• Title/Summary/Keyword: dopaminergic antagonist

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Dopamine Modulates Corticostriatal Synaptic Transmission through Both $D_1$ and $D_2$ Receptor Subtypes in Rat Brain

  • Lee, Hyun-Ho;Choi, Se-Joon;Kim, Ki-Jung;Cho, Hyeong-Seok;Kim, Seong-Yun;Sung, Ki-Wug
    • The Korean Journal of Physiology and Pharmacology
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    • v.9 no.5
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    • pp.263-268
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    • 2005
  • Striatum has important roles in motor control, habitual learning and memory. It receives glutamatergic inputs from neocortex and thalamus, and dopaminergic inputs from substantia nigra. We examined effects of dopamine (DA) on the corticostriatal synaptic transmission using in vitro extracellular recording technique in rat brain corticostriatal slices. Synaptic responses were elicited by stimulation of cortical glutamatergic inputs on the corpus callosum and recorded in the dorsal striatum. Corticostriatal population spike (PS) amplitudes were decreased ($39.4{\pm}7.9$%) by the application of $100{\mu}M$ DA. We applied receptor subtype specific agonists and antagonists and characterized the modulation of corticostriatal synaptic transmission by different DA receptor subtypes. $D_2$ receptor agonist (quinpirole), antagonist (sulpiride), and $D_1$ receptor antagonist (SKF 83566), but not $D_1$ receptor agonist (SKF 38393), induced significantly the reduction of striatal PS. Pretreatment neither with SKF 83566 nor sulpiride significantly affected corticostriatal synaptic inhibition by DA. However, the inhibition of DA was completely blocked by pretreatment with mixed solution of both SKF 83566 and sulpiride. These results suggest that DA inhibits corticostriatal synaptic transmission through both $D_1$ and $D_2$ receptors in concert with each other.

Role of Dopamine Receptors on Electroencephalographic Changes Produced by Repetitive Apomorphine Treatments in Rats

  • Jang, Hwan-Soo;Kim, Ji-Young;Kim, Sang-Heon;Lee, Maan-Gee
    • The Korean Journal of Physiology and Pharmacology
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    • v.13 no.3
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    • pp.147-151
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    • 2009
  • Repeated psychostimulants induce electroencephalographic (EEG) changes, which reflect adaptation of the neural substrate related to dopaminergic pathways. To study the role of dopamine receptors in EEG changes, we examined the effect of apomorphine, the dopamine D1 receptor antagonist, SCH-23390, and the D2 receptor antagonist, haloperidol, on EEG in rats. For single and repeated apomorphine treatment groups, the rats received saline or apomorphine for 4 days followed by a 3-day withdrawal period and then apomorphine (2.5 mg/kg, i.p.) challenge after pretreatment with saline, SCH-23390, or haloperidol on the day of the experiment. EEGs from the frontal and parietal cortices were recorded. On the frontal cortex, apomorphine decreased the power of all the frequency bands in the single treatment group, and increased the theta (4.5 ${\sim}$ 8 Hz) and alpha (8 ${\sim}$ 13 Hz) powers in the repeated treatment group. Changes in both groups were reversed to the control values by SCH-23390. On the parietal cortex, single apomorphine treatment decreased the power of some frequency bands, which were reversed by haloperidol but not by SCH-23390. Repeated apomorphine treatment did not produce significant changes in the power profile. These results show that adaptation of dopamine pathways by repeated apomorphine treatment could be identified with EEG changes such as increases in theta and alpha power of the frontal cortex, and this adaptation may occur through changes in the D1 receptor and/or the D2 receptor.

