• 제목/요약/키워드: EDRF release

검색결과 20건 처리시간 0.019초

Reoxygenation Stimulates EDRE(s) Release from Endothelial Cells of Rabbit Aorta

  • Suh, Suk-Hyo;Han, Jae-Jin;Park, Sung-Jin;Choi, Jai-Young;Sim, Jae-Hoon;Kim, Young-Chul;Kim, Ki-Whan
    • The Korean Journal of Physiology and Pharmacology
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    • 제3권4호
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    • pp.393-404
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    • 1999
  • We have reported that hypoxia stimulates EDRF(s) release from endothelial cells and the release may be augmented by previous hypoxia. As a mechanism, it was hypothesized that reoxygenation can stimulate EDRF(s) release from endothelial cells and we tested the hypothesis via bioassay experiment. In the bioassay experiment, rabbit aorta with endothelium was used as EDRF donor vessel and rabbit carotid artery without endothelium as a bioassay test ring. The test ring was contracted by prostaglandin $F_{2a}\;(3{\times}10^{-6}\;M)$ which was added to the solution perfusing through the aorta. Hypoxia was evoked by switching the solution aerated with 95% $O_2/5%\;CO_2$ mixed gas to one aerated with 95% $O_2/5%\;CO_2$ mixed gas. Hypoxia/reoxygenation were interexchanged at intervals of 2 minutes (intermittent hypoxia). In some experiments, endothelial cells were exposed to 10-minute hypoxia (continuous hypoxia) and then exposed to reoxygenation and intermittent hypoxia. In other experiments, the duration of reoxygenation was extended from 2 minutes to 5 minutes. When the donor aorta was exposed to intermittent hypoxia, hypoxia stimulated EDRF(s) release from endothelial cells and the hypoxia-induced EDRF(s) release was augmented by previous hypoxia/reoxygenation. When the donor aorta was exposed to continuous hypoxia, there was no increase of hypoxia-induced EDRF(s) release during hypoxia. But, after the donor aorta was exposed to reoxygenation, hypoxia-induced EDRF(s) release was markedly increased. When the donor aorta was pretreated with nitro-L-arginine $(10^{-5}$ M for 30 minutes), the initial hypoxia-induced EDRF(s) release was almost completely abolished, but the mechanism for EDRF(s) release by the reoxygenation and subsequent hypoxia still remained to be clarified. TEA also blocked incompletely hypoxia-induced and hypoxia/reoxygenation-induced EDRF(s) release. EDRF(s) release by repetitive hypoxia and reoxygenation was completely blocked by the combined treatment with nitro-L-arginine and TEA. Cytochrome P450 blocker, SKF-525A, inhibited the EDRF(s) release reversibly and endothelin antgonists, BQ 123 and BQ 788, had no effect on the release of endothelium-derived vasoactive factors. Superoxide dismutase (SOD) and catalase inhibited the EDRF(s) release from endothelial cells. From these data, it could be concluded that reoxygenation stimulates EDRF(s) release and hypoxia/reoxygenation can release not only NO but also another EDRF from endothelial cells by the production of oxygen free radicals.

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Role of $Na^+\;-K^+$ Pump on Endothelium-dependent Relaxation

  • Sung, Sang-Hyun;Roh, Joon-Ryang;Park, Tae-Sic;Suh, Suk-Hyo;Hwang, Sang-Ik;Kim, Ki-Whan
    • The Korean Journal of Physiology
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    • 제27권2호
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    • pp.199-207
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    • 1993
  • To study the underlying mechanism through which the endothelium-dependent relaxation is inhibited by blocking the $Na^+\;-K^+$ pump, the effects of $Na^+\;-K^+$ pump blockade on the release of EDRF and its relaxing activity were examined, using organ bath study, bioassay technique, and cGMP measurement. Endothelium-dependent relaxation was attenuated by blocking the $Na^+\;-K^+$ pump in the vascular ring with intact endothelium. In bioassay experiment EDRF release was decreased with the blockade of the $Na^+\;-K^+$ pump in the EDRF donor strip. Endothelium-dependent increase of cGMP level was suppressed by inhibiting the $Na^+\;-K^+$ pump in the test strips. The magnitude of relaxation of test strip which was induced by the perfusate that had passed through the EDRF donor strip was decreased with the blockade of the $Na^+\;-K^+$ pump in the test strip. Therefore, it could be suggested that the attenuation of endothelium-dependent relaxation caused by inhibiting $Na^+\;-K^+$ pump activity is due to both the decreased release of EDRF from endothelial cells and the decreased sensitivity of the smooth muscle cells to EDRF.

