• 제목/요약/키워드: SH-SY5Y neuroblastoma cells

검색결과 101건 처리시간 0.028초

Morphogenetic and neuronal characterization of human neuroblastoma multicellular spheroids cultured under undifferentiated and all-trans-retinoic acid-differentiated conditions

  • Jung, Gwon-Soo;Lee, Kyeong-Min;Park, Jin-Kyu;Choi, Seong-Kyoon;Jeon, Won Bae
    • BMB Reports
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    • 제46권5호
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    • pp.276-281
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    • 2013
  • In this study, we aimed to compare the morphogenetic and neuronal characteristics between monolayer cells and spheroids. For this purpose, we established spheroid formation by growing SH-SY5Y cells on the hydrophobic surfaces of thermally-collapsed elastin-like polypeptide. After 4 days of culture, the relative proliferation of the cells within spheroids was approximately 92% of the values for monolayer cultures. As measured by quantitative assays for mRNA and protein expressions, the production of synaptophysin and neuronspecific enolase (NSE) as well as the contents of cell adhesion molecules (CAMs) and extracellular matrix (ECM) proteins are much higher in spheroids than in monolayer cells. Under the all-trans-retinoic acid (RA)-induced differentiation condition, spheroids extended neurites and further up-regulated the expression of synaptophysin, NSE, CAMs, and ECM proteins. Our data indicate that RA-differentiated SH-SY5Y neurospheroids are functionally matured neuronal architectures.

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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더덕순 에탄올 추출물의 신경세포 보호 효과 (Neuroprotective effect of Deodeok (Codonopsis lanceolata) bud extracts in H2O2-stimulated SH-SY5Y cells)

  • 양희선;황인국;최애진;최정숙
    • Journal of Nutrition and Health
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    • 제56권2호
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    • pp.140-154
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    • 2023
  • 본 연구에서는 15-20 cm 길이의 더덕순을 70% 에탄올로 추출하여 추출물 (CLBE)을 제조하고, H2O2로 산화적 스트레스를 유발한 SH-SY5Y세포에 전처리하여 신경세포 보호 효과를 평가하였다. 그 결과, CLBE는 H2O2로 자극된 세포에서 세포 손상 및 LDH 방출 억제, ROS 소거를 통하여 세포의 사멸을 막아주었다. 또한 CLBE는 Bcl-2와 Bax 단백질의 발현을 조절함으로써 caspase의 활성을 억제하여 신경세포를 보호하였다. 이상의 연구결과들을 종합할 때, CLBE는 산화적 스트레스에 대하여 신경세포 보호 효과가 있는 것으로 보이며, 향후 신경질환 연구를 위한 치료제 개발 및 고부가가치 식품 소재 개발에 유용하게 사용될 수 있을 것으로 판단된다.

Identification of Differentially Expressed Genes by Exposure of Methylmercury in Neuroblastoma Cell Line Using Suppression Subtractive Hybridization (SSH)

  • Kim, Youn-Jung;Ryu, Jae-Chun
    • Molecular & Cellular Toxicology
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    • 제2권1호
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    • pp.60-66
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    • 2006
  • Methylmercury (MeHg), one of the heavy metal compounds, can cause severe damage to the central nervous system in humans. Many reports have shown that MeHg is poisonous to human body through contaminated foods and has released into the environment. Despite many studies on the pathogenesis of MeHg-induced central neuropathy, no useful mechanism of toxicity has been established so far. This study, using of suppression subtractive hybridization (SSH) method, was peformed to identify differentially expressed genes by MeHg in SH-SY5Y human neuroblastoma cell line. We prepared to total RNA from SH-SY5Y cells treated with solvent (DMSO) and $6.25\;{\mu}M\;(IC_{50})$ MeHg and performed forward and reverse SSH. Differentially expressed cDNA clones were screened by dot blot, sequenced and confirmed that individual clones indeed represent differentially expressed genes with real time RT-PCR. These sequences were identified by BLAST homology search to known genes or expressed sequence tags (ESTs). Analysis of these sequences may provide an insight into the biological effects of MeHg in the pathogenesis of neurodegenerative disease and a possibility to develop more efficient and exact monitoring system of heavy metals as ubiquitous environmental pollutants.

