• Title/Summary/Keyword: Beta-Adrenergic Agonist

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Effect of Formoterol on the Plasma Levels of Theophylline after the Oral Administration to the Children with Respiratory Diseases (소아 호출기 환자에서 경구 투여된 Formoterol이 Theophylline의 혈중농도에 미치는 영향의 연구)

  • Jang, Jin Kyung;Jung, Nak Gyun;Lee, Sook Hyang;Cho, Hea Kyoung
    • Korean Journal of Clinical Pharmacy
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    • v.10 no.3
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    • pp.107-110
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    • 2000
  • Theophylline and $\beta$-adrenergic agonists are frequently used together in patients with respiratory diseases. However the clinical impact of $\beta_2$-adrenergic agonists on the blood concentration of theophylline is not fully evaluated. Formoterol, a newly available oral ${\beta}_2$-adrenergic agonist is frequently used in pediatric respiratory patients. The objective of this study was to investigate the effect of oral formoterol on theophylline's blood concentration. Randomized prospective study was conducted. Twenty-four children were enrolled on the study. Their age ranged 2 to 73 months (mean 35.8 months). Theophylline group (12 patients) received 10 mg/kg/day of for theophylline orally. Theophylline/formoterol group (12 patients) received 10 mg/kg/day of theophylline and $4\;{\mu}g/kg/day$ of formoterol orally. All medications were administered at least for 5 days starting on admission day. Theophylline's trough concentrations were obtained on days 3 and day 5. Pulse rates were recorded before the study medications were given on admission, and days 3 and day 5. Statistical significance was calculated by two-tailed Student's t-test. Theophylline's levels in children given theophylline and formoterol together were lower an those given theophylline alone ($6.38\pm0.90\;{\mu}g/ml\;vs\;7.43\pm0.77\;{\mu}g/ml$ on day 3(p<0.05), $5.62\pm0.56\;{\mu}g/ml\;vs.\;6.78\pm0.61\;{\mu}g/ml$ on day 5 (p<0.05)). In both groups, theophylline's trough concentration on day 5 were lower than day 3. There was no significant side effects in both groups. In conclusion, the new ${\beta}_2$ selective adrenergic agonist formoterol reduced serum theophylline levels in children with respiratory diseases. Further investigation is needed to clarify the long term effect of this drug interaction.

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Effects of Cardiovascularly Acting Neuroendocrine Agents on Heart Beatings of Pacific Oyster, Crassostrea gigas (순환기 기능 조절기능을 가진 신경내분비계 작용물질이 참굴의 심장 수축기능에 미치는 영향)

  • Park, Kwan-Ha
    • The Korean Journal of Malacology
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    • v.25 no.1
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    • pp.15-22
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    • 2009
  • Because it is known that bivalve hearts contain various modulatory systems activated by neuroendocrine substances, it was examined whether different classes of endogenous and synthetic drugs of neuroendocrinological importance can influence cardiac functions of the Pacific oyster Crassostrea gigas. Cholinergically active agents acetylcholine and carbachol increased heart rates while diminishing cardiac contractility. Adrenergically active substances norepinephrine (NE) and epinephrine (Epi) also induced heart rate increase and contractility decrease. An $\alpha_1$-adrenergic receptor-selective agonist phenyephrine (PE) failed to modulate either parameter. The Epi-induced heart rate increase and contractile depression were both blocked significantly by non-selective $\beta_1/\beta_2$-adrenergic antagonist propranolol. A $\beta_1$-selective antagonist atenolol prevented Epi-induced heart rate decrease but not the contractile depression, suggesting possible $\beta_2$ receptors for Epi-induced contractile depression. The three autacoids examined exerted discrete responses: histamine increased heart rate and depressed contraction; $\gamma$-amino-butyric acid increased both parameters; serotonin failed to change either parameter. The 5 piscine anesthetic agents examined, MS-222, benzocaine, quinaldine, urethane, pantocaine and pentobarbital, all failed to influence the cardiac function of oysters. Collectively, activities of neuroendocrinologically acting agents in mammals showed unexpected and distinct activities from those in mammalian cardiovascular systems. These results obtained from substances of different physiological functions can serve as a basis for understanding neuroendocrine control of the heart function in Pacific oyster.

