• 제목/요약/키워드: Spinal neurons

검색결과 212건 처리시간 0.026초

Effects of Oriental Medicinal Drugs on Axonal Regeneration in the Spinal Cord Neurons

  • An Joung-Jo;NamGung Uk;Seo In-Chan;Kim Yoon-Sik
    • 동의생리병리학회지
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    • 제19권6호
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    • pp.1640-1646
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    • 2005
  • An oriental medicinal drugs Jahageo (JHG, Hominis placenta) were examined to determine its effects on the responsiveness of central nervous system neurons after injury. We found that JHG was involved in neurite outgrowth of DRG sensory axons. JHG treatment also increased expression of axonal growth-associated protein GAP-43 in DRG sensory neurons after sciatic nerve injury and in the injured spinal cord. JHG treatment during the spinal cord injury increased induction levels of cell division cycle 2 (Cdc2) protein in DRG as well as in the spinal cord. Histochemical investigation showed that induced Cdc2 in the injured spinal cord was found in non-neuronal cells. These results suggest that JHG regulates activities of non-neuronal cells such as oligodendrocyte and astrocyte in responses to spinal cord injury and protects neuronal responsiveness after axonal damage.

Isolation and electrical characterization of the rat spinal dorsal horn neurons

  • Han, Seong-Kyu;Lee, Mun-Han;Ryu, Pan-Dong
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1996년도 춘계학술대회
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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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진간식풍탕 및 가미진간식풍탕 추출물이 배양 척수감각신경세포에 미치는 영향 (Effects of Jingansikpung-tang and Gamijingansikpung-tang Water Extract on the Cultured Spinal Sensory Neurons)

  • 서영석;윤상학;염승룡;이수경;신병철;권영달;송용선
    • 동의생리병리학회지
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    • 제17권2호
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    • pp.374-379
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    • 2003
  • To evaluate the mechanism of oxidative damage by Xanthine oxidase(XO) and hypoxanthine(HX)-induced oxygen radicals, XTT assay was carried out. Neurofilament EIA and PKC activity were measured to evaluate the protective effect of Jingansikpung-tang(JST) and Gamijingansikpung-tang(GJST) water extract on cultured spinal sensory neurons damaged by XO/HX, after the cultured mouse spinal sensory neurons were preincubated with various concentrations of JST and GJST water extract for 3 hours prior to exposure of XO/HX. The results were XO/HX decreased significantly, in proportion to concentration and exposed time, the survival rate of the cultured mouse sensory neurons on XTT assay. And in proportion to concentration and exposed time on cultured spinal sensory neurons, XO/HX showed the quantitative decrease of neurofilament by EIA, increase of PKC activity, but JST and GJST showed the neuroprotective effects against decrease of neurofilament and increase of PKC activity by XO/HX. From the above results, it is concluded that XO/HX have a neurotoxic effect on cultured spinal sensory neurons and the herbs water extract, such as JST and GJST prevent the toxicity of XO/HX effectively.

Hydrogen Peroxide에 의하여 손상된 배양 척수운동신경세포에 대한 천마의 영향에 관한 연구 (Effects of Rhizoma Gastrodiae on Cultured Mouse Spinal Motor Neurons Damaged by Hydrogen Peroxide)

  • 김형수;이용석;이환봉;손일홍;이재규;손영우;이정헌;이강창;류명환;송호준;성강경;박승택;이갑상
    • 동의생리병리학회지
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    • 제16권1호
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    • pp.150-153
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    • 2002
  • To elucidate the toxic effect of oxygen free radicals on cultured mouse spinal motor neurons damaged by hydrogen peroxide(H₂O₂)-induced neurotoxicity, we examined the neurotoxicity induced by oxygen radicals by NR assay when cultured spinal motor neurons were grown in the medium containing various concentrations of H₂O₂ for 6 hours. In addition, neuroprotective effects of herb extracts such Rhizoma Gastrodiae(RG), on H₂O₂-induced neurotoxicity in cultured spinal motor neurons were evaluated after cultured spinal motor neurons were preincubated with various concentrations of herb extract, RG for 2 hours before 50uM H₂O₂ for 6 hours. H₂O₂ decreased remarkably cell viability in dose-and time-dependent manner in these cultures, and also herb extract, RG increased cell viability of spinal motor neurons damaged by H₂O₂ in these cultures. From the above results, it is suggested that H₂O₂ was toxic in cultured spinal motor neurons derived from mouse, and RG was effective in blocking the neurotoxicity induced by oxidative stress in these cultures.