Nefazodone and Associated Perceptual Disturbance : A Report of Four Cases (Nefazodons투여 후 지각이상을 보인 환자 4례)

  • Kim, Ji-Yun;Song, Hyoung-Seok;Cho, Bang-Hyun;Kim, Yong-Ku
    • Korean Journal of Biological Psychiatry
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    • v.6 no.2
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    • pp.259-263
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    • 1999
  • Nefazodone, a newer antidepressant is a phenylpiperazine derivative that inhibits the reuptake of both norepinephrine and serotonin, and antagonizes $5-HT_{2A}$ and ${\alpha}_1$ adrenergic receptors. Compared with SSRIs, nefazodone caused the fewer activating symptoms, adverse gastrointestinal effects(nausea, diarrhea, anorexia) and adverse effects of sexual function, but is associated with the more dizziness, dry mouth, constipation, visual disturbances and confusion. We report on 4 cases of visual disturbances and hallucinations in patients taking nefazodone. It is not certain what mechanisms mediated these side effects, but three mechanisms are possible. 1) Nefazodone, as a 5-HT2 antagonist, might induce visual disturbances. 2) mCPP, metabolite of nefazodone might contribute to the hallucination through action on 5-HT receptor. 3) Dopaminergic enhancing activity of nefazodone might cause hallucination. These case report raises the possibility that dose-related perceptual disturbances may exist with nefazodone. The fact emphasizes the need to pay close attention to all possible drug interactions, particularly in patients treated with multiple psychoactive agents, older patients, and patients with decreased hepatic function.

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Effect of Ginseng Total Saponin on the Development of Psychic and Physical Dependence on Nalbuphine

  • Kim, Hack-Seang;Oh, Ki-Won
    • Biomolecules & Therapeutics
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    • v.2 no.4
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    • pp.316-321
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    • 1994
  • This study was undertaken to estimate whether nalbuphine, a mixed agonist/antagonist opioid analgesic produced psychic dependence. Moreover, the physical dependence liability of nalbuphine was compared with that of morphine after 7 days administrations of the drugs in mice and rats, and the effects of ginseng total saponin (GTS) on the development of physical dependence on nalbuphine were also studied. Nalbuphine did not produce psychic dependence. However, various abstinence signs precipitated by naloxone were observed in nalbuphine-dependent mice and rats. As the nature of the dependence syndrome produced by nalbuphine 30 mg/kg under these conditions seems similar to that induced by morphine 10 mg/kg, it is clear that nalbuphine possesses the substantial abuse potential. Therefore, nalbuphine may be needed to initiate more stringent controls for the prevention of nalbuphine abuse. On the other hand, GTS inhibited the development of physical dependence on nalbuphine and reduced the contents of dopamine and its metabolite in the brains of mice. Accordingly, results of this study suggest that the inhibitory effects of GTS on the development of physical dependence on nalbuphine may involve dopaminergic mechanism. GTS may be useful for the therapy of physical dependence on nalbuphine.

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Interrelationship between Dopaminergic Receptors and Catecholamine Secretion from the Rat Adrenal Gland (흰쥐 부신에서 카테콜아민 분비작용과 도파민 수용체간의 상관성)

  • Lim, Dong-Yoon;Yoon, Joong-Keun;Moon, Baek
    • The Korean Journal of Pharmacology
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    • v.30 no.1
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    • pp.87-100
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    • 1994
  • It has been known for some time that dopamine-containing cells are existed in sympathetic ganglia, i.e., small, intensely fluorescent cells. However, its role and mechanism of action as a peripheral neurotransmitter are poorly understood so far. In the present study, an attempt was made to examine the effect of apomorphine, which is known to be a selective agonist of dopaminergic $D_2$. receptor on secretion of catecholamines (CA) from the isolated perfused rat adrenal gland. The perfusion of a low concentration of 10uM apomorphine into an adrenal vein for 20 min produced significant reduction in CA secretion induced by 5.32 mM ACh, 56 mM KCl, 100 uM DMPP and 100 uM McN-A-343. Increasing apomorphine concentration to 30 uM led to more markedly decreased CA secretion as compared to the case of 10 uM apomorphine and also did inhibit clearly CA release by $10^{-5}M$ Bay-K-8644. Furthermore, in adrenal glands preloaded with a higher dose of 100 uM apomorphine, CA releases evoked by ACh, excess $K^+$, DMPP and McN-A-343 were almost abolished by the drug. The perfusion of $3.3{\pm}10^{-5}M$ metoclopramide, which is well-known as a selective dopaminergic $D_2$ antagonist, produced significantly inhibitory effect of CA release by ACh, DMPP and McN-A-343 but did not affect that by excess $K^+$. However, preloading of 30uM apomorphine in the presence of metoclopramide did not modify the CA secretory effect of excess $K+$ and DMPP. These experimental results demonstrate that apomorphine causes dose-dependent inhibition of CA secretion by cholinergic receptor stimulation and also by membrane depolarization from the isolated perfused rat adrenal gland, suggesting that these effects appear to be exerted by inhibiting influx of extracellular calcium into the rat adrenal medullary chromaffin cells through activation of inhibitory dopaminergic receptors.

