• Title/Summary/Keyword: Noradrenalin

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Effects of Concomitant Treatment with Drugs Affecting Monoaminergic Systems on the Clozapine-induced Myoclonic Jerks in Partially Restrained Rats (부분 강박된 백서에서 클로자핀에 의해 유발된 간대성 근경련에 대한 단가아민계 작용 약물들의 영향)

  • Lee, Sang-Kyeong;Kim, Hyun;Kim, Sun-Hee;Park, Cheol-Gyoon;Yoon, Seong-Hwan;Kim, Young-Hoon
    • Korean Journal of Biological Psychiatry
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    • v.6 no.1
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    • pp.74-80
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    • 1999
  • This study was performed to investigate the mechanism of the clozapine-induced seizures in partially restrained rats by concomitant treatment with drugs affecting monoaminergic systems. Partially restrained rats treated with acute single doses of 10mg/kg clozapine exhibited myoclonic jerks (MJs). Drugs affecting the monoaminergic systems, including 2mg/kg haloperidol, 5mg/kg propranolol, 2mg/kg ritanserin, 20mg/kg fluoxetine, and 20mg/kg imipramine, were concomitantly treated with clozapine to observe the effects of these drugs on the MJs. The drugs were given intraperitoneally either as acute single doses(haloperidol, propranolol, ritanserin, and fluoxetine) or as chronic doses for 21days(haloperidol, imipramine, ritanserin, and fluoxetine). The effects of the concomitant treatment of other drugs on the clozapine-induced MJs were evaluated by comparison of the total numbers of the MJs between the clozapine-treated and concomitantly treated groups. The results were as follows. 1) Concomitant treatment with acute single doses of haloperidol, propranolol, and fluoxetine reduced the total numbers of the clozapine-induced MJs, while concomitant treatment with ritanserin did not. 2) Concomitant treatment with chronic doses of imipramine and ritanserin increased the total numbers of the MJs, while concomitant treatment with fluoxetine reduced them. Concomitant chronic treatment with haloperidol did not affect the numbers of the MJs. These results suggest that dopamine and serotonin, not noradrenalin may be involved in the clozapine-induced MJs in partially restrained rats. Future research needs to study the function of each subtype of monoaminergic receptors on the mechanism of the clozapine-induced seizure.

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Neural pathway innervating ductus Deferens of rats by pseudorabies virus and WGA-HRP (흰쥐에서 WGA-HRP와 pseudorabies virus를 이용한 정관의 신경로에 대한 연구)

  • Lee, Chang-Hyun;Chung, Ok-Bong;Ko, Byung-Moon;Lee, Bong-Hee;Kim, Soo-Myung;Kim, In-Shik;Yang, Hong-Hyun
    • Korean Journal of Veterinary Research
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    • v.43 no.1
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    • pp.11-24
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    • 2003
  • This experimental studies was to investigate the location of PNS and CNS labeled neurons following injection of 2% WGA-HRP and pseudorabies virus (PRY), Bartha strain, into the ductus deferens of rats. After survival times 4-5 days following injection of 2% WGA-HRP and PRV, the rats were perfused, and their brain, spinal cord, sympathetic ganglia and spinal ganglia were frozen sectioned ($30{\mu}m$). These sections were stained by HRP histochemical and PRY inummohistochemical staining methods, and observed with light microscope. The results were as follows ; 1. The location of sympathetic ganglia projecting to the ductus deferens were observed in pelvic ganglion, inferior mesenteric ganglion and L1-6 lwnbar sympathetic ganglia. 2. The location of spinal ganglia projecting to the ductus deferens were observed in T13-L6 spinal ganglia. 3. The PRY labeled neurons projecting to the ductus deferens were observed in lateral spinal nucleus, lamina I, II and X of cervical segments. In thoracic segments, PRY labeled neurons were observed in dorsomedial part of lamina I, II and III, and dorsolateral part of lamina IV and V. Densely labeled neurons were observed in intermediolateral nucleus. In first lumbar segment, labeled neurons were observed in intermediolateral nucleus and dorsal commisural nucleus. In sixth lumbar segment and sacral segments, dense labeled neurons were observed in sacral parasympathetic nuc., lamina IX and X. 4. In the medulla oblongata, PRV labeled neurons projecting to the ductus deferens were observed in the trigeminal spinal nuc., A1 noradrenalin cells/C1 adrenalin cells/caudoventrolateral reticular nuc., rostroventrolateral reticular nuc., area postrema, nuc. tractus solitarius, raphe obscurus nuc., raphe pallidus nuc., raphe magnus nuc., parapyramidal nuc., lateral reticular nuc., gigantocellular reticular nuc.. 5. In the pons, PRV labeled neurons projecting to the ductus deferens were ohserved in parabrachial nuc., Kolliker-Fuse nuc., locus cooruleus, subcooruleus nuc. and AS noradrenalin cells. 6. In midbrain, PRV labeled neurons projecting to the ductus deferens were observed in periaqueductal gray substance, substantia nigra and dorsal raphe nuc.. 7. In the diencephalon, PRV labeled neurons projecting to the ductus deferens were observed in paraventricular hypahalamic nuc., lateral hypothalamic nuc., retrochiasmatic nuc. and ventromedial hypothalamic nuc.. 8. In cerebrum, PRV labeled neurons projecting to the ductus deferens were observed in area 1 of parietal cortex. These results suggest that WGA-HRP labeled neurons of the spinal cord projecting to the rat ductus deferens might be the first-order neurons related to the viscero-somatic sensory and sympathetic postganglionic neurons, and PRV labeled neurons of the brain and spinal cord may be the second and third-order neurons response to the movement of smooth muscles in ductus deferens. These PRV labeled neurons may be central autonomic center related to the integration and modulation of reflex control linked to the sensory and motor system monitaing the internal environment. These observations provide evidence for previously unknown projections from ductus deferens to spinal cord and brain which may be play an important neuroanatornical basic evidence in the regulation of ductus deferens function.

