• Title/Summary/Keyword: 신경 세포

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Waveform Sorting of Rabbit Retinal Ganglion Cell Activity Recorded with Multielectrode Array (다채널전극으로 기록한 토끼 망막신경절세포의 활동전위 파형 구분)

  • Jin Gye Hwan;Lee Tae Soo;Goo Yang Sook
    • Progress in Medical Physics
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    • v.16 no.3
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    • pp.148-154
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    • 2005
  • Since the output of retina for visual stimulus is carried by neurons of very diverse functional properties, it is not adequate to use conventional single electrode for recording the retinal action potential. For this purpose, we used newly developed multichannel recording system for monitoring the simultaneous electrical activities of many neurons in a functioning piece of retina. Retinal action potentials are recorded with an extra-cellular planar array of 60 microelectrodes. In studying the collective activity of the ganglion cell population it is essential to recognize basic functional distinctions between individual neurons. Therefore, it is necessary to detect and to classify the action potential of each ganglion cell out of mixed signal. We programmed M-files with MATLAB for this sorting process. This processing is mandatory for further analysis, e.g. poststimulus time histogram (PSTH), auto-correlogram, and cross-correlogram. We established MATLAB based protocol for waveform classification and verified that this approach was effective as an initial spike sorting method.

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Transplantation of Marrow Stromal Cells into the Developing Mammal Retina (발생 중인 포유류 망막으로 골수기질세포의 이식)

  • Lee, Eun-Shil;Kwon, Oh-Ju;Ye, Eun-Ah;Jeon, Chang-Jin
    • Journal of Korean Ophthalmic Optics Society
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    • v.18 no.4
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    • pp.541-548
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    • 2013
  • Purpose: Marrow stromal cells (MSCs) have been known for their potential to trans-differentiate into neural and glial cells in vitro and in vivo. To investigate the influence of the developing host environment on the survival and morphological and molecular differentiation, murine MSCs transplanted into the eye of Brazilian opossum (Monodelphis domestica). Methods: Enhanced green fluorescent protein (GFP) - expressing MSCs were transplanted into developing Brazilian opossums. Animals were allowed to survive for up to 4 weeks after transplantation, at which time the eyes were prepared for immunohistochemical analysis. Results: Some transplanted MSCs survived and showed morphological differentiation into neural cells with some processes within the host vitreous chamber. Some transplanted cells expressed class III ${\beta}$-tubulin (TuJ1, a marker for neuronal cells) or glial fibrillary acid protein (GFAP, a marker for glial cells) or Nestin (a marker for neural stem cells). In addition, some transplanted cells were located in ganglion cell layer but did not show morphological and molecular differentiation. Conclusions: Our result show that the most effective stage of development for transplantation into the retina was postnatal day 16, which retinas developmentally corresponded to postnatal day 4-5 days mouse retina based on cell differentiation and lamination patterns. The present findings suggest that the age of the host appears to play a key role in determining cell fate in vivo.

Changes of CGRP immunoreactivity in rat trigeminal ganglion neurons during tooth movement (백서 삼차신경절내 신경세포체의 치아이동에 따른 CGRP 면역염색성의 변화)