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Effects of Clozapine of Plasma Monoamine Metabolites in Refractory Schizophrenia (Clozapine이 불응성 정신분열증 환자의 혈장 단가아민에 미치는 영향)

  • Lee, Min Soo;Kim, Seung Hyun;Ryu, Seung Ho
    • Korean Journal of Biological Psychiatry
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    • v.3 no.2
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    • pp.262-268
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    • 1996
  • It has been known that clozapine is more selective mesolimbic dopamin $D_2$ receptor antagonist and related to 5-HT receptor. In this study, we wxamined the plasma homovanillic acid(HVA), serotonin(5-HT), and 5-hydroxyindoleacetic acid(5-HIM) levels in refractory schizophrenics during clozapine treatment. And we assessed the effects of clozapine on these plasma monoamine metabolites and their association with psychopathology and treatment response. Eight refractory schizophrenic patients(DSM-IV) have entered the study for 3 months during clozapine treatment. Patients were admitted to the inpatient sevice and withdrawn from all neuroleptics for 7-14 days but exceptionally occasional doses of lorazepam was given if needed for behavioral control. The dose of clozapine was titrated as tolerated to 800mg/day. The plasma HVA. 5-HIM and 5-HT levels were measured before treatment and following 2nd week, 4th week, 8th week, and 12th during treatment. Psychopathology was assessed with Brief Psychiatric Rating Scale (BPRS) and Positive and Negative Synrome Scale(PANSS) before and during clozapine treatment. During clozapine treatment, no statistically significant changes were found in plasma HVA, 5-HIM, 5-HT levels, and HVA/5-HIM ratio between baseline and following 2nd week, 4th week, 8th week, 12th week. However, the change in plasma 5-HIAA/5-HT ratio from baseline to 4th week was statistically significant. Generally, changes of plasma HVA, 5-HIAA, 5-HT levels and HVA/5-HIAA ratio were not associated with psychopathology but 5-HIAA was associated with in positive symptoms and general psychopathology of PANSS. These results suggest that clozapine has been found to have relatively weak dopaminergic blokade and stronger serotonergic antagonism.

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The Effect of Combination of Ondansetron and Droperidol on Prevention of Postoperative Nausea and Vomiting (Ondansetron과 Droperidol의 혼합 투여가 술 후 오심과 구토 예방에 미치는 효과)

