• 제목/요약/키워드: glial fibrillary acidic protein (GFAP)

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A Neonatal Form of Alexander Disease Presented with Intractable Seizures and Obstructive Hydrocephalus

  • Yoo, Il Han;Hong, Won Gi;Kim, Hunmin;Lim, Byung Chan;Hwang, Hee;Chae, Jong-Hee;Kim, Ki Joong;Hwang, Yong Seung
    • Journal of Genetic Medicine
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    • 제10권2호
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    • pp.113-116
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    • 2013
  • Alexander disease is a rare degenerative leukodystrophy caused by dominant mutations in glial fibrillary acidic protein (GFAP). The neonatal form of Alexander disease may manifest as frequent and intractable seizures or obstructive hydrocephalus, with rapid progression leading to severe disability or death within two years. We report a case of a 50-day-old male who presented with intractable seizures and obstructive hydrocephalus. His initial magnetic resonance imaging (MRI) suggested a tumor-like lesion in the tectal area causing obstructive hydrocephalus. Despite endoscopic third ventriculostomy and multiple administrations of antiepileptic drugs, the patient experienced intractable seizures with rapid deterioration of his clinical status. After reviewing serial brain MRI scans, Alexander disease was suspected. Subsequently, we confirmed the de novo missense mutation in GFAP (c.1096T>C, Y366H). Although the onset was slightly delayed from the neonatal period (50 days old), we concluded that the overall clinical features were consistent with the neonatal form of Alexander disease. Furthermore, we also suspected that a Y366 residue might be closely linked to the neonatal form of Alexander disease based on a literature review.

Astrogliosis Is a Possible Player in Preventing Delayed Neuronal Death

  • Jeong, Hey-Kyeong;Ji, Kyung-Min;Min, Kyoung-Jin;Choi, Insup;Choi, Dong-Joo;Jou, Ilo;Joe, Eun-Hye
    • Molecules and Cells
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    • 제37권4호
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    • pp.345-355
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    • 2014
  • Mitigating secondary delayed neuronal injury has been a therapeutic strategy for minimizing neurological symptoms after several types of brain injury. Interestingly, secondary neuronal loss appeared to be closely related to functional loss and/or death of astrocytes. In the brain damage induced by agonists of two glutamate receptors, N-ethyl-D-aspartic acid (NMDA) and kainic acid (KA), NMDA induced neuronal death within 3 h, but did not increase further thereafter. However, in the KA-injected brain, neuronal death was not obviously detectable even at injection sites at 3 h, but extensively increased to encompass the entire hemisphere at 7 days. Brain inflammation, a possible cause of secondary neuronal damage, showed little differences between the two models. Importantly, however, astrocyte behavior was completely different. In the NMDA-injected cortex, the loss of glial fibrillary acidic protein-expressing ($GFAP^+$) astrocytes was confined to the injection site until 7 days after the injection, and astrocytes around the damage sites showed extensive gliosis and appeared to isolate the damage sites. In contrast, in the KA-injected brain, $GFAP^+$ astrocytes, like neurons, slowly, but progressively, disappeared across the entire hemisphere. Other markers of astrocytes, including $S100{\beta}$, glutamate transporter EAAT2, the potassium channel Kir4.1 and glutamine synthase, showed patterns similar to that of GFAP in both NMDA- and KA-injected cortexes. More importantly, astrocyte disappearance and/or functional loss preceded neuronal death in the KA-injected brain. Taken together, these results suggest that loss of astrocyte support to neurons may be a critical cause of delayed neuronal death in the injured brain.

