• 제목/요약/키워드: pressor agents

검색결과 11건 처리시간 0.018초

Norepinephrine 및 Angiotensin의 승압효과(昇壓效果)에 대(對)한 교감신경단제(交感神經斷濟) 의 영향(影響) (Influence of Some Sympathetic Blocking Agents on Pressor Actions of Norepinephrine and Angiotensin in Rabbits.)

  • 은종영
    • Journal of Pharmaceutical Investigation
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    • 제15권1호
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    • pp.22-31
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    • 1985
  • The influence of some sympathetic blocking agents on pressor actions of norepinephrine and angiotensin was investigated in rabbits. 1. Phentolamine, sympathetic ${\alpha}-blocking$ agent, blocked the pressor action of norepinephrine, but did not affect the pressor action of angiotensin 2. Chlorisondamine, autonomic ganglionic blocking agent, potentiated the both actions of norepinephrine and angiotensin. 3. Guanethidine, bethanidine and debrisoquine, sympathetic neuronal blocking agents, potentiated the action of norepinephrine, while diminished that of angiotensin. 4. Reserpine, norepinephrine depleting agent, increased the pressor response of norepinephrine, but did not influence the pressor action of angiotensin.

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교감신경절(交感神經節) 흥분제(興奮濟)에 대(對)한 닭 혈압반응(血壓反應) (Blood Pressure Response of Chickens to Sympathetic Ganglionic Stimulants)

  • 김용호
    • 대한약리학회지
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    • 제3권1호
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    • pp.15-18
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    • 1967
  • Sympathetic ganglionic stimulants (DMPP, Wy-615, TMA and McN-A-343) produced pressor response in chickens anesthetized with phenobarbital sodium. In adrenalectomized chickens the pressor activity of DMPP, Wy -615 and TMA was less than in normal chickens but that of McN-A-343 was unchanged. Hexamethonium (20 mg/kg) and chlorisondamine (5 mg/kg), ganglionic blocking agents, reduced the pressor response to DMPP and Wy-615 but did not abolish the response. The pressor effect of McN-A-343 was not potentiated by the ganglionic flocking agents, but abolished by atropine.

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Effects of Kanagawa Hemolysin on Blood Pressure and Arterial Tone in Rats

  • Kim, Young-Moon
    • The Korean Journal of Physiology and Pharmacology
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    • 제6권4호
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    • pp.225-233
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    • 2002
  • Kanagawa hemolysin (KH), an exotoxin produced from Kanagawa phenomenon-positive Vibrio parahemolyticus, has been shown to possess various biological activities including hemolysis, enterotoxicity, cytotoxicity, and cardiotoxicity. The aim of this study was to investigate the effect of KH on the cardiovascular system and its mechanism, employing in vivo and in vitro experiments of the rat. Intracerebroventricular (icv) administration of 100 mHU KH produced a marked and continuous pressor effect (icv KH-pressor effect), and the icv pressor effect was not repeatable. However, intravenous (iv) injection of the same dose of KH induced a prominent depressor effect (iv KH-depressor effect). The icv KH-pressor effect was inhibited by acid-denaturation, while the iv KH-depressor effect was not. Simultaneous icv administration of the three agents (ouabain, diltiazem, or bumetanide: $10{\mu}g/kg$ each) significantly reduced the pressor effect. The icv KH-pressor effect was inhibited by treatment with iv phentolamine or chlorisondamine, but was not affected by iv candesartan. The iv KH-depressor effect was repeatable and was attenuated by treatment with iv NAME or methylene blue. In vitro experiments using isolated thoracic aorta, $10^{-6}$ M phenylephrine (PE) and 50 mM KCl produced a sustained contraction. In rings contracted with either agents, KH showed relaxant responses in a concentration- dependent fashion and the relaxation (KH-vasorelaxation) was not dependent on the existence of the endothelium. The KH-vasorelaxation in the endothelium-intact rings contracted by PE was abolished by methylene blue treatment. In summary, the present findings suggest that in the icv KH-pressor effect the cation leak-inducing action of KH is implicated, which leads to the increased central sympathetic tone, that the iv KH-depressor effect results from the vasorelaxation via NO-guanylate cyclase system, and that the KH-vasorelaxation is independent of the endothelium and the guanylate cyclase system is involved in it. In conclusion, the mechanism of KH producing the icv pressor effect may not be identical to that of KH producing the iv depressor effect.