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내피세포성 이완인자에 대한 세포외 $Ca^{2+}$$Ca^{2+}$-길항제의 작용기전 (Acting Mechanisms of Extracellular$Ca^{2+}$ and $Ca^{2+}$ - antagonists on Endothelium - Derived Relaxing Factor in Rabbit Aorta.)

  • 진성훈
    • Journal of Chest Surgery
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    • 제24권3호
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    • pp.229-244
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    • 1991
  • A bioassay technique and organ bath study were performed to analyze the effects of extracellular $Ca^{2+}$ and $Ca^{2+}$-antagonists on endothelium-derived relaxing factor[s][EDRF] released from the endothelial cells of rabbit aorta. Transverse strips with intact endothelium or damaged endothelium were used for the mechanical contraction experiment using organ bath. Long segment including thoracic and abdominal aorta with endothelium [EDRF donor aorta] was perfused with Tyrode solution which was aerated with 95% $O_2-5%$ $CO_2$ mixed gas and kept at 35oC. The perfusate was bioassayed with a transverse strip of thoracic aorta with damaged endothelium. The test strip was contracted with nor-epinephrine and acetylcholine was used to stimulate the release of EDRF from endothelial cells. The results obtained were as follows; 1] The endothelium-dependent relaxation[EDR] induced by acetylcholine was biphasic; an initial rapid relaxation followed by a slow relaxation. 2] EDR induced by acetylcholine was reduced gradually with the decrease in the concentration of extracellular $Ca^{2+}$. The effect of extracellular $Ca^{2+}$ on EDR was more prominent in the late slow relaxation phase. 3] EDR to acetylcholine was not altered by acute exposure to organic $Ca^{2+}$-antagonists. Pretreatment with verapamil to the EDRF donor aortic segment did not alter the magnitude of EDR. 4] Among the inorganic $Ca^{2+}$-antagonists $Mn^{2+}$ and $Cd^{2+}$ did not inhibit EDR, whereas $Co^{2+}$ and $La^{3+}$ inhibited EDR. 5] The inhibitory response of $Co^{2+}$ to EDR developed when infused directly on the test strip. That of $La^{3+}$, however, was evoked when added to solution perfusing the donor aortic segment. The above results suggest that $Ca^{2+}$-antagonists do not affect EDR and the inhibitory effect of $Ca^{2+}$ results from influencing the action of EDRF on vascular smooth muscle, whereas that of $La^{3+}$ results from its action on the release of EDRF from endothelial cells.

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신성 고혈압쥐의 전신성 동맥계와 폐동맥계에 대한 EDRF 기능의 차이 (Differential Function of EDRF in Systemic Arterial and Pulmonary Arterial System of Renal Hypertensive Rats)

