• Title/Summary/Keyword: ${\beta}$-adrenoceptor

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Study on Alpha-Adrenoceptors of the Isolated Atrium in Cold Blood Animals (I) -Experiments with clonidine, oxymetazoline and phenylephrine in frog atria- (척출 냉혈동물 심방의 Alpha-Adrenoceptors에 관한 연구(I) -개구리 심방의 clonidine, oxymetazoline 및 phenylephrine에 대한 반응-)

  • Choi, Soo-Hyung;Park, Haeng-Soon;Shin, Dong-Ho
    • YAKHAK HOEJI
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    • v.32 no.2
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    • pp.129-136
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    • 1988
  • Effects of the selective alpha-adrenoceptor agonists, clonidine, oxymetazoline and phenylephrine, on heart rate and contractile force were investigated in the isolated frog atria and it was attempted to examine the influence of adrenoceptor antagonist upon those. Clonidine produced dose-dependent negative chronotropic and positive inotropic effects. The negative chronotropic effect was significantly attenuated in the presence of prazosin and yohimbine but not propranolol. The positive inotropic effect was significantly attenuated by prazosin, yohimbine and propranolol. Oxymetazoline produced dose-dependent negative chronotropic and inotropic effects. The negative chronotropic effect was significantly attenuated in the presence of prazosin, which was partially augmented by yohimbine but was not affected by propranolol. The negative inotropic effect was not affected by propranolol but it was partially augmented by yohimbine and was partially attenuated by prazosin. Phenylephrine produced dose-dependent positive chronotropic and inotropic effects. The positive chronotropic and inotropic effect were significantly attenuated in the presence of propranolol but were not affected by prazosin and yohimbine. These results suggest that the negative chronotropic effect by clonidine and oxymetazoline is mediated by alpha-adrenoceptors, the positive chronotropic and inotropic effects by phenylephrine are mediated by beta-adrenoceptors, and alpha-adrenoceptors mediated the inhibitory chronotropic responses exists in the isolated frog atria.

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Effects of melatonin on heart rate in rats (멜라토닌이 랫트에서 심박수에 미치는 영향)

  • Shim, So-yeon;Shin, Se-rin;Kim, Jin-shang
    • Korean Journal of Veterinary Research
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    • v.41 no.4
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    • pp.497-503
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    • 2001
  • Evidence from the last 10 years have been suggested that melatonin mainly produce a depressant effect on the cardiac system, but we found an activating effect of melatonin on heart rate in this research. To determine the hypothesis that melatonin has dual effects on physiological behaviour of cardiac system, we investigated the effects of melatonin on heart rate in isolated rat atria and anesthetized rats. Regardless of concentration, melatonin produced bradycardia in the 84 cases of 148 experiments (57 %) and tachycardia in the 64 cases of 148 experiments (43 %). And in atrium, melatonin produced a decrease automaticity in 52 cases of 86 experiments (60 %) and increase automaticity in 40 % (34/86 cases). Also, these effects are not significnat relationship with concetration of melatonin. The melatonin-induced bradycardia in vivo was inhibited by pretreatment of atropine or bilateral cervical vagotomy. Also, in isolated atrium the melatonin-induced decrease in automaticity was inhibited by pretreatment of atropine. These melatonin-induced responses were potenitated by pretreatment of propranolol. The melatonin-induced tachycardia in vivo was inhibited by pretreatment of propranolol, nifedipine or bilateral cervical vagotomy, but not by pretreatment of atropine. The melatonin-induced incease in automaticity in isolated atrium was converted to decrease in automaticity by pretreatment of propranolol. In addition, the change in heart rate caused by adrenoceptor agonists was inhibited by pretreatment of melatonin. These results indicate that melatonin-induced bradycardia may be related to a muscarinic receptor activation and melatonin-induced tachycardia may be related to a $\beta$-adrenoceptor stimulation.

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Analysis of $\beta$-Blockers in Whole Blood by GC/MS-SIM

  • Rhee, Jong-Sook;Yang, Hee-Jin;Seol, Il-Ung;Koo, Ki-Ser
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.219.3-219.3
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    • 2003
  • We describe here solid-extraction and derivatisation methods of ${\beta}$-adrenoceptor blocking drugs used for the treatment of various cardiovascular disorders such as hypertension, angina pectoris and cardiac arrhythmia: propranolol, metoprolol, sotalol, timolol, oxprenolol, alpranolol, atenolol, pindolol. Solid-extraction and derivatisation methods are described involving the use of Bond Elut Certify cartridges, MSTFA and MBTFA. Gas chromatographic-mass spectrometry analysis(GC/MS) was carried out select-ion monitroing mode. (omitted)

