• Title/Summary/Keyword: adrenoceptor

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Pharmacological Evaluation of the Mechanism of ${\alpha}-Adrenoceptor-Mediating$ Sleep in Chickens (${\alpha}$-아드레나린 수용체의 매개에 의한 병아리 수면에 대한 약리학적 고찰)

  • Jeong, S.H.;Sohn, U.D.;Song, C.S.;Hong, K.W.
    • The Korean Journal of Pharmacology
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    • v.20 no.2
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    • pp.15-21
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    • 1984
  • It was aimed to study the effects of ${\alpha}_2-adrenoceptor$ agonists on the sleeping time in $one{\sim}two-day-old$ chickens. Furthermore, it was also evaluated whether ${\alpha}_1-adrenoceptor$ agonist and antagonist might affect the sleeping in the chickens and discussed in relation with opiate receptor. 1) Guanabenz, clonidine, guanfacine and B-HT 933 decreased the latency of the loss of righting reflex in a dose-dependent manner, but B-HT 920 and oxymetazoline slightly prolonged it. 2) ${\alpha}_2-Adrenoceptor$ agonists produced dose·related increase in sleeping time. The potency was guanabenz>clonidine>oxymetazoline${\geq}$B-HT 933${\geq}$B-HT 920>guanfacine in this order. 3) ${\alpha}_2-Adrenoceptor$ antagonists decreased guanabenz-induced sleeping time in a dose ·dependent manner. The rank order of ${\alpha}_2-adrenoceptor$ antagonists was yohimbine>rauwolscine>piperoxan${\geq}$RX 781094. 4) Sleeping time caused by both ethanol and hexobarbital was not affected by yohimbine in chickens. 5) Methoxamine and phenylephrine showed little significant effect on the guanabenz-induced sleeping time. However, prazosin increased it. Paradoxically, corynanthine rather caused to decrease it. These results suggest that the stimulation of central ${\alpha}_2-adrenoceptor$ mediates sleeping, however it is remained uncertain in the role of central ${\alpha}_1-adrenoceptor$ in chickens. In addition, the one~two-day-old chickens may be considered as a useful, inexpensive and simple experimental model to evaluate the in vivo pharmacological action of the ${\alpha}_2-adrenoceptor$ agonist and antagonist related to sedation.

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Oxymetazoline as an ${\alpha}_1-Adrenoceptor$ Agonist -A pressor effect in the rabbit- (${\alpha}_1-Adrenoceptor$ Agonist로서의 Oxymetazoline -가토혈압(家兎血壓) 상승작용(上昇作用)-)

  • Park, Young-Tae;Choi, Soo-Hyung
    • The Korean Journal of Pharmacology
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    • v.18 no.2
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    • pp.59-67
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    • 1982
  • 1) Oxymetazoline, which has been known as an agonist for${\alpha}_1-adrenoceptor$ in various peripheral tissues, caused a pressor response in urethane-anesthetized rabbits when given intra-ventricularly. This pressor response was little affected by pretreatment of rabbits with i.v. guanethidine or chlorisondamine, but it was weakened in rabbits pretreated with either of i.v. phentolamine or guanethidine and chlorisondamine and in guanethidine-pretreated adrenal-ligated rabbits. 2) The pressor to intraventricular oxymetazoline was markedly attenuated by intraventricular pretreatment with prazosin, whereas intraventricular pretreatment with yohimbine or piperoxan did not affect this response. 3) Reserpine-pretreated rabbits also responded with hypertension to intraventricular oxymetazoline, which was markedly diminished by pretreatment with intraventricular prazosin but not affected by yohimbine. 4) Oxymetazoline, given intravenously, produced a pressor response in both whole and spinal rabbits. Intravenous prazosin, phentolamine and yohimbine, in this order, showed greater antagonizing effect to this pressor response. 5) The results indicate that oxymetazoline acts an agonist for ${\alpha}_1-adrenoceptors$ in the rabbit brain participating in the regulation of the blood pressure and in the vasculature of rabbits.

