• Title/Summary/Keyword: excitatory

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Measurements of Extracellular Excitatory Amino Acid Neurotransmitter Levels in Corpus Striatum of Toluene Inhaled Rat by Microdialysis (톨루엔 흡입 흰쥐의 선조체에서 미세투석법을 이용한 세포외성 흥분성 아미노산 신경전달물질의 측정)

  • Baeck, Seung-Kyung;Kim, Hae-Kyu;Kim, Cheol-Min
    • YAKHAK HOEJI
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    • v.42 no.1
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    • pp.95-100
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    • 1998
  • Male Sprague-Dawley rats were exposed to the toluene at 3,000${\pm}$200ppm via inhalation for two hours (single inhalation group), three weeks by two hours per day, six days per wee k (repeated inhalation group). We examined the level of excitatory amino acids of the extracellular neurotransmitter within the corpus striatum of rats by using in vivo microdialysis. Aspartate (Asp) and glutamate (Glu) of excitatory amino acid neurotransmitters were generally decreased in the inhalation groups compared with the control group, and more significantly decreased in the repeated inhalation group than in the single inhalation group except that Asp was increased from 60 min after the beginning of the inhalation to 30 min after the termination.

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The Characteristics of Silicon Oxides for Artificial Neural Network Design (인공신경회로망 설계를 위한 실리콘 산화막 특성)

  • Kang, C.S.
    • Proceedings of the IEEK Conference
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    • 2007.07a
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    • pp.475-476
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    • 2007
  • The stress induced leakage currents will affect data retention in synapse transistors and the stress current, transient current is used to estimate to fundamental limitations on oxide thicknesses. The synapse transistor made by thin silicon oxides has represented the neural states and the manipulation which gaves unipolar weights. The weight value of synapse transistor was caused by the bias conditions. Excitatory state and inhibitory state according to weighted values affected the channel current. The stress induced leakage currents affected excitatory state and inhibitory state.

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Isolation and electrical characterization of the rat spinal dorsal horn neurons

  • Han, Seong-Kyu;Lee, Mun-Han;Ryu, Pan-Dong
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1996.04a
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    • pp.175-175
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    • 1996
  • The spinal dorsal horn is the area where primary afferent fibers terminate and cutaneous sensory information is Processed. A number of putative neurotransmitter substances, including excitatory and inhibitory amino acids and peptides, are present in this region and sites and cellular mechanisms of their actions have been a target of numerous studies. In this study, single neurons were acutely isolated and the properties of whole cell current and responses to excitatory and inhibitory neurotransmitters were studied by the patch clamp method. Young rats (7-14 days) were anesthetized with diethyl-ether, and the lumbar spinal cord was excised and cut transversely at a thickness of 30$\mu\textrm{m}$ by Vibroslicer. The treatment of spinal slices with low concentration of proteases (pronase and thermolysin 0.75 mg/$m\ell$) and mechanical dissociation yielded isolated neurons with near intact morphology. Multipolar, ellipsoidal and bipolar, and pyramidal cells were shown. By applying step voltage pulses to neurons held at -70 mV, two types of inward currents and one outward currents observed. The fast activating and inactivating inward current was the Na$\^$+/ current because of its fast kinetics and blocking by 0.5${\mu}$M TTX, a specific blocker of Na$\^$+/ channel. The second type of inward currents were sustained. Based on their kinetics and current-voltage relations, it was likely that the second type of inward current was the voltage-dependent Ca$\^$2+/ current. In the presence of TTX, the steady-state currents mainly represented outward K$\^$+/ current which looked like the delayed rectifier K$\^$+/ current. In addition, the membrane currents produced by agonist of excitatory amino acid (EAA) receptor and the endogenous transmitter candidate L-glutamate were recorded in isolated whole-cell voltage clamped neurons as well as responses to inhibitory amino acids (${\gamma}$-amino butyric acid, glycine). Drugs were applied by a method that allows complete exchange of the solution within 1 sec; an infinite number of solutions can be applied to a single cell.