교감신경절(交感神經節) 흥분제(興奮劑)에 대(對)한 가토혈압반응(家兎血壓反應) (Blood Pressure Response of Rabbits to Sympathetic Ganglionic Stimulants)

  • 김용호
    • 대한약리학회지
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    • 제3권1호
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    • pp.5-13
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    • 1967
  • It has been reported by some investigators that pressor response of rabbits to sympathetic ganglionic stimulants was weak. In this paper it was attempted to investigate this problem more thorouglhy in urethane anesthetized rabbits. 1) In rabbits the approximate doses to elicit increase of about 20 mmHg of blood pressure were $100\;{\mu}g/kg$ with DMPP, $50\;{\mu}g/kg$ with Wy-615, $500\;{\mu}g/kg$ with TMA and with nicotine. The pressor activity of these substances was markedly augmented by treating animals with syrosingopine. 2) In adrenal-ligated rabbits pressor activity of the substances was markedly reduced. Treating the adrenal-ligated animals with syrosingopine augmented significantly the pressor activity of these substances except DMPP. Direct injection of DMPP and TMA into the adrenal produced mole pressor response than intravenous injection did. These date suggest that DMPP has greater effect on the adrenal medulla than the other substances. 3) In vagotomized and atropinized rabbits the pressor activity of these compounds was more marked than in normal rabbits. 4) The above facts indicate that the pressor activity of the ganglionic stimulants in rabbits was definitely low than in cats and dogs. The low responsiveness of the rabbits to these agents was discussed in the light of catecholamine releasing mechanisms, and extraganglionic actions of these substances.

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Effects of White Mulberry (Morus alba) Leaves on Blood Vessel Reactivity in Hyperchloesterolemic Rats

  • Choi, Sang-Hoon;Park, Kwan Ha
    • 한국식품위생안전성학회지
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    • 제28권3호
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    • pp.195-201
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    • 2013
  • 동맥경화 상태에서는 혈관이 수축물질에 예민하게 반응함으로써 혈압의 급격한 변화에 대한 회복능력이 저하한다. 한편 뽕나무 잎에는 고지방식의 섭취로 인해 발생하는 동맥경화증의 발달을 감소시킬 가능성이 있는 여러 물질이 있다고 추정된다. 뽕나무 잎을 백서에 투여하면 고지방식에 의해 유발된 혈관이 예민해지는 현상을 감소시킬 수 있는지 시험하기 위하여 고지방식 및 뽕나무잎을 8주간 투여하고 혈관수축 물질에 대한 혈압의 반응성을 시험하였다. 순환기반사에 따른 혈압반응 감수성차이를 최소화할 목적으로 동물의 중추신경계를 파괴(pithing)하고 시험하였다. 고콜레스테롤을 함유한 식이를 공급한 백서에서 교감신경계 전기자극이나 norepinephrine, phenylephrine, angiotensin II 및 vasopressin 등의 투여로 유발된 혈압상승반응이 증강되었으며, 사료에 뽕잎을 2% 또는 10% 첨가하면 정상적인 혈압상승반응을 보여주었다. 교감신경계를 파괴하지 않은 채 마취만 한 백서에서는 고콜레스테롤에 의한 반응증강이나 뽕잎에 의한 변화를 관찰할 수 없었다. 이 결과로 부터 뽕잎이 동맥경화에서 나타나는 혈관반응성 변화를 방지하는 데 유용한 것으로 판단할 수 있을 것이다.

가토 측뇌실내 Nicotine 및 Muscarine의 혈압상승작용에 관하여 (Pressor Action of Intracerebroventricular Nicotine and Muscarine in the Rabbit)