  • 이병호;신화섭;허인회
    • 대한약리학회지
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    • 제29권2호
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    • pp.213-223
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    • 1993
  • 급성 신성 고혈압쥐 (2-kidney, 1-ligation type)의 전신성 동맥계와 폐 동맥계에 대한 내피 의존적 혈관반응성을 규명하기 위하여, 적출 혈관 및 마취상태의 흰쥐에 대한 acetylcholine (ACh)의 혈관이완작용 및 혈압강하 작용을 측정하였다. 혈장 renin 활성(PRA)은 신동맥 결찰전 $7.31{\pm}0.63\;ng/ml/hr$ A I에 비해 결찰 $6{\sim}8$일후에는 $19{\sim}22\;ng/ml/hr$ A I으로 유의성있게 증가하였으며, 이는 수축기혈압의 상승과 $(154{\pm}1.83{\rightarrow}190{\sim}215\;mmHg)$ 일정한 상관성을 유지하였다. 신성 고혈압쥐 및 정상 혈압쥐의 흉곽 대동맥은 내피세포 존재시 ACh에 의해 용량의존적으로 이완되었으며, 이때 신성고혈압쥐에서의 반응은 정상 혈압쥐에 비해 유의성있게 감소하였다(각각 34% 및 86%, p<0.01). 또한 ACh은 신성 고혈압쥐 및 정상 혈압쥐의 폐동맥에 대해서도 내피세포 존재시에 이완반응을 초래하였다. 그러나, 흉곽 대동맥에서와는 달리 두 군간에 유의성있는 차이가 없었다. 이들 반응은 내피세포 제거후 또는 EDRF 억제제 (L-NAME, MB, $10^{-5}$ M) 투여후 유의성있게 억제되었다. $ACh(0.1{\sim}10\;{\mu}g/kg,\;i.v.)$은 신성 고혈압쥐 및 정상 혈압쥐에서 전신성 동맥압의 강하를 초래하였는데, 신성 고혈압쥐에서 다소 감소하였으나 유의성있는 차이는 없었으며 ($SAPm;\;10\;{\mu}g/kg$에서 각각 39%, 46 %), 이들 작용은 L-NAME(30 mg/kg, i.v.) 전처치후 유의성있게 억제되었다. ACh에 의한 폐동맥압 강하는 신성 고혈압쥐 및 정상 혈압쥐 사이에 서로 비슷하게 나타났다. 그러나, 신성 고혈압 쥐 및 정상 혈압쥐에서 ACh에 의한 폐동맥압의 강하율은 전신성 동맥압의 강하율보다 유의성있게(p<0.01) 작았으며, 또한 L-NAME $(0.1{\sim}100\;mg/kg,\;i.v.)$에 의한 폐동맥압의 상승은 전신성 동맥압의 상승보다 유의성있게(p<0.01) 작았다. 이상의 실험 결과들은 급성 신성 고혈압쥐의 전신성 동맥계에서는 내피세포 손상이 초래되지만, 폐동맥계에서는 초래되지 않는다는것을 제시해준다. 또 신성고혈압쥐 및 정상 혈압쥐에서 EDRF 의 basal release 및 ACh 유발성 EDRF function은 전신성 동맥계에 비해 폐동맥계에서 적다는 것을 제시해준다.

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개의 관상동맥에서 $Mg^{++}$ 결핍에 의한 혈관 확장반응의 기전 (Mechanism of Endothelium dependent Relaxation induced by $Mg^{++}-deficiency$ in isolated Canine Coronary Arteries)

