• Title/Summary/Keyword: Glioma cell

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Combination Therapy for Gliomas Using Temozolomide and Interferon-Beta Secreting Human Bone Marrow Derived Mesenchymal Stem Cells

  • Park, Jae-Hyun;Ryu, Chung Heon;Kim, Mi Jin;Jeun, Sin-Soo
    • Journal of Korean Neurosurgical Society
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    • v.57 no.5
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    • pp.323-328
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    • 2015
  • Objective : Malignant gliomas are the most common primary tumors of the central nervous system and the prognosis of patients with gliomas is poor. The combination of interferon-bata (IFN-${\beta}$) and temozolomide (TMZ) has shown significant additive antitumor effects in human glioma xenograft models. Considering that the poor survival of patients with human malignant gliomas relates partly to the inability to deliver therapeutic agents to the tumor, the tropism of human bone marrow-derived mesenchymal stem cells (MSC) for malignant gliomas can be exploited to therapeutic advantages. We investigated the combination effects of TMZ and MSCs that secrete IFN-${\beta}$ on gliomas. Methods : We engineered human MSCs to secret mouse IFN-${\beta}$ (MSC-IFN-${\beta}$) via adenoviral transduction and confirmed their secretory capacity using enzyme-linked immunosorbent assays. In vitro and in vivo experiments were performed to determine the effects of the combined TMZ and MSC-IFN-${\beta}$ treatment. Results : In vitro, the combination of MSC-IFN-${\beta}$ and TMZ showed significantly enhanced antitumor effects in GL26 mouse glioma cells. In vivo, the combined MSC-IFN-${\beta}$ and TMZ therapy significantly reduced the tumor size and improved the survival rates compared to each treatment alone. Conclusion : These results suggest that MSCs can be used as an effective delivery vehicle so that the combination of MSC-IFN-${\beta}$ and TMZ could be considered as a new option for the treatment of malignant gliomas.

Expression of Chemokines and Chemokine Receptors in Brain Tumor Tissue Derived Cells

  • Razmkhah, Mahboobeh;Arabpour, Fahimeh;Taghipour, Mousa;Mehrafshan, Ali;Chenari, Nooshafarin;Ghaderi, Abbas
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.17
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    • pp.7201-7205
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    • 2014
  • Chemokine and chemokine receptor expression by tumor cells contributes to tumor growth and angiogenesis and thus these factors may be considered as tumor markers. Here we aimed to characterize cells directly extracted from glioma, meningioma, and secondary brain tumors as well as non-tumoral cells in vitro. Cells were isolated from brain tissues using 0.2% collagenase and characterized by flow cytometry. Expression of SDF-1, CXCR4, CXCR7, RANTES, CCR5, MCP-1 and IP-10 was defined using flow cytometry and qRT-PCR methods. Brain tissue isolated cells were observed as spindle-shaped cell populations. No significant differences were observed for expression of SDF-1, CXCR4, CXCR7, RANTES, CCR5, and IP-10 transcripts. However, the expression of CXCR4 was approximately 13-fold and 110-fold higher than its counterpart, CXCR7, in meningioma and glioma cells, respectively. CXCR7 was not detectable in secondary tumors but CXCR4 was expressed. In non tumoral cells, CXCR7 had 1.3-fold higher mRNA expression than CXCR4. Flow cytometry analyses of RANTES, MCP-1, IP-10, CCR5 and CXCR4 expression showed no significant difference between low and high grade gliomas. Differential expression of CXCR4 and CXCR7 in brain tumors derived cells compared to non-tumoral samples may have crucial impacts on therapeutic interventions targeting the SDF-1/CXCR4/CXCR7 axis.

Cobalt Chloride-induced Apoptosis and Extracellular Signal-regulated Protein Kinase 1/2 Activation in Rat C6 Glioma Cells

  • Yang, Seung-Ju;Pyen, Jhin-Soo;Lee, In-Soo;Lee, Hye-Young;Kim, Young-Kwon;Kim, Tae-Ue
    • BMB Reports
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    • v.37 no.4
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    • pp.480-486
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    • 2004
  • Brain ischemia brings about hypoxic insults. Hypoxia is one of the major pathological factors inducing neuronal injury and central nervous system infection. We studied the involvement of mitogen-activated protein (MAP) kinase in hypoxia-induced apoptosis using cobalt chloride in C6 glioma cells. In vitro cytotoxicity of cobalt chloride was tested by MTT assay. Its $IC_{50}$ value was $400\;{\mu}M$. The DNA fragment became evident after incubation of the cells with $300\;{\mu}M$ cobalt chloride for 24 h. We also evidenced nuclear cleavage with morphological changes of the cells undergoing apoptosis with electron microscopy. Next, we examined the signal pathway of cobalt chloride-induced apoptosis in C6 cells. The activation of extracellular signal-regulated protein kinase 1/2 (ERK 1/2) started to increase at 1 h and was activated further at 6 h after treatment of 400 M cobalt chloride. In addition, pretreatment of PD98059 inhibited cobalt chloride-induced apoptotic cell morphology in Electron Microscopy. These results suggest that cobalt chloride is able to induce the apoptotic activity in C6 glioma cells, and its apoptotic mechanism may be associated with signal transduction via MAP kinase (ERK 1/2).