Induces Vasodilatation of Rat Mesenteric Artery in vitro Mainly by Inhibiting Receptor-Mediated $Ca^{2+}$ -Influx and $Ca^{2+}$ -Release

  • Cao Yong-Xiao;Zheng Jian-Pu;He Jian-Yu;Li Jie;Xu Cang-Bao;Edvinsson Lars
    • Archives of Pharmacal Research
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    • v.28 no.6
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    • pp.709-715
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    • 2005
  • The purpose of this study was to investigate the effect of atropine on peripheral vasodilation and the mechanisms involved. The isometric tension of rat mesenteric artery rings was recorded in vitro on a myograph. The results showed that atropine, at concentrations greater than 1$\mu$M, relaxed the noradrenalin (NA)-precontracted rat mesenteric artery in a concentration-dependent manner. Atropine-induced vasodilatation was mediated, in part, by an endothelium-dependent mechanism, to which endothelium-derived hyperpolarizing factor may contribute. Atropine was able to shift the NA-induced concentration-response curve to the right, in a non-parallel manner, suggesting the mechanism of atropine was not mediated via the ${\alpha}_1$-adrenoreceptor. The $\beta$-adrenoreceptor and ATP sensitive potassium channel, a voltage dependent calcium channel, were not involved in the vasodilatation. However, atropine inhibited the contraction derived from NA and $CaCl_2$ in $Ca^{2+}$-free medium, in a concentration dependent manner, indicating the vasodilatation was related to the inhibition of extracellular $Ca^{2+}$ influx through the receptor-operated calcium channels and intracellular $Ca^{2+}$ release from the $Ca^{2+}$ store. Atropine had no effect on the caffeine-induced contraction in the artery segments, indicating the inhibition of intracellular $Ca^{2+}$ release as a result of atropine most likely occurs via the IP3 pathway rather than the ryanodine receptors. Our results suggest that atropine-induced vasodilatation is mainly from artery smooth muscle cells due to inhibition of the receptor-mediated $Ca^{2+}$-influx and $Ca^{2+}$-release, and partly from the endothelium mediated by EDHF.