흰쥐 선조체에서 6-OHDA-유도 도파민 고갈 및 SH-SY5Y 세포주에서 6-OHDA-유도 산화적 스트레스에 대한 l-Deprenyl의 신경 보호효과 (Neuroprotective Effect of l-Deprenyl Against 6-OHDA-Induced Dopamine Depletion in Rat Striatum and 6-OHDA-Induced Oxidative Stress in SH-SY5Y Cells)

  • 김은미;최신규;이경림;김화정
    • 약학회지
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    • 제49권4호
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    • pp.355-364
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    • 2005
  • A neurotoxin, 6-hydroxydopamine (6-OHDA) has long been used to form a Parkinson's disease (PD) model by inducing the lesion in catecholaminergic pathways, particularly the nigrostriatal dopamine (DA) pathway. Whereas l-deprenyl, a selective inhibitor of monoamine oxidase (MAO) type B, is now widely used in the treatment of PD, the precise action mechanism of the drug remains elusive. In this study, we investigated whether l-deprenyl shows protective effect against the DA depletion induced by 6-OHDA in rat brain, and against 6-OHDA-induced neurotoxicity and oxidative stress in catecholaminergic neuroblastoma SH-SY5Y cells that are known to lack MAO-B activity. Pretreatment of l-deprenyl significantly enhanced the striatal DA, 3,4-dihydroxyphenylacetic acid, homovanilic acid, and 3-methoxytyramine levels compared to the untreated 6-OHDA-lesioned rat, indicating that l-deprenyl pretreatment prevents 6-OHDA-induced depletion of not only striatal dopamine but also its metabolites. Treatment of 6-OHDA for 24hrs decreased the cell viability and increase the generation of ROS in dose-dependent manners. We further investigated whether caspase activity is involved in the action of l-deprenyl. Treatment of l-deprenyl $(0.1\~100{\mu}M)$ did not produce any changes in 6-OHDA-induced cleavage of poly (ADP-ridose) polymerase in SH-SY5Y cells. Our results suggest that the neuroprotective effect of l-deprenyl against 6-OHDA is due to its increased scavenger activity, but independent of inhibition of MAO-B or caspase-3 activation.

Neuroprotective Effect of Epalrestat on Hydrogen Peroxide-Induced Neurodegeneration in SH-SY5Y Cellular Model

  • Lingappa, Sivakumar;Shivakumar, Muthugounder Subramanian;Manivasagam, Thamilarasan;Somasundaram, Somasundaram Thirugnanasambandan;Seedevi, Palaniappan
    • Journal of Microbiology and Biotechnology
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    • 제31권6호
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    • pp.867-874
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    • 2021
  • Epalrestat (EPS) is a brain penetrant aldose reductase inhibitor, an approved drug currently used for the treatment of diabetic neuropathy. At near-plasma concentration, EPS induces glutathione biosynthesis, which in turn reduces oxidative stress in the neuronal cells. In this study, we found that EPS reduces neurodegeneration by inhibiting reactive oxygen species (ROS)-induced oxidative injury, mitochondrial membrane damage, apoptosis and tauopathy. EPS treatment up to 50 µM did not show any toxic effect on SH-SY5Y cell line (neuroblastoma cells). However, we observed toxic effect at a concentration of 100 µM and above. At 50 µM concentration, EPS showed better antioxidant activity against H2O2 (100 µM)-induced cytotoxicity, ROS formation and mitochondrial membrane damage in retinoic acid-differentiated SH-SY5Y cell line. Furthermore, our study revealed that 50 µM of EPS concentration reduced the glycogen synthase kinase-3 β (GSK3-β) expression and total tau protein level in H2O2 (100 µM)-treated cells. Findings from this study confirms the therapeutic efficacy of EPS on regulating Alzheimer's disease (AD) by regulating GSK3-β and total tau proteins phosphorylation, which helped to restore the cellular viability. This process could also reduce toxic fibrillary tangle formation and disease progression of AD. Therefore, it is our view that an optimal concentration of EPS therapy could decrease AD pathology by reducing tau phosphorylation through regulating the expression level of GSK3-β.