족삼리(足三里) 봉독약침자극(蜂毒藥鍼刺戟)이 척수내(脊髓內) Fos 양성반응(陽性反應) 신경세포(神經細胞)의 활성(活性)에 미치는 영향(影響) (The Effect of Bee Venom Acupuncture into Chok-samni (ST36) on Neuronal Activity in the Spinal Cord)

  • 임윤경;강성길;최도영
    • 대한약침학회지
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    • 제3권1호
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    • pp.141-155
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    • 2000
  • This study was designed to evaluate the analgesic effect of bee venom (BV) Acupuncture into different treatment points, Chok-samni (ST36) and blank loci of the gluteal muscle and back. We investigated neuronal activity in the spinal cord using the Fos immunohistochemical technique according to the pretreatment with different concentrations of BV, thirty minutes before the formalin injection. The results were summarized as follows: 1. The number of Fos-like immunoreactive (Fos-LI) neurons in L2 segment of the saline-formalin treated group was significantly increased in NECK and VENT of the spinal cord as compared with that of the room control group. However, there was no significant change in the number of the Fos-LI neurons in L2 segment of the BV-formalin treated group as compared with that of the room control group. 2. The number of Fos-LI neurons in L3-5 segment of the saline-formalin group was significantly increased in all the regions of 142 the spinal cord as compared with that of the room control group. However, the Fos-LI neurons in L3-5 segment of the BV-formalin treated group was dramatically decreased in all the regions of the spinal cord as compared with that of the saline-formalin group. Therefore, these results indicated that the BV acupuncture suppressed the nociceptive neuronal activities in L3-5 of the spinal cord induced by formalin injection. 3. There was a strong positive correlation between the formalin-induced pain behavior and the number of the Fos-LI neurons in L3-5 segment.

Differential actions of intracerebroventricular (ICV) opioid receptor agonists on the activity of dorsal horn neurons (DHN) in the cat spinal cord

  • 오우택;문태상;하태길;고광호
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1994년도 춘계학술대회 and 제3회 신약개발 연구발표회
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    • pp.303-303
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    • 1994
  • ICV infusion of morphine (MOR) produces strong analgesia in man and animals. The analgesic effect is thought to be mediated by the centrifugal inhibtory control, But neural mechanisms of the analgesic effect of ICV morphine are not well understood. For example, in the previous studies, ICV morphine does not inhibit nociceptive transmission in the spinal cord. On the contrary, ICV MOR often excites activity of dorsal horn neuron in the spinal cord. In the present study, we found that ICV MOR had dust actions on activity of dorsal horn neuron that it produced both inhibition and excitation of dorsal horn neurons. Since MOR exerts i Is action via three different types of opioid receptors, we further sought to investigate if there are differential effects of opioid receptor agonists on dorsal horn neurons when administered ICV.

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복외측 하부연수의 전기자극이 고양이의 척수후각세포의 활성에 미치는 영향 (Effects of Electrical Stimulation of the Caudal Ventrolateral Medulla on the Activity of Dorsal Horn Neurons of the Spinal Cord in the Cat)

  • 최윤정;고광호;오우택
    • Biomolecules & Therapeutics
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    • 제1권1호
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    • pp.37-43
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    • 1993
  • Electrical or chemical stimulation of many areas in the brainstem modulates activity of dorsal horn neurons (DHN). This is known to be mediated by a population of bulbospinal neurons. Yet, little is known about responses of DHNs to stimulation of the caudal ventrolateral medulla (CVLM). Thus, the purpose of the present study is to see if there is any change in activity of DHNs when CVLM is stimulated electrically. Thirty-one DHNs were recorded from dorsal horn of the spinal cord. Fourteen DHNs (45%) were classified as wide dynamic range neurons and 9 (19%) were high threshold cells, and 4 (13%) and 4 (13%) were deep and low threshold neurons, respectively. Among 31 neurons tested for responses to stimulation of CVLM, 21 DHNs (68%) were inhibited by the electrical stimulation of CVLM ($200{\mu}A,\;100{\mu}s$ duration, 100 Hz), and 9 cells (39%) did not show any change in neuronal activity. One neuron was excited by the stimulation. The electrical stimulation of CVLM not only inhibited spontaneous activity of DHNs but also inhibited evoked responses of DHNs to somatic stimulation in the receptive field. These data suggest that CVLM is one of the pain-modulatory areas that control transmission of ascending information of noxious input to the brain from the spinal cord.