  • Park, Chyo-Sang;Park, Guk-Phil;Sung, Jae-Hyun
    • The korean journal of orthodontics
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    • v.27 no.4 s.63
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    • pp.607-621
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    • 1997
  • GRP was known as the modulator of Pain transmission in central nervous system and local effector to peripheral tissue causing vasodilation, increased blood flow, modulation of immune sysem, stimulation of endothelial cell proliferation, and stimulation of bone formation. Numerous study, therefore, were done to elucidate involvement of CGRP to tooth movement. To investgate the response of CGRP immunoreactive nerve cells according to cell size in trigeminal ganglion during tooth movement, immunohistochemical study was performed using rat. Experimental rats(9 weeks old, 210 gm) were divided as six groups(normal(n=6), 3 hour group(n=5), 12 hour group(n=4), 1 day group(n=5), 3 day group(n=5), 7 day group(n=5)), and were applied orthodontic force (approximately 30 gm) to upper right maxillary molar. After frozen sections of trigeminal ganglions were immunostained using rabbit antisera, the changes of CGRP immunoreactive cells in regard to cell size distribution(small cell(upto $20{\mu}m$), medium cell($20-35{\mu}m$), large cell(above $35{\mu}m$)) were observed. The results were as follows 1. The percentage of CGRP immunoreactive cells to all nerve cells in trigeminal ganglion was 33.0% in normal control group, was decreased to 24.5% in 1 day group, and was increased to 41.8% in 7 day group. 2. The percentage of small, medium, and large cells expressing CGRP immunoreactivity in normal trigeminal ganglion to all CGRP immunoreactive cells were 51.3%, 44.0%, 4.7%, respectively. 3. The percentage of small cells with CGRP immunoreactivity to all CGRP immunopositive cells was increased in 3 hour and 12 hour groups. 4. The percentage of medium cells with CGRP immunoreactivity was increaed in 3 day and 7 day groups. 5. The percentage of large cells with CGRP immunoreactivity was increaed in 7 day group. Conclusively, the small cells with CGRP immunoreactivity in trigeminal ganglion respond to orthodontic force during initial phase of tooth movement, and later the medium and large cells with CGRP immunoreactivity respond

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Protective effects of Juglandis semen on amyloid-${\beta}$-induced neuronal toxicity and lipid peroxidation in rat astrocytes (흰쥐의 뇌 Astrocyte에서 amyloid-${\beta}$ 25-35로 유발된 세포 독성과 지질과산화에 대한 호도(胡桃)의 보호효과)

  • Jang, Mi-Kyung;Park, Jong-Hyuck;Jeong, Ji-Cheon;Kim, Cheorl-Ho;Yoon, Cheol-Ho
    • The Journal of Internal Korean Medicine
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    • v.21 no.2
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    • pp.235-241
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    • 2000
  • 호도(胡桃)(Juglandis semen)가 치매에 미치는 영향을 알아보기 위하여 치매(Alzheimer's disease) 유발물질로 알려진 amyloid-{$\beta}(A{\beta})$ 25-35를 흰쥐의 뇌 신경세포의 일종인 astrocyte에 처리한 후 뇌의 신경세포에 대한 독성 및 세포막에서의 지질 과산화에 미치는 영향을 검토하였다. 호도(胡桃)는 $A{\beta})$ 25-35로 인한 신경세포의 파괴를 억제하는 것으로 나타나 신경세포의 손상을 예방하고 보호하는 효과가 있었다. 그리고, 지질의 과산화 지표인 malondialdehyde 생성은 $A{\beta})$ 25-35 처리로 크게 증가하였으나, 호도(胡桃)의 전처리와 후처리로 크게 감소되어 호도(胡桃)가 세포막 파괴로 인한 뇌세포의 손상을 방지하는 것으로 나타났다. 이러한 결과들을 볼 때, 호도(胡桃)는 신경세포의 하나인 astrocyte에 대한 보호효과와 세포막에서 지질의 과산화를 저해 및 $A{\beta})$ 25-35 처리와 같은 치매 유발 독성에 대한 적응능력 향상을 통하여 뇌 신경세포를 보호하는 효과가 있음을 보여주는 것으로 노인성 치매 등의 임상적 응용에 그 효과가 기대된다.