Central Neural Pathways Projecting to the Acupoints B62 and K6 Using the Neural Tracer (신경추적자를 이용한 신맥과 조해에서 투사되는 신경원의 표지부위에 대한 연구)

  • Kim, Su-Hyun;Lee, Chang-Hyun;Yuk, Sang-Won;Lee, Kwang-Gyu;Lee, Tae-Young;Lee, Sang-Ryoung
    • Journal of Acupuncture Research
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    • v.18 no.2
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    • pp.51-66
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    • 2001
  • The purpose of this morphological studies was to investigate the central neural pathway projecting to the acupoints $B_{62}$ and $K_6$ using the neuroanatomical method following injection of transsynaptic neurotropic virus, pseudorabies virus(PRV-Ba and PRV-Ga) into the $B_{62}$ and $K_6$. After survival times of 96 hours following injection into the twenty rats with PRV-Ba(Bartha strain) and PRV-Ga(Bartha strain, ${\beta}$-galacidodase insertion). They were perfused, and their spinal cord and brain were frozen sectioned($30{\mu}m$). These sections were stained by X-gal histochemical and PRV immunohistochemical staining method, and observed with light microscope. The results were as follows : 1. In spinal cord, overlaped PRV-Ba and PRV-Ga labeled neurons projecting to the $B_{62}$ and $K_6$ were founded in thoracic, lumbar and sacral spinal segments. In thoracic spinal segments, Densely labeled areas were founded in lamina IV, V, VII(intermediolateral nucleus) and X areas. In lumbar segemnts, labeled areas were founded in lamina II, IV, V and X areas. In sacral spinal segments, labeled areas were founded in lamina IV, V and VI areas. 2. In brain, overlaped PRV-Ba and PRV-Ga labeled neurons projecting to the $B_{62}$ and $K_6$ were founded in the $A_1$ noradrenalin cells/$C_1$ adrenalin cells/caudoventrolateral reticular nucleus, rostroventrolateral reticular nuclens, nucleus tractus solitarius, area postrema, raphe obscurus nucleus, raphe paltidus nucleus, raphe magnus nucleus, lateral paragigantoceltular nucleus, lateral rcticular nucleus, gigantocellular nucleus, locus coeruleus, subcoeruleus nucleus, motor trigeminal nucleus, Kolliker-Fuse nucleus, $A_5$ cell group, central gray matter, oculomotor nerve, paraventricular hypothalamic nucleus, median eminence, amygdaloid nucleus, frontal cortex, forelimb area, hindlimb area, 1, 2 areas of parietal cortex and granular and agranular cortex. This results were suggest that overlaped PRV-Ba and PRV-Ga labeled areas projecting to the $B_{62}$ and $K_6$ may be related to the emotional relay pathway in the central autonomic center.

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Neuroanatomical Studies on the Acupoints Related to the Large Intestine (대장(大腸)과 관련(關聯)된 경혈(經穴)들의 신경해부학적(神經解剖學的) 연구(硏究))

  • Kang, Chang-Soo;Lee, sang-ryoung;Lee, Chang-Hyun;Nam, Yong-Jae;Lee, Kwang-Gyu
    • Journal of Acupuncture Research
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    • v.17 no.2
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    • pp.95-117
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    • 2000
  • The purpose of this morphological studies was to investigate the relation between the meridian, acupoints and viscera using neuroanatomical tracers. The common locations of the spinal ganglia, sympathetic chain ganglia, spinal cord and brain projecting to the large intestine meridian were observed following injection of transganglionic tracer, WGA-HRP and transsynaptic neurotropic virus, pseudorabies virus(PRV), Bartha strain(Ba) and PRV-Ba-Gal (Galactosidase)) into the the large intestine(cecum, colon and rectum), ST37 and LI4. After survival times of 96 hours following injection into the thirty rats with WGA-HRP, PRV-Ba and PRV-Ba-Gal. They were perfused, and their spinal ganglia, sympathetic chain ganglia, spinal cord and brain were frozen sectioned($30{\mu}m$). These sections were stained by HRP and X-gal histochemical and PRV immunohistochemical staining method, and observed with a light microscope. The results were as follows : 1. WGA-HRP labeled neurons innervating the large intestine were observed bilaterally within the T13-L4 sympathetic chain ganglia, and T9-11 spinal ganglia. WGA-HRP labeled neurons innervating ST37 were observed within the L3-5 sympathetic chain ganglia, and L2-4 spinal ganglia. WGA-HRP labeled neurons innervating LI4 were observed in the middle cervical ganglion and stellate ganglion, and C5-8 spinal ganglia. 2. In spinal cord, PRV-Ba labeled neurons projecting to the large intestine, ST37 and LI4 were found in thoracic, lumbar and sacral spinal segments. Densely labeled areas of each spinal cord segment were founded in lamina N, V, VII(intermediolateral nucleus), Ⅸ, X and dorsal nucleus. 3. In medulla oblongata, PRV-Ba and PRV-Ba-Gal labeled neurons projecting to the large intestine, ST37 and LI4 were commonly found in the A1 noradrenalin cells/C1 adrenalin cells/caudoventrolateral reticular nucleus, dorsal motor nucleus of vagus nerve, nucleus tractus solitarius, raphe obscurus nucleus, raphe pallidus nucleus, raphe magnus nucleus and gigantocellular nucleus. 4. In pons, PRV-Ba and PRV-Ba-Gal labeled neurons were commonly found in locus coeruleus, Kolliker-Fuse nucieus and A5 cell group. 5. In midbrain, PRV-Ba and PRV-Ba-Gal labeled neurons were commonly found in central gray matter. 6. In diencephalon, PRV-Ba and PRV-Ba-Gal labeled neurons were commonly found in paraventricular hypothalamic nucleus. These results suggest that PRV-Ba and PRV-Ba-Gal labeled common areas projecting to the large intestine may be correlated to that of the large intestine meridian, ST37 and LI4. Especially, These morphological results provide that interrelationship of meridian-acupoints -viscera may be related to the central autonomic pathways.

