• Title/Summary/Keyword: Catalepsy

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Effect of ethanolic extract of some anti-asthmatic herbs on clonidine and haloperidol-induced catalepsy in mice

  • Dhanalakshmi, S.;Khaserao, S.S.;Kasture, S.B.
    • Advances in Traditional Medicine
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    • v.4 no.2
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    • pp.95-99
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    • 2004
  • The ethanolic extract of some medicinal plants having anti-asthmatic activity such as Solanum xanthocarpum, Curcuma longa, Glycyrrhiza glabra, Piper longum, A. vasica, A. lebbeck, and Tinospora cordifolia was evaluated for antihistaminic and anti-cataleptic activity. The aqueous solution of ethanolic extract of S. xanthocarpum and G. glabra potentiated histamine-induced tracheal chain contractions. Whereas, C. longa, P. longum, and T. cordifolia, and A. lebbeck were without any significant effect on histamine. Only A. vasica inhibited histamine-induced tracheal chain contraction. G. glabra per se produced contraction of the tracheal chain, which was blocked by pretreatment with atropine. Single dose of S. xanthocarpum potentiated clonidine-induced catalepsy but on repeated doses (once in a day for 3 days) inhibited catalepsy. Pretreatment with ethanolic extract of C. longa, P. longum, T. cordifolia inhibited catalepsy whereas G. glabra and A. lebbeck significantly potentiated clonidine-induced catalepsy. None of the extracts inhibited haloperidol-induced catalepsy. Thus the extracts having antihistaminic activity or mast cell stabilizing activity inhibited clonidineinduced catalepsy.

Effects of Olfactory Bulbectomy on Catalepsy Induced by Haloperidol in Rats (흰쥐에서 할로페리돌에 의해서 유발된 강경증에 미치는 후구 적출의 영향)

  • Chun, Seoung-Ho;Kim, Seon-Jang;Bae, Ki-Hwan;Lee, Soon-Chul
    • YAKHAK HOEJI
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    • v.36 no.5
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    • pp.427-432
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    • 1992
  • We attempted to clarify the effect of bilateral olfactory bulbectomy on catalepsy induced by haloperidol in rats. The incidence of catalepsy induced by haloperidol remarkably increased after lesion of olfactory bulb, which was significantly inhibited by L-5-hydroxytryptophan, L-DOPA, and ginseng's total saponin but reserpine and ${\alpha}-methyl-p-tyrosine$ were ineffective. The dopamine content of brain was significantly decreased by olfactory bulbectomy, but this result was reversed by ginseng's total saponin.

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Effect of a polyherbal formulation on anxiety and behaviour mediated via monoamine neurotransmitters

  • Balaraman, R;Mohan, M;Aurangabadkar, VM;Jadhav, GB;Austin, Anoop;Thirugnanasampathan, Thirugnanasampathan
    • Advances in Traditional Medicine
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    • v.7 no.4
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    • pp.409-417
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    • 2007
  • We investigated the effect of Arogh, a polyherbal formulation (PHF) on animal models of anxiety based on exploratory behavior. The anxiolytic activity of polyherbal formulation (30, 100, 300 and 500 mg/kg) was studied using various behavioural paradigms such as elevated plus maze (EPM), light/dark apparatus (LDA), open field apparatus (OFA), hole board apparatus (HBA). Diazepam (1 mg/kg) was used as a standard anxiolytic drug. The effect of PHF (100 and 300 mg/kg) on serotonin, dopamine and noradrenaline mediated behaviour was studied by lithium induced head twitches in rats, haloperidol induced catalepsy in mice and clonidine induced hypothermia in rats respectively. In EPM, PHF (100, 300 and 500 mg/kg) significantly (P < 0.05) increased the time spent in open arms and the number of entries in open arms. In LDA, PHF (100, 300 and 500 mg/kg) significantly (P < 0.05) increased the time spent in lit zone. In OFA, PHF (100, 300 and 500 mg/kg) significantly (P < 0.05) increased the number of assisted rearing and the number of squares traversed. In HBA, PHF (100, 300 and 500 mg/kg) significantly (P < 0.05) increased the number of head poking. In lithium induced head twitches, PHF (100 and 300 mg/kg) significantly (P < 0.05) decreased the number of head twitches. In haloperidol induced catalepsy, PHF (300 mg/kg) decreased the duration of catalepsy significantly (P < 0.05) at 60 min. In clonidine-induced hypothermia, PHF (300 mg/kg) did not modify the effect. Drugs must be carefully assessed on EPM test and therefore in the present study EPM is supported by other tests. Present study indicates that Arogh, a polyherbal formulation possess anxiolytic activity. It diminished serotonergic transmission and decreased the duration of catalepsy indicating potentiation of dopaminergic transmission. Thus, Arogh a polyherbal formulation contains bioactive principles which possess anxiolytic activity and modified 5-HT and DA mediated behaviour.