  • 안형수
    • 약학회지
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    • 제33권1호
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    • pp.1-9
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    • 1989
  • We have recently reported that $Mg^{++}-deficiency$ showed endothelium dependent relaxation in isolated canine coronary arteries precontracted with $PGF_{2{\alpha}}$. To differentiate the release of EDRF or $PGI_2$ from the endothelium cells as the cause of vasorelaxation by $Mg^{++}-deficiency$, effects of several inhibitors of arachidonic acid metabolism on the relaxation by $Mg^{++}-deficiency$ were evaluated and also compared with that of acetylcholine. Ibuprofen and tranylcypromine ($10{\mu}M$), an inhibitor of cyclo-oxygenase and $PGI_2$ synthetase, respectively, did not effect on $Mg^{++}-free$ induced vasorelaxation. Pretreatment of quinacrine ($10{\mu}M$), an inhibitor of phospholipase $A_2$ and also $Ca^{++}$ uptake, blocked vasorelaxation by $Mg^{++}-free$. But trifluoperazine ($10{\mu}M$), which is about as potent as quinacrine in the inhibition of $Ca^{++}$ uptake, did not effect on $Mg^{++}-deficiency$ induced vasorelaxation. NDGA ($10{\mu}M$), an inhibitor of lipoxygenase, completely restored $Mg^{++}-free$ induced vasorelaxation, even though pretreatment of that was not blocked which might be due to the characteristics of vasorelaxation of NDGA itself. Pretreatment of methylene blue ($10{\mu}M$), which is known as a inhibitor of EDRF through the blocking effect of guanylate cyclase, completely blocked vasorelaxation by $Mg^{++}-free$ as well as acetylcholine ($0.1{\mu}M$). Acetylcholine-induced dose response curve was also antagonized by pretreatment of quinacrine ($10{\mu}M$), but not by ibuprofen, tranylcypromine and NDGA. These results appear to suggest that $Mg^{++}-free$ induced vasorelaxation was mediated by the release of EDRF through the activation of phospholipase $A_2$ and noncyclo-oxygenase on arachidonate metabolism.

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토끼 대동맥 내피에서 A23187에 의하여 유리되는 혈관이완물질의 특성에 관한 연구 (Release of a Stable Endothelium-derived Relaxing Factor by A23187 from the Rabbit Aortic Endothelium)

  • 김치대;임병용;홍승철;홍기환
    • 대한약리학회지
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    • 제27권2호
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    • pp.125-133
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    • 1991
  • 내피세포가 제거된 토끼의 적출 장간막 동맥에서 토끼의 대동맥 내피세포로 부터 A23187과 acetylcholine은 NO와 유사한 혈관 이완성 물질 (EDRF)을 유리한다. 이에 첨가하여 A23187은 acetylcholine과는 달리 superoxide anion에 의하여 파괴되지 않는 EDRF도 유리시킴을 확인하고 이의 특성에 대하여 연구하였다. 정상적인 생리영양액에서는 A23187과 acetylcholine의 용량-반응 곡선은 내피세포에 의존하지 않는 sodium nitroprusside의 곡선과 유사하였다. 이들은 methylene blue에 의하여 억제되었다. Hypoxanthine (HX)과 xanthine oxidase (XO)를 bath내로 투여시 phenylephrine에 의한 수축이 일과성으로 증가한 후 지속적으로 이완되었다. HX-XO 반응중에는 A23187은 장간막 동맥을 즉각적으로 이완시켰으나 acetylcholine의 이완작용은 소실되었다. A23187에 의하여 야기되는 장간막동맥의 이완은 50 mM $K^+-PSS$로 수축을 야기시켰을 때에는 나타나지 아니하였다. Superoxide dismutase를 전처치하였을 때는 HX-XO 반응중에도 acetylcholine 뿐만아니라 A23187에 의한 장간막 동맥의 수축은 이완되었다. 한편, acetylcholine에 의하여 야기되는 장간막 동맥의 이완은 A23187에 의하여 야기되는 이완에 비하여 phorbol 12-myristate 13-acetate (PMA)에 훨씬 더 민감하게 억제되었다. 내피세포의 기능과는 무관한 sodium nitroprusside에 의하여 야기되는 이완은 PMA에 의하여 영향을 받지 아니하였다. 이상의 결과로 미루어 볼때, A23187과 acetylcholine은 methylene blue에 의하여 억제되는 내피세포 의존성 이완을 야기시키고, 첨가하여 A23187은 어떤 병적 환경 아래서는 superoxide anion과 PMA에 저항성을 지닌 혈관이완성 물질을 유리하는 것으로 사료된다. 앞으로 A23187에 의하여 유리되는 혈관 이완성 물질이 superoxide anion에 의존하여 생성된 것인지에 대하여는 추후의 연구과제이다.

