• Title/Summary/Keyword: Aorta contraction

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Angiotensin II Reactivity in Systemic and Pulmonary Arterial System of Acute Renal Hypertensive Rats (급성 신성 고혈압 쥐의 전신성 동맥계 및 폐 동맥계에 대한 Angiotensin II의 반응성)

  • 이병호;신화섭;허인회;안형수;노정구
    • YAKHAK HOEJI
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    • v.37 no.6
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    • pp.605-614
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    • 1993
  • To investigate the endothelial dependence of angiotensin II(A II)-induced responses in the systemic and pulmonary arterial system of acute renal hypertensive rats of 2-kidney, 1-ligation type (RHRs), A II-induced vasocontractile and pressor effects were evaluated in isolated arteries and in vivo, respectively. A II dose-dependently contracted intact thoracic aorta and pulmonary artery (E$_{max}$:40% at 10$^{-7}$M and 80% at 3$\times$10 $^{-8}$M, respectively) from normotensive rats(NRs), which was significantly increased by removal of endothelial cells or pretreatment with EDRF inhibitors. In NRs, A II increased mean systemic and pulmonary arterial pressure(33 and 5.6mmHg at 0.1 $\mu\textrm{g}$/kg, respectively), the effect being significantly increased (P<0.01) by L-NAME(30mg/kg, i.v.). However, A II-induced contraction of intact thoracic aorta and pulmonary artery(E$_{max}$: 33% at 10$^{-7}$M and 93% at 3$\times$10$^{-8}$M, respectively) from RHRs were not changed after endothelial function was disrupted as above; similarly, pressor effects of A II on the systemic and pulmonary arterial pressure in RHRs did not altered by L-NAME. A II tachyphylactic responses for intact thoracic aorta from NRs and RHRs(65 and 87% at 10$^{-8}$M, respectively) were greater than those for pulmonary artery(19 and 19% at 10$^{-8}$M, respectively). Distruption of endothelial function significantly (P<0.01) depressed A II tachyphylaxis for thoracic aorta, but not for pulmonary artery. These results suggest that vascular reactivity to A II is not altered in RHRs, and it is greater for pulmonary arterial system than for systemic arterial system. A II reactivity is EDRF-dependent in both arterial systems of NRs, but EDRF-independent for RHRs. Finally, EDRF is one of the major factors underlying A II tachyphylaxis for thoracic aorta, but not for pulmonary artery.

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Study on the Effects of Chukdamtanggamibang on blood pressure, regional cerebral blood flow(rCBF) and smooth muscle (척담탕가미방이 혈압, 뇌혈류량 및 평활근에 미치는 효능에 관한 연구)

  • 이건목;천미나;서은미;한종현;이호섭;김경식;황우준;이병철
    • Journal of Life Science
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    • v.11 no.1
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    • pp.62-69
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    • 2001
  • This study was aimed to investigate the effect Chukdamtanggamibang on the vascular systems including changes in blood pressure and regional cerebral blood flow(rCBF) of male Sprague-Dawely rats, contractile force of guinea pig`s tracheal smooth muscle and abdominal aorta and femoral artery in rabbits. Blood pressure was not affected by Chukdamtanggamibang in rats. rCBF was significantly increased by Chukdamtanggamibang in a dose-dependent manner. Contractile force of isolated guinea pig`s tracheal smooth muscle evoked by His ({TEX}$ED_{50}${/TEX}) were inhibited significantly by Chukdamtanggamibang. Propranolol, indomethacin and methylene blue did not significantly alter the inhibitory effect of Chukdamtanggamibang. Contractile force of isolated rabbit`s abdominal aorta and femoral artery evoked by NE ({TEX}$ED_{50}${/TEX}) were inhibited significantly by Chukdamtanggamibang. ODQ and L-NNA significantly attenuated the inhibitory effects of Chukdamtanggamibang in abdominal aorta, whereas propranolol did not significantly alter the inhibitory effect of Chukdamtanggamibang. These results indicate that Chukdamtanggamibang can relax hitamine-induced contraction of guinea pig`s tracheal smooth muscle and that this inhibition involves, in part, the relation to the soluble guanylyl cyclase synthesis and nitric oxide (NO) synthesis.