홍역이환개에서 발생한 수초탈락성 뇌척수염 : 수초탈락부위에서 MBP, MAG 및 GFAP의 면역조직학적 관찰 (Demyelination in natural canine distemper encephalomyelitis : An immunohistochemical study of myelin basic protein, myelin associated glycoprotein and glial fibrillary acidic protein in the lesion of demyelination)

  • 신태균;권오덕;이두식;이차수
    • 대한수의학회지
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    • 제33권2호
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    • pp.295-300
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    • 1993
  • 홍역이환개의 중추신경계에서 발생한 수초탈락을 수반하는 뇌척수염을 병리조직학적으로 관찰하고 조직반응과 수축탈락의 과정을 알아보기 위하여 중추신경계 조직을 파라핀 포매, 절편을 만들고 병소가 빈발하는 소뇌와 시신경로는 수초의 주요 구성단백인 MBP와 MAG 그리고 별아교세포의 Marker인 GFAP의 항혈청을 반응시켜 면역세포학적으로 관찰하였다. 조직학적으로는 대뇌에서 신경세포의 일부괴사, 신경아교세포의 결절형성, 소뇌에서는 4뇌실에 인접하여 백질부에서 수초의 공포변성, 수초탈락과 염증세포의 침윤이 현저하였고 피질부의 과립층에 인접한 부위와 시신경로에서도 수초탈락이 인정되었다. MBP와 MAG를 면역반응시킨 결과 수초의 공포화와 수초탈락이 현저한 부위에서는 MBP와 MAG가 동시에 소실되었고 부위에 따라서는 MBP또는 MAG가 먼저 소실되기도 하였다. 동시에 별아교세포의 반응은 수초탈락 초기에는 GFAP양성의 섬유와 세포가 크게 증가한 반면 수초탈락이 심하게 진행된 부위에서는 오히려 소실되는 경향이었다. 따라서 홍역이환 개에서 발생되는 수초탈락은 일차적으로 수초가 공격을 받아 파괴됨을 알 수 있었고 동시에 부위에 따라 다른 소견을 요인별로 비교하였다.

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마미련(馬尾連)이 Alzheimer's Disease 병웅(病熊) 모델에 미치는 영향(影響) (The Effects of Thalictrum foetidum(TFD) on the Alzheimer's Disease Model)

  • 배재용;이상룡;정인철
    • 동의신경정신과학회지
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    • 제18권1호
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    • pp.63-78
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    • 2007
  • Objective : This experiment was designed to investigate the effect of Thalictrum foetidum(TFD) on the Alzheimer's disease. Method : The effects of TFD on amyloid precursor proteins(APP), acetylcholinesterase(AChE), glial fibrillary acidic protein(GFAP) mRNA of PC-12 cell treated by amyloid ${\beta}$ $protein(A{\beta})$ and $IL-1{\beta}$, IL-6, $TNF-{\alpha}$ mRNA of THP-l cell treated by lipopolysaccharide(LPS), AChE activity of PC-12 cell lysate treated by $A{\beta}$ and behavior of the memory deficit mice induced by scopolamine, and glucose, AChE in serum of the memory deficit mice induced by scopolamine were investigated, respectively. Results : The results were summarized as follows ; 1. TFD suppressed APP, AChE, GFAP mRNA in PC-12 cell treated by $A{\beta}$. 2. TFD suppressed $IL-1{\beta}$, IL-6, $TNF-{\alpha}$ mRNA in THP-l cell treated by LPS 3.. TFD suppressed AChE activity in cell lysate of PC-12 cell treated by $A{\beta}$. 4. TFD increased glucose and decreased AChE significantly in the serum of the memory deficit mice induced by scopolamine. 5. TFD group showed significantly inhibitory effect on the scopolamine-induced impairment of learning and memory in the experiment of Morris water maze. Conclusion : According to the above results, it is suggested that TFD might be usefully applied for prevention and treatment of Alzheimer's disease.

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두견화(杜鵑花)가 Alzheimer's Disease 병태(病態) 모델에 미치는 영향(影響) (The Effects of Rhododendron simsii Planch(RSP) on the Alzheimer's Disease Model)