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뇌혈류 자가조절에 대한 Endothelium-derived Relaxing Factor의 역할 (Role of Endothelium-derived Relaxing Factor in Cerebral Autoregulation in vivo)

  • 홍기환;유성숙;임병용
    • 대한약리학회지
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    • 제31권1호
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    • pp.27-37
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    • 1995
  • 본 연구에서는 콜린성 기전에 반응하여 분비되는 내피 의존성 이완물질(endothelium-derived relaxing factor, EDRF)나 nitric oxide(NO)가 마취 흰쥐의 뇌혈류 자가조절기전에 관여할 가능성을 관찰하였다. Acetylcholine($10^{-9}-10^{-6}M$)을 포함한 mock 뇌척수액(CSF)을 관류시 뇌연막 동맥은 농도에 의존하여 이완반응 나타내었고(평균; $19.3{\pm}1.7{\mu}m$, n=36), 이러한 이완반응은 $N{\omega}$-nitro-L-arginine(L-NNA, $10^{-5}M$)에 의해서 억제되었을 뿐 아니라 methylene blue($10^{-6}M$)나 oxyhemoglobin($10^{-6}M$)에 의하여도 억제되었다. 한편 이러한 acethlcholine에 의한 뇌연막동맥의 이완반응을 매게하는 무스카린 수용체는 무스카린 수용체 길항제의 봉쇄효과를 관찰한 실험에서 $M_1$$M_3$ 아형으로 생각되었다. L-Arginine을 함유한 mock CSF로 관류시 일어나는 일시적인 혈관이완반응은 NY 83583 ($10^{-5}M$)에 강력히 억제되었으나 L-NNA ($10^{-5}M$)에 의해서는 억제되지 아니하였다. 한편 acetylcholine과 L-arginine에 의한 혈관이완반응은 ATP-sensitive $K^+$ 통로 봉쇄제인 glibenclamide에 의해 유의하게 봉쇄되었다. 나아가 뇌연막동맥의 직경 변화를 동맥압의 변화에 대하여 검정한 결과 혈관이완과 혈관수축의 희귀 직선의 경사도는 $10^{-5}M$ L-NNA의 전처치에 의하여 영향을 받지 아니하였으나, $3{\times}10^{-6}M$ glibenclamide에 의해 유의하게 감소되었다. 이러한 결과로 보아 혈압하강에 대해 쥐의 뇌연막동맥에 나타나는 혈관이완반응은 EDRF(NO)에 의해 매개되지 않는다고 사료된다.

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흰쥐 적출 대동맥에서 ${\alpha}_1$-수용체 효능약과 ${\alpha}_2$-수용체 효능약의 혈관수축반응에 대한 내피세포의 영향 (Effects of Endothelium on ${\alpha}_1$-and ${\alpha}_2$-adrenoceptor Agonist-induced Contraction in the Rat Isolated Aorta)