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EFFECT OF A NEW POSITIVE INOTROPIC AGENT, YS-49, A NOVEL TETRAHYDROISOQUINOLINE COMPOUND

  • Lee, Y. S.;Park, H. S. Yoon-;K. C. Chang
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1995.04a
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    • pp.88-88
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    • 1995
  • Tetrahydroisoquinoline (THI) compounds have various pharmacological actions in the cardiovascular system. Recently, we have synthesized 1-${\alpha}$-naphthylmethyl-6,7-dihydroxy-1,2,3,4-tetrahydroisoquinoline, YS 49. In the present study, we evaluated the effect of YS-49 on positive inotropic and chronotropic action using isolated rat heart and on blood pressure and heart rate using anesthesized rabbit. Vasodilating action was also assessed in isolated rat thoracic aorta. YS 49, concentration-dependently relaxed rat aorta precontracted with phenylephrine (PE, 0.3 ${\mu}$M) and high potassium (high K$\^$+/, 65.4 mM). The 50% inhibitory concentration (IC$\sub$50/) of YS 49 in PE-induced and high K$\^$+/-induded contraction was 5.36 ${\mu}$M and 2.52 ${\mu}$M, respectively. In isolated rat atria, YS 49 increased both heart rate and force, and in anesthesized rabbit it decreased blood pressure but increased heart rate. In addition, to know the mechanism of action of the compound, propranolol, nonselective ${\beta}$-antagonist, and phentolamine, ${\alpha}$-blocker, were used. Furthermore, a comparison with the effect of higenamine, trimetoquinol on the vasodilating action in rat thoracic aorta was also made. The action of YS 49 was inhibited by the presence of propranolo, not pentolamine. These results indicate that cardiotonic and vasodilatory action of YS 49 is attributable, at least in part, for ${\beta}$-receptor stimulation.

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Effects of Tyrosine Phosphorylation Inhibitors on Vascular Smooth Muscle Contraction (혈광평활근 수축에 대한 타이로신 인산화 억제제의 효과)

  • Jung, Jin-Young;Yun, Yeo-Pyo;Ahn, Hee-Yul
    • YAKHAK HOEJI
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    • v.41 no.5
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    • pp.666-671
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    • 1997
  • We studied effects of genistein and tyrphostin, inhibitors of tyrosine kinase, on contractions induced by high $K^+$ and norepinephrine in rat aorta. Genistein $(10^{-6}{\sim}10^{-4}M)$ and tyrphostin ($(10^{-5}{\sim}10^{-4}M)$) inhibited high $K^+$ and norepinephrine-induced sustained contractions, respectively in a concentration-dependent manner. High $K^+$ and norepinephrine caused an increase in $^{45}Ca^{2+}$ uptake while $10^{-4}M$ genistein and tyrphostin inhibited the $K^+$ and norepinephrine-increased $^{45}Ca^{2+}$ uptake, respectively. These results show that inhibitor of tyrosine kinase blocks the voltage-and receptor-operated $Ca^{2+}$ channels in rat aorta, respectively.

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Effects of Potassium Ion and Caffeine on Contraction and Cytosolic Free $Ca^{2+}$ Levels in Vascular Smooth Muscle (혈관평할근 세포에서의 칼륨이온과 카페인의 영향: 수축과 세포내 칼슘이온 농도에 대하여)

