• 제목/요약/키워드: Smooth muscle contraction

검색결과 333건 처리시간 0.02초

Cinnarizine을 Propranolol이나 Metoprolol과 병용할 때의 혈압(血壓) 강하(降下) 효과(效果)에 관한 약리학적(藥理學的) 연구(硏究)(II) -적출(摘出) 평활근(平滑筋)에 대한 효과- (Pharmacological Studies on the Antihypertensive Effects of Cinnarizine Coadministered with Propranolol or Metoprolol(II) -Effects on the Isolated Smooth Muscle-)

  • 허인회;안형수
    • 약학회지
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    • 제28권5호
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    • pp.257-263
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    • 1984
  • In our former report we observed that cinnarizine influenced the antihypertensive effect of propranolol beneficially, but not of metoprolol in SHR and normal cat. Cardiac contractilities and smooth muscle relaxations induced by above drugs were measured to elucidate their mechanism of action. In cinnarizine and propranolol treated group, both of negative inotropic and ${\beta}-blocking$ activity of propranolol in perfused rat hearts were increased and propranolol induced contraction in isolated arterial and trachea smooth muscle of the guinea pig was antagonized comparing to propranolol alone treated group. However, in the cinnarizine and metoprolol treated group, no significant differences in activity on the above were observed compared to metoprolol alone treated group.

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인중백(人中白)의 진통(鎭痛).진정(鎭靜) 및 혈압강하작용(血壓降下作用)에 관한 연구(硏究) (A Study on the Analgesic, Sedative and Antihypertensive activities of ‘Inchungback’)

  • 노영수;홍남두;조영환
    • 생약학회지
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    • 제16권2호
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    • pp.65-72
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    • 1985
  • These studies were conducted to investigate the effect of 'Inchungbaek' water extract on analgesic and sedative actions, the relaxing action of isolated ileums, vasodilating action and blood pressure. The results of these studies were summarized as follows: Analgesic and sedative actions of 'Inchungbaek' were recognized in mice and rats. The relaxing action of isolated ileums were seen in mice and rabbits, antagonist action was seen acetylcholine and $BaCl_2-induced$ contraction of isolated ileums, and then recognized direct action in the ileum smooth muscle. Hypotensive and vasodilating actions due to vascular smooth muscle relaxation were noted in rabbits and cats.

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Effect of Dopamine on the $Ca^{2+}\;-dependent\;K^+\;currents$ in Isolated Single Gastric Myocytes of the Guinea-pig

  • Rhee, Poong-Lyul;Lee, Sang-Jin;Kim, Sung-Joon;So, In-Suk;Hwang, Sang-Ik;Kim, Ki-Whan
    • The Korean Journal of Physiology
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    • 제27권2호
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    • pp.139-150
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    • 1993
  • We have reported that dopamine potentiates spontaneous contractions dose-dependently in guinea-pig antral circular muscle strips (Hwang et al, 1991). To clarify the underlying excitatory mechanism of dopamine on the gastric smooth muscle, the effects of dopamine on voltage-dependent $Ca^{2+}\;currents\;and\;Ca^{2+}\;-dependent\;K^+\;currents$ were observed in enzymatically dispersed guinea-pig gastric myocytes using the whole-cell voltage-clamp technique. Experiments were also done using isometric tension recording and conventional intracellular microelectrode techniques. 1) The effect of dopamine on the spontaneous contraction of antral circular muscle strips of the guinea-pig was excitatory in a dose-dependent manner, and was blocked by phentolamine, an ${\alpha}-adrenoceptor$ blocker. 2) The slow waves were not changed by dopamine. 3) The voltage-operated inward $Ca^{2+}$ current was not influenced by dopamine. 4) The $Ca^{2+}\;-dependent\;K^+$ outward current, which might reflect the changes of intracellular calcium concentration, was enhanced by dopamine. This effect was abolished by phentolamine. 5) The enhancing effect of dopamine on the $Ca^{2+}\;-dependent\;K^+$ current disappeared with heparin which is known to block the action of $InsP_3$. From these results, it is suggested that dopamine acts via $InsP_3-mediated\;Ca^{2+}$ mobilization from intracellular stores and such action potentiates the spontaneous contraction of guinea-pig gastric smooth muscle.

