• 제목/요약/키워드: adrenergic nerve

검색결과 50건 처리시간 0.022초

흰쥐의 신경병증성(神經病症性) 통증(痛症) 모델에서 양로(養老) 자침(刺鍼)의 진통효과(鎭痛效果) (Analgesic effect of acupuncture applied to $SI_6$ in a rat model of neuropathic pain)

  • 구성태;양윤정;김산;유인식;임규상
    • Korean Journal of Acupuncture
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    • 제21권3호
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    • pp.59-76
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    • 2004
  • Objectives : The usage of acupuncture has gained popularity for certain chronic pain conditions. However, the efficacy of acupuncture in various diseases has not been fully established and the underlying mechanism is not clearly understood. In the present study, the effect of electroacupuncture (EA) applied to yangno$(SI_6)$ on the neuropathic pain was examined. Methods : A common source of persistent pain in human is a neuropathic pain. Neuropathic pain was induced by tight ligation of L5 spinal nerve. When rats developed pain behaviors, EA was applied for 30 min. under enflurane anesthesia with repeated train stimuli at the intensity of 10X of muscle twitch threshold. The foot withdraw latency of the hind limb was measured for an indicator of pain level after each manipulation. Results : EA increased the mechanical threshold of the foot in the rat model of neuropathic pain significantly for the duration of 1 hr. suggesting a partial alleviation of pain. EA applied to SI6 point produced a significant improvement of mechanical sensitivity of the foot lasting for at least 1 h. However, $ST_{36}$ point did not produce any significant increase of mechanical sensitivity. The improvement of mechanical threshold was interpreted as an analgesic effect. The analgesic effort was specific to the acupuncture point since the analgesic effect on the neuropathic pain model could not be mimicked by EA applied to a point, $ST_{36}$. In addition, this analgesic effect of EA is mediated by a adrenergic mechanism of descending control of spinal cord from the brain. Conclusions : The data suggest that EA produces a potent analgesic effect on the neuropathic pain model in the rat; and 2) that EA-induced analgesia is mediated by a adrenergic mechanism of descending control in a point specific manner.

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Nitric oxide에 의한 수퇘지 음경후인근의 비아드레날린 비콜린 동작성 이완 II. 비아드레날린 비콜린성 신경의 전장자극과 S-nitrosothiols에 의한 돼지 음경후인근의 이완 효과 비교 (Nitric oxide(NO) mediating non-adrenergic non-cholinergic(NANC) relaxation in the boar retractor penis muscle II. Comparison of the relaxant properties induced by nonadrenergic, noncholinergic nerve stimulation and S-nitrosothiols in the porcine retractor penis muscle)

  • 문규환;김태완;강동묵;이완;양일석
    • 대한수의학회지
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    • 제35권3호
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    • pp.459-469
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    • 1995
  • As S-nitrosothiols were proposed as nitrergic carriers in vascular and nonvascular smooth muscle, we have investigated the relaxant properties of several S-nitrosothiols in the porcine retractor penis(PRP) muscle and compared them with the effects of exogenously added NO, electrical field stimulation(EFS) of NANC nerves and sodium nitroprusside(SNP). Also the influences of oxyhemoglobin and hydroquinone on the relaxant responses were investigated. In addition, effects of NO on membrane potentials and its involvement in the generation of inhibitory junction potential(IJP) were investigated with conventional intracellular microelectrode technique. The results were summerized as follows. 1. Frequency-dependent relaxations of PRP muscle were induced by EFS to NANC nerve. Tetrodotoxin($1{\times}10^{-6}M$) abolished the relaxations of PRP muscle induced by EFS, and L-NAME(($2{\times}10^{-5}M$) and methylene blue($4{\times}10^{-5}M$) inhibited the relaxations. L-NAME-induced inhibition of the relaxations was reversed by L-arginine($1{\times}10^{-3}M$), but not by D-arginine. 2. Exogenous NO($1{\times}10^{-5}-1{\times}10^{-4}M$), sodium nitroprusside(($1{\times}10^{-7}-1{\times}10^{-4}M$) induced dose-dependent relaxations of PRP muscle. All S-nitrosothiols($1{\times}10^{-7}-1{\times}10^{-4}M$) tested relaxed the PRP muscle in dose-dependent manner and the potency order was SNAP>GSNO>CysNO>SNAC. 3. Oxyhemoglobin($5{\times}10^{-5}M$) blocked the relaxation induced by exogenous NO and inhibited EFS-, S-nitrosothiols-, and SNP-induced relaxation. 4. Hydroquinone($1{\times}10^{-4}M$) also abolished the relaxations induced by exogenous NO, and reduced the relaxations induced by S-nitrosothiols, but did not affect EFS- and SNP-induced relaxations. 5. SNP($2{\times}10^{-6}-5{\times}10^{-6}M$) relaxed muscle strips but the membrane potentials were not affected. 6. EFS with several pulses(1ms, 2Hz, 80V) produced an inhibitory junction potential(IJP) with muscle relaxation. They were abolished by TTX($2{\times}10^{-6}M$). $N^G$-nitro-$_{\small{L}}$-arginine(L-NNA, $2{\times}10^{-5}M$) abolished the muscle relaxation, but had no effect on IJP.

