• 제목/요약/키워드: Guanethidine

검색결과 49건 처리시간 0.023초

토끼 음경해면체의 비-아드레날린 비-콜린성 이완반응에서 산화질소의 역할 (The Role of Nitric Oxide in Non-adrenergic Non-cholinergic Relaxation in the Rabbit Penile Corpus Cavernosum)

  • 박미선;김진보;홍은주;홍승철
    • 약학회지
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    • 제41권3호
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    • pp.370-380
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    • 1997
  • The role of nitric oxide (NO) on the non-adrenergic non-cholinergic (NANC) relaxations induced by the short and prolonged electrical field stimulation (EFS) has been studied in the rabbit corpus cavernosum. In the presence of atropine and guanethidine the prolonged EFS (2-16 Hz) of corpus cavernosal strips precontracted with phenylephrine produced frequency-dependent relaxations, which were abolished by tetrodotoxin as shown in the relaxations induced gy the short EFS, indicating that their orgin is NANC nerve stimulation. $N^G$-nitro-L-arginine (L-NNA), inhibitor of nitirc oxide synthase, caused a concentration-dependent inhibition to the NANC relaxation, and at 100 M L-NNA the relaxation were virtually abolished. The inhibitory effect of L-NNA was reversed by L-arginine. Hemoglobin abolished the relaxations to NO and also caused a concentration-dependent inhibition of the NANC relaxation. The hemoglobin-resistant relaxation induced by EFS was eliminated by L-NNA. Methylene blue significantly reduced the NANC relaxation in a conentration-dependent manner. The NANC relaxation was not affected by a VIP-inactivating pepridase, alpha0chymotrypsin, whereas VIP-induced relaxation was completely abolished. NO- and VIP-induced relaxation were not affected by L-NNA. These results indicate that the NANC relaxation induced by prolonged EFS of the rabbit corpus cavernosum is mediated by NO-guanosine 3',5'-cyclic monophosphate pathway as shown in the relaxation induced by the short EFS, and that VIP release is not essential for the NANC relaxation of the rabbit corpus cavernosum and VIP is not involved the generation fo NO.

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Effect of Ca2+ on contractile responses induced by perivascular nerve stimulation in isolated coronary artery of pig

  • Hong, Yong-geun;Shim, Cheol-soo;Kim, Joo-heon
    • 대한수의학회지
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    • 제39권4호
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    • pp.702-709
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    • 1999
  • The present study was performed to elucidate the effects of extracellular $Ca^{2+}$ on contractile responses in isolated porcine coronary artery ring using by perivascular nerve stimulation (PNS). Especially, the study was focused on the source of $Ca^{2+}$ on $P_{2X}$-purinoceptor mediated muscle contraction which one of $P_2$-purinoceptor subtypes. The following results can be drawn from these studies : 1. The phasic contractions induced by PNS were inhibited with muscarinic receptor antagonist, atropine ($10^{-6}M$). 2. The phasic contractions induced by PNS were significantly inhibited by sequential treatment with atropine and adrenergic neural blocker, guanethidine ($10^{-6}M$). 3. The phasic contractions induced by PNS were inhibited with $P_{2X}$-purinoceptor desensitization by repetitive application of $\alpha$,$\beta$-Me ATP ($10^{-4}M$). 4. The phasic contractions induced by PNS were so weakened in calcium-free medium. 5. The phasic contractions induced by PNS were inhibited with calcium channel blocker, verapamil ($10^{-6}{\sim}5{\times}10^{-6}M$). 6. The phasic contractions induced by PNS on pretreated with verapamil ($10^{-6}{\sim}5{\times}10^{-6}M$) were not changed by $\alpha$,$\beta$-Me ATP ($10^{-4}M$). These results demonstrate that the neurogenic phasic contractions induced by PNS are due to adrenergic-, cholinergic- and $P_{2X}$-purinergic receptors and the origin of $Ca^{2+}$ on $P_{2X}$-purinoceptor mediated muscle contraction is extracellular $Ca^{2+}$ through plasmalemmal $Ca^{2+}$ channels.

