• 제목/요약/키워드: Endothelium dependent relaxation

검색결과 138건 처리시간 0.025초

흰쥐 폐동맥의 내피세포의존성 혈관이완과 급성 저산소성 폐동맥수축에서 산화질소의 역할 (A Study of Endothelium-dependent Pulmonary Arterial Relaxation and the Role of Nitric oxide on Acute Hypoxic Pulmonary Vasoconstriction in Rats)

  • 인광호;이진구;조재연;심재정;강경호;유세화
    • Tuberculosis and Respiratory Diseases
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    • 제41권3호
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    • pp.231-238
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    • 1994
  • 연구배경: 저산소증에 의한 폐동맥수축의 기전은 저산소증 자체가 폐혈관 평활근에 직접 작용하여 수축을 유발한다는 것과, 저산소증에 의해 조직으로 부터 여러 매개물질이 유리되어 혈관평활근을 수축시킨다는 설이 제시되고 있지만 정확히 밝혀져있지 않다. 최근에는 저산소증이 EDRF의 생성을 억제하여 혈관수축을 유발시킨다고하여 관심이 되고 있다. 본 연구에서는 흰쥐 폐동맥에서 내피세포 의존형 혈관이완을 조사하고, 저산소증에 의한 폐동맥수축에 EDRF의 작용을 조사하였다. 방법 : 300~350g의 수컷 흰쥐(Sprague Dawley)의 폐동맥을 박리하여 길이가 2mm되는 폐동맥고리를 Krebs용액으로 채워져 있으며, 95% $O_2$/5% $CO_2$(산소상태)와 95% $N_2$/5% $CO_2$(저산소상태)가 각각 공급되는 magnus관에서 가는 stainless 갈고리로 고정한 다음 Gilson사의 polygraph에 부착된 isometric transducer(FT.03 Grass, Quincy, USA)에 의해 등장성 수축곡선을 그리도록 장치하였다. 결과: 1) 내피세포가 있는 폐동맥에서 PE($10^{-6}M$)에 의한 혈관수축은 Ach($10^{-9}-10^{-5}M$) 및 SN($10^{-9}-10^{-5}M$)의 농도에 비례해서 이완되어 거의 기초장력까지 이완되었으나, 내피세포를 제거한 폐동맥에서는 Ach($10^{-9}-10^{-5}M$)에 의한 혈관이완은 거의 상실되었다. 2) L-NMMA($10^{-4}M$)으로 전처치한 경우 Ach($10^{-9}-10^{-5}M$)에 의한 혈관이완은 전처치하지 않은 경우보다 의미있게 감소하였다. 3) L-arginine($10^{-4}M$)과 L-NMMA($10^{-4}M$)을 전처치 하였을 경우 Ach($10^{-9}-10^{-5}M$)에 의한 혈관이완은 L-NMMA에 의해 거의 영향을 받지 않았다. 4) PE($10^{-6}M$)에 의한 폐동맥 수축은 산소상태보다 저산소 상태에서 훨씬 강했으며, Ach($10^{-9}-10^{-5}M$)에 의한 혈관이완은 산소상태보다 저산소상태에서 의미있게 감소하였다. 5) L-arginine($10^{-4}M$)을 전처치 하였을 경우 저산소상태에서의 Ach($10^{-9}-10^{-5}M$)에 의한 혈관이완은 산소상태에서의 Ach 에 의한 혈관이완 정도로 회복되었다. 결론: 흰쥐 폐동맥에서 내피세포의존성 혈관이완은 NO가 관여하며, 저산소증에 의한 폐동맥 수축은 내피세포내의 EDRF 생성의 저하와 관련이 있을 것으로 사료된다.