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기니픽의 회장평활근에서 NANC 신경전달물질의 작용기전 (Action Mechanisms of NANC Neurotransmitters in Smooth Muscle of Guinea Pig Ileum)

  • 김종훈;강복순;이영호
    • The Korean Journal of Physiology and Pharmacology
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    • 제1권6호
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    • pp.783-796
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    • 1997
  • The relaxation induced by stimulation of the inhibitory non-adrenergic, non-cholinergic (iNANC) nerve is mediated by the release of iNANC neurotransmitters such as nitric oxide (NO), vasoactive intestinal peptide (VIP) and adenosine triphosphate (ATP). The mechanisms of NO, VIP or ATP-induced relaxation have been partly determined in previous studies, but the detailed mechanism remains unknown. We tried to identify the nature of iNANC neurotransmitters in the smooth muscle of guinea pig ileum and to determine the mechanism of the inhibitory effect of nitric oxide. We measured the effect of NO-donors VIP and ATP on the intracellular $Ca^{2+}$ concentration$([Ca^{2+}]_i)$, by means of a fluorescence dye(fura 2) and tension simultaneously in the isolated guinea pig ileal smooth muscle. Following are the results obtained. 1. Sodium nitroprusside $(SNP:10^{-5}\;M)$ or S -nitro-N-acetyl-penicillamine $(SNP:10^{-5}\;M)$ decreased resting $[Ca^{2+}]_i$ I and tension of muscle. SNP or SNAP also inhibited rhythmic oscillation of $[Ca^{2+}]_i$ and tension. In 40mM $K^+$ solution or carbachol ($(CCh:10^{-6}\;M)$-induced precontracted muscle, SNP decreased muscle tension. VIP did not change $[Ca^{2+}]_i$ and tension in the resting or precontracted muscle, but ATP increased resting $[Ca^{2+}]_i$ and tension in the resting muscle. 2. 1H-[1,2,4]oxadiazol(4,3-a)quinoxalin-1-one $(ODQ:1\;{\mu}M)$, a specific inhibitor of soluble guanylate cyclase, limited the inhibitory effect of SNP 3. Glibenclamide $(10\;{\mu}M)$, a blocker of $K_{ATP}$ channel, and 4-aminopyridine (4-AP:5 mM), a blocker of delayed rectifier K channel, apamin $(0.1\;{\mu}M)$, a blocker of small conductance $K_{Ca}$ channel had no effect on the inhibitory effect of SNP. Iberiotoxin $(0.1\;{\mu}M)$, a blocker of large conductance $K_{Ca}$ channel, significantly increased the resting $[Ca^{2+}]_i$, and tension, and limited the inhibitory effect of SNP. 4. Nifedipine $(1\;{\mu}M)$ or elimination of external $Ca^{2+}$ decreased not only resting $[Ca^{2+}]_i$ and tension but also oscillation of $[Ca^{2+}]_i$ and tension. Ryanodine $(5\;{\mu}M)$ and cyclopiazonic acid $(10\;{\mu}M)$ decreased oscillation of $[Ca^{2+}]_i$ and tension. 5. SNP decreased $Ca^{2+}$ sensitivity of contractile protein. In conclusion, these results suggest that 1) NO is an inhibitory neurotransmitter in the guinea pig ileum, 2) the inhibitory effect of SNP on the $[Ca^{2+}]_i$ and tension of the muscle is due to a decrease in $[Ca^{2+}]_i$ by activation of the large conductance $K_{Ca}$ channel and a decrease in the sensitivity of contractile elements to $Ca^{2+}$ through activation of G-kinase.