  • 장진실;이상룡;정인철
    • 동의신경정신과학회지
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    • 제17권2호
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    • pp.75-89
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    • 2006
  • Objective : This experiment was designed to investigate the effect of Rhododendron simsii Planch(RSP) on the Alzheimer's disease. Method : The effects of RSP on amyloid precursor proteins(APP), acetylcholinesterase (AChE), glial fibrillary acidic protein(GFAP) mRNA of PC-12 cell treated by amyloid ${\beta}$ protein$(A{\beta})$ and $IL-1{\beta}$, IL-6, $TNF-{\alpha}$ mRNA of THP-1 cell treated by lipopolysaccharide(LPS), AChE activity of PC-12 cell lysate treated by $A{\beta}$ and behavior of the memory deficit mice induced by scopolamine, and glucose, AChE in serum of the memory deficit mice induced by scopolamine were investigated, respectively. Result : 1. RSP suppressed APP, AChE, GFAP mRNA in PC-12 celt treated by $A{\beta}$. 2. RSP suppressed $IL-1{\beta}$, IL-6, $TNF-{\alpha}$ mRNA in THP-1 cell treated by LPS. 3. RSP suppressed AChE activity in cell lysate of PC-12 cell treated by $A{\beta}$. 4. RSP increased glucose and decreased AChE significantly in the serum of the memory deficit mice induced by scopolamine. 5. RSP group showed significantly inhibitory effect on the scopolamine-induced impairment of teaming and. memory in the experiment of Morris water maze. Conclusion : According to the above results, it is suggested that RSP might be usefully applied for prevention and treatment of Alzheimer's disease and memory deficit symptom.

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사인(砂仁)이 Alzheimer's Disease 병태 모델에 미치는 영향 (Effects of Amomum villosum(AMV) Extract on the Alzheimer's Disease Model)

  • 최보윤;정인철;이상룡
    • 동의생리병리학회지
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    • 제20권1호
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    • pp.43-51
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    • 2006
  • This experiment was designed to investigate the effect of Amomum villosum(AMV) on the Alzheimer's disease. The effects of AMV extract on amyloid precursor proteins(APP), acetylcholinesterase(AChE), glial fibrillary acidic protein(GFAP) mRNA of PC-12 cell line treated by amyloid $\beta$ protein($A{\beta}$) : IL-$1{\beta}$, IL-6, TNF-$\alpha$ mRNA of THP-1 cell line treated by lipopolysaccharide(LPS) : AChE activity of PC-12 cell lysate treated by $A{\beta}$ : serum glucose, uric acid, AChE activity of memory deficit rats induced by scopolamine : behavior of memory deficit mice induced by scopolamine were investigated, respectively. AMV extract suppressed APP, AChE, GFAP mRNA in PC-12 cell treated by $A{\beta}$ : IL-$1{\beta}$, IL-6, TNF-$\alpha$ mRNA in THP-1 cell treated by LPS , AChE activity in cell lysate of PC-12 cell treated by $A{\beta}$. AMV extract increased glucose, decreased uric acid and AChE significantly in the serum of the memory deficit rats induced by scopolamine. AMV extract group showed significantly inhibitory effect on the memory deficit of mice induced by scopolamine in the experiment of Morris water maze. According to the above results, it is suggested that AMV extract might be usefully applied for prevention and treatment of Alzheimer's disease.

Expression of Kir2.1 Channels in Astrocytes Under Pathophysiological Conditions

  • Kang, Shin Jung;Cho, Sang-hee;Park, Kyungjoon;Yi, Jihyun;Yoo, Soon Ji;Shin, Ki Soon
    • Molecules and Cells
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    • 제25권1호
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    • pp.124-130
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    • 2008
  • Astrocyte ion channels participate in ionic homeostasis in the brain. Inward rectifying potassium channels (Kir channels) in astrocytes have been particularly implicated in $K^+$ homeostasis because of their high open probability at resting potential and their increased conductance at high concentrations of extracellular $K^+$. We examined the expression of the Kir2.1 subunit, one of the Kir channel subunits, in the mouse brain by immunohistochemistry. Kir2.1 channels were widely distributed throughout the brain, with high expression in the olfactory bulb and the cerebellum. Interestingly, they were abundantly expressed in astrocytes of the olfactory bulb, while astrocytes in other brain regions including the hippocampus did not show any detectable expression. However, Kir2.1 channel-expressing cells were dramatically increased in the hippocampus by kainic acid-induced seizure and the cells were glial fibrillary acidic protein (GFAP)-positive, which confirms that astrocytes in the hippocampus express Kir2.1 channels under pathological conditions. Our results imply that Kir2.1 channels in astrocyte may be involved in buffering $K^+$ against accumulated extracellular $K^+$ caused by neuronal hyperexcitability under phathophysiological conditions.

