal cells show immunoreactivity for serotonin antibody. |
1999-05-11 |
2023-08-12 |
Not clear |
S R Hansson, E Mezey, B J Hoffma. Serotonin transporter messenger RNA expression in neural crest-derived structures and sensory pathways of the developing rat embryo. Neuroscience. vol 89. issue 1. 1999-04-26. PMID:10051233. |
several sensory organs (cochlear and retinal ganglionic cells, taste buds, whisker and hair follicles) contained serotonin transporter messenger rna by late gestation. |
1999-04-26 |
2023-08-12 |
rat |
J Gommans, J A Bouwknecht, T H Hijzen, H H Berendsen, C L Broekkamp, R A Maes, B Olivie. Stimulus properties of fluvoxamine in a conditioned taste aversion procedure. Psychopharmacology. vol 140. issue 4. 1999-03-29. PMID:9888626. |
a conditioned taste aversion (cta) procedure in mice was used to investigate the stimulus effects of the serotonin reuptake inhibitors (ssris) fluvoxamine and fluoxetine. |
1999-03-29 |
2023-08-12 |
mouse |
K Hamasaki, Y Seta, K Yamada, K Toyoshim. Possible role of serotonin in Merkel-like basal cells of the taste buds of the frog, Rana nigromaculata. Journal of anatomy. vol 193 ( Pt 4). 1999-03-15. PMID:10029193. |
possible role of serotonin in merkel-like basal cells of the taste buds of the frog, rana nigromaculata. |
1999-03-15 |
2023-08-12 |
Not clear |
S Hu, S Wang, J Gibson, T A Gilbertso. Inhibition of delayed rectifier K+ channels by dexfenfluramine (Redux). The Journal of pharmacology and experimental therapeutics. vol 287. issue 2. 1998-12-07. PMID:9808670. |
in light of recent reports linking k+ channel modulation with food intake and macronutrient preference, we investigated the effect of anorectic agent dexfenfluramine (d-ff), a 5-ht reuptake inhibitor and releasing agent, on the delayed rectifier k+ (drk) channels in rat lingual taste cells using the patch-clamp technique in whole-cell configuration. |
1998-12-07 |
2023-08-12 |
rat |
J A Rudd, M P Ngan, M K Wa. 5-HT3 receptors are not involved in conditioned taste aversions induced by 5-hydroxytryptamine, ipecacuanha or cisplatin. European journal of pharmacology. vol 352. issue 2-3. 1998-11-04. PMID:9716348. |
5-ht3 receptors are not involved in conditioned taste aversions induced by 5-hydroxytryptamine, ipecacuanha or cisplatin. |
1998-11-04 |
2023-08-12 |
rat |
J A Rudd, M P Ngan, M K Wa. 5-HT3 receptors are not involved in conditioned taste aversions induced by 5-hydroxytryptamine, ipecacuanha or cisplatin. European journal of pharmacology. vol 352. issue 2-3. 1998-11-04. PMID:9716348. |
we have used the rat to examine the involvement of the 5-ht3 receptor in the mechanism(s) of conditioned taste aversion induced by 5-hydroxytryptamine (5-ht) and selected emetic drugs. |
1998-11-04 |
2023-08-12 |
rat |
J A Rudd, M P Ngan, M K Wa. 5-HT3 receptors are not involved in conditioned taste aversions induced by 5-hydroxytryptamine, ipecacuanha or cisplatin. European journal of pharmacology. vol 352. issue 2-3. 1998-11-04. PMID:9716348. |
5-ht, ipecacuanha and cisplatin all induced conditioned taste aversion at doses known to induce emesis in other species but the responses were resistant to treatment with the 5-ht3 receptor antagonists ondansetron and granisetron. |
1998-11-04 |
2023-08-12 |
rat |
T Nagai, R J Delay, J Welton, S D Rope. Uptake and release of neurotransmitter candidates, [3H]serotonin, [3H]glutamate, and [3H]gamma-aminobutyric acid, in taste buds of the mudpuppy, Necturus maculosus. The Journal of comparative neurology. vol 392. issue 2. 1998-04-14. PMID:9512269. |
uptake and release of neurotransmitter candidates, [3h]serotonin, [3h]glutamate, and [3h]gamma-aminobutyric acid, in taste buds of the mudpuppy, necturus maculosus. |
1998-04-14 |
2023-08-12 |
Not clear |
T Nagai, R J Delay, J Welton, S D Rope. Uptake and release of neurotransmitter candidates, [3H]serotonin, [3H]glutamate, and [3H]gamma-aminobutyric acid, in taste buds of the mudpuppy, Necturus maculosus. The Journal of comparative neurology. vol 392. issue 2. 1998-04-14. PMID:9512269. |
