• Title/Summary/Keyword: Serotonergic

검색결과 133건 처리시간 0.025초

5-Hydroxytryptamine Inhibits Glutamatergic Synaptic Transmission in Rat Corticostriatal Brain Slice

  • Cho, Hyeong-Seok;Choi, Se-Joon;Kim, Ki-Jung;Lee, Hyun-Ho;Kim, Seong-Yun;Cho, Young-Jin;Sung, Ki-Wug
    • The Korean Journal of Physiology and Pharmacology
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    • 제9권5호
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    • pp.255-262
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    • 2005
  • Striatum is involved in the control of movement and habitual memory. It receives glutamatergic input from wide area of the cerebral cortex as well as an extensive serotonergic (5-hydroxytryptamine, 5-HT) input from the raphe nuclei. In our study, the effects of 5-HT on synaptic transmission were studied in the rat corticostriatal brain slice using in vitro whole-cell recording technique. 5-HT inhibited the amplitude as well as frequency of spontaneous excitatory postsynaptic currents (sEPSC) significantly, and neither ${\gamma}-aminobutyric$ acid (GABA)A receptor antagonist bicuculline (BIC), nor $N-methyl-_{D}-aspartate$ (NMDA) receptor antagonist, $_{DL}-2-amino-5-phosphonovaleric$ acid (AP-V) could block the effect of 5-HT. In the presence non-NMDA receptor antagonist, 2,3-dioxo-6-nitro-1,2,3,4-tetrahydrobenxo[f] quinoxaline-7-sulfonamide (NBQX), the inhibitory effect of 5-HT was blocked. We also figured out that 5-HT change the channel kinetics of the sEPSC. There was a significant increase in the rise time during the 5-HT application. Our results suggest that 5-HT has an effect on both pre- and postsynaptic site with decreasing neurotransmitter release probability of glutamate and decreasing the sensitivity to glutamate by increasing the rise time of non-NMDA receptor mediated synaptic transmission in the corticostriatal synapses.

쥐의 신경병증성 통증 모델에서 트라마돌의 진통효과 (Antinociceptive Effects of Tramadol on the Neuropathic Pain in Rats)

  • 송경화;김현정;염광원
    • The Korean Journal of Pain
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    • 제14권2호
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    • pp.150-155
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    • 2001
  • Background: Tramadol is known to be a weak opioid. However, it has also been shown that tramadol is an effective norepinephrine and serotonin uptake blocker, which may be effective in the treatment of neuropathic pain. The present study was undertaken in order to assess the antinociceptive action of tramadol and to investigate possible antinociceptive mechanisms by using antagonists in an animal neuropathic pain models in rats. Methods: Rats were prepared with tight ligation at the left 5 and 6th lumbar spinal nerves (Kim and Chung's neuropathic pain model). The antinociceptive effects of tramadol (10, 20, and 50 mg/kg i.p.) in rats with neuropathic pain were assessed. Additionally, following coadministration of antagonists such as naloxone (1 mg/kg i.p.), yohimbine (1 mg/kg i.p.) and ritanserin (1 mg/kg i.p.) with 50 mg/kg of tramadol, the responses to mechanical and thermal stimuli were measured over a two-hour period. Results: Tramadol displayed potent antinociceptive effects in a dose-dependent manner on rats with neuropathic pain (P < 0.05). The effects of tramadol were inhibited by coadministered naloxone and yohimbine in rats with mechanical and thermal allodynia, respectively (P < 0.05). However, there were no significant changes in the pain behaviors in the case of ritanserin. Conclusions: Tramadol showed significant antinociceptive effects in rats with regards to neuropathic pain against both mechanical and thermal allodynia. The antinociceptive effect on the mechanical stimuli is medicated via an opioid receptor. However, it appears that the antinociceptive effects on thermal allodynia are mediated via a noradrenalin receptor vice a serotonergic receptor.

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Developmental Switch of the Serotonergic Role in the Induction of Synaptic Long-term Potentiation in the Rat Visual Cortex