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흰쥐 정관의 수축성에 미치는 Octreotide의 영향 (Effects of Octreotide on the Contractility of Isolated Rat Vas Deferens)

  • 장선애;권오철;하정희;이광윤;김원준
    • Journal of Yeungnam Medical Science
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    • 제10권1호
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    • pp.144-156
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    • 1993
  • Octreotide는 somatostatin 동족체로서 8개의 aminoacid로 구성된 합성 polypeptide이다. 이는 외분비선과 내분비선, 특히 위의 분비기능과 췌장분비 기능을 억제하는 작용이 강하며 somatostatin에 비하여 체내 반감기가 길고 장기에 대한 선택성이 높기 때문에 소화성 궤양에 의해 유발되는 출혈, 급성췌장염, 그리고 소화기관의 분비선에 나타나는 종양의 치료에 대한 적용이 시도되고 있다. 저자등은 somatostatin이 말초 교감신경에 존재하며, 신경전달인자 또는 신경조정인자로서 작용할것이라는 보고와 임상적용시 혈압과 심박동수를 감소시킨다는 보고에 흥미를 가지고 그 유도체인 octreotide가 말초 교감신경에 미치는 작용을 관찰하기 위하여 다음과 같은 실험을 하였다. 흰쥐 (Sprague-Dawley)의 전립선 부위 정관 절편을 적출 근편 실험조에 현수하여 등척성 장력을 측정하였다. 흰쥐 적출정관은 전기장 자극(duration : 1 mSec, voltage: 50 V, frequency: 5 Hz or 30 Hz, train: 10 Sec)에 대하여 first phasic component (FPC)와 second tonic component (STC)로 구성된 수축 반응을 나타내었으며, 이러한 수축반응은 tetrodotoxin($10^{-6}M$) 전처치로 소실되었다. Octreotide는 전기장 자극에 의해 유발되는 수축 반응을 FPC, STC 모두 농도의존적으로 억제하였다. 그리고 24 시간 전에 reserpine(1 mg/kg, IP)을 전처치하여 norepinephrine을 고갈시킨 흰쥐에서 적출한 정관 절편과 beta-gamma-methylene ATP를 전처치하여 퓨린성 수용체를 탈감작시킴으로써 ATP의 작용을 배재한 정관절편의 전기장 유발 수축을 공히 억제하였다. 이러한 octreotide의 모든 수축 억제 작용들은 5 Hz의 전기장 자극을 가하였을 때, 30 Hz의 전기장 자극을 가하였을 때 보다 더 강하게 나타났다. 그러나 octreotide는 정관 절편의 기본장력에는 영향을 미치지 않았으며, 외부에서 첨가한 norepinephrine과 ATP에 의해 유발되는 수축반응에는 영향을 미치지 않았다. 이상의 결과로 미루어 보아 octreotide는 흰쥐적출 정관의 교감신경성 신경원으로부터 ATP와 norepinephrine의 유리를 억제함으로써 그 수축성을 억제하는 것으로 사료된다.

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토끼 위체에서 비-아드레날린 비-콜린성 이완반응의 하행성 감소 (Downward Decrease of Non-adrenergic Non-cholinergic Relaxation in the Rabbit Gastric Body)

  • 홍은주;최지은;박미선;김명우;최수경;홍승철
    • 약학회지
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    • 제41권3호
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    • pp.389-398
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    • 1997
  • Non-adenergic non-cholinergic (NANC) innervation on the circular muscle of the rabbit gastric body was investigated by observing the magnitudy of relaxations induced by the elec trical field stimulation (EFS). Strips were cut from the greater curvature of the gastric body and stimulated with 5s trains of 0.5 ms pulses at 1-20 Hz, 40 V. The EFS induced transient frequency-dependent contractons, followed by a slowly recovering relaxation ewpecially at higher frequency of the EFS. In the presence of atropine and guanethidine, the contractions were virtually abolished, while the frequency-dependent relaxations by the EFS remained unaffected. The magnitude of relaxations progressively decreased as the location of the strips gets closer to the bottom of the gastric body. The relaxations were ablished by tetrodotoxin, indicating that their orgin is the NANC nerve stimulation. NG-nitro-L-arginine (L-NNA, 10-$100{\mu}M$), the inhibitor of nitric oxide (NO)-synthase, caused a concentration-dependent inhibition of the NANC relaxations. The inhibitory effects of L-NNA were not affected gy the location of the strips and were reversed by L-arginine, the precursor of NO-biosynthesis. Hemoglobin (20-$60{\mu}M$), a NO scavenger, inhibited the NANC relaxation s in a concentration-dependent manner. This inhibition was more prominent in the NANC relaxations observed in the lower portion of the gastric body and the relaxations induced ly lower frequencies of the EFS. Methyelne blue (10-$100{\mu}M$), an inhibitor of cytosolic guanylate cyclase, markedly inhibited the NANC relaxations, almost abolishing the response at a higher dose ($100{\mu}M$). These results suggest that NANX innervation of the rabbit gastric body progeressively decrease as he location of the strips gets closer to the bottom of the gastric body, and that the NANC relaxation is primarily mediated by NO-guanosine 3',5'-cyclic monophophate (cyclic GMP).