Corticosterone에 의해 유도된 인간의 신경모세포종 SH-SY5Y 세포 증식 억제를 완화시키는 맥문동 열수 추출물의 효과에 관한 연구 (Attenuation of the Corticosterone-induced Antiproliferative Effect on Human Neuroblastoma SH-SY5Y Cells Using Hot-water Extract from Liriope muscari)

  • 이종규;김상보;서용배;김군도
    • 생명과학회지
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    • 제28권5호
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    • pp.517-523
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    • 2018
  • 만성적 스트레스가 있는 상황에서, 과잉 생산된 cortisol은 glucocorticoid receptor (GR)를 활성화시킴으로써 해마(hippocampus)에 있는 신경 세포에 손상을 줄 수 있다. Cortisol을 생성하지 못하는 동물들의 경우, corticosterone이 스트레스 호르몬의 역할을 하는 것으로 알려져 있다. 한편, 인간의 경우, corticosterone은 aldosterone의 전구물질 이거나 cortisol과 비슷한 특성을 가지는 하나의 glucocorticoid로만 여겨져 왔다. 최근 인간을 대상으로 cortisol과 dexamethasone과 같은 합성 glucocorticoid의 기능에 관한 연구가 많이 이루어져 왔으나, corticosterone의 정확한 기능에 대하여 많이 알려져 있지 않다. 본 연구에서 corticosterone을 여러 농도로 SH-SY5Y 세포에 처리한 후 24시간과 48시간 때 viability를 조사한 결과, 높은 농도($500{\mu}M$$1,000{\mu}M$)에서 SH-SY5Y 세포의 성장 억제가 관찰된 반면, 낮은 농도($100{\mu}M$)에선 그 효과가 나타나지 않았다. 맥문동, 오미자, 복신 열수 추출물에 대한 세포 독성을 실시한 결과, 세 시료 모두 농도가 높아질수록 높은 세포 독성을 보였다. 한편, $500{\mu}g/ml$의 맥문동은 corticosterone에 의해 유도된 세포 성장 억제를 완화시켜 세포 성장을 회복시키는 효과를 보였다. 마지막으로, 맥문동 $500{\mu}g/ml$에 오미자와 복신의 농도를 달리하여 제조한 여러 혼합물의 시너지 효과를 알아본 결과, 대부분 혼합물이 약간의 효과를 보이긴 했으나, 음성 대조군 수준만큼 회복되지는 않았다.

Identification of Genes Associated with Early and Late Response of Methylmercury in Human Neuroblastoma Cell Line

  • Kim, Youn-Jung;Kim, Mi-Soon;Jeon, Hee-Kyung;Ryu, Jae-Chun
    • Molecular & Cellular Toxicology
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    • 제4권2호
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    • pp.164-169
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    • 2008
  • Methylmercury (MeHg) is known to have devastating effects on the mammalian nervous system. In order to characterize the mechanism of MeHg-induced neurotoxicity, we investigated the analysis of transcriptional profiles on human 8k cDNA microarray by treatment of $1.4{\mu}M$ MeHg at 3, 12, 24 and 48h in human neuroblastoma SH-SY5Y cell line. Some of the identified genes by MeHg treatment were significant at early time points (3h), while that of others was at late time points (48h). The early response genes that may represent those involved directly in the MeHg response included pantothenate kinase 3, a kinase (PRKA) anchor protein (yotiao) 9, neurotrophic tyrosine kinase, receptor, type 2 gene, associated with NMDA receptor activity regulation or perturbations of central nervous system homeostasis. Also, when SH-SY5Y cells were subjected to a longer exposure (48h), a relative increase was noted in a gene, glutamine-fructose-6-phosphate transaminase 1, reported that overexpression of this gene may lead to the increased resistance to MeHg. To confirm the alteration of these genes in cultured neurons, we then applied real time-RT PCR with SYBR green. Thus, this result suggests that a neurotoxic effect of the MeHg might be ascribed that MeHg alters neuronal receptor regulation or homeostasis of neuronal cells in the early phase. However, in the late phase, it protects cells from neurotoxic effects of MeHg.

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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