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Studies on Sympathetic Innervation of the Jejunum in the Chick (병아리 공장(空腸)의 교감신경지배(交感神經支配)에 관한 연구(硏究))

  • Lee, Chang Eop
    • Korean Journal of Veterinary Research
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    • v.14 no.1
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    • pp.33-40
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    • 1974
  • It has been generally understood that the intestinal tracts are under the control of the autonomic nerves; the parasympathetics are excitatory and the sympathetics inhibitory. However, it is recently reported that the actions of these autonomic nerves in the newborn animals are shown to be different from those in the adult animals in some species. In order to elucidate the role of sympathetic innervation to the intestinal tracts, the effects of periarterial nerve stimulation were studied in the periarterial sympathetics-jejunum preparations of the chick and the effects of some autonomic drugs on the isolated muscle strips were also studied. The results obtained were as follows: 1. The periarterial stimulation in the periarterial sympathetics-jejunum preparation elicited the responses of three patterns; 1) contrcation followed by relaxation 2) contraction only 3) relaxation only. The excitatory response was most effective in the stimulus frequencies of 40 cps, whereas the inhibitory response was maximal in the stimulus frequencies of 30 cycle per second. 2. The excitatory response to the periarterial stimulation was not affected by the pretreatment with phenoxybenzamine, dibenamine, propranolol and atropine, whereas the inhibitory response was completely blocked by the pretreatment with phenoxybenzamine and propranolol. 3. In the periarterial syrnpathetics-jejunum preparation treated with reserpine, the periarterial stimulation evoked only contraction, and the contraction was not affected by the pretreatment with phenoxybenzamine, propranolol and atropine. 4. The administration of norepinephrine evoked a relaxation in the isolated jejunum muscle strips and the effect was completely blocked by the pretreatment with phenoxybenzamine. 5. The administration of isoproterenol produced a relaxation in the isolated jejunum muscle strips and the effect was not affected by pretreatment with phenoxybenzamine, whereas the effect was completely blocked by the pretratment with propranolol. 6) The administration of acetylcholine produced a marked contraction in the isolated jejunum muscle strips and the effect was completely abolished by the pretreatment of atropine. These experimental evidences indicate that the inhibitory response to the periarterial stimulation is due to adrenergic fibers and the excitatory response is due to neither adrenergic nor cholinergic component.

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Actions of Autonomic Drugs on the Uterine Muscle of Ditrema Temmincki Bleeker (망상어 척출자궁(剔出子宮)에 대(對)한 자율신경계(自律神經系)의 작용(作用))

  • Cho, Jyoung-Sick
    • The Korean Journal of Pharmacology
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    • v.6 no.1
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    • pp.37-44
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    • 1970
  • The author studied the actions of autonomic drugs on the uterine muscle isolated from Ditrema temmincki Bleeker, and the results obtained were summerized as follows. 1) The motility of the fish uterus was stimulated by epinephrine, norepinephrine and phenylephrine, but inhibited by isoproterenol. 2) The inhibitory effects of isoproterenol on the fish uterus was not affected by phenoxybenzamine, but blocked by propranolol. 3) The excitatory effects of phenylephrine on the fish uterus were blocked by phenoxybenzamine, but stimulated by propranolol. 4) The excitatory effects of epinephrine and norepinephrine were reversed by phenoxybenzamine and stimulated by propranolol. 5) The motility of the fish uterus pretreated with phenoxybenzamine and propranolol was not affected by isoproterenol, phenylephrine, epinephrine and norepinephrine. 6) It seemed that the uterine muscle of the fish had both alpha excitatory and beta inhibitory receptors. 7) The motility of the uterus of the fish was stimulated by acetylcholine. The stimulating action of acetylcholine was antagonized by atropine. 8) The motility of fish uterus was not affected by nicotine and DMPP. The actions of these drugs were not affected by pretreatment with hexamethonium and atropine. 9) It is, therefore, concluded that there are not present ganglia cells furnished with cholinergic fiber in the uterine wall of the fish.

