• 제목/요약/키워드: spiperone

검색결과 17건 처리시간 0.019초

Effects of Ginseng Total Saponin on Morphine-induced Alterations in Brain Opioid and Dopamine Receptors

  • Kim, A.-Y.;Lee, S.-Y.;Kim, Y.-R.;G.-S. Yoo;D.-K. Lim;K. W. Oh;Kim, K.-M.
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1995년도 춘계학술대회
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    • pp.100-100
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    • 1995
  • Several behavioral studies have suggested that ginseng total saponin (GTS) antagonizes morphine actions. Based on these observations, we conducted biochemical studies to elucidate the cellular mechanism of GTS actions. morphine hydrochloride (10mg/kg, sc) and/or on (400mg/kg, oral ) were administered to mice for 14 consecutive days. Ligand binding studies were conducted from striatal membranes. For opioid receptors, morphine increased the affinity but decreased the maximal binding sites for $^3$H naloxone. GTS partially recovered it. In case of dopamine receptors, morphine increased affinity and maximal binding sites for 3H spiperone. and GTS partially blocked it. These results suggest that morphine affects cellular events by modulating opioid receptors and that opioid receptors interact with dopamine receptors to change the mental status. GTS could be helpful for the treatment of morphine- induced mental disorders.

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이스라엘잉어 장관 수축에 관여하는 약물수용체에 관한 연구 (Characterization of the drug receptors responsible for intestinal contraction in Israeli carp)

  • 윤효인;한경호;박승춘;조준형;오태광
    • 대한수의학회지
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    • 제34권3호
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    • pp.447-456
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    • 1994
  • In order to elucidate the characterization of receptors involved in inestinal motility of Israeli carp, spontaneously contracting Israeli carp intestinal preperations were prepared and mounted in the organ chambers for contraction traicings using a polygraph. Various contractile agonists were treated and their dose-response curves were constructed. $EC_{50}$ values$(pD_2)$ of each agonist on specific receptors, $pA_2$ values of competitive antagonists against some agonists, and $K_1$, values of noncompetitive antagonists against some agonists were analyzed for characterization of receptors related with the intestinal contraction. Results obtained through the experiments were summarized as follows: 1. Acetylcholine(ACh) exhibited biphasic dose-response curves: initial ACh-induced dose dependent contractions were observed in pM levels but followed by decreased response in in-between concentration levels. Dose dependent contractions reappeared in ${\mu}M$ level. The peaks in pM and ${\mu}M$ levels appeared in $10^{-13}M$ and $3{\times}10^{-5}M$, respectvely. 2. Carbachol(CaCh) exhibited dose dependent contractions from $10^{-9}M$ to $10^{-5}M$, and its $pD_2$ values were higher than those of ACh($5.60{\pm}0.11$). ACh and CaCh exhibited equiactive contractions. Nicotine had no effects on contractile responses of Israeli carp intestine. 3. ACh-induced responses were inhibited by atropine($K_1:7{\times}10^{-8}M$), a muscarinic antagonist, in a non-competitive manner. But CaCh-induced responses were inhibited by both antimuscarinic atropine($pA_2:9.52{\pm}0.14$) and selective $M_2$ antagonistic 4-DAMP($pA_2:8.16{\pm}0.09$), in competitive manners. Nicotine receptor antagonistic decamethonium and hexamethonium had no effects on ACh-and CaCh-induced contractions. Therefore, the cholinergic receptor related to intestinal motility of Israeli carp was assumed as $M_2$ type. 4. In Israeli carp intestine, 5-HT (serotonin) exhibited dose dependent contractions in concentration range from $10^{-8}M$ to $10^{-5}M$. The maximal responses, however, were corresponded to about 50% of those of ACh or CaCh. 5-HT induced contractions were inhibited by $5-HT_2$ antagonistic ketanserin ($K_1: 7.8{\times}10^{-4}M$) in a non-competitive manner, but not by both of anti $5-HT_1$, spiperone and anti $5-HT_3$, MDL-72222. Hence, $5-HT_2$ receptors are suggested to be existed in Isreli carp intestine.