  • Park, Sung-Won;Jang, Hyun-Jong;Cho, Kwang-Hyun;Kim, Myung-Jun;Yoon, Shin-Hee;Rhie, Duck-Joo
    • The Korean Journal of Physiology and Pharmacology
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    • 제16권1호
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    • pp.65-70
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    • 2012
  • Synaptic long-term potentiation (LTP) and long-term depression (LTD) have been studied as mechanisms of ocular dominance plasticity in the rat visual cortex. Serotonin (5-hydroxytryptamine, 5-HT) inhibits the induction of LTP and LTD during the critical period of the rat visual cortex (postnatal 3~5 weeks). However, in adult rats, the increase in 5-HT level in the brain by the administration of the selective serotonin reuptake inhibitor (SSRI) fluoxetine reinstates ocular dominance plasticity and LTP in the visual cortex. Here, we investigated the effect of 5-HT on the induction of LTP in the visual cortex obtained from 3- to 10-week-old rats. Field potentials in layer 2/3, evoked by the stimulation of underlying layer 4, was potentiated by theta-burst stimulation (TBS) in 3- and 5-weekold rats, then declined to the baseline level with aging to 10 weeks. Whereas 5-HT inhibited the induction of LTP in 5-week-old rats, it reinstated the induction of N-methyl-D-aspartate receptor (NMDA)-dependent LTP in 8- and 10-week-old rats. Moreover, the selective SSRI citalopram reinstated LTP. The potentiating effect of 5-HT at 8 weeks of age was mediated by the activation of 5-$HT_2$ receptors, but not by the activation of either 5-$HT_{1A}$ or 5-$HT_3$ receptors. These results suggested that the effect of 5-HT on the induction of LTP switches from inhibitory in young rats to facilitatory in adult rats.

The Characteristics of Supramammillary Cells Projecting to the Hippocampus in Stress Response in the Rat

  • Choi, Woong-Ki;Wirtshafter, David;Park, Hyun-Jung;Lee, Mi-Sook;Her, Song;Shim, In-Sop
    • The Korean Journal of Physiology and Pharmacology
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    • 제16권1호
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    • pp.17-24
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    • 2012
  • The hypothalamus-pituitary-adrenocortex (HPA) axis is the central mediator of the stress response. The supramammillary (SuM) region is relatively unique among the hypothalamic structures in that it sends a large, direct projection to the hippocampal formation. It has been shown that mild stress could activate the SuM cells that project to the hippocampus. However, the role of these cell populations in modulating the stress response is not known. The present study examined the effect of stress on different populations of SuM cells that project to the hippocampus by injecting the fluorescent retrograde tracer, fluorogold (FG), into the hippocampus and utilizing the immunohistochemistry of choline acetyltransferase (ChAT), corticotrophin releasing factor (CRF), serotonin (5-HT), glutamate decarboxylase (GAD), tyrosine hydroxylase (TH) and NADPH-d reactivity. Immobilization (IMO) stress (2 hr) produced an increase in the expression of ChAT- immunoreactivity, and tended to increase in CRF, 5-HT, GAD, TH-immunoreactivity and nitric oxide (NO)-reactivity in the SuM cells. Fifty-three percent of 5-HT, 31% of ChAT and 56% of CRF cells were double stained with retrograde cells from the hippocampus. By contrast, a few retrogradely labeled cells projecting to the hippocampus were immunoreactive for dopamine, ${\gamma}$-aminobutyric acid (GABA) and NO. These results suggest that the SuM region contains distinct cell populations that differentially respond to stress. In addition, the findings suggest that serotonergic, cholinergic and corticotropin releasing cells projecting to the hippocampus within the SuM nucleus may play an important role in modulating stress-related behaviors.

Inhibitory Modulation of 5-Hydroxytryptamine on Corticostriatal Synaptic Transmission in Rat Brain Slice

  • Choi, Se-Joon;Chung, Won-Soon;Kim, Ki-Jung;Sung, Ki-Wug
    • The Korean Journal of Physiology and Pharmacology
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    • 제7권6호
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    • pp.295-301
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    • 2003
  • Striatum plays a crucial role in the movement control and habitual learning. It receives an information from wide area of cerebral cortex as well as an extensive serotonergic (5-hydroxytryptamine, 5-HT) input from raphe nuclei. In the present study, the effects of 5-HT to modulate synaptic transmission were studied in the rat corticostriatal brain slice using in vitro extracellular recording technique. Synaptic responses were evoked by stimulation of cortical glutamatergic inputs on the corpus callosum and recorded in the dorsal striatum. 5-HT reversibly inhibited coticostriatal glutamatergic synaptic transmission in a dose-dependent fashion (5, 10, 50, and $10{\mu}M$), maximally reducing in the corticostriatal population spike (PS) amplitude to $40.1{\pm}5.0$% at a concentration of $50{\mu}M$ 5-HT. PSs mediated by non-NMDA glutamate receptors, which were isolated by bath application of the NMDA receptor antagonist, d,l-2-amino-5-phospohonovaleric acid (AP-V), were decreased by application of $50{\mu}M$ 5-HT. However, PSs mediated by NMDA receptors, that were activated by application of zero $Mg^{2+}$ aCSF, were not significantly affected by $50{\mu}M$ 5-HT. To test whether the corticostriatal synaptic inhibitions by 5-HT might involve a change in the probability of neurotransmitter release from presynaptic nerve terminals, we measured the paired-pulse ratio (PPR) evoked by 2 identical pulses (50 ms interpulse interval), and found that PPR was increased ($33.4{\pm}5.2$%) by 5-HT, reflecting decreased neurotransmitter releasing probability. These results suggest that 5-HT may decrease neurotransmitter release probability of glutamatergic corticostriatal synapse and may be able to selectively decrease non-NMDA glutamate receptor-mediated synaptic transmission.