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가토 신동맥 평활근에서 Strontium의 Calcium 대행역할 ($Ca^{2+}-Substitutional$ Roles of Strontium for the Contractile Processes in the Rabbit Renal Artery)

  • 장윤철;전병화;장석종
    • The Korean Journal of Physiology
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    • 제24권2호
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    • pp.281-291
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    • 1990
  • The $Ca^{2+}-substitutional$ roles of strontium for the contractile processes were investigated in the rabbit renal artery. The contractions induced by either norepinephrine or high $K^+$ in the condition which intra- and extracellular $Ca^{2+}$ were replaced by $Sr^{2+}$, i.e. $Sr^{2+}-mediated$ contractions, were dose-dependent. And then the maximal amplitude of contraction, as compared with $Ca^{2+}-mediated$ contraction, was about 50% in norepinephrine and about 70% in high $K^+$. The $Sr^{2+}-mediated$ contractions were independent in the contraction by norepinephrine $(10^{-5}M)$ but dependent in those by high $K^+(100\;mM)$ on the extracellular $Sr^{2+}$ concentration. Also $Sr^{2+}-mediated$ contractions induced by norepinephrine were observed in the $Sr^{2+}-free$ Tyrode's solution. The $Sr^{2+}-mediated$ contractions induced by either norepinephrine or high $K^+$ were suppressed by verapamil, a $Ca^{2+}-channel$ blocker. By extracellular addition of $Sr^{2+}$, the $Ca^{2+}-mediated$ contractions induced by norepinephrine $(10^{-5}M)$ or 40 mM $K^+$ were inhibited but those by high $K^+(100\;mM)$ were increased. And the $Sr^{2+}-mediated$ contractions were increased by extracellular addition of $Ca^{2+}$ but did not reach the level of $Ca^{2+}-mediated$ contraction. Therfore it is suggested that in the vascular smooth muscle of rabbit renal artery $Sr^{2+}$ could enter the smooth muscle cells easily through the potential-operated calcium channel (POC) but not easily through the receptor-operated calcium channel (ROG), and $Sr^{2+}$ might be stored in the intracellular $Ca^{2+}-binding$ site and released by NE and induced the contraction by a way of activating directly the contractile apparatus.

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자경청폐탕(紫梗淸肺湯) 및 통궁탕가미방(通窮湯加味方)이 기도점액분비 및 기관평활근 긴장도에 미치는 영향 (Effects of Sigoungcheongpyetang and Tonggyutanggamibang on airway mucus secretion and trecheal smooth muscle contractility)

  • 한재경;김윤희;윤재은
    • 대한한방소아과학회지
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    • 제20권1호
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    • pp.93-107
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    • 2006
  • Objective : To investigate the effectiveness of two oriental medical prescriptions named Sigoungcheongpyetang(SCPT) and Tonggyutanggamibang(TGT) for mucin release from cultured hamster tracheal surface epithelial(HTSE) cells. Method : Confluent HTSE cells were metabolically radiolabeled with $^{3}H-glucosamine$ for 24hrs and chased for 30 min in the presence of SCPT or TGT to assess the effect of each agent $^{3}H-mucin$ release. Possible cytotoxicities of each agent were assessed by measuring lactate dehy drogenase(LDH) release. Also, the effects of SCPT and TGT on contrectility of isolated tracheal smooth muscle were investigated. Results : (1) SCPT and TGT significantly increased mucin release from cultured HTSE cells, with significantly cytotoxicity ; SCPT did not affect contractility of isolated tracheal smooth muscle and TGT inhibited Ach-induced contraction of isolated tracheal smooth muscle. Conclusion : We suggest that the effects of SCPT and TGT with their components should be further investigated and it is of great value to find, from oriental medical prescriptions, novel agents which might regulate mucin secretion from airway goblet cells.