EVIDENCE FOR HE CHANGES IN THE DOPAMINERGIC ACTIVITY AFTER THE SUBACUTE ADMINSTRATION WITH PHYSOSTIGMINE

  • Lim, Dong-Koo;Lee, Kyung-Min;Moon, Ae-Ra
    • Toxicological Research
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    • v.8 no.1
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    • pp.71-81
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    • 1992
  • Rats were treated with physostigamine acutely and subacutely for 7 days. The duration of tremor, striatal acetylcholinesterase(AChE) activity and the occurrences of dopaminal antagonist-induced catalepsy were measured. During the daily treatment with 0.75mg/kg of physostigmine, the durations of tremor were markedly reduced. However, the tremors were ot occurred in the continuous infusion up to 0.20mg/kg/hr. Striatal AChE activities were significantly inhibited(8.25%) early hour, but twenty-four hour after daily administration with physostigmine AChE activities during the continuous infusion with physostigmine were also significantly inhibites (30-60%).

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YKP1447, A Novel Potential Atypical Antipsychotic Agent

  • Dong, Seon-Min;Kim, Yong-Gil;Heo, Joon;Ji, Mi-Kyung;Cho, Jeong-Woo;Kwak, Byong-Sung
    • The Korean Journal of Physiology and Pharmacology
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    • v.13 no.2
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    • pp.71-78
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    • 2009
  • (S)-Carbamic acid 2-[4-(4-fluoro-benzoyl)-piperidin-1-yl]-1-phenyl-ethyl ester hydrochloride (YKP1447) is a novel "atypical" antipsychotic drug which selectively binds to serotonin (5-$HT_{2A}$, Ki=0.61 nM, 5-$HT_{2C}$, Ki=20.7 nM) and dopamine ($D_2$, Ki=45.9 nM, $D_3$, Ki=42.1 nM) receptors with over $10\sim100$-fold selectivity over the various receptors which exist in the brain. In the behavioral studies using mice, YKP1447 antagonized the apomorphine-induced cage climbing ($ED_{50}$=0.93 mg/kg) and DOI-induced head twitch ($ED_{50}$=0.18 mg/kg) behavior. In the dextroamphetamine-induced hyperactivity and conditioned avoidance response (CAR) paradigm in rats, YKP1447 inhibited the hyperactivity induced by amphetamine ($ED_{50}$=0.54 mg/kg) and the avoidance response ($ED_{50}$=0.48 mg/kg); however, unlike other antipsychotic drugs, catalepsy was observed only at much higher dose ($ED_{50}$=68.6 mg/kg). Based on the CAR and catalepsy results, the therapeutic index (TI) value for YKP1447 is over 100 (i.p.). These results indicate that YKP1447 has an atypical profile and less undesirable side effects than currently available drugs.

A clinical Report of Jeon-zeong(癲證) with Chronic hypertrophic rhinitis by Blood-Letting therapy and other Korean Traditional treatment (사혈요법과 기타 한방치료를 이용하여 치료한 만성 비염을 동반한 전증(癲證) 환자의 증례보고)

  • Kang, Hee-Chul
    • Journal of Oriental Neuropsychiatry
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    • v.21 no.3
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    • pp.129-137
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    • 2010
  • Objectives : The purpose of this study was to investigate the clinical application of Korean Traditional treatment to Jeon-zeong(癲證) with Chronic hypertrophic rhinitis. Methods : In this case, a 25 years old male patient has suffered by schizophrenia for 2 years and by Chronic rhinitis for 9 months. During 171 days, we treated the patient with Korean Traditional treatment. Specially blood-Letting therapy helped the patient to decrease the auditory hallucination, catalepsy and retardation as well as the snuffles. Results : After treatment. the chief complain and accompanying symptoms were subsided and improved. And Personal and social performance scale was increased. Conclusions : According to this study, Korean Traditional treatment such as Blood-Letting therapy, acupuncture and heb-medication is effective for the cure of Jeon-zeong(癲證) with Chronic hypertrophic rhinitis.