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Effect of ${\gamma}$-mangostin through the inhibition of 5-hydroxytryptamine$_{2A}$ receptors in 5-fluoro-${\alpha}$-methyltryptamine-induced head-twitch responses of mice

  • Nattaya Chairungsrie;Furukawa, Ken-Ichi;Takeshi Tadano;Kensuke Kisara;Yasushi Ohizumi
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1998년도 Proceedings of UNESCO-internetwork Cooperative Regional Seminar and Workshop on Bioassay Guided Isolation of Bioactive Substances from Natural Products and Microbial Products
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    • pp.170-170
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    • 1998
  • In order to discover new types of 5-hydroxytryptamine antagonists, we have devoted our attention to investigating naturally occurring compounds having anti-5HT activity in vitro. Recently, ${\gamma}$-mangostin [1,3,6,7-tetrahydroxy-2,8-bis(3-methyl-2-bytenyl)-9H-xanthen-9-one] from the fruit hull of Garcinia mangostana Linn has been shown to be a selective antagonist for 5-hydroxytryptamine$_{2A}$ receptors in smooth muscle and platelets. It is of interesting that y-mangostin which does not have a nitrogen atom, possesses marked 5-$HT_{2A}$ receptor blocking activity. The present study was undertaken to investigate the effects of ${\gamma}$-mangostin on central 5-HT receptors by using animal behavioural models. Intracerebronventricular injection of ${\gamma}$-mangostin (10-40n mol/mouse) inhibited 5-fluoro-${\alpha}$-methyltryptamin (5-FMT) (45 mg kg$^{-1}$, i.p.)-induced head-twitch response in mice in the presence or absence of citalopram (5-HT-uptake inhibitor). Neither the 5-FMT- nor the 8-hydroxy-2-( di-n-propylamino )tetralin (5-HT$_{1A}$-agonist)-induced 5-HT syndrome (head weaving and hindlimb abduction) was affected by ${\gamma}$-mangostin. The locomotor activity stimulated by 5-FMT through the activation of at-adrenoceptors did not alter in the presence of ${\gamma}$-mangostin. 5-HT-induced inositol phosphates accumulation in mouse brain slices was abolished by ketanserin. ${\gamma}$-Mangostin caused a concentration-dependent inhibition of the inositol phosphates accumulation and the binding of [$^3H$]-spiperone, a specific 5-$HT_{2A}$ receptor antagonist, to mouse brain membranes. Kinetic analysis of the [$^H3$]-spiperone binding revealed that ${\gamma}$-mangostin increased the $_{d}$ value without affecting the $B_{max}$ value, indicating the mode of the competitive nature of the inhibition by ${\gamma}$-mangostin. These results suggest that ${\gamma}$-mangostin inhibits 5-FMT-induced head-twitch response in mice by blocking 5-$HT_{2A}$ receptors not by blocking the release of 5-HT from the central neurone. ${\gamma}$-Mangostin is a promising 5-$HT_{2A}$ receptors antagonist in the central nervous system.m.

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변이 도파민 2 수용체와 나트륨 옥소 공동 수송체 이입유전자의 이중 리포터시스템 개발 (Development of Dual Reporter System of Mutant Dopamine 2 Receptor ($D_2R$) and Sodium Iodide Symporter (NIS) Transgenes)

  • 황도원;이동수;강주현;장영수;김윤희;정재민;정준기;이명철
    • 대한핵의학회지
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    • 제38권4호
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    • pp.294-299
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    • 2004
  • 목적 : 현재 생체 내로 이식된 세포를 추적하는데 여러 가지 리포터 유전자들이 이용되고 있다. 이 연구에서는 사람 나트륨 옥소 공동 수송체 (hNIS)와 도파민 2 수용체($D_2R$)를 이중 리포터 유전자로 사용하여 각각을 비교하였다. 대상 및 방법: hNIS와 $D_2R$의 발현이 동시에 이루어지도록 하기 위해서 IRES (Internal ribosome entry site)로 연결된 재조합 플라스미드(pIRES-hNIS/D_2R)를 제조하였다. $pIRES-hNIS/D_2R$를 사람의 간암세포주인 SK-Hep1에 lipofactamine을 이용하여 형질을 도입시킨 후, 항생제(G418)를 농도별로 처리하여 2주간 선별하였다(HEP-ND). hNIS와 $D_2R$발현 유무와 발현 정도를 알아보기 위하여 각 유전자에 특이적인 프라이머를 이용하여 RT-PCR을 수행하였다. 각 형질 도입세포군에서, hNIS의 활성은 $^{125}I$ 섭취율을 이용하여 측정하고 $D_2R$의 활성은 $[^3H]spiperone$을 리간드로 이용하여 수용체 결합 정도를 측정하였다. 결과: 선별된 HEP-ND세포에서 hNIS와 $D_2R$의 발현을 RT-PCR로 확인하였을 때 IRES로 연결된 hNIS와 $D_2R$의 발현 정도는 서로 비슷하였다. HEP-ND세포의 $^{125}I$ 섭취율은 대조군인 SK-Hep1세포에 배해 30-40배 증가되었고, $KClO_4$에 의해 $^{125}I$ 섭취가 저해되었다. $D_2R$의 발현 정도를 측정할 수 있는 수용체 결합 분석법을 통해G418 농도별로 나눈 두 종류의 세포주에서, $[^3H]spiperone$을 이용한 해리상수 ($K_d$)와 최대결합 부위농도 ($B_{max}$)는 각각 2.92 nM, 745.25 fmol/mg protein과 8.91nM, 1323 fmole/mg protein이었다. hNIS와 $D_2R$발현의 상관관계에서는 높은 상관관계를 나타내었다. 결론: 이 연구에서 hNIS와 $D_2R$가 이입된 세포주에서 이중 유전자, 감마 영상 리포터 시스템을 개발하였으며, $D_2R$와 HNIS 유전자를 이중 핵 영상 시스템으로서 서로 상호보완적으로 이용할 수 있을 것으로 기대하고 있다.

