• Title/Summary/Keyword: glial cell

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Inhibition of Neurogenesis of Subventricular Zone Neural Stem Cells by 5-ethynyl-2'-deoxyuridine (EdU) (5-ethynyl-2'-deoxyuridine (EdU)에 의한 뇌실하 영역 신경줄기세포의 신경 세포로의 분화 억제)

  • Park, Ki-Youb;Oh, Hyun-Chang;Lee, Ji-Yong;Kim, Man Su
    • Journal of Life Science
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    • v.27 no.6
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    • pp.623-631
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    • 2017
  • In the subventricular zone (SVZ) and the subgranular zone of the brain, neurogenesis occurs throughout one's lifespan. Neural stem cells (NSCs) in these regions divide to maintain their stem cell pools as well as differentiate into neurons and glial cells. To monitor cell division, a thymidine analogue such as 5-ethynyl-2'-deoxyuridine (EdU) has been used. In some cases, EdU was applied to label newly born neurons. Here, we report about the effects of EdU on the proliferation and differentiation of NSCs cultured from mouse SVZ. First, when NSCs were cultured in a proliferation medium containing EdU for 24 hr, they did not generate any neurons under the following differentiation conditions. When EdU was applied to the proliferating NSCs for 1 hr prior to differentiation, neurogenesis was still substantially reduced. Second, EdU decreased cell proliferation of NSCs in dose- and time-dependent manners. Finally, EdU inhibited differentiation into oligodendrocyte lineage, while the number of glial fibrillary acidic protein (GFAP)-positive astrocytes increased. To our knowledge, these findings are the first to show the effects of EdU on the differentiation of SVZ NSCs and suggest that cell division is necessary for differentiation into neurons and oligodendrocytes.

Pharmacological Properties of CDBT in Hypoxia-induced Neuronal Cell Injury and Their Underlying Mechanisms

  • Park, Sang-kyu;Jung, Eun-sun;Cha, Ji-yoon;Cho, Hyun-kyoung;Yoo, Ho-ryong;Kim, Yoon-sik;Seol, In-chan
    • The Journal of Internal Korean Medicine
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    • v.40 no.3
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    • pp.425-442
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    • 2019
  • Objectives: This study aimed to reveal the pharmacological properties of the newly prescribed herbal mixture, Chenmadansamgamibokhap-tang(CDBT), against hypoxia-induced neuronal cell injury (especially mouse hippocampal neuronal cell line, HT-22 cells) and their corresponding mechanisms. Methods: A cell-based in vitro experiment, in which a hypoxia condition induced neuronal cell death, was performed. Various concentrations of the CDBT were pre-treated to the HT-22 cells for 4 h before 18 h in the hypoxia chamber. The glial cell BV-2 cells were stimulated with $IFN{\gamma}$ and LSP to produce inflammatory cytokines and reactive oxygen species. When the neuronal HT-22 cells were treated with this culture solution, the drug efficacy against neuronal cell death was examined. Results: CDBT showed cytotoxicity in the normal condition of HT-22 cells at a dose of $125{\mu}g/mL$ and showed a protective effect against hypoxia-induced neuronal cell death at a dose of $31.3{\mu}g/mL$. CDBT prevented hypoxia-induced neuronal cell death in a dose-dependent manner in the HT-22 cells by regulating $HIF1{\alpha}$ and cell death signaling. CDBT prevented neuronal cell death signals and DNA fragmentation due to the hypoxia condition. CDBT significantly reduced cellular oxidation, cell death signals, and caspase-3 activities due to microglial cell activations. Moreover, CDBT significantly ameliorated LPS-induced BV-2 cell activation and evoked cellular oxidation through the recovery of redox homeostasis. Conclusions: CDBT cam be considered as a vital therapeutic agent against neuronal cell deaths. Further studies are required to reveal the other functions of CDBT in vivo or in the clinical field.

Animal Models for Aging and Neurodegenerative Diseases: Brain Cell Apoptosis in the Dog and its Possible Mechanisms

  • Nakayama, Hiroyuki;Kajikawa, Satoru;Doi, Kunio
    • Toxicological Research
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    • v.17
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    • pp.71-77
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    • 2001
  • The brain of the aged dog possesses senile plaques and amyloid angiopathy, which characterize Alzheimer's disease brains. We have defined the dementia condition of aged dogs and examined which mechanism(s) is responsible for the condition. A series of studies revealed that the dementia condition in aged dogs is significantly related to the number of apoptotic brain cells including both neurons and glial cells, but not to the number of senile plaques. On the other hand, 5-azacytidine (5AzC) is a cytidine analogue, and is thought to induce kinds of cell differentiation possibly through hypomethylation of genomic DNA. We have revealed neuronal apoptosis induced in 5AzC-treated fetal mice and PC12 cells. The ribosomal protein L4 (rpL4) gene is expressed prior to the apoptosis in the PC12 cell system. Therefore, the involvement of the rpL4 gene expression in age-related brain cell apoptosis in dogs may contribute to the investigation of Alzheimer's dementia.