  • 이충경
    • 대한약리학회지
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    • 제27권1호
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    • pp.21-31
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    • 1991
  • 미주신경절단 가토에서 니코틴성약물인 nicotine과 DMPP뿐아니라 무스카린성 약물인 muscarine과 bethanechol은 측뇌실내 투여로 모두 혈압상승작용을 나타냈다. Nicotine과 DMPP에 대한 승압반응은 측뇌실내 mecamylamine처리로 현저히 감약되었으나 측뇌실내 pirenzepine처리에 의해서는 영향받지 않았고, muscarine과 bethanechol에 대한 승압반응은 pirenzepin에 의해서는 억제되나 mecamylamine에 의해서는 영향받지 않았다. 이는 뇌내의 니코틴성 수용체 및 무스카린성 수용체가 모두 혈압상승에 관여함을 가리키고 있다. Nicotine과 muscarine에 대한 승압반응은 regitine, reserpine, enalapril, saralasin, SK&F-100273, regitine과 enalapril, regitine과 saralasin의 정맥내 처리에 의해서는 억제되지 않았으며 nicotine에 대한 승압반응은 regitine과 SK&F-100273 두약물의 병용처리에 의해서 억제되었고 muscarine에 의한 승압반응은 regitine, enalapril과 SK&F-100273의 세가지 약물의 병용처리에 의해서만 억제되었다. Nicotine이나 muscarine에 의한 혈압상승상태에서 정맥내 regitine의 투여는 혈압하강을 일으켰으나 enalapril이나 SK&F-100273은 혈압하강을 일으키지 못하였다. Enalapril은 regitine처리나 regitine과 SK&F-100273병용처리 가토에서 nicotine에 의해 상승된 혈압을 하강시키지 못하였으나 SK&F-100273은 regitine처리 가토에서 nicotine에 의한 상승된 혈압을 하강시켰다. Enalapril은 이러한 SK&F-100273의 할압하강작용을 강화시키지 못하였다. Enalapril은 regitine 처리 가토에서 muscarine에 의하여 상승된 혈압은 하강시키지 못하였으나, regitine과 SK&F-100273병용처리 가토에서 muscarine에 의해 상승된 혈압은 하강시켰다. SK&F-100273은 regitine처리 가토에서 muscarine에 의해 상승된 혈압을 하강시키지 못했으나 regitine과 enalapril병용처리 가토의 상승된 혈압은 하강시켰다. 이상의 성적은 뇌실내 nicotine에 의한 혈압상승에는 말초에서 교감신경계와 vasopressin이 관여하며 muscarine에 의한 혈압상승에는 교감신경계, vasopressin 및 angiotensin계가 관여함을 시사하고 있다. Regitine의 정상 가토 혈압하강작용은 enalapril이나 SK&F-100273의 단독처리에 의해서는 영향받지 않았으나 이 두약물을 병용처리시에는 유의하게 강화되었고, 이는 가토 동맥압의 유지에 교감신경, renin-angiotensin 및 vasopressin계가 관여함을 시사하고 있다.

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Syrosingopine 및 Reserpine의 Norepinephrine에 대한 가토혈압반응(家兎血壓反應)에 미치는 영향(影響) (Syrosingopine and Reserpine on Pressor Action of Norepinephrine in Rabbits)

  • 심창섭
    • 대한약리학회지
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    • 제6권1호
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    • pp.27-35
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    • 1970
  • 1) 전신가토(全身家兎) 및 척수가토(脊髓家兎)에 있어서 syrosingopine(S) 및 reserpine(R) 처리후(處理後)에 일어나는 norepinephrine(NE)에 대한 혈압반응(血壓反應)의 강화(强化)를 비교(比較)하였다. 2) 사용(使用)한 S 및 R의 양(量)은 체중(體重) 1kg당(當) 8, 40, $200\;{\mu}g$ 및 1 mg이었으며 S 또는 R 주사후(注射後) 4, 10 및 24 시간후(時間後)에 NE(0.1, 0.5, 0.25, 1.2, 6.0, 30.0, $150.0\;{\mu}g/kg$)에 대한 반응(反應)을 보았다. 3) 전신가토(全身家兎)에 있어서 S에 의한 NE 승압반응(昇壓反應)의 강화(强化)는 $40\;{\mu}g/kg$으로써, R에 의한 강화(强化)는 $8\;{\mu}g/kg$으로써 일어났으며, S 및 R 모두 $200\;{\mu}g/kg$, 10 시간후(時間後)에 최고강화(最高强化)를 볼 수 있었다. 4) 척수가토(脊髓家兎)에 있어서는 $S(200\;{\mu}g/kg)$에 의한 NE 승압반응(昇壓反應)의 강화(强化)는 미약(微弱)하였으나 $R(200\;{\mu}g/kg)$로써는 일부(一部) NE량(量)(1.2, $6.0\;{\mu}g/kg$)에 대한 반응(反應)의 강화(强化)는 현저(顯著)하였다. 5) 전신가토(全身家兎)에서 S 및 R, 각각 $40\;{\mu}g/kg$ 투여(投與) 4 시간후(時間後)에 일어나는 NE 효과(?果)의 강화(强化)는 carbachol 처리(處理)로써 현저(顯著)히 억제(抑制)되었다. 6) 척수가토(脊髓家兎)에서 S 및 R 각각 $S(200\;{\mu}g/kg)$ 투여 10 시간후(時間後)에 보는 NE에 대한 반응증가(反應增加)는 carbachol 처리(處理)로써 억제(抑制)되었다. 7) 전신가토(全身家兎)에서 S 및 R(1 mg/kg)에 의한 NE에 대한 반응(反應)의 강화(强化)는 주사(注射) 15 분후(分後) 부터 볼 수 있었다. 8) S 및 R에 의한 NE-supersensitivity 발생(發生)에는 이들 물질(物質)의 말초조직(末梢組織)의 catecholamine 함량(含量)에 미치는 영향(影響)보다 중추(中樞)의 catecholamine 함량(含量)에 미치는 영향(影響)이 더 큰 의의(意義)가 있으며, 중추(中樞)에 대한 작용결과(作用結果) 일어나는 교감신경계(交感神經系)의 tone의 약화(弱化)가 큰 역할(役割)을 하는 것으로 생각된다.

