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Effect of Bromocriptine on 6-Hydroxydopamine-induced Lipid Peroxidation and Cytotoxicity in vitro and in vivo

  • Kim, Yong-Sik;Maeng, Sung-Ho;Park, Chan-Woong
    • The Korean Journal of Physiology and Pharmacology
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    • v.2 no.5
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    • pp.565-572
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    • 1998
  • The present study was to evaluate the protective effects of bromocriptine, which is known as $D_2$ dopamine receptor agonist and used for the treatment of patients with Parkinson's disease (PD), on 6-hydroxydopamine (6-OHDA)-induced neurotoxicity in vitro and in vivo. Lipid peroxidation product (malondialdehyde; MDA) produced by the administration of 6-OHDA was profoundly reduced following the treatment of bromocriptine in a dose-dependent manner in rabbit brain homogenate. Quinone formation by 6-OHDA autoxidation was also attenuated, and its effect was as potent as other antioxidants. Pretreatment of bromocriptine reduced the cytotoxicity of 6-OHDA on SH-SY5Y neuroblastoma cell lines dose-dependently. The loss of striatal dopamine and its metabolite, DOPAC (dihydroxyphenylacetic acid) as well as increase of MDA production caused by intrastriatal injection of 6-OHDA was significantly recovered following the treatment of bromocriptine. The present study clearly showed that bromocriptine had a protective action against 6-OHDA-induced neurotoxicity. These results suggest that bromocriptine has the antioxidant properties, which could be another advantage for delaying the progress of Parkinson's disease.

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Time Courses of pCREB Expression after Dopaminergic Stimulation by Apomorphine in Mouse Brain

  • Jang, Choon-Gon;Lee, Seok-Yong;Lee, Han-Kyu;Suh, Hong-Won;Song, Dong-Keun
    • Archives of Pharmacal Research
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    • v.25 no.3
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    • pp.370-374
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    • 2002
  • Administration of dopamine agonist, apomorphine (2 mg/kg, s.c.), produces cage climbing behavior in mice that exhibit typical dopaminergic stimulation. The present study investigated the pCREB expression level in several brain regions following apomorphine treatment in order to determine whether the increased the dopaminergic activation produced by apomorphine accompanies the changes in pCREB immunoreactivity. A mouse brain was removed at 0min, 10 min, 30 min, 1 h, 2 h, 7 h, and 24 h after apomorphine treatment. The brain tissue was fixed by an intracardiac perfusion with ice-cold 4% paraformaldehyde in PBS. Immunohistochemical study was conducted using the ABC-DAB method. The data showed that the immunoreactivity of pCREB increased in the striatum, nucleus-accumbens, piriform cortex and the dentate gyrus of the hippocampus of a mouse brain 30 min after the apomorphine treatment. Increased immunoreactivity began to diminish 2 h after the apomorphine treatment in all the brain regions measured. The time course for the pCREB immunoreactivity was similar to the behavioral response induced by the apomorphine treatment. These results suggest that activation of the dopamine receptor is accompanied by an increase in pCREB expression in the mouse brain.

Phenylethanolamine N-methyltransferase: Regulation of the Enzyme in Adrenal Gland, Brain Stem and Hypothalamus (Phenylethanolamine N-methyltransferase: 부신, 뇌간, 시상하부 효소의 조절)

  • Chun, Yang-Sook;Suh, Yoo-Hun
    • The Korean Journal of Pharmacology
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    • v.32 no.2
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    • pp.159-168
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    • 1996
  • To determine the regulatory mechanism of phenylethanolamine N-methyltransferase (PNMT) in the adrenal gland and in central nervous system, we observed the change of enzyme activity and mRNA level of PNMT in the adrenal gland, the brain stem, and hypothalamus of rats, which were injected with two neuroleptic agents(reserpine and haloperidol ). Reserpine depleting catecholamines in presynaptic vesicle increased PNMT activities in the adrenal gland and the brain stem to 150% of the control in time-dependent manner, but not in the hypothalamus. Haloperidol blocking dopamine receptor decreased PNMT activities in the adrenal gland and the hypothalamus, but not in the brain stem. Thus, the results indicate that catecholamines inhibit synthesis of epinephrine in the brain stem and the adrenal gland, and that dopamine stimulates synthesis of epinephrine in the hypothalamus and the adrenal gland. In addition, since the change of mRNA levels were nearly in accordance with the change of activities, the transcriptional regulation of PNMT is considered the mechanism of the regulation of epinephrine neuron.