  • Kim, Dong-Hee;Cho, Duk-Hyun
    • The Korean Journal of Pain
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    • v.14 no.1
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    • pp.46-50
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    • 2001
  • Background: Ondansetron is both a central and peripheral serotonin (5HT) receptor antagonist and droperidol is a dopaminergic blocking drug which acts centrally at the chemoreceptor trigger zone. We assessed the efficacy and adverse effects of ondansetron, droperidol or both, in the prevention of postoperative emesis during postoperative intravenous patient-controlled analgesia (PCA) using butorphanol and ketorolac medication. Methods: We studied 60 women, aged 25-60 yrs, who underwent total abdominal hysterectomy (TAH), under general anesthesia using $N_2O-O_2$-enflurane. A bolus dose of 1 mg of butorphanol and 4 mg of ondansetron were given to patients and thereafter, PCA was started using 10 mg of butorphanol and 240 mg of ketorolac mixed into the 5% D/W solution (total volume; 100 ml, 1 ml of bolus dose, and 10 min of lockout interval). We also added ondansetron 4 mg (Group O, n = 20), ondansetron 4 mg and droperidol 2.5 mg (Group OD, n = 20), or droperidol 2.5 mg (Group D, n = 20) to the PCA drug. The severity of pain, nausea, vomiting, sedation and other side effects were assessed at 0, 1, 2, 6, 12, 24, 36 and 48 hr after awakening. Results: There was no difference in the incidence of nausea and vomiting between the three group [Group O: 4 (20%) and 3 (15%), respectively; Group OD: 1 (5%) and 1 (5%), respectively; Group D: 3 (15%) and 3 (15%), respectively]. Group O showed a lower sedation score than the other groups (P < 0.05). The pain score and other side effects did not show any difference between the groups. Conclusions: The combination of ondansetron and droperidol showed no clinical benefit compared with ondansetron or droperidol alone for prevention of postoperative nausea and vomiting during postoperative PCA using butorphanol and ketorolac.

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Inhibitory Effects of Dihydrexidine on Catecholamine Release from the Rat Adrenal Medulla

  • Lee, Jae-Hwang;Lim, Hyo-Jeong;Lim, Dong-Yoon
    • Biomolecules & Therapeutics
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    • v.17 no.1
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    • pp.32-42
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    • 2009
  • The purpose of the present study was to examine the effect of dihydrexidine, a full $D_1$ receptor agonist, on the secretion of catecholamines (CA) from the perfused model of the rat adrenal gland, and to establish its mechanism of action. Dihydrexidine (10-100 ${\mu}M$), perfused into an adrenal vein for 60 min, relatively produced dose- and time-dependent inhibition in the CA secretory responses evoked by ACh (5.32 mM), high $K^+$ (56 mM), DMPP (100 ${\mu}M$) and McN-A-343 (100 ${\mu}M$). Dihydrexidine itself did fail to affect basal CA output. Also, in adrenal glands loaded with dihydrexidine (30 ${\mu}M$), the CA secretory responses evoked by Bay-K-8644 (10 ${\mu}M$), an activator of L-type $Ca^{2+}$ channels, cyclopiazonic acid (10 ${\mu}M$), an inhibitor of cytoplasmic $Ca^{2+}$-ATPase, and veratridine, an activator of voltage-dependent $Na+$ channels (10 ${\mu}M$), were also markedly inhibited, respectively. However, in the simultaneous presence of dihydrexidine (30 ${\mu}M$) and R (+)-SCH23390 (a selective antagonist of $D_1$ receptor, 3 ${\mu}M$), the CA secretory responses evoked by ACh, high K+, DMPP, McN-A-343, Bay-K-8644, cyclopiazonic acid and veratridine were considerably recovered to the extent of the corresponding control secretion compared with the inhibitory responses by dihydrexidinetreatment alone. In conclusion, these experimental results suggest that dihydrexidine significantly inhibits the CA secretion evoked by cholinergic stimulation (both nicotinic and muscarinic receptors) and membrane depolarization from the rat adrenal medulla. It seems that this inhibitory effect of dihydrexidine may be mediated by inhibiting influx of both $Ca^{2+}$ and $Na^+$ into the cytoplasm as well as by suppression of $Ca^{2+}$ release from cytoplasmic calcium store through activation of dopaminergic $D_1$ receptors located on the rat adrenomedullary chromaffin cells.