merkel-like basal taste cells accumulated [3h]serotonin. |
1998-04-14 |
2023-08-12 |
Not clear |
T Nagai, R J Delay, J Welton, S D Rope. Uptake and release of neurotransmitter candidates, [3H]serotonin, [3H]glutamate, and [3H]gamma-aminobutyric acid, in taste buds of the mudpuppy, Necturus maculosus. The Journal of comparative neurology. vol 392. issue 2. 1998-04-14. PMID:9512269. |
these data support the hypothesis that serotonin is a neurotransmitter or neuromodulator released by merkel-like basal cells in necturus taste buds. |
1998-04-14 |
2023-08-12 |
Not clear |
H H Berendsen, C L Broekkam. Indirect in vivo 5-HT1A-agonistic effects of the new antidepressant mirtazapine. Psychopharmacology. vol 133. issue 3. 1998-01-07. PMID:9361334. |
in the cross-familiarization conditioned taste aversion experiments it was found that the conditioned taste aversion induced by mirtazapine (0.32 mg/kg) could be prevented if the mice were pre-exposed to injections with mirtazapine (0.22 and 0.46 mg/kg), 8-oh-dpat (0.22 and 0.46 mg/kg) and after pre-exposure to the 5-ht reuptake inhibitor fluoxetine (22 mg/kg). |
1998-01-07 |
2023-08-12 |
mouse |
S Herness, Y Che. Serotonin inhibits calcium-activated K+ current in rat taste receptor cells. Neuroreport. vol 8. issue 15. 1997-12-22. PMID:9351653. |
serotonin inhibits calcium-activated k+ current in rat taste receptor cells. |
1997-12-22 |
2023-08-12 |
rat |
S Herness, Y Che. Serotonin inhibits calcium-activated K+ current in rat taste receptor cells. Neuroreport. vol 8. issue 15. 1997-12-22. PMID:9351653. |
serotonin has been immunocytochemically localized to taste cells of several species but its physiological actions are unknown. |
1997-12-22 |
2023-08-12 |
rat |
S Herness, Y Che. Serotonin inhibits calcium-activated K+ current in rat taste receptor cells. Neuroreport. vol 8. issue 15. 1997-12-22. PMID:9351653. |
using whole-cell patch clamp recordings on dissociated posterior rat taste cells, data are presented to suggest that exogenously applied serotonin inhibits a calcium-activated potassium current by up to 50%. |
1997-12-22 |
2023-08-12 |
rat |
S Herness, Y Che. Serotonin inhibits calcium-activated K+ current in rat taste receptor cells. Neuroreport. vol 8. issue 15. 1997-12-22. PMID:9351653. |
these are the first data to establish a physiological effect of serotonin on mammalian taste cells. |
1997-12-22 |
2023-08-12 |
rat |
Y Yamamoto, Y Atoji, Y Suzuk. Innervation of taste buds in the canine larynx as revealed by immunohistochemistry for the various neurochemical markers. Tissue & cell. vol 29. issue 3. 1997-08-19. PMID:9225485. |
the taste cells were immunoreactive for pgp 9.5 and serotonin. |
1997-08-19 |
2023-08-12 |
Not clear |
R J Delay, S C Kinnamon, S D Rope. Serotonin modulates voltage-dependent calcium current in Necturus taste cells. Journal of neurophysiology. vol 77. issue 5. 1997-07-30. PMID:9163373. |
serotonin modulates voltage-dependent calcium current in necturus taste cells. |
1997-07-30 |
2023-08-12 |
Not clear |
R J Delay, S C Kinnamon, S D Rope. Serotonin modulates voltage-dependent calcium current in Necturus taste cells. Journal of neurophysiology. vol 77. issue 5. 1997-07-30. PMID:9163373. |
although merkel-like basal cells cannot interact directly with taste stimuli, recent studies have shown that merkel-like basal cells contain serotonin (5-ht), which may be released onto taste receptor cells in response to taste stimulation. |
1997-07-30 |
2023-08-12 |
Not clear |
R J Delay, S C Kinnamon, S D Rope. Serotonin modulates voltage-dependent calcium current in Necturus taste cells. Journal of neurophysiology. vol 77. issue 5. 1997-07-30. PMID:9163373. |
with the use of whole cell voltage clamp, we examined whether focal applications of 5-ht to isolated taste receptor cells affected voltage-activated calcium current (i(ca)). |
1997-07-30 |
2023-08-12 |
Not clear |