• 제목/요약/키워드: opioid receptors

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Antinarcotic Effect of Panax ginseng

  • Hack Seang Kim;Ki
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 1990년도 Proceedings of International Symposium on Korean Ginseng, 1990, Seoul, Korea
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    • pp.36-44
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    • 1990
  • The analgesic effect of morphine was antagonized and the development of tolerance was suppressed by the modification of the neurologic function in the animals treated with ginseng saponins. The activation of the spinal descending inhibitory systems as well as the supraspinal structures by the administration of morphine was inhibited in the animals treated with ginseng saponins intracerebrally or intrathecally The development of morphine tolerance and dependence, and the abrupt expression of naloxone induced abstinence syndrome were also inhibited by ginsenoside Kbl , Rba, Rgl and Re. These results suggest that ginsenoside Kbl, Rba, Rgl and Re are the bioactive components of panax ginseng on the inhibition of the development of morphine tolerance and dependence, and the inhibition of abrupt abstinence syndrome. In addition, further research on the minor components of Panax ginseng should be investigated. A single or daily treatment with ginseng saponins did not induce any appreciable changes in the brain level of monoamines at the various time intervals and at the various day intervals, respectively The inhibitory or facilitated effects of ginseng saponins on electrically evoked contractions in guinea pig ileum (U-receptor) and mouse was definers (5·receptor) were not mediated through opioid receptors. The antagonism of a x receptor agonist, U-, iO.488H was also not mediated through opioid receptors in the animals treated with ginseng saponins, bolt mediated through serotonergic mechanisms. Ginseng saponins inhibited morphine S-dehydrogenase that catalyzed the production of morphine from morphine, and increased hepatic glutathione contents for the detoxification of morphine. This result suggests that the dual action of the above plays an important role in the inhibition of the development of morphine tolerance and dependence.

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Conjugates of Enkephalin Analogs: Synthesis and Discrimination of μ and δ Opioid Receptors Based on Membrane Compartment Concept

  • Hong, Nam-Joo;Jin, Dong-Hoon;Hong, Eun-Young
    • Bulletin of the Korean Chemical Society
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    • 제30권3호
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    • pp.599-607
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    • 2009
  • A series of conjugated cyclic and linear enkephalin analogs, Tyr-c[D-A2bu-Gly-Phe-Asp(NH-X)], where X = methyl, stearyl or$ PEG_350$, and Tyr-D-Ala-Gly-Phe-Cys(S-X), where X = methyl, octyl, or farnesyl, were synthesized in solution to investigate the receptor selectivity of opioids based on Schwyzer's membrane compartment $concepts.^{5,6}$ Cyclizations of the target compounds were achieved in high yields (> 60%) employing BOP, $NaHCO_3$ in DMF despite the steric hindrance of the bulky pendant groups. In the binding assay, the hydrophobic fatty acyl conjugates retained $\mu$-receptor selectivity. The unsaturated farnesyl conjugate exhibited the increased binding affinity than the saturated stearyl conjugate for both $\mu$-and $\delta$-opioid receptors. The PEG conjugates displayed the $\delta$-receptor selectivity. The low molecular weight $PEG_350$ conjugate exhibited the increase selectivity than the high molecular weight $PEG_5000$ conjugate to the $\delta$-receptor. The results of this study support the membrane compartment concepts.

Hop Extract Produces Antinociception by Acting on Opioid System in Mice

  • Park, Soo-Hyun;Sim, Yun-Beom;Kang, Yu-Jung;Kim, Sung-Su;Kim, Chea-Ha;Kim, Su-Jin;Seo, Jee-Young;Lim, Su-Min;Suh, Hong-Won
    • The Korean Journal of Physiology and Pharmacology
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    • 제16권3호
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    • pp.187-192
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    • 2012
  • In the present study, the antinociceptive profiles of hop extract were characterized in ICR mice. Hop extract administered orally (from 25 to 100 mg/kg) showed an antinociceptive effect in a dose-dependent manner as measured in the acetic acid-induced writhing test. Antinociceptive action of hop extract was maintained at least for 60 min. Moreover, cumulative response time of nociceptive behaviors induced with intraplantar formalin injection was reduced by hop extract treatment during the 2nd phases. Furthermore, the cumulative nociceptive response time for intrathecal injection of substance P ($0.7{\mu}g$) or glutamate ($20{\mu}g$) was diminished by hop extract. Intraperitoneal pretreatment with naloxone (an opioid receptor antagonist) attenuated antinociceptive effect induced by hop extract in the writhing test. However, methysergide (a 5-HT serotonergic receptor antagonist) or yohimbine (an ${\alpha}_2$-adrenergic receptor antagonist) did not affect antinociception induced by hop extract in the writhing test. Our results suggest that hop extract shows an antinociceptive property in various pain models. Furthermore, the antinociceptive effect of hop extract may be mediated by opioidergic receptors, but not serotonergic and ${\alpha}_2$-adrenergic receptors.