Effect of Fluoxetine on the Induction of Long-term Potentiation in Rat Frontal Cortex

  • Kim, Hwang-Soo;Kim, Hyun-Sok;Hahn, Sang-June;Kim, Myung-Jun;Yoon, Shin Hee;Jo, Yang-Hyeok;Kim, Myung-Suk;Rhie, Duck-Joo
    • The Korean Journal of Physiology and Pharmacology
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    • 제8권6호
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    • pp.295-300
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    • 2004
  • Serotonin (5-hydroxytroptamine, 5-HT) has been shown to affect the induction of long-term potentiation (LTP) in the cortex such as the hippocampus, the visual cortex and the prefrontal cortex. Fluoxetine, as a selective serotonin reuptake inhibitor, is used in the management of a wide variety of psychological diseases. To study the effect of fluoxetine on the induction of LTP, we recorded the field potential in layer II/III of the frontal cortex from 3-wk-old. LTP was induced in horizontal input by theta burst stimulation (TBS). TBS with two-folds intensity of the test stimulation induced LTP, which was blocked by application of D-AP5 $(50 {\mu}M)$, an NMDA receptor antagonist. Whereas bath application of 5-HT $(10 {\mu}M)$ inhibited the induction of LTP, treatment with the 5-HT depleting agent, para-chloroamphetamine $(PCA,\;10{\mu}M)$, for 2hr did not affect the induction of LTP. Bath application of fluoxetine (1, 3, and $10 {\mu}M)$ suppressed the induction of LTP in concentration-dependent manner, however, fluoxetine did not inhibit the induction of LTP in 5-HT-depleted slices. These results indicate that fluoxetine may inhibit the induction of LTP by modulating serotonergic mechanism in the rat frontal cortex.

Enhancement of GluN2B Subunit-Containing NMDA Receptor Underlies Serotonergic Regulation of Long-Term Potentiation after Critical Period in the Rat Visual Cortex

  • Joo, Kayoung;Rhie, Duck-Joo;Jang, Hyun-Jong
    • The Korean Journal of Physiology and Pharmacology
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    • 제19권6호
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    • pp.523-531
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    • 2015
  • Serotonin [5-hydroxytryptamine (5-HT)] regulates synaptic plasticity in the visual cortex. Although the effects of 5-HT on plasticity showed huge diversity depending on the ages of animals and species, it has been unclear how 5-HT can show such diverse effects. In the rat visual cortex, 5-HT suppressed long-term potentiation (LTP) at 5 weeks but enhanced LTP at 8 weeks. We speculated that this difference may originate from differential regulation of neurotransmission by 5-HT between the age groups. Thus, we investigated the effects of 5-HT on apha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor (AMPAR)-, ${\gamma}$-aminobutyric acid receptor type A (GABAAR)-, and N-methyl-D-aspartic acid receptor (NMDAR)-mediated neurotransmissions and their involvement in the differential regulation of plasticity between 5 and 8 weeks. AMPAR-mediated currents were not affected by 5-HT at both 5 and 8 weeks. GABAAR-mediated currents were enhanced by 5-HT at both age groups. However, 5-HT enhanced NMDAR-mediated currents only at 8 weeks. The enhancement of NMDAR-mediated currents appeared to be mediated by the enhanced function of GluN2B subunit-containing NMDAR. The enhanced GABAAR- and NMDAR-mediated neurotransmissions were responsible for the suppression of LTP at 5 weeks and the facilitation of LTP at 8 weeks, respectively. These results indicate that the effects of 5-HT on neurotransmission change with development, and the changes may underlie the differential regulation of synaptic plasticity between different age groups. Thus, the developmental changes in 5-HT function should be carefully considered while investigating the 5-HT-mediated metaplastic control of the cortical network.