Roles of Non-cholinergic Intrapancreatic Nerves, Serotonergic Nerves, on Pancreatic Exocrine Secretion in the Isolated Perfused Rat Pancreas

  • Jiang, Zheng Er;Shin, Bich-Na;Kim, In-Hye;Lee, Hyun-Joo;Yong, Jun-Hwan;Lee, Min-Jae;Won, Moo-Ho;Lee, Yun-Lyul
    • The Korean Journal of Physiology and Pharmacology
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    • 제15권5호
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    • pp.307-312
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    • 2011
  • It has been rereported that axons which display 5-hydroxytryptamine (5-HT) immunoreactivity are abundant in the pancreas and the majority of serotonergic axons terminate within intrapancreatic ganglia, islet and acini. This histological result strongly suggests that intrapancreatic serotonergic nerves could affect to the pancreatic endocrine and exocrine secretion. Thus, this study was aimed to investigate whether intrapancreatic serotonergic nerves could affect pancreatic exocrine secretion and an action mechanism of the intrapancreatic serotonergic nerves. The rats were anesthetized with a single injection of urethane. The median line and the abdominal aorta was carefully dissected and cannulated with PE-50 tubing just above the celiac artery, and then tightly ligated just below the superior mesenteric artery. The pancreatic duct was also cannulated with Tygon microbore tubing. With the addition of serotonin, pancreatic volume flow and amylase output were significantly inhibited electrical field stimulation (EFS). On the other hand, pancreatic volume flow and amylase output were significantly elevated in EFS with the addition of spiperone. EFS application, however, pancreatic volume flow and amylase output had no significant change in cholecystokinin (CCK) alone when serotonin was applied under a 5.6 mM glucose background. Pancreatic volume flow and amylase output under 18 mM glucose background were significantly elevated in CCK plus serotonin than in CCK alone. These data suggest that intrapancreatic serotonergic nerves play an inhibitory role in pancreatic exocrine secretion and an important role in the insulin action or release.