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The Role of Central Postsynaptic ${\alpha}_2$-Adrenoceptor on the Immobility Duration in the Forced-swimming Test Mice (새앙쥐 강제수영시 부동자세 시간에 대한 Central postsynaptic ${\alpha}_2$-Adrenoceptor의 역할에 대한 연구)

  • Rhim, Byung-Yong;Kim, Sang-Kon;Lee, Won-Suk;Hong, Ki-Whan
    • The Korean Journal of Pharmacology
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    • v.21 no.2
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    • pp.90-98
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    • 1985
  • 1) In the study of the forced-swimming test in mice (FSM), the duration of immobility posture was dose-dependently shortened by ${\alpha}_2$-agonists, clonidine and guanabenz. BH-T 933 and oxymetazoline also decreased it . Xylazine rather increased the immobility duration at low dose. 2) ${\alpha}_1$-Agonists, cirazoline, amidephrine and methoxamine, however, showed inconsistent effect on the immobility duration (ID). 3) The decrease in ID by clonidine and guanabenz was antagonized by pretreatment with yohimbine, idazoxan and phentolamine (${\alpha}_2$antagonist), but not by prazosin and corynanthine (${\alpha}_1$-antagonist) .4) The ID in the FSM was shortened dose-dependently by d-amphetamine, and it was also antagonized by yohimbine, but not by prazosin. 5) In the mice pretreated with either ${\alpha}$-methyl-p-tyrosine or reserpine, or with combination of both, the decrease in ID was still evoked by clonidine. 6) When the mice were chronically treated with antidepressants (desipramine and imipramine), or with electroconvulsive shock, clonidine still decreased the ID as it did in the control. 7) These results provided the evidences to hypothesize that the change of the ID in the FSM is closely related with the postsynaptie ${\alpha}_2$-adrenoceptor located on the central noradrenergic neuron body. Furthermore, it is assumed that this escape-directed behavior enhanced by ${\alpha}_2$-adrenoceptor agonist may be the result in some analogy with the incentive of drives which are directed toward the self-preservation.

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Effects of phenylephrine-induced PKC activation on Mg2+ release in guinea pig heart and isolated ventricular myocytes (기니픽 심장과 심근세포에서 Phenylephrine에 의한 PKC 활성화가 Mg2+ 유리에 미치는 영향)

  • Chang, Sung-eun;Kang, Hyung-sub;Kim, Jin-sang
    • Korean Journal of Veterinary Research
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    • v.38 no.1
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    • pp.29-42
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    • 1998
  • $Mg^{2+}$ is one of the most abundant divalent cations in mammalian body(0.2~1.0mM) and the important physiological roles are : first, the cofactor of many enzyme activities, second, the regulator of glycolysis and DNA synthesis, third, the important role of bioenergetics by regulating of phosphorylation, fourth, the influence of cardiac metabolism and function. In this work we have investigated the regulation of the $Mg^{2+}$ induced by ${\alpha}_1-adrenoceptor$ stimulation in perfused guinea pig hearts and isolated myocytes. The $Mg^{2+}$ content of the perfusate or the supernatant was measured by atomic absorbance spectrophotometry. The elimination of $Mg^{2+}$ in the medium increased the force of contraction of right ventricular papillary muscles, and the left ventricular pressure. Phenylephrine also enhanced the force of contraction in the presence of $Mg^{2+}-free$ medium. ${\alpha}_1-Agonists$ such as phenylephrine and methoxamine were found to induce $Mg^{2+}$ efflux in both perfused hearts and myocytes. These effects were blocked by prazosin, an ${\alpha}_1-adrenoceptor$ antagonist. The $Mg^{2+}$ influx could also be induced by phenylephrine and R59022, a diacylglycerol kinase inhibitor. In the presence of protein kinase C(PKC) inhibitors, phenylephrine produced an increase in $Mg^{2+}$ efflux from perfused hearts. Furthermore, $Mg^{2+}$ efflux by phenylephrine was amplified by phorbol 12-myristate 13-acetate(PMA). This enhancement of $Mg^{2+}$ efflux by PMA was blocked by prazosin in perfused hearts. By contrast, the $Mg^{2+}$ influx could be induced by verapamil, nifedipine, ryanodine in perfused hearts, but not in myocytes. $W^7$, a $Ca^{2+}$/calmodulin antagonist, completely blocked the phenylephrine-induced $Mg^{2+}$ efflux in perfused hearts. In conclusion, $Mg^{2+}$ is responsible for the cardiac activity associated with ${\alpha}_1-adrenoceptor$ stimulation. The mobilization of $Mg^{2+}$ is decreased or increased by ${\alpha}_1-adrenoceptor$ stimulation in guinea pig hearts. These responses may be related specifically to the respective pathways of signal transduction. A decrease in $Mg^{2+}$ efflux by ${\alpha}_1-adrenoceptor$ stimulation in hearts can be through PKC dependent and intracellular $Ca^{2+}$ levels.

