• 제목/요약/키워드: neuroblastoma cells

검색결과 277건 처리시간 0.049초

Cadmium induces neurotoxicity via activation of JNK and c-JUN in human neuroblastoma cell

  • Kim, Sun-Don;Moon, C.K.;Jo, Sang-Mee
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.1
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    • pp.182.1-182.1
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    • 2003
  • Occupational exposure to cadmium (Cd) can result in brain disorders and olfactory dysfunction is the most well-known symptom. Recently Cd has been shown to induce apoptosis by activating MAPKs in various cell types. However, intracellular signaling pathways of Cd-induced cytotoxicity in neuronal cells is not known well. Thus, in the present study, we studied role of JNK and its well-known downstream transcription factor, c-JUN, in Cd-induced neuronal cell death. (omitted)

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Thiolactomide: A New Homocysteine Thiolactone Derivative from Streptomyces sp. with Neuroprotective Activity

  • Jang, Jun-Pil;Kwon, Min Cheol;Nogawa, Toshihiko;Takahashi, Shunji;Osada, Hiroyuki;Ahn, Jong Seog;Ko, Sung-Kyun;Jang, Jae-Hyuk
    • Journal of Microbiology and Biotechnology
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    • 제31권12호
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    • pp.1667-1671
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    • 2021
  • A new homocysteine thiolactone derivative, thiolactomide (1), was isolated along with a known compound, N-acetyl homocysteine thiolactone (2), from a culture extract of soil-derived Streptomyces sp. RK88-1441. The structures of these compounds were elucidated by detailed NMR and MS spectroscopic analyses with literature study. In addition, biological evaluation studies revealed that compounds 1 and 2 both exert neuroprotective activity against 6-hydroxydopamine (6-OHDA)-mediated neurotoxicity by blocking the generation of hydrogen peroxide in neuroblastoma SH-SY5Y cells.

Ginsenoside Rg1 및 Rb1을 처리한 신경세포주(SH-SY5Y세포)의 유전자 발현양상 (Gene Expression Profiling of SH-SY5Y Human Neuroblastoma Cells Treated with Ginsenoside Rg1 and Rb1)

  • 이준노;양병환;최승학;김석현;채영규;정경화;이준석;최강주;김영숙
    • 생물정신의학
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    • 제12권1호
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    • pp.42-61
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    • 2005
  • Objectives:The ginsenoside Rg1 and Rb1, the major components of ginseng saponin, have neurotrophic and neuroprotective effects including promotion of neuronal survival and proliferation, facilitation of learning and memory, and protection from ischemic injury and apoptosis. In this study, to investigate the molecular basis of the effects of ginsenoside on neuron, we analyzed gene expression profiling of SH-SY5Y human neuroblastoma cells treated with ginsenoside Rg1 or Rb1. Methods:SH-SY5Y cells were cultured and treated in triplicate with ginsenoside Rg1 or Rb1($80{\mu}M$, $40{\mu}M$, $20{\mu}M$). The proliferation rates of SH-SY5Y cells were determined by MTT assay and microscopic examination. We used a high density cDNA microarray chip that contained 8K human genes to analyze the gene expression profiles in SH-SY5Y cells. We analyzed using the Significance Analysis of Microarray(SAM) method for identifying genes on a microarray with statistically significant changes in expression. Results:Treatment of SH-SY5Y cells with $80{\mu}M$ ginsenoside Rg1 or Rb1 for 36h showed maximal proliferation compared with other concentrations or control. The results of the microarray experiment yielded 96 genes were upregulated(${\geq}$3 fold) in Rg1 treated cells and 40 genes were up-regulated(${\geq}$2 fold) in Rb1 treated cells. Treatment with ginsenoside Rg1 for 36h induced the expression of some genes associated with protein biosynthesis, regulation of transcription or translation, cell proliferation and growth, neurogenesis and differentiation, regulation of cell cycle, energy transport and others. Genes associated with neurogenesis and neuronal differentiation such as SCG10 and MLP increased in ginsenoside Rg1 treated cells, but such changes did not occur in Rb1-group. Conclusion:Our data provide novel insights into the gene mechanisms involved in possible role for ginsenoside Rg1 or Rb1 in mediating neuronal proliferation or cell viability, which can elicit distinct patterns of gene expression in neuronal cell line. Ginsenoside Rg1 have more broad and strong effects than ginsenoside Rb1 in gene expression and related cellular physiology. In addition, we suggest that SCG10 gene, which is known to be expressed in neuronal differentiation during development and neuronal regeneration during adulthood, may have a role in enhancement of activity dependent synaptic plasticity or cytoskeletal regulation following treatment of ginsenoside Rg1. Further, ginsenoside Rg1 may have a possible role in regeneration of injured neuron, promotion of memory, and prevention from aging or neuronal degeneration.