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일측성선조체의 6-OHDA손상 후 도파민효능약물 투여로 발현된 회전운동의 특성

  • 이순철;문민선
    • Journal of Ginseng Research
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    • v.21 no.1
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    • pp.61-67
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    • 1997
  • The present study examined the characteristics of behavior Induced by dopamine agonists following treatment with 6-hydroxydopamine(6-OHDA) unilaterally into left striatum in rats. 6-OHDA was administered at doses of 8,16 and 24 $\mu\textrm{g}$/$\mu\textrm{l}$(in 0.1% ascorbic acid) into dopaminergic neurons in left striatum of 7 weeks old rat under anesthetic. Locomotor activity was significantly decreased at 1 week following 6-OHDA-administration in 7 weeks old rats. The contralateral circling behavior was induced by apomorphine(5 mg/kg, i.v.) after 1 week following 6-OHDA(24$\mu\textrm{g}$/$\mu\textrm{l}$) treatment, and was further increased by repeated administration of apomorphine at 2, 3 and 4 weeks. The contralateral circling behavior was also induced by lisuride and 1-dopa in a dose dependent manner, but not by SK & F 82526 in 7 weeks old rats treated with 6-OHDA. The contralateral circling behavior was significantly higher in 21 weeks old rats but significantly lower In 35 weeks old rats when compared with 7 weeks old rats. The contralateral circling behavior induced by apomorphlne did not differ significantly in 7 and 35 weeks old male and female rats. These results suggest that 6-OHDA treatment into left striatum causes remarkable destrurtion of intrastriatal dopaminergic netcons leading to dopaminergic receptor supersensitivity. Thus, the contralateral circling behavior in duces by apomorphine may be used as indicator for neurodegenerative diseases.

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Domperidone Exerts Antitumor Activity in Triple-Negative Breast Cancer Cells by Modulating Reactive Oxygen Species and JAK/STAT3 Signaling

  • Rajina Shakya;Mi Ran Byun;Sang Hoon Joo;Kyung-Soo Chun;Joon-Seok Choi
    • Biomolecules & Therapeutics
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    • v.31 no.6
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    • pp.692-699
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    • 2023
  • The lack of molecular targets hampers the treatment of triple-negative breast cancer (TNBC). In this study, we determined the cytotoxicity of domperidone, a dopamine D2 receptor (DRD2) antagonist in human TNBC BT-549 and CAL-51 cells. Domperidone inhibited cell growth in a dose- and time-dependent manner. The annexin V/propidium iodide staining showed that domperidone induced apoptosis. The domperidone-induced apoptosis was accompanied by the generation of mitochondrial superoxide and the down-regulation of cyclins and CDKs. The apoptotic effect of domperidone on TNBC cells was prevented by pre-treatment with Mito-TEMPO, a mitochondria-specific antioxidant. The prevention of apoptosis with Mito-TEMPO even at concentrations as low as 100 nM, implies that the generation of mitochondrial ROS mediated the domperidone-induced apoptosis. Immunoblot analysis showed that domperidone-induced apoptosis occurred through the down-regulation of the phosphorylation of JAK2 and STAT3. Moreover, domperidone downregulated the levels of D2-like dopamine receptors including DRD2, regardless of their mRNA levels. Our results support further development of DRD2 antagonists as potential therapeutic strategy treating TNBC.

Antidepressant Effects of Cynanchum wilfordii Hemsley, Phlomis umbrosa Turcz, and Angelica gigas Nakai via Inhibition of 5-HT6 Receptor-mediated cyclic AMP Activity

  • Oh, Kyo-nyeo;Oh, Dool-Ri;Jung, Myung-A;Kim, Yujin;Choi, Eun Jin;Hong, Ji Ae;Kim, Jaeyong;Choi, Chul-yung
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.32 no.4
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    • pp.247-254
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    • 2018
  • A This study evaluated the antidepressant effects of the herbal mixture CPAE(Cynanchum wilfordii Hemsley, Phlomis umbrosa Turcz, and Angelica gigas Nakai) using several tests, including a test for serotonin 6($5-HT_6$) receptor activity, the forced swimming test(FST), and tests for corticosterone(CORT) and monoamine levels. CPAE showed antagonistic effects on the $5-HT_6$ receptor in a stable $5-HT_6$ receptor-expressing cell line. We subsequently confirmed the antidepressant effects of CPAE in chronic stress model in mice and explored the underlying mechanisms of its action. Specifically, we observed that CPAE treatment significantly reduced immobility time in the FST and effectively restored abnormal levels of CORT in plasma and of monoamines(serotonin, dopamine, and norepinephrine) in hippocampus and prefrontal cortex. These results suggest that CPAE has significant antidepressant effects.

Molecular Signature That Determines the Acute Tolerance of G Protein-Coupled Receptors