정신분열병환자에서 만발성 운동장애와 $5-HT_6$ 수용체 유전자 다형성(267C/T)과의 관계 (Association between Tardive Dyskinesia and 267C/T Polymorphism of $5-HT_6$ Receptor Gene in Schizophrenia)

  • 한상우;김동현;전용호
    • 생물정신의학
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    • 제11권1호
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    • pp.54-60
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    • 2004
  • Objectives:Tardive dyskinesia(TD) is a serious side effect associated with long-term antipsychotic treatments. Some candidate genetic polymorphisms were reported to be associated with TD and possible involvement of serotonergic receptors in the pathophysiology of TD has been suggested. In the present study, we investigated the association between $5-HT_6$ receptor gene polymorphism and TD with schizophrenia. Methods:To investigate the relationship between $5-HT_6$ receptor gene polymorphism and TD, 60 patients with TD were compared with 60 patients without TD. The 267C/T allele of $5-HT_6$ receptor gene was genotyped by means of polymerase chain reaction method. TD was evaluated using the Abnormal Involuntary Movement Scale(AIMS). Results:The patients with the three 267C/T genotype showed no significant differences in age, gender, and duration of illness. No significant difference in genotype frequencies was observed between schizophrenic patients with and without TD. In addition, there was no difference in allele frequencies. Further analysis with an measure of AIMS scores showed that these scores were not significantly influenced by the $5-HT_6$ receptor gene polymorphism. Conclusion:These results suggest that 267C/T polymorphism of $5-HT_6$ receptor gene is not significantly associated with susceptibility to TD in schizophrenia.

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R347C Polymorphisms in ADRA1A Genes and Mirtazapine Treatment Response in Koreans with Major Depression

  • Koo, Jahyun;Lee, Min-Soo;Ham, Byungju;Won, Eun-Soo
    • 생물정신의학
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    • 제22권4호
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    • pp.179-186
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    • 2015
  • Objectives Adrenergic alpha 1 and 2 receptors work as pathways to control the serotonergic neuron moderation and mirtazapine acts as antagonist of these receptors. The adrenoreceptor alpha 1a (ADRA1A) gene, which encodes adrenergic alpha 1 receptor, has Arg-347Cys genetic polymorphism and the polymorphism has strong relationship with many neuro-psychiatric diseases. In this study, we explored the relationship between ADRA1A R347C polymorphism and mirtazapine treatment response in Koreans with major depression. Methods 352 patients enrolled in this study, and the symptoms were evaluated by 17-item Hamilton Depression Rating (HAMD-17) scale. After 1, 2, 4, 8, and 12 weeks of mirtazapine treatment, the association between ADRA1A R347C polymorphism and remission/response outcomes was evaluated. Results Treatment response to mirtazapine was significantly better in T allele carriers than C allele homozygotes after 12 weeks of mirtazapine monotherapy. The percentile decline of HAMD-17 score in T allele carriers was larger than that of C allele homozygotes. ADRA1A R347C genotypes were not significantly associated with remission. Conclusions The result showed that treatment response to mirtazapine was significantly associated with ADRA1A R347C genetic polymorphism. T allele carriers showed better treatment response than C allele homozygotes. It can be supposed that T allele carriers have a trend of better treatment response to mirtazapine monotherapy.

정신질환에서 Loudness Dependence of Auditory Evoked Potential (LDAEP)의 임상적 의미 (Clinical Implication of Loudness Dependence of Auditory Evoked Potential (LDAEP) in Psychiatic Illness)

  • 이승환
    • 생물정신의학
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    • 제19권1호
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    • pp.29-37
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    • 2012
  • LDAEP와 세로토닌 기능 간의 직접적인 관계의 초기 증거들은 동물 실험으로부터 도출되었고 이후 세로토닌성 장애에 기반한 질병들의 임상 실험을 통하여 간접적인 뒷받침이 이루어 져왔다. 현재까지 LDAEP와 세로토닌 사이의 연관성을 확인해주는 증거는, 우선 세로토닌 시스템 내에서 유전적 polymorphism을 연구하는 것을 통해, 그리고 직접적으로 약물을 투여 하는 방식으로 확보되었다. LDAEP가 연관된 대부분의 연구는 모노아민 시스템에 초점을 맞춰왔으나 LDAEP에 대한 다른 신경전달 시스템의 효과는 거의 알려진 바가 없다. 향후 세로토닌 외에도 도파민, 노르에피네프린, 아세틸콜린 등 다른 신경전달물질과의 연관성에 대한 연구가 필요하다. In vivo 중추 세로토닌 기능의 유효한 비침습적 표지자로서 LDAEP를 확정짓기 전에, 단기적 조절뿐 아니라 장기적 세로토닌성 조절이 포함된 더 많은 연구가 필요하다. 현재까지의 증거로 보면 LDAEP의 가장 유망한 활용은 초기 항우울 치료반응과 관련된 생물학적 지료서의 활용이다. 최근의 연구들은 LDAEP의 노르아드레날린성 그리고 세로토닌성 항우울제 반응에 대한 민감도를 확인했으며 이러한 긍정적인 기초 결과들을 재현하기 위하여 더 많은 연구들이 필요하다.