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Neuroendocrine Control of Gonadotropin Secretion during the Menstrual Cycle

  • Ryu, Kyung-Za
    • 대한약리학회지
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    • 제23권2호
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    • pp.57-75
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    • 1987
  • Two modalities of gonadotropin secretion, pulsatile gonadotropin and preovulatory gonadotropin surge, have been identified in the mammals. Pulsatile gonadotropin secretion is modulated by the pulsatile pattern of GnRH release and complex ovarian steroid feedback actions. The neural mechansim that regulates the pulsatile release of GnRH in the hypothalamus is called "GnRH pulse generator". Ovarian steroids, estradiol and progesterone, appear to exert thier feedback effects both directly on the pituitary to modulate gonadotropin release and on a hypothalamic site to modulate GnRH release; estradiol primarily affects the amplitude while progesterone decreases the frequency of the pulsatile GnRH. Steroid hormones are known to affect catecholamine transmission in brain. MBH-POA is richly innervated by NE systems and close apposition of NE terminals and GnRH cell bodies occurs in the MBH as well as in the POA. NE normally facilitates pulsatile LH release by acting through ${\alpha}-receptor$ mechanism. However, precise nature of facilitative role of NE transmission in maintaining pulsatile LH has not been clearly understood. Close apposition of DA and GnRH terminals in ME might permit DA to influence GnRH release. Action of DA transmission probably is mediated by axo-axonic contacts between GnRH and DA fibers in the ME. Dopamine transmission does not normally regulate pulsatile LH release, but under certain conditions, increased DA transmission inhibit LH pulse. Endogenous opioid acts to suppress the secretion of GnRH into hypophysial portal circulation, thereby inhibiting gonadotropin secretion. However, an interaction between endogenenous opioid peptides and gonadotropin release is a complex one which involves ovarian hormones as well. LH secretion appears to be most suppressed by endogenenous opioids during the luteal phase, at a time of elevated progesterone secretion. The arcuate nucleus contains not only cell bodies for GnRH and ${\beta}-endorphin$ but also a dense aborization of fibers suggesting that GnRH release is changed by the interactions between GnRH and ${\beta}-endorphin$ cell bodies within the arcuate nucleus. The frequency and amplitude of pulsatile LH release seem to be increased during the preovulatory gonadotropin surge. Estradiol exerts positive feedback action on the hypothalamo-pituitary axis to trigger preovulatory LH surge. GnRH is also crucial hormonal stimulus for preovulatory LH surge. It is unlikely, however, that increased secretion of GnRH during the preovulatory gonadotropin surge represents an obligatory neural signal for generation of the LH discharge in primates including human. Modulation of preovulatory LH surge by catecholamines has been studied almost exclusively in rats. NE and E may be involved in distinct way to accumulate GnRH in the MBH and its release into the hypophysial portal system during the critical period for LH surge on proestrus in rats. However, the mechanisms whereby augmented adrenergic transmission may facilitate the formation and accumulation of GnRH in the ME-ARC nerve terminals before the LH surge have not been clearly understood.