  • Min, Chengchun;Zhang, Xiaohan;Zheng, Mei;Sun, Ningning;Acharya, Srijan;Zhang, Xiaowei;Kim, Kyeong-Man
    • Biomolecules & Therapeutics
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    • v.25 no.3
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    • pp.239-248
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    • 2017
  • Desensitization and acute tolerance are terms used to describe the attenuation of receptor responsiveness by prolonged or intermittent exposure to an agonist. Unlike desensitization of G protein-coupled receptors (GPCRs), which is commonly explained by steric hindrance caused by the ${\beta}$-arrestins that are translocated to the activated receptors, molecular mechanisms involved in the acute tolerance of GPCRs remain unclear. Our studies with several GPCRs and related mutants showed that the acute tolerance of GPCRs could occur independently of agonist-induced ${\beta}$-arrestin translocation. A series of co-immunoprecipitation experiments revealed a correlation between receptor tolerance and interactions among receptors, ${\beta}$-arrestin2, and $G{\beta}{\gamma}$. $G{\beta}{\gamma}$ displayed a stable interaction with receptors and ${\beta}$-arrestin2 in cells expressing GPCRs that were prone to undergo tolerance compared to the GPCRs that were resistant to acute tolerance. Strengthening the interaction between $G{\beta}{\gamma}$ and ${\beta}$-arrestin rendered the GPCRs to acquire the tendency of acute tolerance. Overall, stable interaction between the receptor and $G{\beta}{\gamma}$ complex is required for the formation of a complex with ${\beta}$-arrestin, and determines the potential of a particular GPCR to undergo acute tolerance. Rather than turning off the signal, ${\beta}$-arrestins seem to contribute on continuous signaling when they are in the context of complex with receptor and $G{\beta}{\gamma}$.

Anti-stress effects of ginseng via down-regulation of tyrosine hydroxylase (TH) and dopamine ${\beta}$-hydroxylase (DBH) gene expression in immobilization-stressed rats and PC12 cells

  • Kim, Yang-Ha;Choi, Eun-Ha;Doo, Mi-Ae;Kim, Joo-Yeon;Kim, Chul-Jin;Kim, Chong-Tai;Kim, In-Hwan
    • Nutrition Research and Practice
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    • v.4 no.4
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    • pp.270-275
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    • 2010
  • Catecholamines are among the first molecules that displayed a kind of response to prolonged or repeated stress. It is well established that long-term stress leads to the induction of catecholamine biosynthetic enzymes such as tyrosine hydroxylase (TH) and dopamine ${\beta}$-hydroxylase (DBH) in adrenal medulla. The aim of the present study was to evaluate the effects of ginseng on TH and DBH mRNA expression. Repeated (2 h daily, 14 days) immobilization stress resulted in a significant increase of TH and DBH mRNA levels in rat adrenal medulla. However, ginseng treatment reversed the stress-induced increase of TH and DBH mRNA expression in the immobilization-stressed rats. Nicotine as a ligand of the nicotinic acetylcholine receptor (nAChR) in adrenal medulla stimulates catecholamine secretion and activates TH and DBH gene expression. Nicotine treatment increased mRNA levels of TH and DBH by 3.3- and 3.1-fold in PC12 cells. The ginseng total saponin exhibited a significant reversal in the nicotine-induced increase of TH and DBH mRNA expression, decreasing the mRNA levels of TH and DBH by 57.2% and 48.9%, respectively in PC12 cells. In conclusion, immobilization stress induced catecholamine biosynthetic enzymes gene expression, while ginseng appeared to restore homeostasis via suppression of TH and DBH gene expression. In part, the regulatory activity in the TH and DBH gene expression of ginseng may account for the anti-stress action produced by ginseng.

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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The Role of Spinal Dopaminergic Transmission in the Analgesic Effect of Nefopam on Rat Inflammatory Pain

  • Kim, Do Yun;Chae, Joo Wung;Lim, Chang Hun;Heo, Bong Ha;Park, Keun Suk;Lee, Hyung Gon;Choi, Jeong Il;Yoon, Myung Ha;Kim, Woong Mo
    • The Korean Journal of Pain
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    • v.29 no.3
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    • pp.164-171
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    • 2016
  • Background: Nefopam has been known as an inhibitor of the reuptake of monoamines, and the noradrenergic and/or serotonergic system has been focused on as a mechanism of its analgesic action. Here we investigated the role of the spinal dopaminergic neurotransmission in the antinociceptive effect of nefopam administered intravenously or intrathecally. Methods: The effects of intravenously and intrathecally administered nefopam were examined using the rat formalin test. Then we performed a microdialysis study to confirm the change of extracellular dopamine concentration in the spinal dorsal horn by nefopam. To determine whether the changes of dopamine level are associated with the nefopam analgesia, its mechanism was investigated pharmacologically via pretreatment with sulpiride, a dopaminergic D2 receptor antagonist. Results: When nefopam was administered intravenously the flinching responses in phase I of the formalin test were decreased, but not those in phase II of the formalin test were decreased. Intrathecally injected nefopam reduced the flinching responses in both phases of the formalin test in a dose dependent manner. Microdialysis study revealed a significant increase of the level of dopamine in the spinal cord by intrathecally administered nefopam (about 3.8 fold the baseline value) but not by that administered intravenously. The analgesic effects of intrathecally injected nefopam were not affected by pretreatment with sulpiride, and neither were those of the intravenous nefopam. Conclusions: Both the intravenously and intrathecally administered nefopam effectively relieved inflammatory pain in rats. Nefopam may act as an inhibitor of dopamine reuptake when delivered into the spinal cord. However, the analgesic mechanism of nefopam may not involve the dopaminergic transmission at the spinal level.