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Human Embryonic Stem Cell Transplantation in Parkinson′s Disease (PD) Animal Model: II. In Vivo Transplantation in Normal or PD Rat Brain

  • Choe Gyeong-Hui;Ju Wan-Seok;Kim Yong-Sik;Kim Eun-Yeong;Park Se-Pil;Im Jin-Ho
    • Proceedings of the KSAR Conference
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    • 2002.06a
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    • pp.19-19
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    • 2002
  • This study was to examine whether the in vitro differentiated neural cells derived from human embryonic stem (hES, MB03) cells can be survived and expressed tyrosin hydroxylase(TH) in grafted normal or PD rat brain. To differentiate in vitro into neural cells, embryoid bodies (EB: for 5 days, without mitogen) were formed from hES cells, neural progenitor cells(neurosphere, for 7-10 days, 20 ng/㎖ of bFGF added N2 medium) were produced from EB, and then finally neurospheres were differentiated into mature neuron cells in N2 medium(without bFGF) for 2 weeks. In normal rat brain, neural progenitor cells or mature neuron cells (1×10/sup 7/ cells/㎖) were grafted to the striatum of normal rats. After 2 weeks, when the survival of grafted hES cells was examined by immunohistochemical analysis, the neural progenitor cell group indicated higher BrdU, NeuN+, MAP2+ and GFAP+ than mature neuron cell group in grafted sites of normal rats. This result demonstrated that the in vivo differentiation of grafted hES cells be increased simultaneously in both of neuronal and glial cell type. Also, neural progenitor cell grafted normal rats expressed more TH pattern than mature neuron cells. Based on this data, as a preliminary test, when the neural progenitor cells were grafted into the striatum of 6-hydroxydopamine lesioned PD rats, we confirmed the cell survival (by double staining of Nissl and NeuN) and TH expression. This result suggested that in vitro differentiated neural progenitor cells derived from hES cells are more usable than mature neuron cells for the neural cell grafting in animal model and those grafted cells were survived and expressed TH in normal or PD rat brain.

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

  • Bae, Jae-Yong;Lee, Sang-Ryong;Jung, In-Chul
    • Journal of Oriental Neuropsychiatry
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    • v.18 no.1
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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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Protective Effects of Samul-tang on Cell Death Inducded by Oxidative Stress in C6 Glial Cell (사물탕이 산화적 스트레스에 의하여 유발되는 신경세포의 세포 사멸에 미치는 보호효과)

  • Kim, Hyung-Woo;Kim, Kyung-Yoon;Kim, Gye-Yep;Kim, Chae-Hyun;Jeong, Jong-Gil;Choi, Chan-Hun;Hwang, Gui-Seong;Lee, Sang-Yeong;Jeong, Hyun-Woo
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.23 no.5
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    • pp.969-973
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    • 2009
  • Samul-tang (SMT), which was firstly described in (Hwajegukbang) Song dynasty, is well known remedy for blood diseases in Oriental medicine. SMT is traditional herbal-remedy composed of Rehmanniae Radix Preparat, Angelicae Gigantis Radix, Cnidii Rhizoma and Paeoniae Radix. Recently, SMT has known to have anti-oxidative action. However, the reports on anti-oxidantic action in neuroglial cells are rare. In addition, the exact mechanisms are unclear. For these reasons, we investigated the protective effects of SMT on cell death induced by oxidative stress using C6 glioma cells. In our results, SMT accelerated proliferation rates of C6 cells in vitro. In addition, levels of LDH release induced by oxidative stress were lowered by treatment with SMT. Finally, protective effects on cell death induced by chemicals such as paraquat and rotenone were observed. In conclusion, these results suggest the possibility to protect brain cell or neuronal cell from damage induced by oxidative stress.

The Effects of Dichroa febrifuga(DIF) Extract on the Alzheimer's Disease Model (상산(常山)이 Alzheimer's Disease 병태(病態) 모델에 미치는 영향(影響))

