• Title/Summary/Keyword: SK-N-SH cell

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Effect on Alzheimer's Disease by Sesim-tang in CT105-overexpressed SK-N-SH Cell Lines (CT105로 유도된 신경모세포종 세포주에서 세심탕의 항치매 효과)

  • 권형수;박치상;박창국
    • The Journal of Korean Medicine
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    • v.25 no.2
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    • pp.138-150
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    • 2004
  • Objectives : Alzheimer's disease (AD) is a geriatric dementia that is widespread in old age. In the near future AD will be the biggest problem in public health service. Although a variety of oriental prescriptions, including Sesim-tang, have been traditionally utilized for the treatment of AD, their pharmacological effects and action mechanisms have not yet been fully elucidated. The present study investigated the effects of Sesim-tang on apoptotic cell death induced by CT105 (carboxy terminal 105 amino acid peptide fragment of APP) overexpression in SK-N-SH neuroblastoma cell lines. Methods: We studied the regenerative and inhibitory effects on Alzheimer's disease in CT105-induced SK-N-SH cell lines by Sesim-tang water extract. We examined for cell morphological pattern, DNA fragmentation, LDH activity assay, zymography assay, and immunohistochemistric analysis. Additionally, we investigated the association between the CT105 and neurite degeneration caused by CT105-induced apoptotic response in neurone cells. Results: Findings from our experiments have shown that Sesim-tang inhibits the synthesis or activities of CT105, which has neurotoxicities and apoptotic activities in the cell line. In addition, pretreatment with Sesim-tang ($>50\mu\textrm{g}/ml$ for 12 hours) partially prevented CT105-induced cytotoxicity in SK-N-SH cell lines. SK-N-SH cell lines overexpressed with CT105 exhibited remarkable apoptotic cell damage. Based on morphological observations by phase-contrast microscope and LDH activity measurements in the culture media, the CT105-induced cell death was significantly inhibited by Sesim-tang water extract. Sesim-tang was found to reduce the expression of APP and caspase-3 induced by CT105 in SK-N-SH cell lines and in rat hippocampus. Conclusions: As the result of this study, in the Sesim-tang group, apoptosis in the nervous system is inhibited, the repair against the degeneration of SK-N-SH cell lines by CT105 expression is promoted. Hence, Sesim-tang may be beneficial for the treatment of AD.

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Analyses of the Neurite Outgrowth and Signal Transduction in IMR-32 and SK-N-SH Cells by ECM Proteins (ECM 단백질이 IMR-32 및 SK-N-SH 세포주 신경축색생장에 미치는 영향)

  • 최윤정;김철우;허규정
    • The Korean Journal of Zoology
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    • v.38 no.4
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    • pp.542-549
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    • 1995
  • The effect of extraceflular matrix (ECM) protein on the neuronai differentiation of SI(-N-SH and IMR-32 human neuroblastoma cell lines was examined. When ceils were cultured on the laminin/collagen coated plate for 7 days, the extensive neurite outgrowth was observed In IMR-32. To address the reason why IMR-32 cell llne did not respond to ECM proteins, the ECM mediated early signalling mechanisms were analysed in both SK-N-SH and IMR-32. When cells were plated on the laminin/collagen coated plates, tyrosine phosphorylated proteins were Increased within an hour In both of these cells. Moreover, the foaal adhesion IlInase (FAK) was tyrosine phosphorylated in both of these two cell lines. These results suggest that the ECM mediated early signalling mechanism was normal in IMR-32 cell line. The expression of both NSE and Bcl-2 was increased by ECM treatment in SK-N-SH. However, these components were not changed by ECM In IMR 32 cells to ECM component Is likely due to the abnomality of the transcriptional regulation mechanism which Is responsible for the neuronal differentiation.