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Effect of Alpha-2 Adrenergic Agonist on Beta Adrenoceptor-Nediated Control of Blood Glucose in the Fasted Mouse

  • Han, Guie-In;Kim, Mie-Young
    • Archives of Pharmacal Research
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    • v.9 no.4
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    • pp.219-222
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    • 1986
  • Dose-dependent increasesin blood glucose were produced by epinephrine and clonidine in fasted male mice. Isoproterenol was ineffective in increasing blood glucose at lower doses ($10^{-8}M$/kg-$10^{-7}M$/kg); with higher dose ($10^{-6}M$/kg) the glucose level was increased. The hyperglycemia induced by epinephrine was inhibited by yobimbine, prazosin and propranolol, indicating that the hyperglycemic effect of epinephrine is mediated by alpha-1, alpha-2 and beta adrenoceptor. When clonidine (10$^{-6}$ M/kg) was administered simultaneously with sioproterenol ($10^{-6}M$/kg), an enhenced hyperglycemic effect was observed. The increment produced by clonidine plus isoproterenol was higher than that by clonidine alone. These increment produced by clonidine plus isoproterenol was higher than that by clonidine alone. These results suggest that stimulation of alpha-2 adrenoceptor may be reponsible for the exertion of the hyperglycemic effect by beta agonists in fasted mice.

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Studies on Adrenoceptors Involved in Regulation of Sodium Transport in Frog Skin (개구리 피부에 있어서 Na 수송을 조절하는 Adrenoceptors에 관한 연구)

  • Choi Bong-Kyu;Kim Kyung-Keun;Kim Heung-Kyu;Kook Young-Johng
    • The Korean Journal of Pharmacology
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    • v.22 no.1 s.38
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    • pp.24-33
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    • 1986
  • To ascertain the existence of various adrenoceptors involved in active transport of sodium in the frog skin and to delineate their physiological roles, the influence of various adrenergic agonists and antagonists on the potential difference (PD), short-circuit current (SCC) and total skin conductance (TSC) of the isolated frog skin of Rana nigromaculata were investigated. PD and SCC were determined with Ussing's technique. Drugs were administered to the serosal side of the skin. Experimental results were summarized as follows: 1. The responses to norepinephrine (NE, $6{\times}10^{-8}-6{\times}10^{-5})M$), phenylephrine (PE, $5{\times}10^{-6}-5{\times}10^{-4}M$) and epinephrine (Epi, $5.5{\times}10^{-7}-5.5{\times}10^{-5}M$) were characterized by marked elevation of PD & SCC in dose-related fashion, but the maximal effect attained by Epi was less than those of NE and PE. 2. These increments of PD & SCC were significantly inhibited by prazosin $(2{\times}10^{-6}M)$, a speciflc ${\alpha}_1$-adrenoceptor blocker. The stimulatory effect on PD & SCC were completely abolished by phenoxybenzamine (PBZ, $3.3{\times}10^{-5}M$), an irreversible ${\alpha}$-adrenoceptor blocking agent. Furthermore, with a larger doses of Epi produced marked decline of PD & SCC after the PBZ pretreatment. 3. Isoproterenol (ISP), a ${\beta}$-adrenoceptor agonist, in concentrations ranging from $5{\times}10^{-7}$ to $5{\times}10^{-6}M$ produced dose-related decrease in PD & SCC, which could be abolished by pretreatment with propranolol $(4{\times}10^{-6}M)$, a specific ${\beta}$-adrenoceptor blocker. It was further noted that the effects of Epi on PD & SCC were markedly potentiated by Propranolol pretreatment. 4. Clonidine as well as guanabenz produced increases in PD & SCC and these effects were inhibited more specifically by prazosin pretreatment than by yohimbine. These results indicated that there exist in the frog skin two distinctive types of adrenoceptors, ${\alpha}$ and ${\beta}$, which roughly corresponds to those in mammals, and that the ${\alpha}$ type of adrenoceptors mediate the stimulation of PD & SCC, whereas ${\beta}$-adrenoceptors mediate the inhibition. However, based on evidence at hand, no conclusion could be drawn on the subtype of ${\alpha}$-adrenoceptors which is involved in the stimulation of sodium transport in the frog skin.