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Anti-Asthmatic Effects of Portulaca Oleracea and its Constituents, a Review

  • Khazdair, Mohammad Reza;Anaeigoudari, Akbar;Kianmehr, Majid
    • Journal of Pharmacopuncture
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    • v.22 no.3
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    • pp.122-130
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    • 2019
  • Objectives: The medicinal plants are believed to enhance the natural resistance of the body to infections. Some of the main constituents of the plant and derived materials such as, proteins, lectins and polysaccharides have anti-inflammatory effects. Portulaca oleracea (P. oleracea) were used traditionally for dietary, food additive, spice and various medicinal purposes. This review article is focus on the anti-asthmatic effects of P. oleracea and its constituents. Methods: Various databases, such as the PubMed, Scopus, and Google Scholar, were searched the keywords including "Portulaca oleracea", "Quercetin", "Anti-inflammatory", "Antioxidant", "Cytokines", "Smooth muscle ", and " Relaxant effects " until the end of Jul 2018. Results: P. oleracea extracts and its constituents increased $IFN-{\gamma}$, IL-2, $IFN{\gamma}/IL-4$ and IL- 10/IL-4 ratio, but decreased secretion of $TNF-{\alpha}$, IL-4 and chemokines in both in vitro and in vivo studies. P. oleracea extracts and quercetin also signifcantly decreased production of NO, stimulated ${\beta}$-adrenoceptor and/or blocking muscarinic receptors in tracheal smooth muscles. Conclusion: P. oleracea extracts and quercetin showed relatively potent anti-asthmatic effects due to decreased production of NO, inflammatory cytokines and chemokines, reduced oxidant while enhanced antioxidant markers, and also showed potent relaxant effects on tracheal smooth muscles via stimulatory on ${\beta}$-adrenoceptor or/and blocking muscarinic receptors.

Comparison of Inodilator Effect of Higenamine, YS49, YS51, Tetrahydroisoquinoline Analogs, and Dobutamine in the Rat

  • Chong, Won-Seog;Lee, Young-Soo;Kang, Young-Jin;Lee, Duck-Hyung;Ryu, Jae-Chun;Yun-Choi, Hye-Sook;Chang, Ki-Churl
    • The Korean Journal of Physiology and Pharmacology
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    • v.2 no.3
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    • pp.323-330
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    • 1998
  • Tetrahydroisoquinoline (THI) alkaloids can be considered as cyclized derivatives of simple phenylethylamines. Many of them, especially with 6,7-disubstitution, demonstrate a relatively high affinity for catecholamines. Present study examines the pharmacological action of limited series of THI, using rats' isolated atria and aorta. In addition, a $[^3H]$ prazosin displacement binding study with THI compounds was performed, using rat brain homogenates to investigate whether these probes have ?${\alpha}$-adrenoceptor affinity. We also compared the vascular relaxation potency of these probes with dobutamine. YS 49, YS 51, higenamine and dobutamine, concentration-dependently, relaxed endothelium-denuded rat thoracic aorta precontracted with phenylephrine (PE, 0.1 ${\mu}M$) in which $pEC_{50}$ were $5.56{\pm}0.32$ and $5.55{\pm}0.21$, $5.99{\pm}1.16$ and $5.57{\pm}0.34$, respectively. These probes except higenamine also relaxed KCl (65.4 mM)-contracted aorta. In isolated rat atria, all THIs and dobutamine increased heart rate and contractile force. In the presence of propranolol, the concentration response curves of YS 49 and YS 51 shifted to the right and resulted in $pA_2$ values of $8.07{\pm}0.84$ and $7.93{\pm}0.11$, respectively. The slope of each compound was not deviated from unity, indicating that these chemicals are highly competitive at the cardiac ?${\beta}-adrenoceptors$. YS 49, YS 51, and higenamine showed ?${\alpha)-adrenoceptor$ affinity in rat brain, in which the dissociation constant $(K_i)$ was 2.75, 2.81, and 1.02 ${\mu}M$, respectively. It is concluded, therefore, that THI alkaloids have weak affinity to ${\alpha)_1-adrenoceptor$ in rat aorta and brain, respectively, while these probes show relatively high affinity for cardiac ${\beta}-adrenoceptors$. Thus, these chemicals may be useful in the treatment of congestive heart failure.