Changes in the Central Dopaminergic Systems in the Streptozotocin-induced Diabetic Rats

  • Lim, D.K.;Lee, K.M.;Ho, I.K.
    • Archives of Pharmacal Research
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    • v.17 no.6
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    • pp.398-404
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    • 1994
  • The behavioral response, depamine metabolism, and characteristics of dopamine subtypes after developing the hyperlycemia were studied in the striata of rats. In animals developed hyperglycemia, the on-set duration of cataleptic behavior responded to SCH 23390 injection was delayed abd shortened, respectively. However, the cataleptic response to spiperone occurred significantly earlier in on-set and prolonged in duration. Dopamine metabolites, dihydroxyphenylacetic acid (DDPAC) and homovanillic acid (HVA), were significantly reduced in teh striata of hyeprglycemic rats. However, level of DA was significantly increased. It is noted that the ratios of DOPAC and HVA to DA were decreased, suggesting decreased tumover of DA. The affinity of striatal D-1 receptors was significantly increased without changes in the number of binding sites, while the maximum binding number of D-2 recptors was significantly increased without affecting its affinity in the diabetic rats. These results indicate that the dopaminergic activity in striatia was altered in hyperglycemic rats. Furthermore, it suggests that the upregulation of dopamine receptors might be due to the decreased dopamine matabolism.

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Metabolic Activation of Marijuana Constituents, Cannabinoids, in Relation to Their Toxicity for Human and Its Oxidation Mechanism

  • Ikuo, Yamamoto
    • Proceedings of the PSK Conference
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    • 2002.10a
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    • pp.194-199
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    • 2002
  • Many oxidative metabolites of tetrahydrocannabinols (THCs), active components of marijuana, were pharmacologically active, and 11-hydroxy-THCs, 11-oxo-${\Delta}^8$-THC, 7-oxo-${\Delta}^8$-THC, 8$\beta$, 9$\beta$-epoxyhexahydrocannabinol (EHHC), 9$\alpha$, l0$\alpha$-EHHC and 3'-hydroxy-${\Delta}^9$-THC were more active than THC in pharmacological effects such as catalepsy, hypothermia and barbiturate synergism in mice. Cannabidiol (CBD), another major component, was biotransfomred to two novel metabolites, 6-hydroxymethyl-${\Delta}^9$-THC and 3-pentyl-6, 7, 7a, 8, 9, lla-hexahydro-I, 7-dihydroxy-7, 1O-dimethyldibenzo[b, d]oxepin (PHDO) through 8R, 9-epoxy-CBD and 85, 9-epoxy-CBD, respectively. Both metabolites exhibited some pharmacological effects comparable to d9 - THe. Cannabinol (CBN), the other major component, was mainly metabolized to ll-hydroxy-CBN by hepatic microsomes of animals including humans. The pharmacological effects of the metabolite were higher than those of CBN demonstrating that II-hydroxylation of CBN is metabolic activation pathway of the cannabinoid as is the case in THCs. Tolerance and reciprocal cross-tolerance developed to pharmacological effects d8 - THC and ll-hydroxy-d8-THC , and the magnitude of tolerance development produced by the metabolite was significantly higher than that by d8-THC. The results indicate that ll-hydroxy-d8-THC has an important role not only in the pharmacological effects but also its tolerance development of d8 - THe. THCs and their metabolites competed to the specific binding of CP-55, 940, an agonist of cannabinoid receptor, to synaptic membrane from bovine cerebral cortex. The Ki value of THCs and their metabolites were closely paralleled to their pharmacological effects in mice. A novel cytochrome P450 (cyp2c29) was purified and identified as a major enzyme responsible for the metabolic activation of d8-THC at the II-position in the mouse liver. cDNA of CYP2C29 was cloned from a mouse cDNA library and its sequence was determined. The oxidation mechanism of THC by cyp2c29 was proposed.