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소 음경후인근의 Nitric oxide(NO) 매개성 이완 (Nitric oxide(NO)-mediated relaxation of bovine retractor penis muscle)

  • 양일석;장희정;강동묵;이장헌
    • 대한수의학회지
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    • 제36권3호
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    • pp.599-605
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    • 1996
  • This study was designed to examine the mechanism of penile erection in adult bull by analyzing the responses of bovine proximal retractor penile muscle strips(BRP) to electtical field stimulation(EFS), exogenous nitric oxide(NO), NO synthesis precursor(L-arginine), NO synthase inhibitors(L-NAME, L-NMMA), guanylate cyclase inhibitor(methylene blue) and nonspecific potassium channel blocker(tetraethylammonium, TEA) treatments. Isometric tension of BRP was measured using physiograph. Results were summarized as follows: 1. EFS of nonadrenergic noncholinrgic(NANC) nerve in BRP produced frequency-dependent inhibitory responses to the contraction induced by co-treatment of epinephrine, guanethidine and atropine. The inhibitory responses to EFS were blocked by tetrodotoxin(TTX, $1{\mu}M$). 2. Treatment of L-NAME ($10,\;20{\mu}M$) inhibited the relaxation to EFS whereas L-NMMA ($100{\mu}M$) had no effect. 3. Treatment of NO($20,\;40{\mu}M$; as an acidified solution of $NaNO_2$) induced concentration-dependent relaxation whereas preincubation of TTX($1{\mu}M$) and L-NAME($20{\mu}M$) had no effect on the relaxation response. 4. L-arginine treatment(10mM) blocked the inhibitory effect of L-NAME($20{\mu}M$). 5. Pretreatment of methylene blue($40{\mu}M$) reduced the NANC-induced relaxation of BRP. 6. Tetraethylammonium(TEA, 80mM) reduced NANC relaxation. These results suggest that NO may act as a NANC neurotransmitter in BRP and the effects might be mediated by cGMP and potassium channel.

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토끼 적출 위 평활근의 운동성에 대한 transmural stimulation의 효과 (Effect of transmural stimulation to motility on isolated gastric smooth muscle)

  • 김주헌;심철수;홍용근
    • 대한수의학회지
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    • 제39권3호
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    • pp.472-477
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    • 1999
  • To elucidate the action of the cholinergic and adrenergic nerve on isolated gastric fundus smooth muscle of rabbit, the effects of electrical transmural stimulation were investigated in the presence of atropine, cholinergic receptor blocker; phentolamine, nonselective ${\alpha}$-adrenergic receptor blocker; propranolol, nonselective ${\beta}$-adrenergic receptor blocker and L-arginine from the isometric contraction of physiological recording system. 1. The contractile response induced by electrical transmural stimulation was increased as the frequency(1~32Hz)-dependent manner on the isolated gastric fundus smooth muscle. 2. The contractile response induced by electrical transmural stimulation was markedly inhibited by the pretreatment of atropine($1{\mu}M$). 3. The contractile response induecd by electrical transmutal stimulation was inhibited by the pretreatment of phentolamine($1{\mu}M$). 4. The relaxative response induced by electrical transmural stimulation on presence of atropine ($1{\mu}M$) was inhibited by the pretreatment of propranolol($1{\mu}M$). 5. The relaxative responses on precontraction induced by histamine($10{\mu}M$) with guanethidine ($50{\mu}M$) and atropine($1{\mu}M$) by electrical transmural stimulation were increased by L-arginine (1mM). These findings suggest that it was the excitatory action of cholinergic and ${\alpha}$-adrenergic nerve, and the inhibitory action of ${\beta}$-adrenergic nerve and nonadrenergic noncholinergic nerve on the isolated gastric fundus smooth muscle of rabbit.