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Effect of Snake Venom Toxin from Vipera Lebetina Turanica on Neuroblastoma SK-N-SH Cells (Vipera Lebetina Turanica 사독의 신경아세포종 SK-N-SH 세포에 미치는 영향)

  • Sim, Jae-Young;Song, Ho-Sueb
    • Journal of Acupuncture Research
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    • v.25 no.3
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    • pp.53-69
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    • 2008
  • 목적 : 이 연구는 Vipera lebetina turanica의 사독약침액(蛇毒藥鍼液)(Snake venom toxin, SVT)이 인간 신경아세포종의 암세포주인 SK-N-SH 세포에서 암세포성장의 억제 및 그 기전에 대하여 살펴보고자 하였다. 방법 : SVT를 처리한 후 SK-N-SH의 성장억제를 관찰하기 위해 CCK-8 assay와 LDH assay를 시행하였고, apoptosis 평가에는 세포형태의 관찰과 DAPI, TUNEL, Annexin V-PI double staining assay 및 cell detachment assay를 시행하였다. 세포자멸사 관련 세포기전을 보기 위하여 세포주기, 세포내 칼슘량, 세포내 활성산소량 및 미토콘드리아의 세포막전위 변화를 측정하였고, DNA fragmentation assay를 시행하였으며, 세포자멸사 조절 단백인 Bax, Bcl-2, caspase-3, -9의 발현 변화 관찰에는 western blot analysis를 시행하였다. 결과 : SK-N-SH 세포에 SVT를 처리한 후, 신경아세포종 세포의 성장, Apoptosis의 유발 및 기전의 영향을 관찰하여 다음과 같은 결과를 얻었다. 1. SVT를 처리한 SK-N-SH 세포 관찰에서 세포독성은 농도의존적으로 증가하는 경향이 있는 반면 암세포성장의 유의한 억제는 $20{\mu}g/m{\ell}$ SVT에 의해서만 나타났다. 2. 세포자멸사 평가에서 SVT를 처리한 SK-N-SH 세포는 세포자멸사의 특징적 형태를 나타내었다. TUNEL assay에서는 세포자멸사 활성세포가 미약하게 나타난 반면 cell detachment assay와 Annexin V-PI double staining에서는 각각 세포박리와 세포자멸사 활성세포의 유의한 증가를 나타내었다. 3. 세포자멸사 관련 세포기전연구에서 SVT를 처리한 SK-N-SH 세포의 세포주기, 세포 내 칼슘양 및 DNA fragmentation에는 유의한 변화가 관찰되지 않은 반면 세포내 활성산소 양은 유의한 증가를 나타내었고, 그에 따른 미토콘드리아 세포막 전위의 유의한 변동이 관찰되었다. 4. SVT를 처리한 SK-N-SH는 세포자멸사 관련 단백 발현에서 Bax에 대해 유의한 증가를 나타내지 않았으나 caspase-3 및 caspase-9의 유의한 증가와 Bcl-2의 유의한 감소를 나타내었다. 결론 : 이상의 결과는 SVT가 세포 내 활성산소를 증가시킴으로써 미토콘드리아의 세포막전위에 변화를 일으켜 인간 신경아세포종 세포주인 SK-N-SH의 세포박리와 유관한 세포자멸사를 유발함으로써 증식억제 효과가 있음을 입증한 것이다.

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Human Cytomegalovirus Replication and $Ca^{2+}$ Response in Human Cell Lines of Neuronal Origin (신경세포에서의 Human Cytomegalovirus 증식과 이에 따른 세포내 유리칼슘 농도 변화)