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Synthesis of [18F]-Labelled Nebivolol as a β1-Adrenergic Receptor Antagonist for PET Imaging Agent (베타1-아드레날린 수용체를 표적으로 하는 심근영상제로서 18F 표지된 nebivolol의 합성)

  • Kim, Taek-Soo;Park, Jeong Hoon;Lee, Jun Young;Yang, Seung Dae;Chang, Dong-Jo
    • Journal of Radiation Industry
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    • v.10 no.4
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    • pp.181-187
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    • 2016
  • Selective ${\beta}_1$-agonist and antagonists are used for the treatment of cardiac diseases including congestive heart failure, angina pectoris and arrhythmia. Selective ${\beta}_1$-antagonists including nebivolol have high binding affinity on ${\beta}_1$-adrenergic receptor, not ${\beta}_2$-receptor mainly expressed in smooth muscle. Nebivolol is one of most selective ${\beta}_1$-blockers in clinically used ${\beta}_1$-blockers including atenolol and bisoprolol. We tried to develop clinically useful cardiac PET tracers using a selective ${\beta}_1$-blocker. Nebivolol is $C_2$-symmetric and has two chromane moiety with a secondary amino alcohol and aromatic fluorine. We adopted the general synthetic strategy using epoxide ring opening reaction. Unlike formal synthesis of nebivolol, we prepared two chromane building blocks with fluorine and iodine which was transformed to diaryliodonium salt for labelling of $^{18}F$. Two epoxide building blocks were readily prepared from commercially available chromene carboxylic acids (1, 8). Then, the amino alcohol building block (15) was prepared by ammonolysis of epoxide (14) followed by coupling reaction with the other building block, epoxide (7). Diaryliodonium salt, a precursor for $^{18}F$-aromatic substitution, was synthesized in moderate yield which was readily subjected to $^{18}F$-aromatic substitution to give $^{18}F$-labelled nebivolol.

Cardiac physiologic regulation of sub-type specific adrenergic receptors in transgenic mice overexpressing β1- and β2-adrenergic receptors.

  • Kim, Ka Eul;Tae, Hyun-Jin;Natalia, Petrashevskaya;Lee, Jae-Chul;Ahn, Ji Hyeon;Park, Joon Ha;Kim, In Hye;Ohk, Taek Geun;Park, Chan Woo;Cho, Jun Hwi;Won, Moo-Ho
    • Clinical and Experimental Emergency Medicine
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    • v.3 no.3
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    • pp.175-180
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    • 2016
  • Objective Combination of ${\beta}_1-adrenergic$ receptor (AR) blockade and ${\beta}_2-AR$ activation might be a potential novel therapy for treating heart failure. However, use of ${\beta}-AR$ agonists and/or antagonists in the clinical setting is controversial because of the lack of information on cardiac inotropic or chronotropic regulation by AR signaling. Methods In this study, we performed hemodynamic evaluation by examining force frequency response (FFR), Frank-Starling relationship, and response to a non-selective ${\beta}-AR$ agonist (isoproterenol) in hearts isolated from 6-month-old transgenic (TG) mice overexpressing ${\beta}_1-$ and ${\beta}_2-ARs$ (${\beta}_1-$ and ${\beta}_2-AR$ TG mice, respectively). Results Cardiac physiologic consequences of ${\beta}_1-$ and ${\beta}_2-AR$ overexpression resulted in similar maximal response to isoproterenol and faster temporary decline of positive inotropic response in ${\beta}_2-AR$ TG mice. ${\beta}_1-AR$ TG mice showed a pronounced negative limb of FFR, whereas ${\beta}_2-AR$ TG mice showed high stimulation frequencies with low contractile depression during FFR. In contrast, Frank-Starling relationship was equally enhanced in both ${\beta}_1-$ and ${\beta}_2-AR$ TG mice. Conclusion Hemodynamic evaluation performed in the present showed a difference in ${\beta}_1-$ and ${\beta}_2-AR$ signaling, which may be due to the difference in the desensitization of ${\beta}_1-$ and ${\beta}_2-ARs$.