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Electrically Stimulated Relaxation is not Mediated by GABA in Cat Lower Esophageal Sphincter Muscle

  • Park Sun-Young;Shin Chang-Yell;Song Hyun-Ju;Min Young-Sil;La Hyen-O;Lee Jun-Woo;Kim Do-Young;Je Hyun-Dong;Sohn Uy-Dong
    • Archives of Pharmacal Research
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    • 제29권5호
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    • pp.400-404
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    • 2006
  • This study examined the effect of Gamma-Amino butyric acid (GABA) and selective GABA receptor related drugs on the electrically stimulated relaxation in the lower esophageal sphincter muscle (LES) of a cat. Tetrodotoxin $(10^{-6}\;M)$ suppressed the electrically stimulated (0.5-5 Hz) relaxation of the LES. However, guanethidine $(10^{-6}\;M)$ and atropine $(10^{-6}\;M)$ had no effect indicating that the relaxations were neurally mediated via the nonadrenergic and noncholinergic (NANC) pathways. NG-nitro-L-arginine methyl ester ($10^{-4}M$, L-NAME) also inhibited the relaxant response but did not completely abolish the electrically stimulated relaxation with 60% inhibition, which suggests the involvement of nitric oxide as an inhibitory transmitter. This study examined the role of GABA, an inhibitory neurotransmitter, on neurally mediated LES relaxation. GABA ($10^{-3}-10^{-5}M$, non selective receptor agonist), muscimol ($10^{-3}-10^{-5}M$, GABA-A agonist), and baclofen ($10^{-3}-10^{-5}M$, GABA-B agonist) had no significant effect on the electrically stimulated relaxation. Moreover, bicuculline ($10^{-5}M$, GABA-A antagonist) and phaclofen ($10^{-5}M$, GABA-B antagonist) had no inhibitory effect on the electrically stimulated relaxation. This suggests that GABA and the GABA receptor are not involved in the electrically stimulated NANC relaxation in the cat LES.

오가피(五加皮) Extract의 혈압강하작용(血壓降下作用)에 관(關)한 연구(硏究) (A Study on the Hypotensive Action of Acanthopanax Extract in Rabbit)

  • 고석태;김성원;임동윤
    • Journal of Pharmaceutical Investigation
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    • 제8권1호
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    • pp.6-16
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    • 1978
  • We obtained 4 kinds of extract fraction from Acanthopanacis Radicis Cortex and studied on the influence to the blood pressure of rabbit. These 4 fractions were obtained as follows; Fraction I was insoluble fraction by 99% ethanol from 80% methanol extract of Acanthopanacis Radicis Cortex, fraction II, precipitated fraction by ether from 99% ethanol soluble fraction of 80% methanol extract of Acanthopanaacis Radicis Cortex, fraction III, no precipitated fraction by ether from 99% ethanol soluble fraction of above 80% methanol extract and fraction IV, water extract of Acanthopanacis Radicis Cortex. All of fractions, when administered into ear-vein of rabbit, produced fall of blood pressure. Among these 4 fractions, although fraction III was not only the most potent but had the greatest efficacy, we observed the mechanism of hypotensive action of Acanthopanacis Radicis Cortex, making use of fraction II which was thought as a comparatively pure fraction. Hypotensive action of fraction II (APF II) was not affected by vagotominization but markedly inhibited by atropine. Pretreatment of bethanidine showed a tendency to weaken the depressor action of APF II, although it was not a significant result, but diphenhydramine did not influence APF II action. Phentolamine, guanethidine and chlorisondamine inhibited significantly the hypotensive action of APF II. APF II elicited the potentiation of norepinphrine pressor action dependent on the time-factor whereas it did not influence angiotesin pressor action. It is seemed that APF II exhibited hypotensive action, causing peripheral muscarinic-effect and centrally induced sympatholytic action.

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Characteristics of 5-Hydroxytryptamine Receptors Involved in Contraction of Feline Ileal Longitudinal Smooth Muscle