  • Kang, Kyung-Hee;Lee, Chan-Hee
    • The Journal of Korean Society of Virology
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    • v.26 no.1
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    • pp.1-8
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    • 1996
  • Human cytomegalovirus (HCMV) replication and $Ca^{2+}$ response in human cell lines of neuronal origin were investigated. SK-N-SH (neuroblastoma cells) and A172 cells (glioblastoma cells) were used. SK-N-SH cells were permissive for HCMV multiplication with a delay of one day compared to virus multiplication in human embryo lung (HEL) cells. The delay of HCMV multiplication in SK-N-SH cells appeared to be correlated with a delay in the $Ca^{2+}$ response. The cytoplasmic free $Ca^{2+}$ concentration ($[Ca^{2+}]_i$) began to increase at 12 h p.i. in HCMV-infected SK-N-SH cells, while $[Ca^{2+}]_i$ increase in HCMV-infected HEL cells was observed as early as 3 h p.i. On the whole, the level of the increase in $[Ca^{2+}]_i$ in SK-N-SH cells was about 30% of that in HEL cells. On the other hand, in A172 cells infected with HCMV, neither production of infectious virus nor detectable increase in $[Ca^{2+}]_i$ was observed. Treatment with TPA of HCMV-infected SK-N-SH cells resulted in $[Ca^{2+}]_i$ increase at 6 h p.i. The stimulatory effect of TPA on HCMV- induced $[Ca^{2+}]_i$ increase continued until 12 h p.i., but TPA failed to stimulate the $Ca^{2+}$ response in SK-N-SH cells at 24 h p.i., suggesting that the effect of TPA had disappeared in SK-N-SH cells at that time point. In conclusion, SK-N-SH cells are permissive for HCMV replication and the delay in $Ca^{2+}$ response may be a consequence of the lower responsiveness of SK-N-SH cells than HEL cells to HCMV infection.

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Effects on Alzheimer's disease by Jimitang in CT105-overexpressed SK-N-SH cell lines (CT105로 유도된 신경모세포종 세포주에서 지미탕(指迷湯)의 항치매효과)

  • Kang, Sung-Jun;Park, Chang-Gook;Park, Chi-Sang
    • The Journal of Internal Korean Medicine
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    • v.25 no.3
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    • pp.482-491
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    • 2004
  • Alzheimer's disease(AD) is a geriatric dementia that is widespread in old age. In the near future AD may be the biggest problem in public health service. Although a variety of oriental therapies in the study of Jimitang have been traditionally utilized for the treatment of AD, their pharmacological effects and active mechanisms have not been fully elucidated. This study in an investigation of effects of Jimitang on apoptotic cell death induced by CT105 overexpression in SK-N-SH neuroblastoma cell lines. DNA fragmentation, neurite outgrowth assay and LDH activity assay were examined. The regeneratory and inhibitory effects on Alzheimer's disease in pCT105-induced neuroblastoma cell lines by Jimitang water extract were examined. Findings from these experiments have shown that Jimitang inhibits the synthesis or activities of CT105, which has neurotoxicities and apoptotic activities in cell lines. In addition, pretreatment of $Jimitang(>50\;{\mu}g/mL\;for\;12\;hours)$ partially prevented CT(105)-induced cytotoxicity in SK-N-SH cell lines, and were inhibited by pretreatment. $Jimitang(>50\;{\mu}g/mL\;for\;12\;hours)$ repaired CT(105)-induced neurite outgrowth when SK-N-SH cell lines were transfected with CT(105). Results of this study show that. in the Jimitang group, the apoptosis in the nervous system in inhibited, the repair against the degerneration of neuroblastoma cells by CT105 expression is promoted. In addition, Jimitang was found to inhibit DNA fragmentation induced by CT105 overexpression, and promote neurite outgrowth. These findings suggest that Jimitang is beneficial for the treatment of AD.

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Neuroprotective effects of some herbal medicine plant extract against ischemia·reperfusion-induced cell death in SK-N-SH neuronal cells (허혈·재관류 유도성 신경세포사멸에 대하여 신경보호효과를 가지는 약용식물 추출물의 검색)