  • 정준기;홍승철;최수경;강맹희;구미경;박상일;윤일
    • 약학회지
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    • 제34권3호
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    • pp.180-191
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    • 1990
  • A comparison was made of the effects of selective ${\alpha_1}-adrenoceptor$ agonist phenylephrine and selective ${\alpha_2}-adrenoceptor$ agonist clonidine on endothelium-containing and endothelium-denuded rings of the rat aorta. In the case of phenylephrine, removal of endothelium increased sensitivity 2.5 fold at $EC_{50}$ level and maximum contractive response 1.4 fold. In the case of clonidine, which gave only 15% of maximum contractive response given to phenylephrine on endothelium-containing rings, removal of the endothelium increased sensitivity 5.6 fold at $EC_{50}$ level and maximum contractive response 5 fold, which was about 55% of that given by phenylephrine. In endothelium-denuded ring, phenylephrine-induced contraction tended to be more increased in tonic contraction than in phasic contraction as compared to that in endothelium-containing ring, while clonidine-induced contraction was monophasic and was increased only in tonic contraction. In the calcium-free solution or in the presence, of verapamil, contraction stimulated by clonidine was almost abolished while that stimulated by phenylephrine produced only phasic contraction. The depression of sensitivity to these agonists in rings with endothelium appeared to be due to the vasodepressor action of endothelium derived relaxing factor (EDRF), because hemoglobin, a specific blocking agent of EDRF, abolished this depression. It is unlikely that the endothelium-dependent relaxation was due to stimulation of release of EDRF, because clonidine did not produce endothelium-dependent relaxation in 5-hydroxytryptamine-precontracted ring even when its contractile action was blocked by the ${\alpha_1}-adrenoceptor$ antagonist, prazosin. When the efficacy of phenylephrine was reduced to about the initial efficacy of clonidine by pretreatment with dibenamine, the contraction-response curves for phenylephrine became very similar to the corresponding curves obtained for clonidine before receptor inactivation. In the dibenamine-treated rings, contraction of phenylephrine was abolished in calcium-free solution or in the presence of verapamil like that obtained for clonidine before receptor inactivation. These results suggest that EDRF spontaneously released from endothelium depress contraction more profoundly in a case of an agonist with low efficacy and the phenylephrine-induced contraction was totally dependent on extracellular calcium as was that obtained for clonidine when the efficacy of phenylephrine was reduced to that of clonidine by irreversible inactivation of ${\alpha_1}-adrenoceptor$ with dibenamine.

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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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Effects of cGMP on the Contractility and Ca Movement in the Aorta of Normotensive Wistar-Kyoto Rats and Spontaneously Hypertensive Rats

  • Park, Hae-Kun;Jeon, Byeong-Hwa;Kim, Se-Hoon;Kim, Hoe-Suk;Chang, Seok-Jong
    • The Korean Journal of Physiology
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    • 제28권2호
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    • pp.181-190
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    • 1994
  • Endothelium-derived relaxing factor (EDRF) activates guanylate cyclase which mediates the formation of cGMP from GTP in vascular smooth muscle. It is well known that endothelium-dependent relaxation is impaired in spontaneously hypertensive rats (SHR). However, it is still unknown whether the impaired endothelium-dependent relaxation in SHR results from the reduced release of EDRF or from the decrease of vascular response to EDRF. We investigated the effects of cGMP on the contractility and Ca movement in the aorta of SHR and Wistar-Kyoto rats (WKY). The amplitude of the endothelium-dependent relaxation to actylcholine (ACh) was significantly less in SHR than in WKY. L-arginine $(10^{-3}M)$ did not increase endothelium-dependent relaxation in both strains. Sodium nitroprusside (SNP), an activator of guanylate cyclase, relaxed the 40 mM $K^+-induced$ contraction in a dose-dependent manner $(10^{-10}{\sim}10^{-6}\;M)$ in the endothelium-rubbed aortic strips of both strains. However, there was no significant difference in these relaxations between WKY and SHR. 8-bromo-cyclic guanosine monophosphate (8-Br-cGMP), a cell membrane-permeable derivative of cGMP relaxed the 40 mM $K^+-induced$ contraction in a dose-dependent manner $(10^{-6}{\sim}10^{-4}\;M)$ in the endothelium-rubbed aortic strips of both strains. Also norepinephrine $(10^{-6}\;M)-induced$ contractions in normal and Ca-free Tyrode's solution were suppressed by the pretreatment with 8-Br-cGMP $(10^{-4}\;M)$ in either strain. However, the amplitudes of suppression induced by 8-Br-cGMP were greater in SHR than that in WKY. Basal $^{45}Ca$ uptake and 40mM $K^+-stimulated\;^{45}Ca$ uptake were not suppressed by pretreatment with 8-Br-cGMP $(10^{-4}\;M)$ in single aortic smooth muscle cells of both SHR and WKY. From the above results, it is suggested that cGMP decreases Ca sensitivity in vascular smooth muscle cells and that the impaired endothelium-dependent relaxation in the aortic strips of SHR is not the result of a reduced vascular response to EDRF.

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