  • Ahn, H.Y.;Karaki, H.
    • The Korean Journal of Pharmacology
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    • v.24 no.2
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    • pp.197-201
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    • 1988
  • Effects of high concentration of KC1 and caffeine on cytosolic $Ca^{2+}$ level $([Ca^{2+}]_{cyt})$, measured simultaneously with muscle tension using a fluorescent intracellular $Ca^{2+}$ indicator fura 2, were examined in isolated smooth muscle of rat aorta. High $K^+$ (72.7 mM) solution induced sustained increase in both $([Ca^{2+}]_{cyt})$ and tension. In contrast to this, caffeine (20 mM) induced a rapid increase in $([Ca^{2+}]_{cyt})$ followed by a decrease to a level which was higher than the resting level. However, muscle tension showed only a transient increase followed by a decrease below the resting level. In a $Ca^{2+}-free$ solution, high $K^+-induced$ neither $([Ca^{2+}]_{cyt})$ nor tension, whereas caffeine induced a transient increase in both $([Ca^{2+}]_{cyt})$ and muscle tension. These results suggest that high $K^+-induced$ contraction in vascular smooth muscle of rat aorta is due to $Ca^{2+}$ influx whereas caffeine-induced contraction is due to $Ca^{2+}$ release from cellular store. Further, caffeine seems to have an additional effect to decrease the sensitivity of the contractile elements to $Ca^{2+}$.

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

  • Kim, Kyu-Chan;Kim, Ki-Whan;Earm, Yung-E
    • The Korean Journal of Physiology
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    • v.17 no.1
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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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Relation between Expression of Heat Shock Protein 70 and Vascular Contractility of Rat Aorta Treated with Arsenic (Arsenic처리에 따른 흰쥐 혈관의 수축과 heat shock protein 70과의 관계)

  • 권윤정;박태규;김중영
    • Korean Journal of Environmental Biology
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    • v.21 no.3
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    • pp.313-318
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    • 2003
  • Environmental stresses, such as heat shock, alcohol and physiological salt have been shown to induce a group of protein called heat shock protein (HSPs) in various tissues. In this investigation, we studied that arsenic stress would alter contraction of isolated rat aorta and expression of heat shock protein 70 and investigated the relation between expression of HSP 70 and vascular contractility of isolated rat aorta. Rat aorta strips, mounted in organ baths were exposed to 0, 0.5, 1,2 and 4 mM arsonic for 60 min. and 1,3 and 8 hours later tested for contractile response and expression of heat shock protein 70. Contractility of rat aorta were determined by isometric transducer connected to computerized physiograph and expression of HSP 70 was characterized by western blotting, respectively. Potassium chloride (55 mM) significantly augmented vascular contractility of yat aorta by 39% compared with the control at 8 hours but not one or three hours after treatment of 4 mM arsenic. Arsonic stress (4 mM) also increased the expression of HSP 70 in rat aorta at 8 hours but one or three hours compared with the control and HSP expressed in vascular smooth muscle cells and some expressed in endothelium cells. These results suggest that arsenic stress not only did alter the magnitude of the contractile response to high potassium chloride but also increased the expression of HSP 70 in the rat aorta.

Effects of BanhabackchulChunma-tang on the Vascular Relaxation and its mechanism (혈관 긴장성 조절에 미치는 반하백출천마탕)

  • Kim Yon Tae;Chae Jong Koo;Kim Gil Whon;Shin Heung Mook
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.16 no.1
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    • pp.62-66
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    • 2002
  • Hypertension is not only a well-established cardiovascular risk factor but also increase the risk of atherosclerosis. Most studies conducted to investigate the effectiveness of treatment for cardiovascular disease such as hypertension have focused primarily on conventional drug and physiotherapeutic treatments. BanhabackchulChunma-tang(半夏白朮天麻湯:BCT) is popular herbal medicine used in clinic for the treatment of various symptoms of drulatory disorders and weakness of digestive system, including anorexa and nausea with vertigo, severe headache, vomiting and so on. However, the mechanisms underlying its efficacy are unknown. This study investigated the effects of BCT as an alternative medication on the contraction induced by phenylephrine and KCI in rat thoratic aorta. BCT revealed siginificant relaxation on phenylephrine-induced arterial contraction, but revealed noncompetitive effect on concentration responses of phenylephrine-induced contraction. Treatment of N-L/sup ω/ -argine methyl ester(L-NAME) and methylene blue(MB)(10/sup -5/M) reduced the relaxation of BCT. BCT also increased in vitro NO production. It suggest that the relaxation effect of BBT is related with NO pathway, becausse the effect of L-NAME and MB are due to inhibition of NO synthesis from endothelial cells. These results indicate that BCT would be effective in hypertension treatment and its mechanism of relaxtion on arterial contraction is likely to be related with NO production, blocking of α-receptor and signal transduction after receptor activation.