  • Oh, Tae-Woo;Lee, Mi Young;Lee, Hye Won;Park, Yong-Ki
    • The Korea Journal of Herbology
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    • v.28 no.2
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    • pp.45-53
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    • 2013
  • Objectives : The purpose of the study is to determine the neuroprotective effects of the water and 80% EtOH extract of some herbal medicine plant on ischemia reperfusion-induced cell death in SK-N-SH human brain neuronal cells. Methods : SK-N-SH cells were treated with 3mM sodium azide and 10 mM 2-deoxy-D-glucose for 45 min, ptior to the addition of different concentrations of herbal medicine plant extract (0, 10, 25, 50, 100, 250, 500, 1000 ${\mu}g/ml$) for 2 hr and then reperfused with growth medium, incubated for 24 h. Cell viability was determined by WST-1 assay, and ATP/ADP levels were measured by ADP/ATP ratio assay kit. Results : Herbal medicine plant extract significantly inhibited decreasing the cell viability in ischemia-induced SK-N-SH cells. Also increased the ratio of ADP/ATP in ischemia-induced neuronal cells. Conclusions : Our results suggest that herbal medicine plant extract has a neuroprotective property via increasing the energy levels in neuronal cells, suggesting that extract may has a therapeutic potential in the treatment of ischemic brain injury. The exact component and mechanism remains for the future study.

Anti-apoptotic Effects of Red Ginseng on Oxidative Stress Induced by Hydrogen Peroxide in SK-N-SH Cells

  • Kim, Eun-Hye;Lee, Mi-Jeong;Kim, In-Hye;Pyo, Suhk-Neung;Choi, Kwang-Tae;Rhee, Dong-Kwon
    • Journal of Ginseng Research
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    • v.34 no.2
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    • pp.138-144
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    • 2010
  • Ginseng (Panax ginseng C.A. Meyer) has been shown to have anti-stress effects in animal studies. However, most studies have only managed to detect altered levels of biomarkers or enzymes in blood or tissue, and the actual molecular mechanisms by which ginseng exerts these effects remain unknown. In this study, the anti-oxidative effect of Korean red ginseng (KRG) was examined in human SK-N-SH neuroblastoma cells. Incubation of SK-N-SH cells with the oxidative stressor hydrogen peroxide resulted in significant induction of cell death. In contrast, pre-treatment of cells with KRG decreased cell death significantly. To elucidate underlying mechanisms by which KRG inhibited cell death, the expression of apoptosis-related proteins was examined by Western blot analysis. KRG pre-treatment decreased the expression of the pro-apoptotic gene caspase-3, whereas it increased expression of the anti-apoptotic gene Bcl-2. Consistent with this, immunoblot analysis showed that pre-treatment of the SK-N-SH cells with KRG inhibited expression of the pro-inflammatory gene cyclooxygenase 2 (COX-2). RT-PCR analysis revealed that the repression of COX-2 expression by KRG pre-treatment occurred at the mRNA level. Taken together, our data indicate that KRG can protect against oxidative stress-induced neuronal cell death by repressing genes that mediate apoptosis and inflammation.

Neuroprotective Effects of Cirsium setidens, Pleurospermum kamtschaticumin, and Allium victorials Based on Antioxidant and p38 Phosphorylation Inhibitory Activities in SK-N-SH Neuronal Cells (SK-N-SH 신경세포내 항산화 효과와 p38 인산화 억제에 의한 곤드레, 누룩치 그리고 산마늘의 신경 보호 효과)

  • Chung, Mi Ja;Park, Yong Il;Kwon, Ki Han
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.3
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    • pp.347-355
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    • 2015
  • Oxidative stress is one of the key mechanisms involved in neuronal damage. Neuroprotective effects and underlying mechanisms of action of several wild vegetables, Cirsium setidens (CS), Pleurospermum kamtschaticumin (PK), and Allium victorials (AV), against oxidative stress induced by hydrogen peroxide in SK-N-SH cells were investigated. CS and AV up to $400{\mu}g/mL$ showed no detectable effects on cell viability of human SK-N-SH neuro-blastoma cells compared with control. Incubation of SK-N-SH cells with hydrogen peroxide resulted in significant induction of cell death and reaction oxygen species (ROS) production, whereas treatment of cells with CS and AV significantly reduced cell death and ROS production, respectively. Among the wild vegetables tested, CS and PK showed more effective DPPH radical scavenging activity than AV, whereas PK showed strong cytotoxicity in SK-N-SH cells compared with the control. CS showed much higher inhibitory effects on cell death and ROS generation against oxidative stress than AV. Thus, CS was selected for subsequent experiments. Ethyl acetate (EA), hexane, butanol, aqueous, and chloroform extracts from CS significantly inhibited cell death and ROS generation in SK-N-SH cells induced by oxidative stress. EA extract from CS (CS-EA) showed the highest DPPH radical-scavenging activity, intra-cellular ROS-scavenging activity, and neuroprotective effects. CS-EA attenuated apoptosis signal-regulating p38 activation by inhibiting phosphorylation. The findings suggest that CS-EA protects neuronal cells through antioxidant activity and inhibition of phosphorylation of p38 in brain neural cells.