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General Pharmacology of AS2-006A, A New Wound Healing Agent (창상치료후보물질 AS2-006A의 일반약리연구)

  • 정혜진;조민경;손문호;강건욱;최성희;김혜정;이애경;박형근;주상섭
    • Toxicological Research
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    • v.16 no.3
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    • pp.211-219
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    • 2000
  • The therapeutic effect of AS2-006A, a derivative of asiaticoside, has been studied and is being developed as a new wound-healing agent. In the present study, the general pharmacological effects on 1) central nervous system, 2) autonomic nervous system, 3) respiratory system, 4) gastrointestinal system. 5) cardiovascular system. and 6) urinary system were assessed in experimental animals and in in vitro models. 1. In vivo animal study: External applications of the 1 % gel ointment of AS2-006A to rats at the doses of 200. 600 or 2000 mg/kg body weight showed no observable pharmacological effects. The effects on the central nervous system were assessed by observation of behavior, hexobarbital-induced sleeping time, pentetrazole-induced convulsion assay, body temperature measurements, and observations on spontaneous activity and catalepsy. The gel ointment exhibited no effects on the cardiovascular system (i.e. blood pressure and heart rate), renal physiology (i.e. urine volume and electrolytes excretion) and gas-trointestinal physiology (i.e. intestinal charcoal propulsion and gastric mucosal irritation). 2. In vitro experiments: The effects of AS2-006A on the physiology of smooth and cardiac muscles were assessed. Muscle contractions were isotonically and isometrically measured in organ chambers using a physiograph. Cumulative additions of AS2-006A (10$^{-9}$ -10$^{-5}$ M) induced no changes in the tension of isolated guinea pig ileum and tracheal muscles. AS2-006A only slightly increased contractility of rat atrial and papillary muscles at 10$^{-2}$ M, which was not statistically different from control. These data showed that the gel ointment of AS2-006A could be externally applied as a wound-healing agent with no potential side effects.

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Experimental Studies on the Cardiovascular Effects of Haloperidol in Cat and Rabbit (Haloperidol 이 심혈관계에 미치는 영향)

  • Ahn, Young-Soo
    • The Korean Journal of Pharmacology
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    • v.11 no.2
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    • pp.19-27
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    • 1975
  • Haloperidol, a butyrophenone, was synthetized by Janssen and introduced for the treatment of psychosis. Although structurally different from the phenothiazines, the butyrophenones share many of their pharmacological properties, such as inhibition of conditioned avoidance response, blocking effect of amphetamine reaction, producing catalepsy, antishock effect and protection against the lethal effects of catecholalmines. Chlorpromazine can lower the arterial blood pressure through its adrenergic blocking activity, its direct effect in relaxing vascular smooth muscle, its direct effect in depressing the myocardium and its action in a complex manner on the central nervous system. In the case of haloperidol, however, was not clarified the mechanism of lowering the blood pressure. The present paper describes the effects of haloperidol on cardiovascular system to investigate the mechanisms of its actions on the arterial blood pressure. The results are followings; 1. In anesthetized cats, intravenous administration of haloperidol and chlorpromazine in the dose of 0.1mg/kg produced a slight decrease in the blood pressure, which followed by complete recovery within $30{\sim}60$ minutes. In the dose of 3mg/kg, however, both produced an abrupt and marked decrease of the blood pressure, which followed by delayed recovery. 2. Haloperidol in the dose ranges of 0.1mg to 3.0mg/kg tended to produce the heart rate slowing in the cats, while chlorpromazine has no effect on the rate. 3. Following administration of haloperidol or chlorpromazine, epinephrine reversal in the arterial blood pressure was observed in the cat, however the responses of norepinephrine and acetylcholine were little affected. 4. In the isolated rabbit atrium the contractility was depressed by haloperidol in the doses over 0.5mg per 100ml, but the rate was not affected. In contrast, the epinephrine-induced contractility was not depressed after haloperidol treatment. However, the increased rate of atrium by epinephrine was partially blocked after haloperidol. 5. In the isolated rabbit aortic strip, epinephrine-induced contraction was blocked by haloperidol. With the above results, it may be concluded that the hypotensive effect of haloperidol was largely due to ${\alpha}$-adrenergic blocking properties and the direct effect in depressing the myocardium as well as its action on central nervous system.

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