  • Wang, Yiyi;Park, Sun-Young;Oh, Kyung-Hoon;Min, Young-Sil;Lee, Yun-Jeong;Lee, Seok-Yong;Sohn, Uy-Dong
    • The Korean Journal of Physiology and Pharmacology
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    • 제15권5호
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    • pp.267-272
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    • 2011
  • A number of studies have demonstrated that 5-hydroxytryptamine (5-HT) can induce muscle contraction or relaxation response and enhance secretion in the gastrointestinal tract via a multiplicity of 5-HT receptor subtypes. In the present study, we investigated the pharmacological characterization of the 5-HT-induced contractile response in longitudinal smooth muscle isolated from the feline ileum. Addition of 5-HT into muscle chambers enhanced the basal tone and spontaneous activity in a concentration-dependent manner. The neurotoxin tetrodotoxin did not alter the 5-HT-induced contraction of the longitudinal muscles. Neither atropine nor guanethidine affected the contraction. The 5-HT agonists, 5-methylserotonin hydrochloride and mosapride, also evoked concentration-dependent contractions. The 5-HT-induced contraction was enhanced by the $5HT_2$ receptor antagonist ketanserin and the $5-HT_3$ receptor antagonist ondansetron but was inhibited by the 5-$HT_1$ receptor antagonist methysergide and 5-$HT_4$ receptor antagonist GR113808. These results indicate that 5-$HT_1$ and 5-$HT_4$ receptors may mediate the contraction of the 5-HT-induced response and 5-$HT_2$ and 5-$HT_3$ receptors may mediate 5-HT-induced relaxation in feline ileal longitudinal smooth muscles.

The Role of Nitric Oxidei in Non-Adrenergic Non-Cholinergic Relaxation in the Guinea-Pig Gstric Fundus

  • Kim, Myung-Woo;Hong, Sung-Cheul;Park, Mi-Sun;Hong, Eun-Ju;Choi, Ji-Eun
    • Archives of Pharmacal Research
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    • 제18권2호
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    • pp.121-128
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    • 1995
  • The role of nitric oxide (NO) in non-adrenegic non-cholinergic (NANC) neurotransmission was studied on circular muscle strips of the dorsal part of the fuinea-pig gastric fundus. In the presence of atropine and guanethidine, a low frequency-dependent relaxsations which were not affected by adrenergic and cholinergic blockage but abolished by tetrodotoxin. $N^G$-nitro-L-arginine (L-NNA), a stereospecific inhibitor of NO-biosynthesis, inhibited the relaxations induced by electrical stiumulations but not the relaxations to exogenous nitric oxide. The effect of L-NNA was prevented by L-arginine, the precursor of the NO biosynthesis but not by its enantiomer, D-arginine. Exgenous administration of No caused concentration -dependent relaxations which showed a similarity to those obtained with electrical simultaion. Hemoglobin, a NOscavenger, abolished the NO-induced relaxations and also markedly reduced those induced by electrical simultaion. The inhibitory effect os hemoglobin was similar to that of L-NNA. Application of ATP caused weak relaxations compared with those to electrical stimultaion, which were unaffected by L-NNA. Exogenously applied vasoactive intestinal polypeptide (VIP) induced concentration-dependent relaxation which was not affected by L-NNA. These results suggest that NO is produced and released mainly as a neurotransmitter from enteric neurons during NANC relaxation induced by low frequencies and short trains of electrical simulation and has a main role in NANC neurotransmission at relaxation induced by these electrical simultaions in the guinea-pig gastric fundus.

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혈관평활근에 대한 Methylene Blue의 수축작용 - 가토흉부대동맥근과 돼지장간막동맥근 - (Contractile Response of Methylene Blue on Vascular Smooth Muscles - Rabbit Thoracic Aorta and Porcine Mesenteric Artery -)