Effects of lipoic Acid on Plasma Metabolites and Metabolic Response to Intravenous Injection of Isoproterenol in Broilers

  • Hamano, Y.;Kamota, Y.;Sugawara, S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.13 no.5
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    • pp.653-658
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    • 2000
  • To examine the effects of lipoic acid on metabolic response to a ${\beta}$-agonist, isoproterenol, in broilers, chicks were fed dietary lipoic acid at levels of 0 (control) or 50 mg/kg for 24 d. At 27 d of age, chickens were randomly selected. Isoproterenol dissolved in 0.9% saline was injected into the wing vein at a dosage of 2 mg per kg BW; then, blood samples were taken at 0, 10, 20, 30, 60, 90, 120, and 180 min. Amounts of plasma glucose, NEFA, triglyceride and total cholesterol were determined. Dietary lipoic acid reduced only plasma total cholesterol by 25%. Following isoproterenol injection, plasma glucose in both groups increased for 20 min; then, it returned to its basal concentration. In contrast, the maximal reductions in plasma NEFA and triglyceride in both groups (20 to 30 min) were confirmed by isoproterenol injection. In addition, while glucose returned to the basal level, plasma NEFA in the lipoic acid-treated chickens increased above the basal or control value during the 60 to 180 min post-injection. The present study suggests that the dietary administration of lipoic acid elicits fatty acid mobilization in ${\beta}$-adrenergic response to isoproterenol when the basal level of plasma glucose is maintained.

Amylase Release from Pancreatic Slices of Rat Treated with Adrenergic Drugs (아드레나린성 약물 전처치 흰쥐의 취절편 효소분비에 관한 실험)

  • Kim, Kyung-Hwan;Kim, Hea-Young;Ahn, Young-Soo;Lee, Woo-Choo;Hong, Sa-Suk
    • The Korean Journal of Pharmacology
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    • v.20 no.2
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    • pp.49-57
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    • 1984
  • The exocrine pancreatic secretion is controlled mainly by gastrointestinal hormones as well as cholinergic nerves. The adrenergic influence on exocrine pancreas is thought not to he important and the evidences supporting this contention are still contradictory. In an effort to elucidate the adrenergic influence on the exocrine pancreas, we have determined the amylase release from pancreatic slices of rats treated with adrenergic drugs. The albino rats of either sex, weighing $60{\sim}80\;g$, were decapitated and the uncinate pancreata were isolated and incubated in screw top vials containing 2 ml krebs-Ringer bicarbonate buffer solution gassed with 95% $O_2$ and 5% $CO_2$. These vials were shaken continuously in a waterbath maintained at $37^{circ}C$, and enzyme release was stimulated with acetylcholine$(10^{-5}M)$. For chronic treatment methoxamine$(an\;{\alpha}-adrenergic\;agonist,\;5\;mg/kg)$, isoproterenol (a\;{\beta}-adrenergic\;agonist,\;10\;mg/kg) and reserpine (0.5 mg/kg) along with cholecystokinin octapeptide$(CCK-op,\;2{\mu}g/kg)$ were given i.p. in rats daily for 3, 5, 7, 9 or 12 days. For acute experiment these drugs were added directly to the incubation medium in a concentration of $10^{-5}M$ except CCK-OP $(10^{-9}M)$. The results are summarized as follows. 1) The addition of methoxamine, isoproterenol or reserpine to the incubation medium containing pancreatic slices augmented the release of amylase induced by acetylcholine and among them the effect of isoproterenol was most prominent. 2) Chronic treatment of methoxamine or reserpine caused enhancement of acetylcholine response in amylase release from pancreatic slice throughout the experimental period, but the amylase release was less than that of control by 12 days isoproterenol treatment. 3) In the pancreatic slices obtained from 12 days treatment of CCK-OP, the amylae release responding to acetylcholine was enhanced. By these finding it is suggested that methoxamine, isoproterenol and reserpine had marked influence on the exocrine pancreatic functions in rats and that these effects are due to their inherent actions rather than sympathetic nerve or adrenergic receptor function.