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Conjugated linoleic acid 황갈색의 인체암세포와 인체정상세포에 대한 세포독성 (Lack of Cytotoxicity of the Colorant in Conjugated Linoleic Acid against Human Cancer and Normal Cells)

  • 지유철;안채린;서양곤;서정세;김정옥;하영래
    • 생명과학회지
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    • 제22권8호
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    • pp.1099-1106
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    • 2012
  • 체지방감소 효과가 있는 시판 conjugated linoleic acid (CLA)의 색깔을 제거하고 이 색깔의 세포독성에 관한 연구를 하였다. 황갈색의 시판 CLA 제품을 구입하여 crude CLA (c-CLA) 시료로 하였다. c-CLA 시료를 감압증류(10 mmHg-$220^{\circ}C$, 10 mmHg-$235^{\circ}C$, 10 mmHg-$240^{\circ}C$, 20 mmHg-$260^{\circ}C$; 30분)하여 증류된 CLA (distilled CLA; d-CLA) 시료와 증류되지 않고 남아있는 황갈색 CLA (residual CLA; r-CLA) 시료로 분리하였다. 10 mmHg-$220^{\circ}C$에서 증류하여 얻은 d-CLA 시료의 색깔은 L (brightness), a (red/blue), b (yellow/green)로 분석한 결과 무색에 가까웠고 r-CLA 시료는 황갈색이었고, 이들 두 CLA 시료의 CLA 이성체 조성은 변하지 않았다. 따라서 10 mmHg-$220^{\circ}C$에서 얻은 r-CLA 시료의 인체암세포(유방암 MCF-7. 폐암 A-549, 직장암 HT-29, 전립선암 PC-3)와 인체 정상세포(신경모세포 SK-N-SH)에 대한 세포독성을 d-CLA 시료와 비교하였다. 이들 암세포와 정상세포에 r-CLA 시료와 d-CLA 시료 처리 2일 후의 세포독성에는 차이가 없었다. 따라서 본 연구에서 c-CLA 시료에 함유된 색소는 10 mmHg-$220^{\circ}C$로 감압증류 하여 제거할 수 있었고, r-CLA 시료의 세포독성은 d-CLA 시료의 세포독성과 차이가 없었다. 이와 같은 결과는 c-CLA 시료에 함유된 색소는 세포생육에 아무런 영향을 미치지 않고 인체에 아무런 영향을 미치지 않음을 의미한다.

베타 아밀로이드 유도성 Neuro 2A 세포독성에 대한 총명탕의 효과 (Chongmyung-tang Inhibits the Cytotoxicity of Beta-amyloid in Neuro 2A Neuroblastoma Cells)

  • 국윤재;최혁;김태헌;강형원;유영수
    • 동의생리병리학회지
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    • 제18권5호
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    • pp.1418-1425
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    • 2004
  • The water extract of Chongmyung-tang has been traditionally used for treatment of memory-disorder in oriental medicine. This study was designed to investigate the protective mechanisms of Chongmyung-tang on β-amyloid or H₂O₂-induced cytotoxicity in Neuro 2A cells. The water extract of Chongmyung-tang significantly reduced both β-amyloid or H₂O₂-induced cell death and apoptotic characteristics through reduction of intracellular peroxide generation. Also, it inhibited the mitochondrial dysfunction including the disruption of mitochondria membrane permeability transition(MPT) and the modulation in expression of Bcl-2 family proteins in H₂O₂-treated H9c2 cells. Furthermore, pretreatment of quercetin inhibited the activation of caspase-3, in turn, degradation of ICAD/DFF45 were completely abolished in H₂O₂-treated cells. Taken together, that data suggest that the protective effects of the water extract of Chongmyung-tang against β-amyloid induced oxidative injuries may be achieved through modulation of mitochondrial dysfunction.