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The Influence of Imipramine on the Effect of Clonidine in Pithed Rats (뇌척수제거 흰쥐에서 Clonidine효과에 미치는 Imipramine의 영향)

  • Kang, S.C.;Lee, W.S.;Rhim, B.Y.;Hong, K.W.
    • The Korean Journal of Pharmacology
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    • v.20 no.2
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    • pp.7-14
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    • 1984
  • In pithed rats, rising in diastolic blood pressure by clonidine, when intravenously injected, is expressed as the postsynaptic action, and inhibitory action on electrical stimulation-induced tachycardia by clonidine is expressed as the presynaptic inhibitory action. In this study it was aimed to observe the inhibitory effect of imipramine caused by a single and chronic administration on both postsynaptic and presynaptic action of clonidine in pithed rats, and discussed in relation with the mechanism of antidepressant action of imipramine. 1) A rise of diastolic blood pressure by clonidine was not antagonized by prazosin, but by both phentolamine and piperoxan. 2) The inhibition by clonidine of tachycardia which was induced by electrical stimulation was also antagonized by phentolamine and piperoxan, but not by prazosin. 3) The increase in diastolic blood pressure in response to clonidine was inhibited by both a single or chronic administration with imipramine (20 mg/kg). It was more pronounced in the latter. 4) The inhibitory action of clonidine on the tachycardia was markedly inhibited by both types of administration with imipramine, between which there showed little difference. It is concluded that the presynaptic ${\alpha}_2-adrenoceptor$ is rather sensitively affected by a single administration with imipramine, and a long-term imipramine treatment may inhibit both pre- and postsynaptic ${\alpha}_2-adrenoceptors$, simultaneously. Furthermore, it was seemed unlikely that these results provide the evidence :to support the fact that the subsensitivity of presynaptic ${\alpha}_2-adrenoceptor$ may be the mechanism of action of tricyclic antidepressant.

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Postsynaptic $\alpha_1$-, $\alpha_2$-Adrenoceptors in Rat Isolated Aorta (적출한 흰쥐 대동맥에 있어서 postsynaptic $\alpha_1$-, $\alpha_2$- 아드레날린 수용체에 관한 연구)

  • 임광진;조윤성;고광호;김미영
    • YAKHAK HOEJI
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    • v.30 no.3
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    • pp.157-162
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    • 1986
  • $\alpha$-Adrenoceptor subtypes in the isolated rat aortic strips were examined by using agonists and antagonists which have varying selectivity for $\alpha_1$- and $\alpha_2$- adrenoceptors. Norepinephrine and phenylephrine produced a similar magnitude of maximum contractions. $pA_2$ values for prazosin and yohimbine were not significantly different using norepinephrine or phenylephrine as the agonist, suggesting a single population of alpha-adrenoceptor. Contractile responses produced by alpha-agonists were antagonized more effectively by prazosin (approximately 1000 fold) than by yohimbine.