미토콘드리아 억제제 rotenone에 의한 쥐의 뇌실 하 영역 신경 줄기 세포의 증식과 신경 세포로의 분화 억제 (Inhibition of Proliferation and Neurogenesis of Mouse Subventricular Zone Neural Stem Cells by a Mitochondrial Inhibitor Rotenone)

  • 박기엽;김만수
    • 생명과학회지
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    • 제28권12호
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    • pp.1397-1405
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    • 2018
  • 미토콘드리아는 세포안에서 에너지 공급, 칼슘 이온 저장, 활성산소 생성, 세포 자살과 같은 다양한 기능을 수행한다. 이러한 기능을 통해, 미토콘드리아는 줄기세포의 유지, 증식, 그리고 분화에 관여한다. 뇌에서 뇌실 하 영역(subventricular zone, SVZ)에는 일평생 새로운 신경세포를 생성하는 신경줄기세포(neural stem cell, NSC)가 존재한다. 하지만, SVZ NSCs에서 미토콘드리아의 역할에 대한 연구는 많이 알려져 있지 않다. 이번 연구에서 우리는 미토콘드리아의 complex I 저해제인 rotenone이 SVZ NSCs의 증식과 분화를 다른 방식으로 방해한다는 것을 보여주었다. 증식 중인 신경줄기세포에서, rotenone은 세포분열을 감소시켰는데, 이때 세포분열은 히스톤 H3에 인산기가 붙어있는 지를 측정하여 확인하였다. Rotenone을 50 nM 농도로 증식 중인 신경줄기세포에 처리했을 때, 세포사멸은 발생하지 않았다. 한편, 분화 중인 신경줄기세포에 rotenone을 처리한 경우, 신경세포와 희소 돌기아교 세포(oligodendrocyte)으로의 분화가 억제되었고, glial fibrillary acidic protein (GFAP)를 발현하는 성상세포(astrocyte)에는 영향이 없었다. 흥미롭게도, 4-6일 동안의 분화 과정 동안 rotenone이 처리된 신경줄기세포에서 대조군 보다 더 많은 세포 수가 관찰 되었는데, 이는 증식 과정 중의 rotenone의 효과와 다른 것이다. 이에, 우리는 rotenone이 세포 자살은 감소시켰으나, 세포 분열에는 영향을 끼치지 않았음을 관찰하였다. 세포 자살의 경우는 cleaved caspase-3를 측정함으로써 확인하였다. 이러한 결과들은 SVZ 신경줄기세포의 증식과 분화 모두에 제대로 작동하는 미토콘드리아가 있어야 함을 제안하고 있다. 게다가, 이러한 과정에서 미토콘드리아는 세포 분열과 세포자살에 관여할 수도 있을 것이다.

청색광에 의한 마우스 망막손상에서 선택적 광수용세포의 사멸 (Blue-light Induces the Selective Cell Death of Photoreceptors in Mouse Retina)