6-Hydroxydopamine-induced Adaptive Increase in GSH Is Dependent on Reactive Oxygen Species and Ca2+ but not on Extracellular Signal-regulated Kinase in SK-N-SH Human Neuroblastoma Cells

  • JIN Da-Qing;Park Byung CHUL;KIM Jung-Ae
    • Biomolecules & Therapeutics
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    • 제13권4호
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    • pp.256-262
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    • 2005
  • We examined the signaling molecules involved in the 6-hydroxydopamine (6-OHDA)-induced neuronal cell death and increase in cellular glutathione (GSH) level in SK-N-SH cells. The 6-OH-DA-induced cell death was significantly prevented by the pretreatment with N-acetylcysteine (NAC), a thiol antioxidant, and BAPTA, an intracellular $Ca^{2+}$ chelator. Although 6-OHDA induced ERK phosphorylation, the pretreatment with PD98059, an ERK inhibitor, did not block 6-OHDA-induced cell death. In addition, the 6-OHDA-induced activation of caspase-3, a key signal for apoptosis, was blocked by the pretreatment with NAC and BAPTA. While the level of reactive oxygen species (ROS) was significantly increased in the 6-OHDA-treated cells, the cellular GSH level was not altered for the first 6-hr exposure to 6-OHDA, but after then, the level was significantly increased, which was also blocked by the pretreatment with NAC and BAPTA, but not by PD98059. Depletion of GSH by pretreating the cells with DL-buthionine-(S,R)-sulfoximine (BSO), a glutathione synthesis inhibitor, rather significantly potentiated the 6-OHDA-induced death. In contrast to the pretreatment with NAC, 6-OHDA-induced cell death was not prevented by the post-treatment with NAC 30 min after 6-OHDA treatment. The results indicate that the GSH level which is increased adaptively by the 6-OHDA-induced ROS and intracellular $Ca^{2+}$ is not enough to overcome the death signal mediated through ROS-$Ca^{2+}$ -caspase pathway.

인간 신경모세포종 SH-SY5Y에서 인삼(人蔘) total ginsenosides의 신경보호 기능에 관련된 유전자 발현 양상에 대한 연구 (Gene expression profiling of SH -SY5Y cells in neuroprotective effect of total ginsenosides on H202 induced neurotoxicity)

  • 이승기;채영규;정경화;김지혁;허용석
    • 동의신경정신과학회지
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    • 제18권1호
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    • pp.95-110
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    • 2007
  • Objective : The purpose of this study was to investigate molecular basis of neuroprotective effect in total ginsenosides. After H202 induced neurotoxicity, gene expression profiling of SH-SY5Y neuroblastoma cells treated by total ginsenosides is analyzed. Method : After SH-SY5Y cells were cultured, they were damaged by H202 induced oxidative stress. After twenty four hours, experimental group is treated by total ginsenosides and control group is treated by 0.9% saline. A high density cDNA microarray chip is used to analyze the gene expression profiling of SH-SY5Y cells. The Significance Analysis of Microarray method is used for identifying genes on a microarray. Results : 1. According to the results of microarray experiment, 17 genes were up-regulated, 38 genes were down-regulated. 2. Expression of OPHNl, KTANl, ATM, PRKCE, MAPKs genes associated with cell proliferation, neural growth, and the prevention of apoptosis were increased. 3. Change of EPX gene was the greatest among all genes. EPX gene associated with oxidative stress, and tumor suppressor gene ADAM11 were decreased. Conclusion : According to this study, molecular basis of neuroprotective effect of total ginsenosides is as followings: the increase of gene expression associated with cell proliferation, neuron growth, the prevention of apoptotsis and decrease of gene expression associated with oxidative stress and tumor suppressor.

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