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Studies on the Effects of Piperidine Derivatives on Blood Pressure and Smooth Muscles Contractions

  • Saeed, M.;Saify, Z.S.;Gilani, A.H.;Iqbal, Z.
    • Archives of Pharmacal Research
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    • 제21권4호
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    • pp.370-373
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    • 1998
  • Ten substituted phenacyl derivatives of 4-hydroxypiperidine were synthesized and studied for their effects on the mean arterial blood pressure (MABP) in normotensive anaesthetized rats and smooth muscles contractions of isolated rabbit jejunum. Two derivatives caused fall in blood pressure at the dose of 10-20 mg/kg and one rise in blood pressure at the dose of 20 mg/kg. Two compounds exhibited biphasic response (hypotensive followed by hypertensive) and one gave triphasic response at 10 mg/kg dose. Rest of four derivatives were found devoid of any effect on mean arterial blood pressure up to the dose of 30 mg/kg. All the derivatives except two caused relaxant effect on the spontaneous contraction of rabbit jejunum at the dose range of 0.1 -2 mg/kg.

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Carbachol에 의한 위장관 수축에 대한 rebamipide의 융합성 조절 효과 (The Effect of Rebamipide on the Regulation of Intestinal Contractility)

  • 제현동;민영실
    • 융합정보논문지
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    • 제10권10호
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    • pp.109-114
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    • 2020
  • 이번 연구는 소화기계 출혈, 궤양 등에 대해 치료와 예방을 목적으로 사용되는 rebamipide에서 농도 의존적 장관 수축성 조절 기전에 대해 조사하고자 한다. 소화기 수축은 근육의 섬유의 조절에 의하여 일어난다. 실험용 쥐의 회장 과 결장을 적출하여 carbachol로 회장 과 결장의 근육수축을 유발하여 연구를 진행하였다. rebamipide 단독으로 장관수축을 억제하지 않고 소폭으로 carbachol 유도 수축을 높이는 것으로 관찰되었다. 소화기계 부작용을 일으키는 indomethacin 과 rebamipide를 흔히 병용하기에, 병용 효과를 관찰하였다. Indomethacin과 병용된 rebamipide는 장관 중 회장의 수축성을 증대시켰다. rebamipide는 장관중 회장에서 수축성을 증대시키고, NSAIDs에 의한 궤양에 대한 항궤양효과 외에 운동성도 일부 조절하는 것으로 생각된다.

Suppression of Peripheral Sympathetic Activity Underlies Protease-Activated Receptor 2-Mediated Hypotension

  • Kim, Young-Hwan;Ahn, Duck-Sun;Joeng, Ji-Hyun;Chung, Seungsoo
    • The Korean Journal of Physiology and Pharmacology
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    • 제18권6호
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    • pp.489-495
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    • 2014
  • Protease-activated receptor (PAR)-2 is expressed in endothelial cells and vascular smooth muscle cells. It plays a crucial role in regulating blood pressure via the modulation of peripheral vascular tone. Although some reports have suggested involvement of a neurogenic mechanism in PAR-2-induced hypotension, the accurate mechanism remains to be elucidated. To examine this possibility, we investigated the effect of PAR-2 activation on smooth muscle contraction evoked by electrical field stimulation (EFS) in the superior mesenteric artery. In the present study, PAR-2 agonists suppressed neurogenic contractions evoked by EFS in endothelium-denuded superior mesenteric arterial strips but did not affect contraction elicited by the external application of noradrenaline (NA). However, thrombin, a potent PAR-1 agonist, had no effect on EFS-evoked contraction. Additionally, ${\omega}$-conotoxin GVIA (CgTx), a selective N-type $Ca^{2+}$ channel ($I_{Ca-N}$) blocker, significantly inhibited EFS-evoked contraction, and this blockade almost completely occluded the suppression of EFS-evoked contraction by PAR-2 agonists. Finally, PAR-2 agonists suppressed the EFS-evoked overflow of NA in endothelium-denuded rat superior mesenteric arterial strips and this suppression was nearly completely occluded by ${\omega}$-CgTx. These results suggest that activation of PAR-2 may suppress peripheral sympathetic outflow by modulating activity of $I_{Ca-N}$ which are located in peripheral sympathetic nerve terminals, which results in PAR-2-induced hypotension.