마우스 선조체에서 Opioid 수용체 결합에 대한 Neuroleptics의 영향 (Effects of Neuroleptics on the Opioid Receptor Binding in the Mouse Striatum)

  • 김수경;이성룡;박창교
    • 대한약리학회지
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    • 제30권3호
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    • pp.291-297
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    • 1994
  • 이 연구에서는 선조체에서 opioid 신경계와 dopamine 신경계의 상호 관계를 알아보기 위해서 morphine을 5m/kg, 20 mg/kg로 10일간 복강내 투여한 후 chlorpromazine, thioridazine, haloperidol, sulpiride, pimozide를 투여하였다. Opioid ${\mu},\;{\delta},\;{\kappa}$ 수용체의 binding의 변화를 관찰하고자 $[^3H]\;DAGO$, $[^3H]\;DPDPE$, 및 $[^3H]\;DPN$ binding assay를 하였으며, 그 결과 morphine (20 mg/kg) 장기 투여된 실험군에서 $[^3H]\;DAGO$, $[^3H]\;DPDPE$, 및 $[^3H]\;DPN$ 결합이 감소되었다. Morphine 20 mg/kg 장기 투여군에 chlorpromazine, thioridazine 주사시에는 morphine 5mg/kg 투여군에 비하여 $[^3H]\;DAGO$ 결합의 감소와, $[^3H]\;DPDPE$, 및 $[^3H]\;DPN$ 결합의 증가를 나타내었고, haloperidol 주사군은 $[^3H]\;DAGO$, $[^3H]\;DPN$ 결합의 감소, 및 $[^3H]\;DPDPE$ 결합의 증가를 나타내었다. Sulpiride, pimozide 주사군은 morphine 5 m/kg 투여군에 비하여 20m/kg 투여군에서 $[^3H]\;DAGO$, $[^3H]\;DPDPE$, 및 $[^3H]\;DPN$ 결합의 증가를 나타내었다. 이상의 결과로 보아 각 약물간의 opioid 결합에 대한 차이점은 있었으나, morphine 5mg/kg 투여군보다 20m/kg 투여군에서 $[^3H]\;DPDPE$$[^3H]\;DPN$의 결합이 증가의 경향을 보임으로써, 다량의 morphine을 투여했을 때 ${\mu}\;opioid$ 수용체에 비하여 ${\delta}${\kappa}\;opioid$ 수용체가 더 활성화되는 것을 알 수 있었다.

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Comprehensive Analysis of Non-Synonymous Natural Variants of G Protein-Coupled Receptors

  • Kim, Hee Ryung;Duc, Nguyen Minh;Chung, Ka Young
    • Biomolecules & Therapeutics
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    • 제26권2호
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    • pp.101-108
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    • 2018
  • G protein-coupled receptors (GPCRs) are the largest superfamily of transmembrane receptors and have vital signaling functions in various organs. Because of their critical roles in physiology and pathology, GPCRs are the most commonly used therapeutic target. It has been suggested that GPCRs undergo massive genetic variations such as genetic polymorphisms and DNA insertions or deletions. Among these genetic variations, non-synonymous natural variations change the amino acid sequence and could thus alter GPCR functions such as expression, localization, signaling, and ligand binding, which may be involved in disease development and altered responses to GPCR-targeting drugs. Despite the clinical importance of GPCRs, studies on the genotype-phenotype relationship of GPCR natural variants have been limited to a few GPCRs such as b-adrenergic receptors and opioid receptors. Comprehensive understanding of non-synonymous natural variations within GPCRs would help to predict the unknown genotype-phenotype relationship and yet-to-be-discovered natural variants. Here, we analyzed the non-synonymous natural variants of all non-olfactory GPCRs available from a public database, UniProt. The results suggest that non-synonymous natural variations occur extensively within the GPCR superfamily especially in the N-terminus and transmembrane domains. Within the transmembrane domains, natural variations observed more frequently in the conserved residues, which leads to disruption of the receptor function. Our analysis also suggests that only few non-synonymous natural variations have been studied in efforts to link the variations with functional consequences.