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The bifunctional effect of propofol on thromboxane agonist (U46619)-induced vasoconstriction in isolated human pulmonary artery

  • Hao, Ning;Wang, Zhaojun;Kuang, Sujuan;Zhang, Guangyan;Deng, Chunyu;Ma, Jue;Cui, Jianxiu
    • The Korean Journal of Physiology and Pharmacology
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    • 제21권6호
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    • pp.591-598
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    • 2017
  • Propofol is known to cause vasorelaxation of several systemic vascular beds. However, its effect on the pulmonary vasculature remains controversial. In the present study, we investigated the effects of propofol on human pulmonary arteries obtained from patients who had undergone surgery. Arterial rings were mounted in a Multi-Myograph system for measurement of isometric forces. U46619 was used to induce sustained contraction of the intrapulmonary arteries, and propofol was then applied (in increments from $10-300{\mu}m$). Arteries denuded of endothelium, preincubated or not with indomethacin, were used to investigate the effects of propofol on isolated arteries. Propofol exhibited a bifunctional effect on isolated human pulmonary arteries contracted by U46619, evoking constriction at low concentrations ($10-100{\mu}m$) followed by secondary relaxation (at $100-300{\mu}m$). The extent of constriction induced by propofol was higher in an endothelium-denuded group than in an endothelium-intact group. Preincubation with indomethacin abolished constriction and potentiated relaxation. The maximal relaxation was greater in the endothelium-intact than the endothelium-denuded group. Propofol also suppressed $CaCl_2$-induced constriction in the 60 mM $K^+$-containing $Ca^{2+}$-free solution in a dose-dependent manner. Fluorescent imaging of $Ca^{2+}$ using fluo-4 showed that a 10 min incubation with propofol ($10-300{\mu}m$) inhibited the $Ca^{2+}$ influx into human pulmonary arterial smooth muscle cells induced by a 60 mM $K^+$-containing $Ca^{2+}$-free solution. In conclusion, propofol-induced arterial constriction appears to involve prostaglandin production by cyclooxygenase in pulmonary artery smooth muscle cells and the relaxation depends in part on endothelial function, principally on the inhibition of calcium influx through L-type voltage-operated calcium channels.

Mechanism of Relaxation of Rat Aorta by Scopoletin; an Active Constituent of Artemisia Capillaris

  • Kwon Eui Kwang;Jin Sang Sik;oChoi Min H;Hwang Kyung Taek;Shim Jin Chan;Hwang Il Taek;Han Jong Hyun
    • 동의생리병리학회지
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    • 제16권2호
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    • pp.389-396
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    • 2002
  • In the present work, we examined the mechanism of vasorelaxant effect of scopoletin, an active constituent of Artemisia capillaris on rat thoracic descending aortic rings. Scopoletin induced a concentration-dependent relaxation in rat thoracic descending aortic rings pre-contracted with phenylephrine (EC/sub 50/ = 238.94±37.4 μM), while it was less effective in rat thoracic descending aortic rings precontracted with high potassium solution (KCI 30 mM). Vasorelaxation by scopoletin was significantly inhibited after endothelial removal, but recovered at high concentration. Pretreatment of rat thoracic descending aortic rings with N/sup G/-nitro-L-arginine (100 μM), a nitric oxide synthase inhibitor, and atropine (1 μM), a muscarinic receptor antagonist, significantly inhibited scopoletin-induced relaxation of rat thoracic descending aortic rings. Neither indomethacin (3 μM), an inhibitor of cydooxygenase, nor propranolol (1 μM), a β -adrenoceptor antagonist, modified the effect of scopoletin. The combination of N/sup G/ -nitro-L-arginine (100 μ M) and miconazole (10 μ M), an inhibitor of cytochrome P 450, did not modify the effect of scopoletin, when compared with pretreatment with N/sup G/-nitro-L-arginine(100 μM) alone. Vasorelaxant effect of scopoletin was inverted by pretreatment with diltiazem (10 μM), a Ca/sup 2+/-channel blocker, at low concentration, while restored at high concentration. Apamin (K/sub ca/-channel blocker, 1 μM), 4-aminopyridine (4-AP, K/sub v/-channel blocker, 1 mM), and tetrodotoxin (TTX, Na/sup +/-channel blocker 1 μM) potentiated the vasorelaxant effect of scopoledn, but glibendamide (K/sub ATP/-channel blocker, 10 μM), tetraetylammonium(TEA, non-selective K-channel blocker, 10 mM) did not affect the relaxation of scopoletin. Free radical scavengers (TEMPO, catalase, mannitol) did not modify vascular tone. These results suggest that nitric oxide, Ca/sup 2+/ -channels play a role in endothelium-dependent relaxations to scopoletin in rat aortas, that apamin, 4-AP, TTX but not glibenclamide, TEA potentiated relaxation to scopoletin mediated by these channels, and that free radicals do not concern to the vasorelaxant effect of scopoletin.