  • 강서영;홍지은;최은정;류정묵
    • 한국안광학회지
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    • 제21권1호
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    • pp.69-76
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    • 2016
  • 목적: 본 연구는 망막색소상피층에 색소가 존재하는 mouse에서 청색광으로 인해 광수용세포 손상이 일어날 수 있는지 확인하고, 광수용세포 중 특이적 세포에서 세포사멸이 유도되는지 조사하여 청색광에 의해 야기될 수 있는 연령관련 황반변성의 기전 규명과 치료제 개발에 도움이 되고자 진행되었다. 방법: C57black mice를 24시간 암순응 시켜 463 nm의 청색광을 $2800{\pm}10lux$로 조사한 후 1일, 3일, 7일째에 안구를 적출하였다. 청색광의 자극은 GFAP(Glial fibrillary acidic protein)단백질의 발현을 이용하여 확인하였고, 광수용세포의 세포사멸은 TUNEL(Terminal deoxynucleotidyl transferase dUTP nick end labeling)을 사용하여 분석하였다. Western blotting으로 ERK(Extracellular signal-regulated kinases), c-JUN, SRC(Sarcoma) 단백질 발현을 확인하였고, 막대세포와 원뿔세포의 손상 정도를 비교하기 위해 면역염색으로 분석하였다. 결과: 청색광을 조사한 후 1, 3, 7일이 지난 망막은 대조군 보다 전체적으로 두께가 감소하였고, 각 얼기층보다 핵층에서 두께 감소를 확인할 수 있었다. 또한 청색광을 조사한 후 1일 지난 Muller glia에서 GFAP 단백질이 증가하는 것을 확인하였다. TUNEL 염색에서는 청색광을 조사한 후 1일 지난 망막의 광수용세포에서 가장 많은 발현을 보였다. 세포사멸 기전 과정 중 하나임을 확인하기 위해 ERK, c-JUN, SRC 단백질 활성을 확인한 결과 청색광을 조사한 망막에서 phosphorylated ERK는 증가하였고 phosphorylated SRC는 조사 후 1일에서만 증가를 나타내었으며, 반대로 phosphorylated c-JUN은 조사 후 1일에서만 감소하였다. 청색광을 조사한 망막에서 막대세포 발색단인 로돕신과 원뿔세포의 발색단인 옵신이 감소하였으며, 옵신의 감소량은 로돕신의 감소량보다 큰 것을 확인하였다. 결론: 본 연구는 청색광이 망막에 손상자극을 주고, ERK와 SRC 신호전달과 관련하여 광수용세포의 세포사멸을 일으킬 수 있으며 청색광이 광수용세포 중 원뿔세포의 세포사멸을 직접적으로 유도하여 망막 손상을 야기할 수 있다는 가능성을 제시하였다.

산사육(山査肉)이 CT105로 과도(課導)된 Alzheimer's Disease 병태(病態) 모델에 미치는 영향(影響) (The Effects of Crataegus prinnatiflora BGE. var. major N.E. BR(CPVM) Extract on the the Alzheimer's Disease Model Induced by CT105)

  • 정인철;이상룡;채종걸
    • 동의신경정신과학회지
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    • 제13권1호
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    • pp.79-115
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    • 2002
  • This research investigates the effect of the Crataegus pinnatifida BGE. var. major N.E. BR(CPVM) on Alzheimer's disease. Specifically, the effects of the DYHT extract on (1) $IL-1{\beta}$, IL-6, amyloid precursor proteins(APP), acetylcholinesterase(AChE), and glial fibrillary acidic protein(GFAP) mRNA of PC-12 cells treated with CTI05; (2) the AChE activity and the APP production of PC-12 cell treated with CT105; (3) the behavior; and (4) expression of $IL-1{\beta}$, $TNF-{\alpha}$, reactive oxygen species(ROS), nitrite oxide(NO); and (5) the infarction area of the hippocampus, and brain tissue injury in Alzheimer's diseased mice induced with CT105 were investigated. The results are as follow. 1. The CPVM extract suppressed the expression of $IL-1{\beta}$, IL-6, APP, AChE, and GFAP mRNA in PC-12 cells treated with CT105. 2. The CPVM extract suppressed the AChE activity and the production of APP significantly in PC-12 cells treated with CT105. 3. The CPVM extract group showed a significant inhibitory effect on the memory deficit for the mice with Alzheimer's disease induced by CT105 in the Morris water maze experiment. 4. The CPVM extract suppressed the over-expression of $IL-1{\beta}$, $TNF-{\alpha}$, ROS and NO in the mice with Alzheimer's disease induced by CT105. 5. The CPVM extract reduced the infarction area of hippocampus, and controlled the injury of brain tissue in the mice with Alzheimer's disease induced by CT105. These results suggest that the CPVM extract may be effective for the prevention and treatment of Alzheimer's disease.

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