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Beta-adrenergic regulation of the DNA Synthesis and Epidermal Growth Factor Secretion in cultured Submandibular Gland Cells (악하선 배양세포의 DNA합성 및 Epidermal Growth Factor분비에 관련된 Beta-adrenergic 조절에 관한 연구)

  • 이금영;소준노
    • The Korean Journal of Zoology
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    • v.34 no.3
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    • pp.410-419
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    • 1991
  • 마우스 악하선 배양세포의 DNA와 단백질 합성 및 epidermal growth factor(EGF) 분비에 미치는 isoproterenol(IPR)의 효과를 조사하였다. 마우스 악하선으로부터 분리되어 배양된 상피형세포의 DNA및 단백질 합성은 IRP에 의해 농도 의존적으로 현저하게 감소하였다. 이와는 달리 IPR처리 1시간 후에 IPR-처리 마우스로부터 얻은 혈청은 악하선 배양세포의 단백질 합성에는 별 영향을 미치지 못하였으나, DNA합성은 현저하게 증가시켰다. IPR에 의한 악하선 세포의 DNA 합성능의 감소는 propranolol에 의해 차단되지 않았으나 ascorbate에 의해서는 회복되었다. 악하선 배양세포의 DNA 및 단백질 합성을 저해한 IPR의 처리에 의해 배양세포의 EGF분비는 현저히 증가되었다. 이상과 같은 결과는 악하선 세포의 DNA 및 단백질 합성에 작용한 IPR의 효과는 beta-adrenoceptor의 흥분에 의한 것이라기 보다는 IPR로부터 유래된 free radical에 의한 세포독성에 기인함을 시사한다. 따라서 IPR의 생체내 투여에 의한 악하선의 비대화를 보고 한 기존의 결과는 IPR이 악하선에 직접 작용하여 유발된 것이 아닌 다른 경로를 통한 간접적인 효과로 판단될 수 있을 것이다.

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Influence of Intracerebroventricular Isoproterenol on the Renal Function of the Rabbit (가토신장기능에 미치는 측뇌실내 Isoproterenol의 영향)

  • Kim, Haeng-Bae;Choi, Bong-Kyu;Kook, Young-Johng
    • The Korean Journal of Pharmacology
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    • v.18 no.1
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    • pp.1-10
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    • 1982
  • In an attempt to delineate the role of beta-adrenoceptors found to be existing in the brain tissue in the central regulation of renal function, isoproterenol, a ${\beta}-adrenergic$ agonist, was administered directly into a lateral ventricle of the rabbit brain and the changes of renal function were observed. Also, the effects of propranolol, a specific ${\beta}-adrenergic$ blocking agent, and its influence upon the isoproterenol action were studied. Isoproterenol, in doses ranging from 5 to $50\;{\mu}g/kg\;i.c.v.$, elicited antidiuresis which seemed to be related to the decreased renal hemodynamics brought about by the systemic hypotension. With moderate doaes of $15\;{\mu}g/kg$ the antidiuresis was less prominent and there was a tendency toward natriuresis, but with higher doses the natriuretic effect became less evident, overrun by the systemic hypotension. Propranolol, $500\;{\mu}g/kg\;i.c.v.$, produced little effect on the renal function, but it eliminated the antidiuretic action of $50\;{\mu}g/kg$ isoproterenol i.c.v. and reversed it to a diuretic and natriuretic one, along with increases in renal plasma flow and glomerular filtration rate. The systemic hypotension also was markedly attenuated by propranolol pretreatment. Thus, it was evident that the renal action of i.c.v. isoproterenol was not blocked by propranolol and became explicit only when the hypotensive action of isoproterenol which seems to he propranolol-sensitive is removed. Various possibilities to account for this disparity in sensitivity were discussed. It is suggested from these observations that the central ${\beta}-adrenoceptors$ might also be involved in the regulation of renal function along with ${\alpha}-adrenoceptors$, though less significant than the latter.

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Synthesis of Higenamine and its Cardiovascular Effects in Rabbit: Evidence for ${\beta}-Adrenoceptor$ agonist (Higenamine의 합성 및 가토의 심혈관계에 미치는 영향 : 베타-아드레날린성 효능 약물)