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The Excitatory Mechanism of Substance P in the Antral Circular Muscle of Guinea Pig Stomach

  • Jun, Jae-Yeoul;Kim, Sung-Joon;Choi, Youn-Baik;Kim, Ki-Whan
    • The Korean Journal of Physiology
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    • v.28 no.1
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    • pp.51-59
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    • 1994
  • This study was carried out to elucidate the excitatory mechanisms of Substance P in the antral circular muscle, using isometric contraction recording, conventional microelectrode method and whole-cell patch clamp technique. Substance P produced tonic and phasic contractions in a dose-dependent manner and depolarized membrane potential with increased amplitude of slow waves in muscle strips. Voltage-dependent $Ca^{2+}$ currents were increased by the application of Substance P from a holding potential of -60mV to 50mV in 10mV steps and this effect was blocked by the addition of an antagonist. Also Substance P increased transient and spontaneous oscillatory $K^+$ outward currents. The enhanced outward currents were abolished by apamin in dispersed single cells. These results suggest that the depolarization of membrane potential by Substance P activates voltage-dependent $Ca^{2+}$ channels, which represents an excitatory response in the antral circular muscle and led to an increase in $Ca^{2+}\;activated\;K^+\;currents$.

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Effect of Capsaicin on the Excitatory Amino Acids Neurotranmitters in Medullary Dorsal Horn (Capsaicin이 연수후각의 흥분성 아미노산 전달물질에 미치는 영향)

  • Kwon, Soo-Kyung;Yoon, Soo-Han;Lee, Jong-Heun
    • Restorative Dentistry and Endodontics
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    • v.19 no.2
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    • pp.621-632
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    • 1994
  • This experiment was performed to study the effect of capsaicin on the excitatory amino acids (EAAs) neurotransmitter in medullary dorsal horn and to clarify the relationship between substance P and excitatory amino acids. Horizontal slice of rat medullary dorsal horn was prepared and perfused with modified Krebs-Ringer solution in brain slice chamber. Release of EAAs was induced by veratrine and capsaicin were added to perfusion solution to observe the changes in EAA release. Capsaicin and ruthenium red, capsaicin antagonist, were also systemically injected with 50mg/kg in first day and 100mg/kg in second day for 2 days. Medulla oblongata containing the medullary dorsal horn was isolated, homogenized and centrifused. Spernatant was freeze-dried and EAA was determined by HPLC. Release of glutamate and aspartate was significantly increased by veratrine or capsaicin, but veratrine evoked release of EAAs was blocked by capsaicin in vitro, and injected ruthenium red did not have effect on the contents of EMs in vivo. Systemically injected capsaicin evoked the slight decrease in content of glutamate and aspartate in medullary dorsal horn and this effect of capsaicin was unaffected by ruthenium red.

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[$Zn^{2+}$ Modulates the Responses of Rat Dorsal Horn Neuron to C-Fiber Stimulation and Excitatory Amino Acids

  • Ahn, Chang-Hoon;Shin, Hong-Kee;Kim, Jin-Hyuk
    • The Korean Journal of Physiology and Pharmacology
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    • v.4 no.6
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    • pp.455-461
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    • 2000
  • Zinc contained in the neurons of central nervous system is activity-dependently released and then attenuates NMDA (N-methyl-D-aspartate)-induced neurotoxicity while augmenting non-NMDA-induced neurodegeneration. Zinc also has been reported to produce antinociceptive action on the inflammation- and nerve injury-induced hyperalgesia in the behavioral test. In this study, we investigated the effects of zinc on the responses of dorsal horn cells to NMDA, kainate and graded electrical stimulation of C-fibers. In the majority of WDR cells (70.6%), zinc current-dependently inhibited WDR cell responses to NMDA and in the remaining cells, produced biphasic responses; excitation followed by inhibition. Zinc augmented the responses of WDR cells to iontophoretical application of kainate. The dominant effect of $Zn^{2+}$ on the responses of WDR cells to C-fiber stimulation was excitatory, but inhibition, excitation-inhibition and no change of the responses to C-fiber stimulation were induced. $Ca^{2+}-EDTA$ antagonized the excitatory or inhibitory effects of $Zn^{2+}$ on the WDR cell responses. These experimental findings suggest that $Zn^{2+}$ modulates the transmission of sensory information in the rat spinal cord.