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표지방식을 이용한 흰 쥐 복강 내장을 지배하는 감각신경세포체와 신경섬유의 표지부위 (Localization of Sensory Neurons Innervating the Rat Intestine Using the Cholera Toxin B Subunit(CTB) and Wheat Germ Agglutinin-Horseradish Peroxidase(WGA-HRP))

  • 이동협;이창현;이무삼
    • Journal of Yeungnam Medical Science
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    • 제15권1호
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    • pp.75-96
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    • 1998
  • 복강내장을 지배하는 감각신경세포체 및 신경섬유의 표지부위를 관찰하기 위하여 복강내장을 부위별(위, 십이지장, 공장, 회장, 맹장, 오름결장, 내림결장)로 나누어 2.5% WGA-HRP $30{\mu}l$와 0.5% CTB $20{\mu}l$를 장막과 근육층 사이의 4부위에 나누어 주입하였다. 그 후 48-96시간의 생존시간이 경과한 후 뇌줄기, 척수신경절과 미주신경절에서의 감각신경섬유와 신경세포체의 표지부위를 면역조직화학 염색법과 HRP 조직화학 기법으로 관찰한 결과는 다음과 같다. 1. WGA-HRP에 표지된 감각신경섬유는 위와 맹장에서만 관찰되었으며, CTB에 표지된 감각신경섬유는 복강내장의 모든 장기에서 관찰되었다. 2. 복강내장을 지배하는 감각신경섬유는 뇌줄기내 좌우 고립로핵의 교질부, 교질부의 등쪽내측부, 교차연결부, 내측부, 넷째뇌실벽, 맨아래구역의 앞쪽경계 및 중심관의 등쪽 정중선인 교차연결부에 국소적으로 강하게 표지되었다. 3. 척수신경절에서 위 (stomach)에 분포하는 감각신경세포체는 좌우 관계없이 $T_2$에서 $L_1$까지 여러 신경절에 표지되었으며 이 중 좌우 $T_{8-9}$부위에 가장 많이 표지되었다. 4. 십이지장에서의 척수신경절에 표지된 감각 신경세포체는 좌우 $T_6-L_2$부위에 표지되었으나 다른 장기에 비하여 표지된 감각신경세포체의 수는 적었다. 5. 공장에서의 척수신경절에 표지된 감각신경세포체는 좌우 $T_6-L_2$부위에 표지되었다. 가장 많이 표지된 부위는 좌측 $T_{12}$ 부위였으며, 우측은 $T_{13}$ 부위에 표지되었다. 6. 회장에서의 척수신경절에 표지된 감각신경세포체는 좌우 $T_6-L_2$부위였다. 가장 많이 표지된 부위는 좌측에서 $T_{11}$부위였고, 우측에서 $L_1$부위였다. 7. 맹장에서의 척수신경절에 표지된 감각신경 세포체는 좌측은 $T_7-L_2$부위였으며 우측은 $T_6-L_1$부위였다. 가장 많이 표지된 부위는 좌측은 $T_{11}$이었으며, 우측은 $T_{11-12}$에 표지되었다. 8. 오름결장에서 척수신경절에 표지된 감각신경세포체는 좌측은 $T_7-L_2$부위에 표지되었고 우측은 $T_9-L_4$부위에 표지되어 좌우측 표지부위의 차이를 보였다. 가장 많이 표지된 부위는 좌측은 $T_9$이었으며, 우측은 $T_{11}$에 표지되었다. 9. 내림결장에서 척수신경절에 표지된 감각신경 세포체는 좌측은 $T_9-L_2$부위에 표지되었고 우측은 $T_6-L_2$부위에 표지되었다. 가장 많이 표지된 부위는 좌측은 $T_{13}$이었으며, 우측은 $L_1$에 표지되었다. 10. 복강내장을 지배하는 좌우 미주신경절에 표지된 감각신경세포체는 위에서 가장 많이 표지되었으며 위를 제외한 나머지 장기에서는 표지된 감각신경세포체의 수는 위에 표지된 수보다 적었다. 이상의 결과로 흰쥐의 복강내장을 지배하는 감각신경섬유의 뇌줄기내 표지영역은 좌우 고립로 핵의 교질부, 교질부의 등쪽내측부, 교차연결부, 내측부, 넷째뇌실벽, 맨아래구역의 앞쪽경계 및 중심관의 등쪽 정중선인 교차연결부였으며, 감각신경세포체의 표지영역은 미주신경절과 척수신경절 $T_2-L_4$ 부위였음을 알 수 있었다. 위를 제외한 나머지 장기들에서는 $T_6-L_4$부위에 표지되었으나 소장에서 대장으로 갈수록 가장 많이 표지된 부위는 원위부 가슴신경절에서 근위부 허리신경절쪽으로 이동하는 경향을 보였다.