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A Screen for Dual-protection Molecules from a Natural Product Library against Neuronal Cell Death and Microglial Cell Activation (신경세포 사멸과 미세아교세포활성화 억제 동시 가능 천연물질 탐색 연구)

  • Min, Ju-Sik;Lee, Dong-Seok
    • Journal of Life Science
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    • v.25 no.6
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    • pp.656-662
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    • 2015
  • Natural products and natural product structures play a general and highly significant role in drug discovery and development process because it has various merits and potentials for new drug source that have extensive clinical experience, development time contraction, excellent stability and safety. In several neurological disorders, neuronal death and excessive activation of microglia (neuro-inflammation) are observed. A number of drug discovery-related neuronal cell death and neuro-inflammation was studied from natural products, respectively. However, until now, it has not been possible to study dual-protection molecules recorded in the Natural Product library. In the present study, using the natural product-derived library of the Institute for Korea Traditional Medical Industry, we investigated dual-protective molecules against glutamate (a classical excitatory neurotransmitter)-induced oxidative stress mediated neuronal cell death and LPS-induced excessive activated microglial cells (immune cells of the brain). Chrysophanol, extracted from Rheum palmatum, had dual-protective effects against both glutamate-induced neuronal cell death and LPS-induced NO production, triggering proinflammatory cytokines and microglia activation and resulting in neuroinflammation. Flow-cytometry analysis revealed that chrysophanol had a scavenger effect, scavenging glutamate- and LPS-induced reactive oxygen species (ROS) produced by neuronal and microglial cells, respectively. Based on the present study, chrysophanol may have an important protective role against neuronal cell death and neuroinflammation in the brain. The results may be helpful for studying drug development candidates for treating central nervous system disorders.

Effects of Deer Antler on the Regeneration of Peripheral Nerves; About Sprout Formation of Experimentally Transected Sciatic Nerves in Rat (말초신경의 재생에 대한 녹용의 효과; 랫드에서 실험적 절단 좌골신경의 Sprout 형성에 관해)

  • Chang, Byung-Joon;Cho, Ik-Hyun;Choi, Hye-Young;Won, Hui-Young;Park, Chang-Hyun;Bae, Chun-Sik;Choe, Nong-Hoon
    • Applied Microscopy
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    • v.32 no.1
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    • pp.67-80
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    • 2002
  • This study was carried out to investigate the effects of deer antler extract on the regeneration of peripheral nerves. Sprague-Dawley male rats weighing about 300 gm were fed deer antler extract for 1, 2, and 3 weeks per oral (1.5 ml/100 gm B.W.), respectively, once a day and transected both sides of sciatic nerve of each leg. After keeping for 6 hours, sciatic nerves taken from proximal part of transected region were treated with conventional transmission electron microscopical method and then observed with electron microscope. The results obtained were summarized as follows; 1. Sciatic nerves of normal control group were not showing any sprouts and electron dense axolemmal projections were frequently observed. 2. Sciatic nerves of saline treated groups were showing axonal sprouts at the nodes of Ranvier. The length of them was usually short, and numerous vesicles, vacuoles and organelles including neurofilament were contained. The number of nodes of Ranvier containing sprouts from 100 longitudinal sectioned nerve fibers was 29 (29%) in 1 week treated group, 32 (32%) in 2 weeks treated group, and 30 (30%) in 3 weeks treated group, respectively. 3. Sciatic nerves of deer antler treated groups were showing axonal sprouts at the node of Ranvier as well. Although most of the sprouts were short, some sprouts of 2 weeks and 3 weeks treated groups were quite long. Sprouts usually contained numerous vesicles, vacuoles and cell organelles such as neurofilaments and mitochondria. The number of nodes of Ranvier containing sprouts from 100 longitudinal sectioned nerve fibers was 38 (38%) in 1 week treated group, 46 (46%) in 2 weeks treated group, and 48 (48%) in 3 weeks treated group respectively. The results described above explain pretreatment of deer antler extract improves the sprout formation of transected sciatic nerves, and then it suggests deer antler may be effective for the regeneration of peripheral nerves.