돼지 적출뇌혈관의 저산소 유발 수축반응에 관하여 (Study on Mechanical Responses Induced by Hypoxia in Porcine Isolated Cerebral Artery)

  • 김융
    • 대한약리학회지
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    • 제29권2호
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    • pp.203-212
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    • 1993
  • 돼지의 적출뇌동맥에서 저산소 유발 수축반응을 관찰하고 그 기전을 구명하며 저산소가 혈관수축제의 수축반응과 acetylcholine (ACh)의 내피세포 의존성 이완반응에 미치는 영향을 검토코자하여 본 실험을 시행하였다. 내피세포가 존재하는 표본에서는 저산소는 일과성 혈관수축을 일으켰고 산소 재공급시에 일과성 이완 후 수축이 나타나는 이상성 (biphasic) 반응이 관찰되었다. KCI 및 $PGF_{2\alpha}$전처치로 수축된 표본에서 저산소 유발은 추가적 수축반응을 일으켰고, 산소재공급으로 이완반응이 관찰되었다. 내피세포 제거 후 및 nimodipine 또는 indomethacin처리 후 저산소와 산소 재공급에 의한 수축반응은 현저히 감약되었다. 저산소하에서 KCl의 수축반응은 영향받지 않았으나, $PGF_{2\alpha}$와 endothelin (ET)의 수축반응은 현저히 억제되었고 ET수축반응이 저산소에 가장 예민하였다. $PGF_{2\alpha}$와 ET로 수축된 내피세포 존재표본에서 ACh은 용량의존성 이완반응을 일으켰고 이 이완반응은 저산소 하에서 소실되었으며 내피세포 제거표본에서는 ACh의 이완반응이 관찰되지 않았다. $PGF_{2\alpha}$로 처리한 내피세포 존재표본에서 ACh은 cyclic GMP농도를 증가시켰고 이 증가는 저산소하에서 소실되었다. 이상의 성적으로 저산소와 산소 재공급 수축반응은 내피세포 및 calcium의존성이고, prostaglandin계 물질의 유리에 기인한다고 추론하였다.

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흰쥐 적출 흉부대동맥근의 자외선 수축반응에 관하여 (Contractile Effect of Ultraviolet Light on Isolated Thoracic Aortae of Rats)

  • 백영홍;강성돈;강정채
    • 대한약리학회지
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    • 제29권1호
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    • pp.65-72
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    • 1993
  • 자외선조사는 흰쥐흉부대동맥의 휴지기장력에 거의 영향을 미치지 못했으나, phenylephrine으로 수축된 표본에서는 자외선조사로 내피세포가 존재하면 수축반응을, 내피세포가 제거되면 이완반응이 나타났다. 이 수축반응은 조사시간의 길이($10{\sim}320$초)에 비례하여 증가하였으나 이완반응은 그렇지 못하였다. 내피세포 존재표본에서 자외선의 수축반응은 phenylephrine농도의 증가($10^{-7}{\sim}10^{-5}M$) 그리고 $acetylcholine(10^{-6}M)$, $isoproterenol(10^{-7}M)$$nitroglycerin(3.5{\times}10^{-8} M)$의 추가투여시 크게 강화되었다. 그러나 $phentolamine(10^{-6}M)$ 또는 $LY83583(10^{-7},10^{-6}M)$의 추가투여시에는 자외선 수축반응이 억제 또는 이완반응으로 역전되었다. 내피세포 제거표본에서의 자외선 이완반응은 phenylephrine농도의 증가 그리고 isoproterenol, nitroglycerine, phentolamine 및 LY83583의 추가투여시 유의하게 감약되었다. 이상의 성적은 흰쥐 적출 흥부대동맥에서 자외선조사는 내피세포 존재유무에 따라 수축과 이완반응이 각각 나타나며, 수축반응은 자외선에 의한 EDRF 유리억제 또는 부분적으로 어떤 EDCF와도 관련이 있음을 시사하고 있다.