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고양이 흉수에서 Substance P 면역반응 신경원의 분포와 연접연구 (Distribution of Substance P Immunoreactive Neurons and Their Synaptic Organization in the Cat Thoracic Cord)

  • 이승균;박수석
    • The Korean Journal of Pain
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    • 제9권2호
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    • pp.326-335
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    • 1996
  • Background: Though a number of studies have described the distribution of substance P(SP)-like immunoreactivity in the spinal cord, they have been focused on lamina I and II of the dorsal horn and there are little morphological studies on the topographic distribution and ultrastructure of the SP immunoreactive neurons especially in the ventral horn of the spinal cord. this study was conducted to identify distribution pattern of SP immunoreactive neurons and to difine the synaptic organization of their processes in ventral horn of the thoracic cord of the cat by preembbeding immunocytochemical method using SP antiserum. Methods: Five adults cats of either sex were used and deeply anesthetized by intramuscular injection of ketamine. After removal of the spinal cord, samples of thoracic cord were taken and placed in fresh fixative at $4^{\circ}C$ for 2 hours. Transverse sections $50{\mu}m$ thick were processed using the preembbeding immunocytochemical method and incubated consecutively in the specific primary antibody and the 10% normal goat serum, the rabbit anti-substance P antiserum, the biotin-labelled goat anti-rabbit IgG and finally the avidin-biotin-peroxidase complex. The processed tissue sections were throughly washed and stained in the black with 1% uranyl acetate. Section were examined on a electron microscope. Results: 1) SP immunoreactive neurons were observed in the gray matter around central canal. 2) In lamina I and II SP immunoreactivity was observed in both myelinated and unmyelinated nerve fibers, but in ventral horn only in the unmyelinated nerve fibers. 3) SP immunoreactive axon terminals with small round and large dense core vesicles made chemical synapses onto the dendrites of motor neurons in the ventral horn. Conclusion: SP immunoreactive neurons might play an important role in modulation of motor neurons in the ventral horn of the thoracic cord of the cat.

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Sensory Inputs to Upper Cervical Spinal Neurons Projecting to Midbrain in Cats

  • Kim, Jong-Ho;Jeong, Han-Seong;Park, Jong-Seong;Kim, Jong-Keun;Park, Sah-Hoon
    • The Korean Journal of Physiology and Pharmacology
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    • 제2권1호
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    • pp.9-19
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    • 1998
  • The present study was primarily carried out to characterize the properties of the spinomesencephalic tract (SMT) neurons that project from the upper cervical spinal segments to the midbrain. It was also investigated whether these neurons received convergent afferent inputs from other sources in addition to cervical inputs. Extracellular single unit recordings were made from neurons antidromically activated by stimulation of midbrain. Recording sites were located in lamina $I{\sim}VIII\;of\;C1{\sim}C3$ segments of spinal cord. Receptive field (RF) and response properties to mechanical stimulation were studied in 71 SMT neurons. Response profiles were classified into six groups: complex (Comp, n=9), wide dynamic range (WDR, n=16), low threshold (LT, n=5), high threshold (HT, n=6), deep/tap (Deep, n=10), and non- responsive (NR, n=25). Distributions of stimulation and recording sites were not significantly different between SMT groups classified upon their locations and/or response profiles. Mean conduction velocity of SMT neurons was $16.7{\pm}1.28\;m/sec$. Conduction velocities of SMTs recorded in superficial dorsal horn (SDH, n=15) were significantly slower than those of SMTs recorded in deep dorsal horn (DDH, n=18), lateral reticulated area (LRA, n=21), and intermediate zone and ventral horn (IZ/VH, n=15). Somatic RFs for SMTs in LRA and IZ/VH were significantly larger than those in SDH and DDH. Five SMT units (4 Comps and 1 HT) had inhibitory somatic RFs. About half (25/46) of SMT units have their RFs over trigeminal dermatome. Excitabilities of 5/12 cells and 9/13 cells were modulated by stimulation of ipsilateral phrenic nerve and vagus nerve, respectively. These results suggest that upper cervical SMT neurons are heterogenous in their function by showing a wide range of variety in location within the spinal gray matter, in response profile, and in convergent afferent input.

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