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Pharmacological Effects of KR60886, A New β3 Adrenoceptor Agonist

  • Lee, Sang-Suk;Yang, Sung-Don;Ha, Jae-Du;Choi, Joong-Kwon;Cheon, Hyae-Gyeong
    • Biomolecules & Therapeutics
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    • v.12 no.4
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    • pp.215-220
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    • 2004
  • In an attempt to develop new anti-diabetic agents, a series of aryloxypropanolamine derivatives was synthesized to serve as ${\beta}_3$ adrenoceptor agonists. Among these derivatives, 1-{1-methyl-3-[4-(2-methyl-2H-1,2,3,4-tetrazol-5-yl)phenyl]propylamino}-3-phenoxy-2-propanol (KR60886) possessed a high affinity for the ${\beta}_3$ adrenoceptor (Ki = 28 nM) and moderate affinities for ${\beta}_1$ and ${\beta}_2$ adrenoceptors (Ki = 95 nM and 100 nM, respectively). In addition, KR60886 stimulated cAMP production with an EC$_{50}$ of 0.4 ${\mu}M$, confirming its agonistic activity for the ${\beta}_3$ adrenoceptor. In vivo activities of KR60886 were examined by using a fat-fed/streptozotocin (STZ)-treated rat model and the ob/ob mouse model. Oral administration of KR60886 (10 mg/kg) for 3 days (b.i.d.) to fat-fed/STZ-treated rats significantly lowered plasma glucose levels and reduced plasma free fatty acid concentrations. Similarly, KR60886 treatment (10 mg/kg/day for 7 d) resulted in a reduction of plasma glucose concentrations in ob/ob mice. The present study suggests that KR60886 is a potent ${\beta}_3$ receptor agonist with in vivo anti-diabetic properties.

Noradrenergic Modulation of Spontaneous Inhibitory Postsynaptic Currents in the Hypothalamic Paraventricular Nucleus

  • Lee, Long-Hwa;Chong, Won-Ee;Lee, Ki-Ho;Park, Jin-Bong;Ryu, Pan-Dong
    • The Korean Journal of Physiology and Pharmacology
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    • v.6 no.2
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    • pp.71-80
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    • 2002
  • Previous studies have suggested that brain stem noradrenergic inputs differentially modulate neurons in the paraventricular nucleus (PVN). Here, we compared the effects of norepinephrine (NE) on spontaneous GABAergic inhibitory postsynaptic currents (sIPSCs) in identified PVN neurons using slice patch technique. In 17 of 18 type I neurons, NE $(30{\sim}100{\mu}M)$ reversibly decreased sIPSC frequency to $41{\pm}7%$ of the baseline value $(4.4{\pm}0.8\;Hz,\;p<0.001).$ This effect was blocked by yohimbine $(2{\sim}20{\mu}M),$ an ${\alpha}_2-adrenoceptor$ antagonist and mimicked by clonidine $(50{\mu}M),$ an ${\alpha}_2-adrenoceptor$ agonist. In contrast, NE increased sIPSC frequency to $248{\pm}32%$ of the control $(3.06{\pm}0.37\;Hz,\;p<0.001)$ in 31 of 54 type II neurons, but decreased the frequency to $41{\pm}7$ of the control $(5.5{\pm}1.3\;Hz)$ in the rest of type II neurons (p<0.001). In both types of PVN neurons, NE did not affect the mean amplitude and decay time constant of sIPSCs. In addition, membrane input resistance and amplitude of sIPSC of type I neurons were larger than those of type II neurons tested (1209 vs. 736 $M{\Omega},$ p<0.001; 110 vs. 81 pS, p<0.001). The results suggest that noradrenergic modulation of inhibitory synaptic transmission in the PVN decreases the neuronal excitability in most type I neurons via ${\alpha}_2-adrenoceptor,$ however, either increases in about 60% or decreases in 40% of type II neurons.