  • Lee, Seung-Hee;Jung, In-Chul;Lee, Sang-Ryong
    • Journal of Oriental Neuropsychiatry
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    • v.16 no.1
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    • pp.81-96
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    • 2005
  • This experiment was designed to investigate the effect of Dichroa febrifuga(DIF) on the Alzheimer’s disease. The effects of DIF extract on $IL-1{\beta}$, IL-6, $TNF-{\alpha}$ mRNA of THP-1 cell treated by $A{\beta}$ plus LPS and amyloid precursor proteins(APP), acetylcholinesterase(AChE), glial fibrillary acidic protein(GFAP) mRNA of PC-12 cell treated by $A{\beta}$ plus $rIL-1{\beta}$ and AChE activity of PC-12 cell lysate treated by $A{\beta}$ plus $rIL-1{\beta}$ and behavior of memory deficit mice induced by scopolamine and mice glucose, uric acid, AChE activity of memory deficit rats induced by scopolamine were investigated, respectively. The results were summarized as follows ; 1. DIF extract suppressed APP, AChE, GFAP mRNA in PC-12 cell treated by $A{\beta}$. 2. DIF extract suppressed $IL-1{\beta}$, IL-6, $TNF-{\alpha}$ mRNA in THP-1 cell treated by LPS. 3. DIF extract suppressed AChE activity in cell lysate of PC-12 cell treated by $A{\beta}$. 4. DIF extract increased glucose, decreased uric acid and AChE significantly in the serum of the memory deficit rats induced by scopolamine. 5. DIF 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 DIF extract might be usefully applied for prevention and treatment of Alzheimer’s disease and memory deficit.

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The Effects of Rheum palmatum(RHP) Extract on the the Alzheimer's Disease Model (대황(大黃)이 Alzheimer's Disease 병태(病態) 모델에 미치는 영향(影響))

  • Park, Chul-Hwan;Jung, In-Chul;Lee, Sang-Ryong
    • Journal of Oriental Neuropsychiatry
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    • v.16 no.1
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    • pp.67-80
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    • 2005
  • This experiment was designed to investigate the effect of Rheum palmatum(RHP) on the Alzheimer's disease. The effects of RHP extract on amyloid precursor proteins(APP), acetylcholinesterase(AChE), glial fibrillary acidic protein(GFAP) mRNA of PC-12 cell treated by $A{\beta}\;and\;IL-1{\beta},\;IL-6,\;TNF-{\alpha}$ mRNA of THP-1 cell treated by LPS and AChE activity of PC-12 cell lysate treated by $A {\beta}$and behavior of memory deficit rats induced by scopolamine and mice glucose, uric acid, AChE activity of memory deficit rats induced by scopolamine were investigated, respectively. The results were summarized as follows ; 1. RHP extract suppressed APP, AChE, GFAP mRNA in PC-12 cell treated by $A{\beta} $. 2. RHP extract suppressed $IL-1{\beta} $, IL-6 $TNF-{\alpha}$ mRNA in THP-1 cell treated by LPS. 3. RHP extract suppressed AChE activity in cell lysate of PC-12 cell treated by $A{\beta}$. 4. HP extract increased glucose, decreased uric acid and AChE significantly in the serum of the memory deficit rats induced by scopolamine. 5. RHP 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 RHP extract might be usefully applied for prevention and treatment of Alzheimer’s disease and memory deficit symptom.

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

  • Choi Bo-Yun;Jung In-Chul;Lee Sang-Ryong
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.20 no.1
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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.

Effects of several herbs on the expression of MT1 and MT2 melatonin receptors in C6 glial cells (수종의 한약재 열수추출물이 멜라토닌 수용체 발현에 미치는 영향)

  • Kim, Bo-Ra-Mi;Yang, Dong-Ho;Kim, Bo-Kyung
    • Journal of Oriental Neuropsychiatry
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    • v.18 no.1
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    • pp.15-36
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    • 2007
  • Objective : This study was to investigate the effects of several herbs on the levels of MT1 and MT2 melatonin receptors Methods: It was investigated the effects of several herbs such as WEDL, WEZV, WEFO, WEOC on the levels of MT1 and MT2 melatonin receptors using C6 glial cell model. ${\beta}-estradiol$ treatment, as a positive control group, under non-cytotoxic condition. Results : 1. The water extracts of Dimocarpus long (WEDL) induced the levels of MT2 melatonin receptor expression in a concentration-dependent manner without altering the levels of MT1 melatonin receptor expression. 2. The treatment with the water extract of Zizyphus vulgaris (WEZV) induced the levels of MT1 melatonin receptor expression and the levels of MT2 melatonin receptor expression was not affected. 3. The levels of MT1 as well as MT2 melatonin receptor expression were markedly up-regulated in the water extract of Fossilia ossis (WEFO) and the water extract of Ostreae caro (WEOC)-treated C6 cells. 4. The combination treatment with WEDL and WEZV induced not only the levels of MT1 melatonin receptor expression but also MT2 melatonin receptor expression, but the synergic effects of the combination treatment with WEFO and WEOC were not detected in C6 cells. Conclusion : The study provides important new insights into the possible mechanisms on the regulation of melatonin receptor synthesis by WEDL, WEZV, WEFO and WEOC.

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