횐쥐 부신에서 Opioid가 니코틴 수용체를 통한 카테콜아민 분비작용에 미치는 영향 (Effect of Opioid on Nicotinic Receptor-Mediated Catecholamine Secretion in the Rat Adrenal Gland)

  • 임동윤;이종진;최철희
    • 대한약리학회지
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    • 제28권2호
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    • pp.181-190
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    • 1992
  • 흰쥐 적출관류 부신에서 선택적인 nicotine 수용체 효능약인 DMPP(1,1-dimethyl-4-phenylpiperazinium)와 acetylcholine(ACh)의 카테콜아민(CA) 분비작용에 대한 opioids의 영향을 연구하고자 시행하여 얻어진 연구결과는 다음과 같다. Methionine-enkephalin$(9.68{\times}10^{-6}\;M)$으로 전처치시 DMPP(100 uM)과 $ACh(50\;{\mu}g)$에 의한 CA 유리작용이 현저히 억제되었으며 basal CA release는 영향을 받지 않았다. Morphine$(1.73{\times}10^{-5}\;M)$으로 전처치시 DMPP 및 excess $K^+$의 CA 분비작용은 뚜렷이 약화되었다. Morphine 역시 그자체는 basal CA release에는 영향을 미치지 않았다. Opiate 수용체 길항제인 naloxone$(1.22{\times}10^{-7}\;M)$은 DMPP 및 ACh에 의한 CA 분비작용을 현저히 차단 하였으나 basal CA release에는 영향을 미치지 못하였다. 이와 같은 연구결과로 보아, 흰쥐 관류 부신에서 니코틴 수용체에 의한 CA 분비작용은 내인성 opioid peptide에 의해서 억제되며, 이는 부신에 존재하는 opiate 수용체 흥분작용에 기인되는 것으로 사료된다.

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Therapeutic Effects of Panax ginseng on the Neurotoxicity Induced by Abuse Drugs

  • Oh Ki-Wan
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 2005년도 추계학술대회
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    • pp.49-66
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    • 2005
  • Panax ginseng has been useful for the treatment of diverse disease in oriental countries for thousands of years. In addition, a folk medicine prescribed by seven herbal drugs including Panax ginseng has been antinarcotics in the treatment of morphine-dependent patients. Many articles have been reported on these works. Therefore, we review the protective effects of Panax ginseng on the neurotoxicity induced by abuse drugs. Ginseng total saponins (GTS) extracted and isolated by Panax ginseng antagonized Morphine-induced analgesia, and inhibited the development of analgesic tolerance to and physical dependence on morphine. GTS inhibited morphine-6 dehydrogenase, which catalyzes production of mophinone from morphine, and increased hepatic glutathione level responsible to toxicity. Therefore, we hypothesized that these dual actions of ginseng can be associated with the detoxication of morphine. In addition, the inhibitory or facilitated effects of GTS on electrically evoked contraction in guinea pig ileum ($\mu$-receptors) and mouse vas deferens($\delta$-receptors) were not mediated through opioid receptors, suggesting non-opioid mechanisms. On the hand, antagonism of U-50,488H ($\kappa$-agonist)-induced antinociception is mediated by serotonergic mechanisms. GTS also inhibited hyperactivity, reverse tolerance (sensitization) and conditioned place preference-induced by psychostimulants such as methamphetamine, cocaine and morphine. On the other hand, GTS reduced the dopamine levels induced by methamphetamine. Moreover, GTS blocked the development of dopamine receptor activation, showing antidopaminergic effect. We suggest that GTS Prevent the methamphetamine-induced striatal dopaminergic neurotoxicity. In addition, Ginsenoside also attenuates morphine-induced cAMP signaling pathway. These results suggested that GTS might be useful for the therapy of the adverse actions of drugs with abuse liability.

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Protective Effects of Panax ginsengon the Neurotoxicity Induced by Abuse Drugs

  • Oh, Ki-Wan
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 2005년도 창립30주년기념 추계 학술대회 및 정기총회
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    • pp.41-63
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    • 2005
  • Ginseng has been useful for the treatment of diverse disease in oriental countries for thousands of years. In addition, a folk medicine prescribed by seven herbal drugs including Panax ginseng has been antinarcotics in the treatment of morphine-dependent patients. Many articles have been reported on these works. Therefore, we review the protective effects of Panax ginseng on the neurotoxicity induced by abuse drugs. Ginseng total saponins (GTS) extracted and isolated by Panax ginseng antagonized morphine-induced analgesia, and inhibited the development of analgesic tolerance to and physical dependence on morphine. CTS inhibited morphine-6 dehydrogenase, which catalyzes production of mophinone from morphine, and increased hepatic glutathione level responsible to toxicity. Therefore, wehypothesized that these dual actions of ginseng can be associated with the detoxication of morphine. In addition, the inhibitory or facilitated effects of GTS on electrically evoked contraction in guinea pig ileum (${\mu}$-receptors) and mouse vas deferens(${\delta}$-receptors) were not mediated through opioid receptors, suggesting non-opioid mechanisms. On the hand, antagonism of U-50,488H (${\kappa}$-agonist)-induced antinociception is mediated by serotonergic mechanisms. GTS also inhibited hyperactivity, reverse tolerance (sensitization) and conditioned place preference-induced by psychostimulants such as methamphetamine, cocaine and morphine. On the other hand, GTS reduced the dopamine levels induced by methamphetamine. Moreover, GTS blocked the development of dopamine receptor activation, showing antidopaminergic effect. We suggest that GTS prevent the methamphetamine-induced striatal dopaminergic neurotoxicity. In addition, Ginsenoside also attenuates morphine-induced CAMP signaling pathway. These results suggested that GTS might be useful for the therapy of the adverse actions of drugs with abuse liability.