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Localization of the Neurons Projecting to the Gallbladder Meridian (족소양담경(足少陽膽經)에서 투사(投射)되는 신경원(神經元)의 표지부위(標識部位)에 대한 연구(硏究))

  • Ryuk Sang-Won;Lee Kwang-Gyu;Lee Sang-Ryoung;Kim Jum-Young;Lee Chang-Hyun;Lee Bong-Hee
    • Korean Journal of Acupuncture
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    • v.17 no.1
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    • pp.101-121
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    • 2000
  • The purpose of this morphological studies was to investigate the relation to the meridian, acupoint and nerve. The common locations of the spinal cord and brain projecting to the the gallbladder, GB34 and common peroneal nerve were observed following injection of transsynaptic neurotropic virus, pseudorabies virus(PRV), into the gallbladder, GB34 and common peroneal nerve of the rabbit. After survival times of 96 hours following injection of PRV, the thirty rabbits were perfused, and their spinal cord and brain were frozen sectioned($30{\mu}m$). These sections were stained by PRV immunohistochemical staining method, and observed with light microscope. The results were as follows: 1. In spinal cord, PRV labeled neurons projecting to the gallbladder, GB34 and common peroneal nerve were founded in thoracic, lumbar and sacral spinal segments. Densely labeled areas of each spinal cord segment were founded in lamina V, VII, X, intermediolateral nucleus and dorsal nucleus. 2. In medulla oblongata, The PRV labeled neurons projecting to the gallbladder, GB34 and common peroneal nerve were founded in the A1 noradrenalin cells/C1 adrenalin cells/caudoventrolateral reticular nucleus, rostroventrolateral reticular nucleus, medullary reticular nucleus, dorsal motor nucleus of vagus nerve, nucleus tractus solitarius, raphe obscurus nucleus, raphe pallidus nucleus, raphe magnus nucleus, gigantocellular nucleus, lateral paragigantocellular nucleus, principal sensory trigeminal nucleus and spinal trigeminal nucleus. 3. In Pons, PRV labeled neurons were parabrachial nucleus, Kolliker-Fuse nucleus and cochlear nucleus. 4. In midbrain, PRV labeled neurons were founded in central gray matter and substantia nigra. 5. In diencephalon, PRV labeled neurons were founded in lateral hypothalamic nucleus, suprachiasmatic nucleus and paraventricular hypothalamic nucleus. 6. In cerebral cortex, PRV labeled neuron were founded in hind limb area.This results suggest that PRV labeled common areas of the spinal cord projecting to the gallbladder, GB34 and common peroneal nerve may be first-order neurons related to the somatic sensory, viscero-somatic sensory and symapathetic preganglionic neurons, and PRV labeled common area of the brain may be first, second and third-order neurons response to the movement of smooth muscle in gallbladder and blood vessels.These PRV labeled neurons may be central autonomic center related to the integration and modulation of reflex control linked to the sensory system monitoring the internal environment, including both visceral sensation and various chemical and physical qualities of the bloodstream. The present morphological results provide that gallbladder meridian and acupoint may be related to the central autonomic pathways.