Inhibitory effects of xylamine on the arterial contraction in rats (흰쥐 대동맥 수축에 대한 xylamine의 억제효과)

  • Kim, Sang-Jin;Kang, Hyung-sub;Kim, Jin-shang
    • Korean Journal of Veterinary Research
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    • v.44 no.3
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    • pp.389-397
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    • 2004
  • The therapeutic efficacy of xylamine in the field of psychological medicine has been recognized for years and the drug is used to treat depression and some other conditions, but little is known about its mechanism of action on vascular system. Therefore, the present study was designed to investigate the influence of xylamine on the contractile responses of isolated rat thoracic arteries to phenylephrine(PE) and potassium chloride(KCl). Xylamine produced a concentration-dependent relaxation in PE-precontracted endothelium intact(+E) rat aortic rings, but not in a KCl-precontracted aortic rings. Also, xylamine inhibited the PE-induced contraction in concentration-dependent manner, but not in the high KCl-induced contraction in +E rings. This concentration-dependent inhibition was suppressed by the removal of the endothelium (-E). The inhibitory effects of xylamine($0.3{\mu}M$) on the PE-induced contractions were suppressed by N(G)-nitro-L-arginine(L-NNA), N(omega)-nitro-L-arginine methyl ester(L-NAME), aminoguanidine, dexamethasone, methylene blue, 1H-[1,2,4]oxadiazolo [4,3-a]quinoxalin-1-one(ODQ), indomethacin, ryanodine, tetrabutylammonium(TBA), lidocaine, procaine and 0 mM extracellular $Na^+$, but not by 2-nitro-4-carboxyphenyl-n,n-diphenylcarbamate(NCDC), lithium, nifedipine, verapamil, 0 mM extracellular $Ca^{2+}$, glibenclamide and clotrimazole. These findings suggest that xylamine could act as a vasorelaxant and direct inhibitor of arterial contraction. This vasorelaxation involves an endothelial nitric oxide (NO)/cGMP (guanosine 3',5'-cyclic monophosphate) pathway or cyclooxygenase system, and an interference with $Ca^{2+}$ release, TBA-sensitive $Ca^{2+}$-activated $K^+$ channels and $Na^+$$ channels.

Impaired Endothelium-Dependent Relaxation is Mediated by Reduced Production of Nitric Oxide in the Streptozotocin-Induced Diabetic Rats

  • Park, Kyoung-Sook;Kim, Cuk-Seong;Kang, Sang-Won;Park, Jin-Bong;Kim, Kwang-Jin;Chang, Seok-Jong;Jeon, Byeong-Hwa
    • The Korean Journal of Physiology and Pharmacology
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    • v.4 no.3
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    • pp.263-270
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    • 2000
  • To evaluate the involvement of nitric oxide production on the endothelium-dependent relaxation in diabetes, we have measured vascular and endothelial function and nitric oxide concentration, and the expression level of endothelial nitric oxide synthase in the streptozotocin-induced diabetic rats. Diabetic rats were induced by the injection of streptozotocin (50 mg/kg i.v.) in the Sprague-Dawley rats. Vasoconstrictor responses to norepinephrine (NE) showed that maximal contraction to norepinephrine $(10^{-5}\;M)$ was significantly enhanced in the aorta of diabetic rats. Endothelium-dependent relaxation induced by acetylcholine was markedly impaired in the aorta of diabetic rats, these responses were little improved by the pretreatment with indomethacin. However, endothelium-independent relaxation induced by nitroprusside was not altered in the diabetic rats. Plasma nitrite and nitrate $(NO_2/_3)$ levels in diabetic rats were significantly lower than in non-diabetic rats. Western blot analysis using a monoclonal antibody against endothelial cell nitric oxide synthase (eNOS) revealed that the protein level was lower in the aorta of diabetic rats than in non-diabetic rats. These data indicate that nitric oxide formation and eNOS expression is reduced in diabetes, and this would, in part, account for the impaired endothelium-dependent relaxation in the aorta of streptozotocin-induced diabetic rats.

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