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Nitric oxide에 의한 수퇘지 음경후인근의 비아드레날린 비콜린 동작성 이완 I. 돼지 음경후인근의 비아드레날린 비콜린성 이완을 매개하는 신경전달물질 : nitric oxide와 vasoactive intestinal polypeptide (Nitric oxide(NO) mediating non-adrenergic non-cholinergic(NANC) relaxation in the boar retractor penis muscle I. Mediators of nonadrenergic, noncholinergic relaxation of porcine retractor penis muscle : nitric oxide and vasoactive intestinal polypeptide)

  • 문규환;김점용;김태완;강동묵;양일석
    • 대한수의학회지
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    • 제35권3호
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    • pp.447-458
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    • 1995
  • This study was carried out to characterize nonadrenergic, noncholinergic(NANC) relaxation of porcine retractor penis(PRP) muscle induced by electrical field stimulation(EFS) and to investigate the actions of niric oxide(NO) and vasoactive intestinal polypeptide(VIP) as candidates for NANC neurotransmitters. Biphasic relaxations of PRP muscle were induced by EFS to NANC nerve. Rapid-phase relaxation was observed at low frequency(0.5-16Hz) and slow-phase relaxation followed during high frequency(8-60Hz). Both relaxations were frequency-dependent and TTX($1{\times}10^{-6}M$)-sensitive. L-NAME($2{\times}10^{-5}M$) inhibited the rapid-phase relaxation, but not the slow-phase relaxation. The inhibition of the rapid-phase relaxation with L-NAME was reversed by L-arginine ($1{\times}10^{-3}M$) but not by D-arginine($1{\times}10^{-3}M$). Methylene blue($4{\times}10^{-5}M$) reduced the rapid-phase relaxation. Exogenous No(ExoNO, $1{\times}10^{-5}-1{\times}10^{-4}M$) induced dose-dependent relaxations of PRP muscle. Oxyhemoglobin($5{\times}1^{-5}M$) blocked the relaxation induced by ExoNO and inhibited EFS-induced relaxation. Hydroquinone($1{\times}10^{-4}M$) also abolished the relaxation induced by ExoNO, but did not affect EFS-induced relaxation. L-NAME resistant slow-phase relaxation to EFS was inhibited by ${\alpha}$-chymotrypsin(2.5 U/ml). Both methylene blue($4{\times}10^{-5}M$) and Nethylmaleimide($1{\times}10^{-4}M$) reduced the slow-phase relaxation by EFS. [4-Cl-D-$Phe^6$, $Leu^{17}$]-VIP($3{\times}10^{-6}M$) inhibited the slow-phase relaxation by EFS. External applications of VIP ($1{\times}10^{-7}M$) caused relaxations that were simillar to the L-NAME resistant slow-phase relaxations induced by EFS, and relaxant effects of exogenous VIP were blocked by ${\alpha}$-chymotrypsin(2.5 U/ml).

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가토 신장기능에 미치는 측뇌실내 Yohimbine의 영향 (Influence of Intracerebroventricular Yohimbine on the Renal Function of the Rabbit)

  • 국영종;김경근;김세종
    • 대한약리학회지
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    • 제21권2호
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    • pp.119-127
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    • 1985
  • 신장의 기능은 중추신경계 특히 교감신경계의 큰 영향을 받고 있으므로 ${\alpha}$-adrenoceptor의 길항제로 알려진 yohimbine을 가토의 측뇌실내로 (i.c.v.) 투여하여 신장 기능의 변동을 관찰하였다. Yohimbine 10 ${\mu}g/kg$ i.c.v. 로써 일관성인 Na 배설 증가와 함께 뇨량, 신혈류 및 사구체 여과율의 증가 경향을 볼 수 있었으나, 투여량을 증가시키면 그와 같은 작용은 소실되고 100 ${\mu}g/kg$ 과 300 ${\mu}g/kg$에 있어서는 신혈류 및 사구체 여과율의 심한 감소와 함께 현저한 항이뇨 작용과 Na 배설의 감소가 관찰 되었다. 이때 전신 혈압은 일과성으로 증가를 나타내었다. Reserpine 전처치 가토에 있어서는 100 ${\mu}g/kg$ i.c.v. yohimbine에 의한 항이뇨, Na 배설 감소작용, 신혈류 역학의 감퇴등이 소실되어 유의한 변동을 관찰할 수 없었다. 이때 전신 혈압의 상승도 소실 되었다. 일측 신장 신경을 제거하고 반대측 신장을 대조로 둔 표본에 있어서 yohimbine 100 ${\mu}g/kg$을 측뇌실내로 투여하면 대조신에서는 정상 가토에서와 같은 전형적인 항이뇨 작용이 나타났으나, 제신경(실험)신에 있어서는 신혈류 역학에는 변동이 없으나 Na 및 K 배설과 Cosm 및 뇨량의 유의한 증가를 나타냈다. 이때 신세뇨관에서의 Na 재흡수가 억제되었다. 전신 혈압의 변동은 정상 가토에서와 같이 일과성인 증가를 볼 수 있었다. 이상의 실험으로, 가토 측뇌실내 yohimbine은 신기능에 대하여 두 가지 상반되는 영향을 미치며, 첫째는 교감신경 긴장도의 증가로써 신혈류 및 사구체 여과율을 감소시켜 항이뇨 및 Na 배설 감소를 초래하는 작용과, 둘째는 신경 경로를 통하지 않고, 아마도 humoral factor를 통하여 신세뇨관에서 Na 재흡수를 억제하는 작용이 복합적으로 나타내는 것을 알 수 있었다.