Neuroprotective effects of Angelicae Acutilobae Radix water extract against ischemia·reperfusion-induced apoptosis in SK-N-SH neuronal cells (허혈·재관류 유도 신경세포사멸에 대한 일당귀 물추출물의 신경보호효과 연구)

  • Oh, Tae-Woo;Park, Ki-Ho;Lee, Mi-Young;Choi, Go-Ya;Park, Yong-Ki
    • The Korea Journal of Herbology
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    • v.26 no.4
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    • pp.67-74
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    • 2011
  • Objectives : The purpose of the study is to determine the neuroprotective effects of the water extract of Angelicae Acutilobae Radix(AA) on ischemia reperfusion-induced apoptosis in SK-N-SH human brain neuronal cells. Methods: SK-N-SH cells were treated with different concentrations of AA water extract (0.1, 0.2, 0.5 and 1.0 mg/ml) for 2 hr and then stimulated with Dulbecco's phosphate-buffered saline containing CI-DPBS: 3mM sodium azide and 10 mM 2-deoxy-D-glucose for 45 min, reperfused with growth medium, and incubated for 24 h. Cell viability was determined by WST-1 assay, and ATP/ADP levels were measured by ADP/ATP ratio assay kit. The levels of caspase-3 protein were determined by Western blot and apoptotic body was observed by Hoechst 33258 staining. Results : AA extract significantly inhibited decreasing the cell viability in ischemia-induced SK-N-SH cells. AA also increased the ratio of ADP/ATP in ischemia-induced neuronal cells and decreased the expression levels of apoptotic protein, caspase-3 and apoptotic DNA damage. Conclusions : Our results suggest that AA extract has a neuroprotective property via suppressing the apoptosis and increasing the energy levels in neuronal cells, suggesting that AA extract may has a therapeutic potential in the treatment of ischemic brain injury.

DNA Repair Characteristics of MRC-5 and SK-N-SH Irradiated with Proton Beam (양성자빔 조사에 따른 MRC-5와 SK-N-SH의 DNA 손상 후 회복 특성)

  • Choi, Eun-Ae;Lee, Bong-Soo;Cho, Young-Ho
    • Journal of radiological science and technology
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    • v.34 no.4
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    • pp.333-339
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    • 2011
  • The purpose of this study is to compare DNA repair characteristics of normal fibroblast cell (MRC-5) and neuroblastoma cell (SK-N-SH) induced by proton beam. Cells were irradiated with 2Gy, 5Gy and 8Gy proton beam. The rate of DNA rejoining was measured by alkaline version of the comet assay. After a repair time, tail moment was measured again. The tail moment of MRC-5 was lower than SK-N-SH. However, after 8Gy of exposure, the tail moment of MRC-5 was measured as 50.320223.17155 which represents dangerous level of DNA damage. The cells were repaired practically within 25 hours after 2 and 5Gy of exposure while they were not fully recovered after 8Gy of exposure. Especially, tail moment of MRC-5 after 25 hours was 18.15364.42849. In the distal declining edge of SOBP, the RBE value is increased by high LET. The RBE differences of SOBP in high-dose were greater than low-dose. After the high-dose exposure, MRC-5 of normal fibroblast cell could lead to lasting DNA damage as shown in this study. In conclusion, we has to pay special attention when the region of the treatment volume is close to sensitive tissues.