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Temporal Pattern of cAMP Concentrations and α-Actin mRNA Expression in Skeletal Muscle of Cimaterol-Fed Rats

  • Kim, Y.S.;Duguies, M.V.;Kim, Y.H.;Vincent, D.L.
    • Asian-Australasian Journal of Animal Sciences
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    • v.10 no.5
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    • pp.528-533
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    • 1997
  • Twenty four female Sprague-Dawley rats weighing about 190 g were used to examine changes in muscle cAMP concentrations and steady-state levels of skeletal muscle ${\alpha}$-actin mRNA during chronic administration of cimaterol, a ${\beta}$-adrenergic agonist. Cimaterol was mixed in a powdered rat diet at 10 mg/kg diet. At 3 and 21 days after the start of treatment, skeletal muscle and heart samples were collected for the measurement of cAMP concentrations and skeletal muscle ${\alpha}$-actin mRNA levels. Cimaterol increased (p < 0.01) body weight gain gradually during the first seven days of the trial period, but not thereafter. Most skeletal muscle weights and the ratio of muscle weight to body weight were increased (p < 0.05) by cimaterol treatment both at 3 and 21 days. Heart weight was also increased (p < 0.05) by cimaterol treatment at 3 and 21 days, but the ratio of heart weight to body weight was increased (p < 0.05) only at 3 day. Cimaterol decreased (p < 0.05) cAMP concentration of gastrocnemius muscle at both 3 and 21 days after treatment. However, cimaterol tended (p = 0.07) to increase cAMP concentration at 3 days in the heart. Cimaterol tended (p = 0.08) to increase the steady-state level of ${\alpha}$-actin mRNA by 60% in gastrocnemius muscle at 3 days but had no effect at 21 days. The results indicate that the pattern of hypertrophic response to chronic dietary administration of cimaterol is different between cardiac and skeletal muscle. In skeletal muscles it appears that the hypertrophy induced by cimaterol is partly due to stimulated myofibrillar protein synthesis at a pre-translational level.

Proliferative and Synthetic Responses of Airway Smooth Muscle in Asthma (천식에서 기도평활근의 증식과 합성 반응에 대한 최신지견)

  • Shim, Jung Yeon
    • Clinical and Experimental Pediatrics
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    • v.48 no.6
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    • pp.580-587
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    • 2005
  • New evidence is emerging that airway smooth muscle(ASM) may act as an immunomodulatory cell by providing pro-inflammatory cytokines and chemokines, polypeptide growth factors, extracellular matrix proteins, cell adhesion receptors and co-stimulatory molecules. ASM can promote the formation of the interstitial extracellular matrix, and potentially contribute to the alterations within the extracellular matrix in asthma. In addition, extracellular matrix components can alter the proliferative, survival, and cytoskeletal synthetic function of ASM cells through integrin-directed signaling. Increased ASM mass is one of the most important features of the airway wall remodeling process in asthma. Three different mechanisms may contribute to the increased ASM mass : cell proliferation, increased migration and decreased rate of apoptosis. The major signaling pathways of cell proliferation activated by ASM mitogens are those dependent on extracellular signal-regulated kinase and phosphoinositide 3'-kinase. The key signaling mechanisms of cell migration have been identified as the p38 mitogen-activated protein kinase and the p21-activated kinase 1 pathways. ASM cells contain ${\beta}2$-adrenergic receptors and glucocorticoid receptors. They may represent a key target for ${\beta}2$-adrenergic receptor agonist/corticosteroid interactions which have antiproliferative activity against a broad spectrum of mitogens.