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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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마그네슘이온이 적출한 기니피그 대동맥평활근과 흰쥐 자궁평활근의 수축성에 미치는 효과에 관한 연구 (Effect of Magnesium on the Contractility of the Isolated Guinea-Pig Aortic and Rat Smooth Muscles)

  • 안혁;황상익
    • Journal of Chest Surgery
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    • 제23권3호
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    • pp.452-464
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    • 1990
  • It is well known that extracellular Calcium plays a very important role in several steps of smooth muscle excitability and contractility, and there have been many concerns about factors influencing the distribution of extracellular Ca++ and the Ca++ flux through the cell membrane of the smooth muscle. Based on the assumption that Mg++ may also play an important role in the excitation and contraction processes of the smooth muscle by taking part in affecting Ca++ distribution and flux, many researches are being performed about the exact role of Mg++, especially in the vascular smooth muscle. But yet the effect of Mg++ in the smooth muscle activity is not clarified, and moreover the mechanism of Mg++ action is almost completely unknown. Present study attempted to clarify the effect of Mg++ on the excitability and contractility in the multiunit and unitary smooth muscle, and the mechanism concerned in it. The preparations used were the guinea-pig aortic strip as the experimental material of the multiunit smooth muscle and the rat uterine strip as the one of the unitary smooth muscle. The tissues were isolated from the sacrificed animal and were prepared for recording the isometric contraction. The effects of Mg++ and Ca++ were examined on the electrically driven or spontaneous contraction of the preparations. And the effects of these ions were also studied on the K+ or norepinephrine contracture. All experiments were performed in tris-buffered Tyrode solution which was aerated with 100% 02 and kept at 35oC. The results obtained were as follows: 1] Mg++ suppressed the phasic contraction induced by electrical field stimulation dose-dependently in the guinea-pig aortic strip, while the high concentration of Ca++ never recovered the decreased tension. These phenomena were not changed by the a - or b - adrenergic blocker. 2]Mg++ played the suppressing effect on the low concentration [20 and 40 mM] of K+-contracture in the aortic muscle, but the effect was not shown in the case of 100mM K+-contracture. 3] Mg++ also suppressed the contracture induced by norepinephrine in the aortic preparation. And the effect of Mg++ was most prominent in the contracture by the lowest [10 mM] concentration of norepinephrine. 4] In both the spontaneous and electrically driven contractions of the uterine strip, Mg++ decreased the amplitude of peak tension, and by the high concentration of Ca++ the amplitude of tension was recovered unlike the aortic muscle. 5] The frequency of the uterine spontaneous contraction increased as the [Ca++] / [Mg++] ratio increased up to 2, but the frequency decreased above this level. 6] Mg++ decreased the tension of the low[20 and 40mM] K+-contracture in the uterine smooth muscle, but the effect did not appear in the 100mM K+-contracture. From the above results, the following conclusion could be made. 1] Mg++ seems to suppress the contractility directly by acting on the smooth muscle itself, besides through the indirect action on the nerve terminal, in both the aortic and uterine smooth muscles. 2] The fact that the depressant effect of Mg++ on the K+-contracture is in inverse proportion to an increase of K+ concentration appears resulted from the extent of the opening state of the Ca++ channel. 3] Mg++ may play a depressant role on both the potential dependent and the receptor-operated Ca++ channels. 4] The relationship between the actions of Mg++ and Ca++ seems to be competitive in uterine muscle and non-competitive in aortic strip.

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