Studies on the Visceral Ganglion and Right Parietal Ganglion in the African Giant Snail, Achatina fulica II. Ultrastructural Method (아프리카 왕달팽이 (Achatina fulica) 내장신경절 및 우 체벽신경절에 관한 연구 II. 미세구조적 방법)

  • Chang, Nam-Sub
    • Applied Microscopy
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    • v.31 no.1
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    • pp.101-108
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    • 2001
  • Five kinds of neurosecretory cells (type-A, B, C, D and E) and neuropiles surrounding them were observed in the visceral ganglion and the right parietal ganglion of the African giant snail, Achatina fulica, by transmission electron microscopy. Type-A cells (diameter, $35{\mu}m$) are the most popular cells in the cortex of the two ganglions, which are of triangular or irregular forms. In their cytoplasm, there are found large granules of 1 fm in diameters and small round granules of about $0.1{\mu}m$ in diameters. Small granules are classified into the ones of high electron density and the others of middle electron density. Type-B cells (diameter, $19\times12{\mu}m$) are evenly distributed over various portions of cortex and medulla of the two ganglions. They are similar to type-A cells in shapes. The cytoplasm of type-B cells is crowded with high electron dense granules of about $0.1{\mu}m$. Round granules of about $0.7{\mu}m$ in diameters are also found but rarely. Type-C cells are the smallest cells whose sizes are about $8\times6{\mu}m$. Each of them contains a large nucleus of about $6\times5{\mu}m$. Its cytoplasm is full of electron dense granules of about $0.23{\mu}m$, each of which is artually an assembly of tiny granules of about $0.03{\mu}m$. Type-D cells are middle-size cells of about $28\times20{\mu}m$, which take ellipsoidal or irregular forms. They are found in the cortex more than in the medulla. Their cytoplasm looks dark due to the high electron density and, in it, two kinds of round granules whose sizes are $1.6{\mu}m$fm and $0.6{\mu}m$, respectively, are observed. Type-E cells are large cells of about $100\times50{\mu}m$, which are rarely found in the upper and middle portions of the two ganglions. The nucleus of the cell, which is very large $(70\times30{\mu}m)$ for the cytoplasm, contains electron dense round granules of diverse sizes (diameters, $1\sim0.2{\mu}m$). The surface of the cell protrudes filopodia of various forms and phagocytizes decrepit cells. Neuropiles are surrounding the neurosecretory cells. In nerve fibers, synaptic vesicles are observed, which are classified into six classes according to their electron densities , sizes and shapes.

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Degenerative Changes of the Rat Dorsal Root Ganglion (DRG) Cells Following a Tight Spinal Nerve Ligation (랫드 척수신경 결찰에 따른 척수신경절세포의 퇴행성변화)

  • Kim, Yi-Suk;Jo, Seung-Mook
    • Applied Microscopy
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    • v.39 no.3
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    • pp.261-266
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    • 2009
  • This study aim to disclose a possible mechanism for the neuronal cell death induced by peripheral nerve injury following a spinal nerve ligation (SNL) as a neuropathic pain model. Male Sprague-Dawley rats (270~290 g) were used for this study. Pain threshold was evaluated for their response to mechanical (von Frey hairs) stimuli 1, 3, and 7 days after a tight ligation of L5 ventral ramus. In control group, the small ganglion cells were strongly stained with routine toluidine blue (TB), whereas the large ganglion cells showed a little bit weak stainity. Each large ganglion cell is surrounded by perineuronal satellite cells. In experimental groups, small ganglion cells showing apparent degenerative changes increased on 1 day, and showed a peak in degenerative cell number at 3 days group, and decreased gradually at 7 days group. We also found a small number of large-sized ganglion cells showing mild degenerative changes. However their satellite cells ware relatively intact with no typical findings throughout this experiment. Under the electron microscope, small ganglion cells showed various stage and typical features of the dark degeneration including mitochondrial swelling.