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Central Localization of the Neurons Projecting to the Urinary Bladder Meridian (족태양방광경(足太陽膀胱經)에서 투사(投射)되는 신경원(神經元)의 표지부위(標識部位)에 대(對)한 연구(硏究))

  • Kim Jeong-Yun;Jun Hong-Jae;Lee Sang-Ryoung;Lee Chang-Hyun;Chung Ok-Bong
    • Korean Journal of Acupuncture
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    • v.17 no.1
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    • pp.81-100
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    • 2000
  • Transsynaptic tracer이며 신경친화성 virus인 pseudorabies virus(PRV)를 방광(膀胱), 방광유(膀胱兪), 위중(委中) 및 중추(中極)에 주입(注入)한 후 4일간의 생존기간이 경과한 후 희생시켜 면역조직화학침액법(免疫組織化學染色法)에 의하여 뇌척수에 표지된 공통된 영역들을 비교하여 관찰한 결과는 다음과 같다. 1. 방광벽(膀胱壁), 방광유(膀胱兪), 위중(委中) 및 중추(中極)에서 척수에 투사된 영역은 흉수(胸髓), 요수(腰髓) 및 천수(薦髓)에 모두 표지되었으며 공통적으로 표지된 부위는 척수(脊髓)의 층판 IV, V, VII, IX, X영역에 표지되었으나 주로 강하게 표지된 공통된 영역은 층판 VII의 중간외측핵, 가슴기둥 및 층판 X영역이었다. 2. 방광벽(膀胱壁), 방광유(膀胱兪), 위중(委中) 및 중추(中極)에서 뇌(腦)에 투사된 공통된 영역은 연수(延髓)에서는 A1 noradrenalin cells/C1 adrenalin cells/caudoventrolateral reticular nucleus에서 양성반응을 나타내었다. 솔기핵의 경우 아핵인 불명솔기핵, 창백솔기핵 및 큰솔기핵에서 양성반응을 보였다. 다리뇌에서는 청색반점, Barrington's nucleus, A5세포군 및 삼차신경운동핵에서 양성반응을 보였고, 중뇌에서는 눈돌림신경핵, 눈돌림신경섬유 및 다리핵에서 양성반응을 보였다. 간뇌에서는 시상하부(視床下部)의 뇌실(腦室)곁핵과 시상의 뇌실곁핵에서 양성반응을 보였고 대뇌(大腦)에서는 septal nucleus, 피질(皮質)의 뒷다리영역, 마루엽, 이마엽에서 양성반응을 보였다. 이상의 결과를 종합하면 방광(膀胱)에서 투사되는 뇌척수의 영역과 방광유(膀胱兪)나 위중(委中)에서 투사되는 공통된 표지영역들은 방광(膀胱)과 족태양방광경(足太陽膀胱經) 그리고 그 경락(經絡)의 경혈(經穴)들이 어떤 상관성(相關性)을 가지고 연결(連結)되어 있다는 사실을 실험적으로 알 수 있었다. 특히 방광(膀胱)과 방광유(膀胱兪), 위중(委中)에서 투사된 공통된 표지영역, 즉 배뇨중추인 Barrington's nucleus에 표지되는 것은 내장(內臟)-경락(經絡)이 central autonomic pathway에 의하여 서로 연결되었음을 입증하는 중요한 결과(結果)라고 사려(思慮)된다.

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Pharmacotherapy for Patients Complaining With Somatic Symptoms (신체증상을 호소하는 환자의 약물치료)

  • Lee, Kyung-Kyu
    • Korean Journal of Psychosomatic Medicine
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    • v.29 no.2
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    • pp.95-101
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    • 2021
  • Patients complaining with somatic symptoms are very common in clinical practice, and are often consulted to medical department. But it is difficult to treat well. The treatment of somatic symptom disorder is multi-modal as none of the methods on their own provide a satisfactory outcome. The treatment of somatic symptoms disorders is complicated by lack of boundary, conceptual clarity, and overemphasis on psychosocial causation and effectiveness of psychological treatments. In clinical practice all classes of psychotropics are used to treat somatic symptoms disorder. Drugs such as tricyclic antidepressants, serotonin reuptake inibitors(SSRI), serotonin and noradrenalin reuptake inhibitors (SNRI), atypical antipsychotics are studied. The evidence indicates that these drugs are effective in somatic symptom disorders. All classes of antidepressants seem to be effective against somatic symptom disorders. SSRIs are more effective against hypochondriasis and body dysmorphic disorder, and SNRIs appear to be more effective than other antidepressants when pain is predominant. The author suggest that psychiatrists should know how to treat patients complaining with somatic symptoms by using not only psychotherapeutic approach but also pharmacological treatment. It will be helpful to reduce suffering and increase quality of life of these patients.