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Panax 속 한약재가 흰쥐 혈관운동성에 미치는 영향에 관한 비교 연구 (The Effects of Water Extract of Genus Panax on Rat Blood Vessels)

  • 유기덕;최호영;이재성;안덕균;김형환
    • 대한한의학회지
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    • 제25권1호
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    • pp.60-71
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    • 2004
  • Objectives : We have examined the relaxational response to the water extract of genus Panax in rat thoracic aorta and mesenteric artery. Methods : Segments of thoracic aorta and mesenteric artery obtained from rats immediately after delivery were mounted in organ baths superfused on a polygraph. Results : We found that the thoracic aorta segments responded to the water extract of genus Panax with a dose-dependent vasorelaxation. At $10^{-5}m$ 5-hydroxytrptamine (5-HT), the maximal contraction force were 94.9% of the maximum KCl-response. At $10^{-5}m$ 5-HT - induced contraction, The contractile response of thoracic aortic rings were inhibited by 54.7%, 36.3% and 31.3% after addition of the high concentration (100 mg/ml) of water extract of Panax ginseng, Panax japonicus and Panax quinquefolium. The contractile response of mesenteric arteries were inhibited by 88.3%, 87.7%, and 70.3% after addition of the high concentration (100 mg/ml) of water extract of Panax ginseng, Panax japonicus and Panax quinquefolium. Conclusions : In conclusion, water extract of genus Panax - induced relaxation in the isolated rat thoracic aorta and mesenteric artery were composed of endothelium - independent relaxation and dose - dependent relaxation.

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The bimodal regulation of vascular function by superoxide anion: role of endothelium

  • Demirci, Buket;McKeown, Pascal P.;Bayraktutan DVM, Ulvi
    • BMB Reports
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    • 제41권3호
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    • pp.223-229
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    • 2008
  • Reactive oxygen species (ROS) are implicated in vascular homeostasis. This study investigated whether ${O_2}^{\cdot^-}$, the foundation molecule of all ROS, regulates vasomotor function. Hence, vascular reactivity was measured using rat thoracic aortas exposed to an ${O_2}^{\cdot^-}$ generator (pyrogallol) which dose-dependently regulated both $\alpha$-adrenergic agonist-mediated contractility to phenylephrine and endothelium-dependent relaxations to acetylcholine. Pyrogallol improved and attenuated responses to acetylcholine at its lower (10 nM - 1 ${\mu}M$) and higher (10 - 100 ${\mu}M$) concentrations, respectively while producing the inverse effects with phenylephrine. The endothelial inactivation by L-NAME abolished acetylcholine-induced vasodilatations but increased phenylephrine and KCl-induced vasoconstrictions regardless of the pyrogallol dose used. Relaxant responses to sodium nitroprusside, a nitric oxide donor, were not affected by pyrogallol. Other ROS i.e. peroxynitrite and $H_2O_2$ that may be produced during experiments did not alter vascular functions. These findings suggest that the nature of ${O_2}^{\cdot^-}$-evoked vascular function is determined by its local concentration and the presence of a functional endothelium.

Antioxidant Effect of Captopril and Enalapril on Reactive Oxygen Species-Induced Endothelial Dysfunction in the Rabbit Abdominal Aorta

  • Kim, Ji Hoon;Kim, Hyuck;Kim, Young Hak;Chung, Won-Sang;Suh, Jung Kook;Kim, Sung Jin
    • Journal of Chest Surgery
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    • 제46권1호
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    • pp.14-21
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    • 2013
  • Background: Reactive oxygen species (ROS) are known to be related to cardiovascular diseases. Many studies have demonstrated that angiotensin-converting enzyme inhibitors have beneficial effects against ROS. We investigated the antioxidant effect of captopril and enalapril in nitric oxide mediated vascular endothelium-dependent relaxations. Materials and Methods: Isolated rabbit abdominal aorta ring segments were exposed to ROS by electrolysis of the organ bath medium (Krebs-Henseleit solution) after pretreatment with various concentrations (range, $10^{-5}$ to $3{\times}10^{-4}$ M) of captopril and enalapril. Before and after electrolysis, the endothelial function was measured by preconstricting the vessels with norepinephrine ($10^{-6}$ M) followed by the cumulative addition of acetylcholine (range, $3{\times}10^{-8}$ to $10^{-6}$ M). The relevance of the superoxide anion and hydrogen peroxide scavenging effect of captopril and enalapril was investigated using additional pretreatments of diethyldithiocarbamate (DETCA, 0.5 mM), an inhibitor of Cu/Zn superoxide dismutase, and 3-amino-1,2,4-triazole (3AT, 50 mM), an inhibitor of catalase. Results: Both captopril and enalapril preserved vascular endothelium-dependent relaxation after exposure to ROS in a dose-dependent manner (p<0.0001). Pretreatment with DETCA attenuated the antioxidant effect of captopril and enalapril (p<0.0001), but pretreatment with 3AT did not have an effect. Conclusion: Both captopril and enalapril protect endothelium against ROS in a dose-dependent fashion in isolated rabbit abdominal aortas. This protective effect is related to superoxide anion scavenging.