Neuroprotective effects of Salacca wallichiana extract against glutamate-induced oxidative stress in mouse Hippocampal HT22 cells (쥐 해마 HT22 세포에서 글루타메이트 유도 산화 스트레스에 대한 Salacca wallichiana 추출물의 신경 보호 효과)

  • Ji Hun Byeon;Ye Yeong Hong;Jungwhoi Lee;Thet Thet Mar Win;Su Su Hlaing;Song-I Han;Jae Hoon Kim
    • Journal of Applied Biological Chemistry
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    • v.66
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    • pp.250-257
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    • 2023
  • Glutamate is an excitatory neurotransmitter distributed in the central nervous system of mammals. However, high concentrations of glutamate are known to cause neurodegenerative diseases such as Alzheimer's disease, Parkinson's disease, and stroke by causing nerve cell death. In this study, the antioxidant activity and neuroprotective effect of subtropical natural products were analyzed. Among 11 subtropical plant extracts mainly tested, Sallacca wallichiana extract (SE) showed the greatest free radical scavenging activity. Then, we confirmed through WST-1 assay that SE protected HT22 cells against glutamate-induced cell death in a concentration-dependent manner. The protective effects of SE against glutamate-induced apoptosis in HT22 cells were also confirmed by flow cytometry analysis using Annexin V/PI double staining. We also confirmed using H2DCF-DA single staining that SE inhibits glutamate-induced intracellular reactive oxygen species. And we were confirmed through that SE inhibited glutamate-induced phosphorylation of Mitogen-activated Protein kinases. Consequently, our results propose that SE may contribute to the development of therapeutics to prevent neurodegenerative diseases.

NMDA, quisqualate 및 kainate에 의하여 유발된 신경독성에 미치는 betaine의 효과

  • 박미정;김소라;김영중
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1994.04a
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    • pp.239-239
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    • 1994
  • 신경쇠약의 치료로 상용하며, 빈혈의 치료와 예방의 효과가 있으며, 노화방지에 도움이 되어 민간약으로는 장수(長壽)약으로 꼽히고 있는 구기자가 글루타메이트에 의한 신경독성을 차단하며, 이러한 효과는 구기자의 성분 중 betaine에 의하여 나타난다. Betaine이 어떠한 작용 기전에 의하여 글루타메이트에 의한 신경독성을 차단하는 지를 밝히기 위하여 글루타메이트가 작용하는 각기 다른 수용체인 NHDA 및 non-NMDA 수용체에 어떻게 작용하는 지를 알아보았다. 각 수용체의 선택적인 효능제인 NMDA, kainate 및 quisqualate 각각을 사용하여 인위적으로 독성을 유도시킨 후 이에 대한 betaine의 작용을 알아 본 결과 betaine은 quisqualate에 의하여 유도된 신경독성에서 모두 유사한 정도의 효과를 나타내었다. 이러한 효과는 betaine과 구조가 유사한 glycine의 다른 구조 유사체인 dimethylglycine이나 sarcosine과는 다른 작용양상을 나타내는 것이다. Dimethylglycine과 sarcosine은 kainate에 의한 독성에 대하여 미약한 효과를 나타냈으나, NMDA에 의한 독성에는 정상대조군의 LDH 값의 50% 이상에까지 이르게하는 효과를 나타내는 것으로 보아 이들이 NMDA에 의한 신경독성을 효과적으로 차단한다는 것을 암시해 준다고 할 수 있다. 그러나 betaine의 글루타메이트에 의한 신경독성을 차단하는 효과는 다른 glycine 구조 유사체처럼 glycine과 경쟁적으로 작용하여 나타나는 결과는 아니라고 여겨진다. 또한 글루타메이트에 의한 신경독성이 일어나는 기전 중의 하나가 calcium 이온의 세포내의 과도한 유입으로 인한 것으로 알려져 있으나 세포내의 calcium 이온의 양을 측정하여 본 결과 betaine은 글루타메이트로 인한 세포내 calcium 이온의 증가에 대하여 별다른 효과를 나타내지 않았다. 따라서 betaine의 글루타메이트에 의한 신경독성 차단 효과는 이미 미생물에서 보고된 바 있는 betaine의 세포내 삼투압에 대한 보호작용이나 항산화작용과 관련된 기전에 의하여 나타나는 것일 가능성이 높은 것으로 추측되어진다.

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