Effect of MK-801 on Methamphetamine-Induced Dopaminergic Neurotoxicity: Long-Term Attenuation of Methamphetamine-Induced Dopamine Release (MK-801이 메트암페타민에 의한 도파민 신경독성에 미치는 효과: 메트암페타민에 의한 도파민 유리의 장기간 억제)

  • Kim, Sang-Eun;Kim, Yu-Ri;Hwang, Se-Hwan
    • The Korean Journal of Nuclear Medicine
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    • v.35 no.4
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    • pp.258-267
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    • 2001
  • Purpose/Methods: Repeated administration of methamphetamine (METH) produces high extracellular levels of dopamine (DA) and subsequent striatal DA terminal damage. The effect of MK-801, a noncompetitive N-methyl-D-aspartate receptor antagonist, on METH-induced changes in DA transporter (DAT) and DA release evoked by an acute METH challenge was evaluated in rodent striatum uslng $[^3H]$]WIN 38,428 ex vivo auto-radiography and in vivo microdialysis. Results: Four injections of METH (10 mg/kg, i.p.), each given 2 h apart, produced 71% decrease in DAT levels in mouse striatum 3 d after administration. Pretreatment with MK-801 (2.5 mg/kg, i.p.) 15 min before each of the four METH injections protected completely against striatal DAT depletions. Four injections of MK-801 alone did not significantly change striatal DAT levels. Striatal DA release evoked by an acute METH challenge (4 mg/kg, i.p.) at 3 d after repeated administration of METH in rats was decreased but significant compared with controls, which was attenuated by repeated pretreatment with MK-801. Also, repeated injections of MK-801 alone attenuated acute METH-induced striatal DA release 3 d after administration. Conclusion: These results suggest that repeated administration of MK-801 may exert a preventive effect against METH-induced DA terminal injury through long-term attenuation of DA release induced by METH and other stimuli.

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Renal Effects of Intracerebroventricular Bromocriptine in the Rabbit (가토에 있어서 측뇌실내 Bromocriptine의 신장작용)

  • Kook, Young-Johng;Kim, Kyung-Keun;Kim, Jae-Pil;Kim, Kyung-Ho
    • The Korean Journal of Pharmacology
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    • v.21 no.1
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    • pp.49-61
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    • 1985
  • In view of the facts that dopamine (DA) when given directly into a lateral ventricle (i.c.v.) of the rabbit brain induces antidiuresis and that haloperidol, a non-specific antagonist of DA receptors, produces anti-diuresis in smaller doses and diuresis and natriuresis in larger doses, the present study was undertaken to delineate the roles of various DA receptors involved in the center-mediated regulation of renal function. Bromocriptine (BRC), a relatively specific agonist of D-2 receptors and at the same time a D-,1 antagonist, elicited natriuresis and diuresis when given i.c.v. in doses ranging from 20 to 600 {\mu}g/kg$, roughly in dose-related fashion, while the renal perfusion and glomerular filtration progressively decreased with doses, indicating that the diuretic, natriuretic action resides in the tubules, not related to the hemodynamic effects. These diuresis and natriuresis were most marked with 200 ${\mu}g/kg$, with the fractional sodium excretion reaching about 10%. With 600 ${\mu}g/kg$, however, the diuretic, natriuretic action was preceded by a transient oliguria resulting from severe reduction of renal perfusion, concomitant with marked but transient hypertension. When given intravenously, however, BRC produced antidiuresis and antinatriuresis along with decreases in renal hemodynamics associated with systemic hypotension, thus indicating that the renal effects produced by i.c.v. BRC is not caused by a direct renal effects of the agent which might have reached the systemic circulation. In experiments in which DA was given i.c.v. prior to BRC, 150 ${\mu}g/kg$ DA did not affect the effects of BRC (200 ${\mu}g/kg$), while 500 ${\mu}g/kg$ DA abolished the BRC effect. In rabbits treated with reserpine, 1 mg/kg i.v.,24 h prior to the experiment, i.c.v. BRC could unfold its renal effects not only undiminished but rather exaggerated and more promptly. In preparations in which one kidney is deprived of nervous connection, the denervated kidney responded with marked diuresis and natriuresis, whereas the innervated, control kidney exhibited antidiuresis. These observations suggest that i.c.v. BRC influences the renal function through release of some humoral natriuretic factor as well as by increasing sympathetic tone, and that various DA receptors might be involved with differential roles in the center-mediated regulation of the renal function.

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