Imaging Neuroreceptors in the Living Human Brain

  • Wagner Jr Henry N.;Dannals Robert F.;Frost J. James;Wong Dean F.;Ravert Hayden T.;Wilson Alan A.;Links Jonathan M.;Burns H. Donald;Kuhar Michael J.;Snyder Solomon H.
    • 대한핵의학회지
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    • 제18권2호
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    • pp.17-23
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    • 1984
  • For nearly a century it has been known that chemical activity accompanies mental activity, but only recently has it been possible to begin to examine its exact nature. Positron-emitting radioactive tracers have made it possible to study the chemistry of the human mind in health and disease, using chiefly cyclotron-produced radionuclides, carbon-11, fluorine-18 and oxygen-15. It is now well established that measurable increases in regional cerebral blood flow, glucose and oxygen metabolism accompany the mental functions of perception, cognition, emotion and motion. On May 25, 1983 the first imaging of a neuroreceptor in the human brain was accomplished with carbon-11 methyl spiperone, a ligand that binds preferentially to dopamine-2 receptors, 80% of which are located in the caudate nucleus and putamen. Quantitative imaging of serotonin-2, opiate, benzodiazapine and muscarinic cholinergic receptors has subsequently been accomplished. In studies of normal men and women, it has been found that dopamine and serotonin receptor activity decreases dramatically with age, such a decrease being more pronounced in men than in women and greater in the case of dopamine receptors than serotonin-2 receptors. Preliminary studies in patients with neuropsychiatric disorders suggests that dopamine-2 receptor activity is diminished in the caudate nucleus of patients with Huntington's disease. Positron tomography permits quantitative assay of picomolar quantities of neuro-receptors within the living human brain. Studies of patients with Parkinson's disease, Alzheimer's disease, depression, anxiety, schizophrenia, acute and chronic pain states and drug addiction are now in progress. The growth of any scientific field is based on a paradigm or set of ideas that the community of scientists accepts. The unifying principle of nuclear medicine is the tracer principle applied to the study of human disease. Nineteen hundred and sixty-three was a landmark year in which technetium-99m and the Anger camera combined to move the field from its latent stage into a second stage characterized by exponential growth within the framework of the paradigm. The third stage, characterized by gradually declining growth, began in 1973. Faced with competing advances, such as computed tomography and ultrasonography, proponents and participants in the field of nuclear medicine began to search for greener pastures or to pursue narrow sub-specialties. Research became characterized by refinements of existing techniques. In 1983 nuclear medicine experienced what could be a profound change. A new paradigm was born when it was demonstrated that, despite their extremely low chemical concentrations, in the picomolar range, it was possible to image and quantify the distribution of receptors in the human body. Thus, nuclear medicine was able to move beyond physiology into biochemistry and pharmacology. Fundamental to the science of pharmacology is the concept that many drugs and endogenous substances, such as neurotransmitters, react with specific macromolecules that mediate their pharmacologic actions. Such receptors are usually identified in the study of excised tissues, cells or cell membranes, or in autoradiographic studies in animals. The first imaging and quantification of a neuroreceptor in a living human being was performed on May 25, 1983 and reported in the September 23, 1983 issue of SCIENCE. The study involved the development and use of carbon-11 N-methyl spiperone (NMSP), a drug with a high affinity for dopamine receptors. Since then, studies of dopamine and serotonin receptors have been carried out in over 100 normal persons or patients with various neuropsychiatric disorders. Exactly one year later, the first imaging of opitate receptors in a living human being was performed [1].

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초대배양한 신장 근위세뇨관세포에서 ANG II의 Na+ uptake 촉진효과에 대한 dopamine의 효과 (Effects of dopamine on angiotensin II-induced stimulation of Na+ uptake in primary cultured rabbit renal proximal tubule cells)

  • 고현주;박수현;한호재
    • 대한수의학회지
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    • 제38권3호
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    • pp.518-524
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    • 1998
  • 신장 근위세뇨관세포들은 사구체에서 여과된 물질의 재흡수, 분비 및 대사에 관여하는 여러 호르몬들의 수용체들을 가지고 있다. 이들중에서 dopamine(DA)과 angiotensin II(ANG II)가 $Na^{+}/H^{+}$ 상호운반계 조절에 중요한 역할을 하고 있다. 본 연구는 초대배양한 토끼 신장 근위세뇨관세포의 $Na^+$ uptake에 있어서 DA과 ANG II의 상호관계를 알아보고자 실시하였다. DA은 농도의존적으로 $Na^+$ uptake를 유의성 있게 억제하였다($10^{-6}M$ ; $83.2{\pm}7.2%$, $10^{-3}M$ ; $67.2{\pm}3.8%$ vs. control)(p<0.05). $DA_1$ 작동제(SKF 38393, $10^{-6}M$)는 대조군의 $81.4{\pm}6.7%$ 까지 $Na^+$ uptake를 유의성 있게 억제하였으나(p < 0.05) $DA_2$ 작동제는 영향을 미치지 않았다. $DA_1$ 길항제(SCH 23390, $10^{-6}M$)에 의해 DA의 $Na^+$ uptake 억제효과는 차단되었으나 $DA_2$ 길항제(spiperone, $10^{-6}M$)에 의해서는 영향을 받지 않았다. DA과 대조적으로 $10^{-11}M$ ANG II는 $AT_1$ 수용체를 통하여 대조군의 $120.7{\pm}4.9%$까지 $Na^+$ uptake를 유의성 있게 촉진하였다. (p < 0.05). DA 및 $10^{-11}M$ ANG II를 병합처리하였을 때 DA은 농도의존적으로 ANG II에 유도된 $Na^+$ uptake 촉진효과를 유의성 있게 차단하였다(p<0.05). 한편 ANG II에 의해 유도된 $Na^+$ uptake촉진작용은 $DA_1$ 또는 $DA_2$ 작동제에 의해 차단되었으나 DA에 의한 차단 효과는 $DA_1$$DA_2$ 길항제를 병합처리하였을 때만 반전되었다. 결론적으로 DA은 $DA_1$ 수용체를 통하여 $Na^+$ uptake를 억제하였으나 ANG II에 의한 $Na^+$ uptake 촉진작용의 억제에는 $DA_1$$DA_2$ 수용체 모두가 관여하였다.

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