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경막하 혈종에 의한 경련이 동반된 Bartter 증후군 1례 (A Case of Bartter's Syndrome with a Seizure Disorder Associated with Subdural Hematoma)

  • 이재준;문한구;박용훈
    • Journal of Yeungnam Medical Science
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    • 제11권2호
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    • pp.388-397
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    • 1994
  • 심한 저칼륨혈증, 대사성 알카리혈증과 성장 장애를 가져오는 대표적인 질환인 Bartter 증후군 환아가 경막하 혈종에 의한 경련이 동반되어, 선생검으로 본 질환을 확진하고, 근치적 치료로 양호한 반응을 나타내었던 1례를 문헌 고찰과 아울러 보고 하는 바이다.

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Do Opioid Receptors Play a Role in Blood Pressure Regulation?

  • Rhee, H.M.;Holaday, J.W.;Long, J.B.;Gaumann, M.D.;Yaksh, T.L.;Tyce, G.M.;Dixon, W.R.;Chang, A.P.;Mastrianni, J.A.;Mosqueda-Garcia, R.;Kunos, G.
    • 대한약리학회지
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    • 제24권2호
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    • pp.153-164
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    • 1988
  • The potential role of endogenous opioid peptides (EOPS) in cardiovascular regulation has only recently been entertained. EOPS have been localized in brain, spinal cord, autonomic ganglia, particularly the adrenal gland, and many other peripheral tissues. There are at least five major types of opioid receptors; namely ${\mu},\;{\delta},\;k,\;{\sigma},\;and\;{\varepsilon}$ and Experimental evidence indicates that cardiovascular actions of the peptide are mediated primarily by ${\mu},\;{\delta}$ and k receptors, and that these receptor types may be allosterically coupled. In anesthetized rabbits met-enkephalin decreased blood pressure and heart rate, which closely paralleled a reduction in sympathetic discharge. Naloxone, but not naloxone methobromide, antagonized these effects, which suggests a central site of action of met-enkephalin. A number of autonomic agents, particularly adrenergic ${\alpha}$-and, ${\beta}-agonists$ and antagonists modify the cardiovascular actions of met-enkephalin. Experiments in reserpine-treated and adrenalectomized rats provide no evidence of sympathetic nervous system involvement in the pressor responses to intravenous injection of opioid peptides, but rather suggest a direct peripheral action. Finally, activation of a beta-endorphinergic pathway projecting from the arcuate nucleus to the nucleus tractos solitarii in rats can cause naloxone reversible hypotension and bradycardia. There is evidence to implicate this pathway in antihypertensive drug action and in the modulation of baroreflex activity.

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Endotoxin에 의해 생성된 혈관의 nitric oxide가 교감신경계에 미치는 영향 (Role of Nitric Oxide Produced During Endotoxic Shock in Sympathetic Nervous Function)

  • 박관하
    • Toxicological Research
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    • 제12권2호
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    • pp.195-201
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    • 1996
  • Endotoxic shock causes death in humans and animals via extreme hypoperfusion of peripheral organs. A massive production of nitric oxide (NO) both from the endothelical cells and smooth muscle cells has been proposed as a possible mechanism in this process. Since NO attenuated the contractility to vasoconstricting agents such as norepinephrine (NE) by directly acting on the smooth muscle cells, this mechanism was considered mainly as a postsynaptic mechanism. In this research it was investigated whether NO, thus released, also participates in the presynaptic events for the regulation of vascular tone in endotoxic shock. The role of NO was studied by adding NO donors or NO synthase inhibitor $N^\omega $methyl-L-arginine (NMA) in stimulated sympathetic nerves of the mesenteric vascular bed and the Langendorff heart of rats. Sodium nitroprusside (SNP), an NO donor, reduced the pressor responses of isolated mesenteric artery either to electrical stimulation or exogenously administered phenylephrine (PE). In this mesentery, although neither agent influenced NE release, in the presence of the adrenergic $\alpha_2$-receptor antagonist yohimbine, elecrical stimulation-evoked NE release was augumented by SNP. In the heart SNP facilitated the NE release induced by electrical stimulation, while NMA had no effect. From these results it is proposed that there exists a local reflex phenomenon in the junction between the sympathetic nerve terminals and the smooth muscle of resistance blood vessels; by which sympathetic responses are reduced by NO at the postjunctional level while NO facilitates NE release contributing to augumentation of sympathetic tone. All these facts suggest that NO produced during endotoxic shock has dual effects: whereas NO blunts the vasoconstrictive activity of NE at the postsynaptic level, NO presynaptically facilitates the release of NE from sympathetic nerve terminals.

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