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Inhibitory Effect of Fangchinoline on Excitatory Amino Acids. Induced Neurotoxicity in Cultured Rat Cerebellar Granule Cells

  • Kim, Su-Don;Oh, Sei-Kwan;Kim, Hack-Seang;Seong, Yeon-Hee
    • Archives of Pharmacal Research
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    • v.24 no.2
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    • pp.164-170
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    • 2001
  • Glutamate receptors-mediated excitoxicity is believed to play a role in the pathophysiology of neurodegenerative diseases. The present study was performed to evaluate the inhibitory effect of fanschinoline, a bis-benzylisoquinoline alkaloid, which has a characteristic as a $Ca^{2+}$channel blockers on excitatory amino acids (EAAS)-induced neurotoxicity in cultured rat cerebellar granule neuron. Fangchinoline (1 and 5$\mu\textrm{m}$) inhibited glutamate (1 ${m}M$), N-methyl-D-aspartate (NMDA; 1 ${m}M$) and kainate (100$\mu\textrm{m}$)-induced neuronal cell death which was measured by trypan blue exclusion test. Fangchinoline (1 and 5$\mu\textrm{m}$) inhibited glutamate release into medium induced by NMDA (1 ${m}M$) and kainate (100$\mu\textrm{m}$), which was measured by HPLC. And fangchinoline (5$\mu\textrm{m}$) inhibited glutamate (1 ${m}M$)-induced elevation of intracellular calcium concentration. These results suggest that inhibition of $Ca^{2+}$influx by fangchinoline may contribute to the beneficial effects on neurodegenerative effect of glutamate in pathophysiological conditions.

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Effects of Hydrogen Peroxide on Neuronal Excitability and Synaptic Transmission in Rat Substantia Gelatinosa Neurons

  • Son, Yong;Chun, Sang-Woo
    • International Journal of Oral Biology
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    • v.32 no.4
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    • pp.153-160
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    • 2007
  • The superficial dorsal horn, particularly substantia gelatinosa (SG) in the spinal cord, receives inputs from small-diameter primary afferents that predominantly convey noxious sensation. Reactive oxygen species (ROS) are toxic agents that may be involved in various neurodegenerative diseases. Recent studies indicate that ROS are also involved in persistent pain through a spinal mechanism. In the present study, whole cell patch clamp recordings were carried out on SG neurons in spinal cord slice of young rats to investigate the effects of hydrogen peroxide on neuronal excitability and excitatory synaptic transmission. In current clamp condition, tert-buthyl hydroperoxide (t-BuOOH), an ROS donor, depolarized membrane potential of SG neurons and increased the neuronal firing frequencies evoked by depolarizing current pulses. When slices were pretreated with phenyl-N-tert-buthylnitrone (PBN) or ascorbate, ROS scavengers, t-BuOOH did not induce hyperexcitability. In voltage clamp condition, t-BuOOH increased the frequency and amplitude of spontaneous excitatory postsynaptic currents (sEPSCs), and monosynaptically evoked excitatory postsynaptic currents (eEPSCs) by electrical stimulation of the ipsilateral dorsal root. These data suggest that ROS generated by peripheral nerve injury can modulate the excitability of the SG neurons via pre- and postsynaptic actions.