  • Chang, Ki-Churl;Lim, Jung-Kyoo;Park, Chan-Woong
    • The Korean Journal of Pharmacology
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    • v.22 no.2
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    • pp.96-104
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    • 1986
  • Higenamine, dl-1-( 4-hydroxybenzyl)-6, 7-dihydroxy-1 ,2, 3 ,4-tetrahydroisoquinoline has been synthesized and evaluated for hemodynamic actions using rabbits under pentobarbital anesthesia. Concentration-related fall of mean blood pressure was observed, where diastolic blood presure was significantly lowered at 10 ug/kg/min or above (p<.05), while the systolic blood pressure was slightly increased or unaffected, thereby, causing increment of pulse pressure. No significant change was occured in heart rate, however, carotid artery blood flow was significantly (p<.05) increased. These actions were inhibited with pretreatment of 0.3 mg/kg of propranolol, beta-adrenoceptor antagonist, 5 minutes before infusion of higenamine indicating that higenamine compete with propranolol for the so-called beta adrenergic receptor. As comparison, the same procedure was applied to isoproterenol as well, where typical antagonism of propranolol against isoproterenol was shown. From these findings the vasodilating and diastolic blood pressure lowing effects could be explained in terms of cardiac beta stimulating action, however, dopamine receptor activation could not be excluded because no significant changes observed in chronotropism.

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Pig large tumor suppressor 2 (Lats2), a novel gene that may regulate the fat reduction in adipocyte

  • Liu, Qiuyue;Gu, Xiaorong;Zhao, Yiqiang;Zhang, Jin;Zhao, Yaofeng;Meng, Qingyong;Xu, Guoheng;Hu, Xiaoxiang;Li, Ning
    • BMB Reports
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    • v.43 no.2
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    • pp.97-102
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    • 2010
  • Clenbuterol, a $\beta_2$-adrenoceptor agonist, has been proven to be a powerful repartition agent that can decrease fat deposition. Based on results from our previous cDNA microarray experiment of pig clenbuterol administration, a novel up-regulated EST was full-length cloned (4859 bp encoding 1041 amino acids) and found to be the pig homolog of large tumor suppressor 2 (Lats2). We mapped pig Lats2 to chromosome 11p13-14 by using FISH, and western blotting demonstrated that pig Lats2 protein was most abundant in adipose. In Drosophila, Lats2 ortholog was reported as a key component of the Hippo pathway which regulates cell differentiation and growth. Here, we show that pig Lats2 exhibit inverted expression to YAP1, another member of the Hippo pathway which positively regulates cell growth and proliferation, during the differentiation of 3T3-L1 preadipocytes. Our results suggested that Lats2 may involve in Hippo pathway regulating the fat reduction by inhibiting adipocyte differentiation and growth.

Effects of Dopamine on the Contractility and Action Potential of the Rabbit Papillary Muscle (Dopamine이 토끼 유두근의 수축력과 활동전압에 미치는 영향)

  • Huh, In-Hoi;Park, Jong-Wan
    • YAKHAK HOEJI
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    • v.32 no.6
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    • pp.402-414
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    • 1988
  • In order to clarify the receptor types and mechanisms underlying the positive inotropic effect of dopamine on the mammalian ventricular myocardium, the action potential, its first derivatives and isometric contraction of the rabbit papillary muscle were recorded using a force transducer and glass capillary microelectrodes filled with 3M KCl. The results were as follows; (1) In normal Tyrode solution, the contractile force was increased and duration of action potential was shortened with increments of dopamine concentration ($10^{-6}-10^{-4}M$). (2) The dose-response curve was markedly shifted to the right by pretreatment with reserpine (5mg/kg i.p., 24hrs prior to the experiment). (3) In 19mM $K^+-Tyrode$ solution, the duration of action potential, maximum rate of rise (V_{max}) of action potential and overshoot were significantly increased with increments of dopamine concentration ($10^{-6}-10^{-4}M$). (4) The inotropic effect of dopamine on the rabbit papillary muscle pretreated with reserpine was antagonized by atenolol ($10^{-6}M$), but not by phentolamine ($3{\times}10^{-6}M$). (5) In rabbit papillary muscle partially depolarized by 19mM $K^+-Tyrode$ solution, slow electrical response (calcium mediated action potential) as well as contraction were restored by dopamine ($10^{-4}M$); this restoration was blocked by calcium antagonists ($3{\times}10^{-5}M$ $LaCl_3{\cdot}6H_2O$, $3{\times}10^{-6}M$ diltiazem) or ${\beta}-adrenoceptor$ antagonist ($3{\times}10^{-6}M$ atenolol), but not affected by ${\alpha}-adrenoceptor$ antagonist ($10^{-5}M$ phentolamine, $3{\times}10^{-6}M$ yohimbine) or vascular dopaminergic receptor antagonist ($10^{-5}M$ haloperidol). The above results may be interpreted as that the positive inotropic effect of dopamine through both direct and indirect action are caused by increase in slow inward current ($Ca^{2+}$ influx into themyocardial cell), and the direct action is mainly due to the stimulation of ${\beta}-adrenoceptors$ in the rabbit papillary muscle.

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