  • 백영홍;최수용;김재하;조남기
    • 대한약리학회지
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    • 제26권1호
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    • pp.13-23
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    • 1990
  • 가토흉부대동백근에서 MeB와 gentian violet는 용량-의존성 수축반응을 일으켰으나 evans blue와 eosine yellowish는 전혀 수축반응을 일으키지 못하였다. MeB는 돼지 장간막 동맥에서도 용량-의존성 수축반응을 일으켰다. 양표본에서 MeB $10^{-4}$ M의 단회투여는 수축반응에 이어 이완반응이 나타나는 양상성 반응을 일으켰으나, tyramine은 지속적인 수축반응을 일으켰다. Tyramine의 수축반응은 반복적이었으나 MeB의 그것은 일차 수축반응후 $3{\sim}5$시간후까지도 반복되지 않았다. Tyramine $10^{-4}$ M의 최대 수축반응 상태에서 MeB $10^{-4}$ M의 추가투여는 현저한 추가수축반응을 일으켰으나 반대로 MeB의 최대수축반응 상태에서 tyramine의 추가투여는 그이상의 수축반응을 일으키지 못하였다. Tyramine과 MeB 수축반응은 교감신경계 악물로 소실 또는 유의하게 억제되었다. Tyramine 수축반응은 MeB 수축보다 guanethidine과 6-hydroxydopamine에 더 예민한 반면, $Ca^{2+}-free$ PSS와 reserpine에 대하여는 MeB 수축반응이 tyramine 수축보다 더 예민하였고 prazosin하에서는 두 수축반응이 비슷하게 억제되었다. MeB 수축반응은 6-hydroxydopamine으로 유의하게 억제는 되었으나 소실되지 않았고, MeB 수축반응 관찰후에는 tyramine 뿐만아니라 6-hydroxydopamine의 수축반응도 소실되었다. 이상의 성적은 가토흉부대동맥과 돼지 장간막동맥에서 MeB 수축반응은 부분적으로 세포외 calcium 의존성이고 adrenaline성 신경발단으로부터의 norepinephrine유리에 기인하며, MeB의 norepinephrine유리 및 고갈작용이 tyramine 또는 6-hydroxydopamine의 작용보다 더 강력함을 시사하고 있다.

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기니피그 유문동에서 기록되는 억제성 접합부 전압에 미치는 전해질과 약물의 효과 (Effects of Electrolytes and Drugs on the Inhibitory Junction Potentials Recorded from the Antrum of Guinea-pig Stomach)

  • 구용숙;서석효;이석호;황상익;김기환
    • The Korean Journal of Physiology
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    • 제24권1호
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    • pp.1-13
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    • 1990
  • 기니피그 유문동 부위를 절제한 뒤 점막층을 박리하고 윤상근 주행방향으로 길이 10 mm, 너비 2 mm 되는 조직 절편을 만들어 수평형 실험용기에 넣어 핀으로 고정하였다. 유리미세전극을 세포내에 삽입하여 서파를 기록하면서 조직양편에 설치한 백금자극전극(직경 0.5 mm)에 강도 $10{\sim}50V$, 기간 $50{\sim}100\;{\mu}s$ 되는 자극파를 주어 신경-근 부위의 접합부 전압을 기록하여 다음과 같은 결과를 얻었다. 1) 위저부에서는 흥분성 접합부 전압이, 유문동에서는 억제성 접합부 전압이 기록되었고 유문동의 억제성 접합부 전압은 atropine($10^{-6}\;M)$과 guanethidine$(5{\times}10^{-6}\;M)$을 동시 처치했을 때 영향을 받지 않았다. 2) 세포외 $Ca^{2+}$ 농도를 높였을 때(7 mM)는 억제성 접합부 전압의 크기가 증가하고 세포외 $Mg^{2+}$ 농도를 높였을 때(5 mM)와 verapamil($10^{-5}\;M$)을 주었을 때는 억제성 접합부 전압의 크기가 감소하였다. 3) 아데노신을 투여하였을 때와 ATP를 투여했을 때는 모두 억제성 접합부 전압의 크기가 감소하였다. 4) 5-HT$(10^{-6}\;M)$을 투여했을 때는 서파크기에는 변화없이 억제성 접합부 전압의 크기만 감소하였고 5-HT type 2 길항제인 ketanserin$(5{\times}10^{-6}\;M)$을 투여했을 때는 서파크기는 현저히 감소한 반면 억제성 접합부 전압크기는 변화가 없었다. 이상의 결과로부터 유문동에서 기록되는 억제성 접합부 전압은 비아드레날린, 비콜린 동작성 신경에 의해 유발되며 $Ca^{2+}$은 비아드레날린 비콜린 동작성 신경에서 신경흥분전달물질의 유리를 촉진시키고 분비된 신경흥분전달물질로 인해 $Ca^{2+}$ 의존성 $K^{+}$ 통로가 활성화되어 억제성 접합부 전압의 크기를 증가시킨다고 사료된다.

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