Effects of Bombesin on Electrical and Mechanical Activities of Gastric Smooth Muscle Strips of Cats (적출한 고양이 위(胃) 평활근 절편의 전기적 및 기계적 활동에 미치는 Bombesin의 영향과 그 작용기전)

  • Park, Hyoung-Jin;Kwon, Hyeok-Yil;Suh, Sang-Won;Kim, Jeong-Mi;Lee, Tae-Hyung
    • The Korean Journal of Physiology
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    • v.24 no.1
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    • pp.39-49
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    • 1990
  • It has been reported that bombesin induces contraction of the smooth muscle of the gastrointestinal tract. Thus, the present investigation was undertaken to see an influence of bombesin on electrical activity of the gastric smooth muscle, since electrical activity is associated with contractile activity in the smooth muscle of the stomach. Smooth muscle strips $(5\;{\times}\;1.5\;cm)$ that included the corpus and antrum were prepared from the ventral and dorsal portion of the feline stomach along the greater curvature. Circular muscle strips $(1\;{\times}\;0.3\;cm)$ of the corpus were also obtained. Electrical activity of the corpus and antrum of the muscle strip was monophasically recorded by using Ag-AgCl capillary electrodes placed on the circular muscle layer. Contractile activity of the circular muscle strip was also recorded. The recordings were performed in Krebs-Ringer solution that was continuously aerated with $O_{2}$ containing 5% $Co_{2}$, and kept at $36^{\circ}C$. Dose-related responses of electrical activity and contractility to bombesin was studied after frequency of slow waves and contraction of each strip reached to a steady state. An action of $D-leu^{13}-{\psi}\;(CH_{2}NH)-D-leu^{14}-bombesin,\;D-pro^{2}-D-trp^{7,9}-substance\;P$, tetrodotoxin, hexamethonium, atropine, phentolamine or propranolol on the effect of bombesin was also observed. 1) Bombesin increased frequency of slow waves and contractions dose-dependently at concentrations from $10^{-9}\;M\;to\;3\;{\times}\;10^{-8}\;M$. 2) The bombesin analogue at a concentration of $3\;{\times}\;10^{-7}\;M$ antagonized the effect of bombesin on frequency of slow waves. 3) The effect of bombesin on frequency of slow waves was inhibited by tetrodotoxin $(10^{-6}\;M)$ and hexamethonium $(10^{-3}\;M)$ but unaffected by atropine $(10^{-6}\;M)$, phentolamine $(10^{-5}\;M)$ and propranolol $(10^{-5}\;M)$. 4) The effect of bombesin on frequency of slow waves was blocked by the substance P analogue at a concentration of $10^{-5}\;M$. 5) Substance P at a concentration of $10^{-5}\;M$ failed to change frequency of slow waves. It is concluded from the above results that bombesin increases the frequency of slow waves as well as contractions of the smooth muscle strip from the feline stomach, and the effect of bombesin might be mediated by non-cholinergic or non-adrenergic mechanism at neuromuscular junction. However, enteric nerves that have substance P as a neurotransmitter do not appear to participate in the action of bombesin on frequency of slow waves.

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Effects of Nodus Nelumbinis Rhizomatis Extracts on Sociopsychological Stress in Mice (연근(蓮根) 추출물이 생쥐의 사회.심리적 스트레스에 미치는 영향)