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LIGAND BINDING CHARACTERISTICS OF $K_2$- OPIOID RECEPTOR AND ITS ROLE IN REGULATION OF 〔$^3$H〕HISTAMINE RELEASE IN FRONTAL CORTEX OF THE RAT

  • Kim, Kee-Won-;Park, Kyu--Cho
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1994년도 춘계학술대회 and 제3회 신약개발 연구발표회
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    • pp.305-305
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    • 1994
  • It has been shown that there are several subtypes of $\kappa$ opioid receptor, We have evaluated the properties of non-${\mu}$, non-$\delta$ binding of 〔$^3$H〕DIP, a nonselective opioid antagonist, in rat cortex membranes. Binding to ${\mu}$ and $\delta$ sites was inhibited by the use of an excess of competing selective agonists (DAMGO, DPDPE) for these sites. (-)Ethylketocyclazocine(EKC) inhibited 〔$^3$H〕DIP binding with Ki. of 70 nM. However, arylacetamides (U69593 and U50488H) gave little inhibition. Also, we have examined the opioid modulation of K$\^$+/(30 mM)-induced histamine release in rat frontal cortex slices labeled with 1-〔$^3$H〕histidine. The 〔$^3$H〕histamine release from cortex slices was inhibited by EKC, a $\kappa$$_1$-and $\kappa$$_2$-agonist, in a concentration-dependent manner(10 to 10,000 nM). The IC$\sub$50/ of EKC was 107 ${\pm}$ 6 nM. However, the $\delta$ receptor selective agonists, DPDPE and deltorphine II, ${\mu}$ receptor agonists, DAMGO and TAPS, $\kappa$$_1$-agonists, U69593 and U50488H, and $\varepsilon$-agonist, ${\beta}$-endorphin, did not inhibit histamine release even in micromoiar dose, indicating that ${\mu}$, $\delta$ or $\kappa$$_1$ receptors are not involved. The concentration-response curve of EKC was shifted to right in the presence of naloxone (300 nM), a ${\mu}$ preferential antagonist, norbinaltorphimine(300 nM), a $\kappa$$_1$ preferential antagonist and bremazocine(1 nM), a $\kappa$$_1$-agonist and $\kappa$$_2$-antagonist. These results suggest that $\kappa$$_2$ opioid receptor regulates histamine release in the frontal cortex of the rat.

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The effect of μ-opioid receptor activation on GABAergic neurons in the spinal dorsal horn

  • Kim, Yoo Rim;Shim, Hyun Geun;Kim, Chang-Eop;Kim, Sang Jeong
    • The Korean Journal of Physiology and Pharmacology
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    • 제22권4호
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    • pp.419-425
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    • 2018
  • The superficial dorsal horn of the spinal cord plays an important role in pain transmission and opioid activity. Several studies have demonstrated that opioids modulate pain transmission, and the activation of ${\mu}$-opioid receptors (MORs) by opioids contributes to analgesic effects in the spinal cord. However, the effect of the activation of MORs on GABAergic interneurons and the contribution to the analgesic effect are much less clear. In this study, using transgenic mice, which allow the identification of GABAergic interneurons, we investigated how the activation of MORs affects the excitability of GABAergic interneurons and synaptic transmission between primary nociceptive afferent and GABAergic interneurons. We found that a selective ${\mu}$-opioid agonist, [$D-Ala^2$, $NMe-Phe^4$, Gly-ol]-enkephanlin (DAMGO), induced an outward current mediated by $K^+$ channels in GABAergic interneurons. In addition, DAMGO reduced the amplitude of evoked excitatory postsynaptic currents (EPSCs) of GABAergic interneurons which receive monosynaptic inputs from primary nociceptive C fibers. Taken together, we found that DAMGO reduced the excitability of GABAergic interneurons and synaptic transmission between primary nociceptive C fibers and GABAergic interneurons. These results suggest one possibility that suppression of GABAergic interneurons by DMAGO may reduce the inhibition on secondary GABAergic interneurons, which increase the inhibition of the secondary GABAergic interneurons to excitatory neurons in the spinal dorsal horn. In this circumstance, the sum of excitation of the entire spinal network will control the pain transmission.