The involvement of protein kinase C in the inhibitory effect of methoxamine on the thyrotropin-induced release of thyroxine in mouse thyroid (Mouse 갑상선에서 thyrotropin에 의한 thyroxine 유리에 미치는 methoxamine의 억제효과에 대한 protein kinase C의 관련)

  • Kim, Se-gon;Kim, Jin-sang
    • Korean Journal of Veterinary Research
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    • v.38 no.3
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    • pp.508-517
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    • 1998
  • There is evidence that the sympathetic nervous system exerts a control on thyroid function via an adrenergic innervation of thyroid cells. Although it is clear that the inhibitory effects of catecholamines result from an activation of ${\alpha}_1$-adrenoceptors, the mechanisms involved in ${\alpha}_1$-stimulation are not fully understood. The effects of methoxamine and protein kinase C (PKC) activator on the release of thyroxine ($T_4$) from mouse thyroid were studied to clarify the role of PKC in the regulation of $T_4$ release in vitro. The glands were incubated in the medium, samples of the medium were assayed for $T_4$ by EIA kits. Methoxamine inhibited the TSH-stimulated $T_4$ release. This inhibition was reversed by prazosin, an ${\alpha}_1$-adrenergic antagonist. Futhermore, the inhibitory effect of methoxamine on the $T_4$ release stimulated by TSH was prevented by chloroethylclonidine, an ${\alpha}_{1b}$-adrenoceptor antagonist, but not by WB4101, an ${\alpha}_{1a}$-adrenoceptor antagonist. Also methoxamine inhibited the forskolin-, cAMP- or IBMX-stimulated $T_4$ release. These inhibition were reversed by PKC inhibitors, such as staurosporine and $H_7$. PMA, a PKC activator, completely inhibited the TSH-stimulated $T_4$ release, and its inhibition was reversed by staurosporine and $H_7$, but not by chelerythrine. R59022 (a diacylglycerol kinase inhibitor), like methoxamine, also inhibited the TSH-stimulated $T_4$ release, and its inhibition was also reversed by staurosporine. The present study suggests that methoxamine inhibition of $T_4$ release from mouse thyroid can be induced by activation of the ${\alpha}_{1b}$-adrenoceptors and that it is mediated through the ${\alpha}_1$-adrenoceptor-stimulated PKC formation.

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$\alpha_2$-Adrenoceptors are Implicated in the Electroacupuncture-induced Analgesia of Experimental Chronic Pain (전침자극이 만성통증을 억제하는 아드레날린성 기전에 대한 연구)

  • Shin Hong-Kee;Lee Kyung-Hee;Park Dong-Suk
    • The Journal of Korean Medicine
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    • v.25 no.3
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    • pp.67-77
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    • 2004
  • Objectives : Many studies have reported that acupuncture analgesia was mediated through the activation of peripheral and central opioid receptors. However, there has been little electrophysiological study on the adrenergic mechanism of acupuncture analgesia in chronic inflammatory and neuropathic pain. The present study was undertaken to elucidate the role of adrenoceptors in the production of acupuncture analgesia in the chronic pain model. Methods : In the rat with chronic inflammation and nerve injury, dorsal horn cell (DHC) responses to afferent C fiber stimulation were used as a pain index and changes in electroacupuncture (EA) analgesia were recorded before and after intravenous administration of selective adrenoceptor antagonists. EA stimulations (2Hz, 0.5msec, 3mA) were applied to the contralateral Zusanli point for 30 min. Results : EA stimulation induced long-lasting inhibition of DHC responses in the rat with chronic inflammation and nerve injury. In both models of inflammation and neuropathic pain, α-adrenoceptor antagonist (phentolamine) significantly attenuated an inhibitory effect of EA on DHC responses. Selective α2-adrenoceptor antagonist (yohimbine) also had a similar suppressive action on DHC responses to that of phentolamine. However, β-adrenoceptor antagonist (propranolol) did not have any inhibitory effect on DHC responses in either model of chronic pain. Conclusions : These experimental findings suggest that in rats with chronic pain, EA stimulation with low frequency and high intensity produced an analgesic effect which was mediated through an activation of α2-adrenoceptors.

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