  • Kim, Su-Yeon;Kim, Eun-Jeong;Lee, Dong-Won;Won, Ho-Young
    • Journal of Oriental Neuropsychiatry
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    • v.15 no.2
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    • pp.149-158
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    • 2004
  • 만성적이거나 반복적인 스트레스는 우울중이나 심신병 등의 발병 기전과 밀접한 관련이 있다. 전기적 자극(electric foot shock), 한랭 자극, 속박(immobilization), 투쟁(fighting), 에테르 노출 등과 같은 심한 스트레스 자극이 뇌 조직의 시상 및 시상하부, 편도체 등에서의 노르아드레날린(noradrenalin) 방출을 유의 하게 감소시키는 동시에 혈청 corticosterone을 증가시키는 것으로 알려져 있다. 한의학에서는 스트레스 인자에 대한 신체반응을 기(氣)의 변화로 인식하고 있고, 이러한 자극요인들은 신체에 대하여 병적 요인을 제공하여 제반 질환을 야기한다. 또한 질병 발생에 대한 근거로 정기(正氣)와 사기(邪氣)의 상호 관계 위주로 인식하는데, 내부의 기(氣)의 변조(變調)는 질병의 발생을 야기하는 기초가 된다. 실험에 사용된 연근(蓮根)은 연꽃과에 속한 수생초본인 연꽃의 뿌리부분으로 우(藕) 또는 우절(藕節)이라는 명칭으로 불리기도 한다. 성미(性味)는 감(甘) 삽(澁) 평(平) 무독(無毒)하고 폐(肺) 위(胃) 간경(肝經)으로 들어가며 수렴지혈(收斂止血) 화어(化瘀)의 효능이 있어 토혈(吐血) 객혈(喀血) 뇨혈(尿血) 편혈(便血) 등의 각종 출혈 증상에 사용되어져 왔다. 최근 연꽃의 부위별 추출물이 흰쥐의 지질 과산화 생성을 효과적으로 억제하는 것으로 보고되고 있어 연근(蓮根)에 대한 다양한 약리 효능의 검색이 필요할 것으로 생각되며 연꽃의 씨앗인 연자육(蓮子肉)이 양심안신(養心安神)의 효능이 있어 스트레스성 질환에 많이 응용되고 있는 것에 착안하여 본 연구를 착수하였다. 실험 동물은 ICR계 마우스를 이용하였으며, 사회 심리적 스트레스는 옆쪽 cage에서 다른 마우스의 신체에 가해지는 전기 충격을 하루 1시간 동안 지켜보게 하는 것으로 유발하였으며 이 상태에서 약물을 투여한 그룹을 실험군, 그렇지 않은 그룹을 대조군으로 하였다. 정상군은 아무런 자극 없이 하루 1시간 동안 일정 공간에 가두어 두는 것으로 하였다. 실험 결과 사회 심리적 스트레스를 받은 경우에 아무런 처치를 하지 않은 대조군에 비해 연근 추출물을 100mg/kg/day 용량으로 5 일간 투여한 실험군에서 혈청 중 corticosterone 함량이 유의하게 감소하였으므로 매우 효과적으로 스트레스를 해소하였음을 알 수 있다. 뇌세포 중에서 신경전달물질로 분비되는 노르아드레날린의 분비량은 전반적으로 증가되는 경향을 나타내었으나 유의성은 없었다. 신체적 또는 사회 심리적 스트레스가 간 조직 내 지질의 과산화를 유발하는 것으로 나타났으며 연근 추출물이 이 결과에는 영향을 주지 못하였다. 사회 심리적 스트레스로 인하여 간 조직 내 지질과산화 정도가 증가하였으므로 혈청 내 ALT 함량도 따라 증가할 것으로 추정되었으며 이에 대한 연근 추출물 경구 투여가 간 조직을 보호할 수 있는지를 확인하기 위해 분리한 혈청으로부터 ALT 함량을 측정한 결과 대조군에 비하여 유의한 감소를 나타내었다. 또한 연근 추출물이 혈청 내 지질 과산화물의 생성을 억제할 수 있다면 질병의 예방과 치료에 효과적일 것으로 추정할 수 있으므로 그 생성량을 측정하여 보았으나 대조군과의 차이가 나타나지 않았다. 이상의 결과들을 종합하여 보면 스트레스가 부하된 5일 동안 연근(蓮根) 추출물을 함께 투여한 결과 혈청 corticosterone 함량을 유의하게 감소시켰고 뇌 조직내 noradrenaline 함량을 증가시키는 경향을 나타내어 스트레스 해소에 도움이 될 수 있음을 시사하였다. 또한 혈청 내 ALT 함량을 유의하게 감소시켜 스트레스로 인해 발생하는 간 기능의 손상도 어느 정도 억제시키는 것을 확인할 수 있었는데 앞으로 연근(蓮根)의 이러한 작용에 대한 보다 자세한 연구들이 필요한 것으로 생각된다.

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