Effects of standardized extracts of Lamium album and Urtica dioica on rat tracheal smooth muscle contraction

  • Arefani, Samane;Mehran, Seyyed Mohammad Mohseni;Moladoust, Hassan;Norasfard, Mohammad Reza;Ghorbani, Ahmad;Abedinzade, Mahmood
    • 대한약침학회지
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    • 제21권2호
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    • pp.70-75
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    • 2018
  • Objective: Diseases of the respiratory system are one of the main causes of death and include situation such as chronic obstructive pulmonary disease, pneumonia or asthma. Medicinal plants have beneficial effects on multiple diseases include respiratory disorders like asthma and bronchitis. The aim of this study was to evaluate the effects of U. dioica and L. Album on tracheal smooth muscle contraction. Material and methods: Hydroalcoholic extracts of L. Album and U. Dioica aerial parts were prepared by maceration method and standardized based on their total phenol content. The effect of the extracts on the KCl-induced contraction of rat trachea was examined in an organ bath chamber. Data was analyzed with spss software 22. Results: The extract of L. Album (5 mg/ml), similar to theophylline (20 mM), significantly reduced the KCl-induced tracheal contraction. On the other hand, U. Dioica (1 mg/ml and 5 mg/ml) augmented the KCl-induced contraction. Conclusion: The relaxant effect of L. Album on the trachea makes it as a candidate for the managing patients with asthma and obstructive pulmonary diseases. But because of U. Dioica potential constrictive effect on the trachea it is suggested that patients avoid consuming it.

안지오텐신 II의 적출심근 및 대동맥 평활근에 대한 작용기전 (Effects of Angiotensin II on Isolated Cardiac Muscle and Aortic Strips in Rabbit)

  • 김규찬;김기환;엄융의
    • The Korean Journal of Physiology
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    • 제17권1호
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    • pp.45-54
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    • 1983
  • Contractile responses of myocardium and vascular smooth muscle to angiotensin II were studied in isolated rabbit papillary muscles and aortic helical strips, with respect to the sensitivity and the mechanism of action. All experiments were performed in $HCO-_3\;-buffered Tyrode solution which was aerated with $3%\;CO_2-97%\;O_2$ and kept pH 7.35 at $35^{\circ}C$. Action potentials were measured by conventional microelectrode technique in the papillary muscles. Helical strips of vascular smooth muscle were prepared from the descending thoracic aorta of the rabbit. Angiotensin II elicited a positive inotropic effect in doses from $10^{-8}$ to $10^{-6}\;M$, and this effect was dose-dependent and characterized by a symmetrical increase of maximum dP/dt during contraction and relaxation phase. Slow responses (or slow action potentials) were induced by A. II $(10^{-6}\;M)$ in the papillary muscle hypopolarized by 27 mM $K^+$. These A. II-induced slow action potentials were eliminated by verapamil (2 mg/l), but not affected by propranolol $(10^{-5}\;M)$. In aortic helical strips, contractile force was increased dose-dependently in the range of $10^{-10}{\sim}10^{-7}\;M$ A. II. $ED_{50}$ in aorta was $3{\times}10^{-9}\;M$ A. II, whereas that in paillary muscle was $2.5{\times}10^{-7}\;M$ A. II. A. II contracted vascular smooth muscle in depolarizing concentration of $K^+$ (100 mM $K^+$), and also produced a sustained contraction even in the presence of verapamil and regitine. The results of this experiment suggest that the primarily important physiological role of A. II is the action on the blood vessel, and the positive inotropic effect of A. II in papillary muscle results from the increase of slow inward $Ca^{++}$ current, and that A. II-induced contraction of aorta is independent of transmembrane potential and associated with promoting bet transmembrane $Ca^{++}\;-influx$ and the mobilization of cellular $Ca^{++}$.

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