UV-light 에 의한 혈관 이완작용에 있어서 nitric oxide와 prostanoid의 관련성 (Involvement of Nitric Oxide and Prostanoid on Photorelaxation in Pig Renal Artery)

  • 김주헌;심철수;전석철
    • 대한수의학회지
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    • 제42권3호
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    • pp.321-326
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    • 2002
  • The effect of nitric oxide synthase(NOS) inhibita, $N^G$-nitro-L-arginine-methyl ester(L-NAME) and prostanoid synthesis inhibiter, indomethacin on the photorelaxation, when was exposed to the long-wave length UV-light, was examined on the precontraction by the phenylephrine in the isolated pig renal artery. 1. UV-light relaxed both with-endothelium and without-endothelium in the pig renal arterial ring contracted by the phenylephrine. The magnitude of photorelaxation was dependent on the exposure time for UV-light. 2. UV-Iight induced relaxation was inhibited by L-NAME and indomethacin on the precontraction by the phenylephrine in the isolated pig renal artery. 3. UV-Iight induced relaxation was inhibited by methylene blue on the precontraction by the phenylephrine in the isolated pig renal artery. These results suggest that UV-light induced photorelaxation may be due to cGMP involved both nitric oxide and prostanoid on the precontraction by the phenylephrine in the isolated pig renal artery.

흰쥐에서 Ketamine에 의한 혈압하강 (Ketamine-Induced Blood Pressure Lowering in the Rat)

  • 유선봉;김상진;이문영;강형섭;김진상
    • 한국임상수의학회지
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    • 제22권3호
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    • pp.220-227
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    • 2005
  • Although ketamine has been used in the field of anesthetic medicine for its safety and favourable respiratory effects, the cardiovascular effects of ketamine is still controversial. To clarify the action and mechanism of ketamine upon cardiovascular system, arterial blood pressure, tension of aortic ring, left ventricular developed pressure and heart rate were measured in rats, Ketamine produced two types of effects on arterial blood pressure in anesthetized rats; monophasic effect (blood pressure lowering) and biphasic effect (initial transient blood pressure increasing following sustained lowering), The ketamine-induced lowering of aterial blood pressure showed a concentration-dependent manner, inhibited by the pretreament of $MgCl_2$ and potentiated by the pretreatment of $CaCl_2$. The ketamine-induced lowering of aterial blood pressure was suppressed by the pretreatment of nifedipine, verapamil or lidocaine. In phenylephrine-precontracted endothelium intact (+E) aortic rings, ketamine sometimes caused a small enhancement of contraction ($112.5{\pm}3.6{\%}$). However, in many experiments, ketamine produced a concentration-dependent relaxation in +E aortic rings precontracted with either phenylephrine or KCl. Ketamine-induced relaxation was significantly greater in KCl-precontracted strips than phenylephrine-precontracted strips. In phenylephrine-precontracted +E aortic rings, the ketamine-induced vasorelaxation was not suppressed by endothelium removal or by the pretreatment of a nitric oxide synthase inhibitors, L-$N^G$-nitro-arginine and a guanylate cyclase inhibitors, methylene blue, suggesting that the ketamine-induced vasorelaxation is not dependent on the endothelial function. In addition, ketamine elicited an increase in left ventricular developed pressure in perfused hearts accompanied by decrease in heart rate. These results suggest that ketamine could evoke a hypotension due to vasorelaxation and decrease in heart rate in rats. The inhibitory effect of cardiovascular system might be associated with modulation of $Ca^{2+}$ homeostasis.