The Protective Effect of Lonicerae flos Extract on Cultured C6 Glioma Cells Damaged by Aluminum of Dementia Inducer (치매유발제인 알루미늄으로 손상된 배양 C6 Glioma 세포에 대한 금은화 추출물의 보호 효과)

  • Jung, Jai-Yun;Jung, In-Ju;Jekal, Seung-Joo
    • Korean Journal of Clinical Laboratory Science
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    • v.49 no.3
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    • pp.271-278
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    • 2017
  • This study was performed to evaluate the cytotoxicity of aluminum chloride ($AlCl_3$), and the protective effect of Lonicerae flos (LF) extract on $AlCl_3-induced$ cytotoxicity in the cultured C6 glioma cells. Here, the cell viability and antioxidative effects, such as DPPH-radical scavenging activity, superoxide anion scavenging activity, and lipid peroxidation (LP), were assessed. $AlCl_3$ significantly decreased the cell viability in a dose-dependent manner; the $XTT_{50}$ value was measured at $128.8{\mu}M$ of $AlCl_3$. The cytotoxicity of $AlCl_3$ was determined as highly toxic the y Borenfreund and Puerner's toxic criteria. The butylated hydroxytoluene (BHT) and antioxidant both significantly increased the cell viability, which was damaged by $AlCl_3-induced$ cytotoxicity in these cultures. In the protective effect of LF extract on $AlCl_3-induced$ cytotoxicity, the LF extract significantly increased the superoxide anion scavenging activity and inhibitory activity of LP, as well as the DPPH-radical scavenging activity. From these results, it is suggested that the oxidative stress may have been involved in the cytotoxicity of $AlCl_3$, and LP extract effectively protected $AlCl_3-induced$ cytotoxicity through the antioxidative effects. Conclusively, the natural resources, like LP extract, may be a putative therapeutic agent for the treatment of dementia induced by allergen like aluminum correlated with the oxidative stress.

Involvement of MAPKs in GDNF-induced Proliferation and Migration in Hs683 Glioma Cells

  • Song, Hyun;Moon, A-Ree
    • Proceedings of the PSK Conference
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    • 2003.04a
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    • pp.223.2-224
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    • 2003
  • Glial cell-derived neurotrophic factor (GDNF) is a potent neurotrophic factor that enhances survival of midbrain doparminergic neuron. GDNF and its receptors are widely distributed in brain and are believed to be involved in the control of neuron survival and differentiation. GDNF increased proliferation and migration of Hs683 human giloma and C6 rat giloma cells in a dose-dependent manner. (omitted)

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Protective effects of Pharmacopuncture Solutions made by Carthmi Flos, Cnidii Rhizoma and Astragali Radix on C6 glioma cells (홍화(紅花), 천궁(川芎), 황기 약침액(藥鍼液)의 뇌교세포주 보호 효과)

  • Kim, Hyung-Woo;Cho, Su-In;Kim, Il-Hwan
    • Journal of Pharmacopuncture
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    • v.12 no.2
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    • pp.31-40
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    • 2009
  • Objective : This study was carried out to investigate protective effects of Pharmacopuncture Solutions (PSs) made by Carthmi Flos (CF), Cnidii Rhizoma (CR) and Astragali Radix (AR) on C6 glioma cells Methods : We investigated the effects of PSs on proliferation rates and types of C6 cells, and also investigated the effects on LDH release. In addition, protective effects of PSs on oxidative stress induced by hydrogen peroxide and SOD-like activities were also investigated. Results : PSs made by CF, CR and AR did not show cytotoxicity in various concentrations. CF-PS and AR-PS elevated levels of proliferation rates significantly. Treatment with CF-PS lowered level of LDH release in C6 cells. In addition, CF-PS and CR-PS showed protective effects on cell death induced by hydrogen peroxide respectively. Finally, CF-PS group showed high level of SOD-like activity compared to that in CR-PS group. Conclusion : These results suggest that CF-PS can accelerate proliferation of neuroglial cells, and has protective action against oxidative stress, which was involved in anti-oxidative effects such as SODlike activities. In addition, CR has protective effects against oxidative stress, and AR can accelerate proliferation of neuroglial cells.

Mechanisms of Apoptosis by Combination with Jeongjihwan and Cisplatin in Human Glioblastoma Cells (정지환과 시스플라틴의 신경교아세포종에 대한 세포고사 기전연구)

  • Shin Hak-Soo;Lee Sun-Woo;Lee Min-Goo;Yun Jong-Min;Lee In;Sin Sun-Ho;Moon Byung-Soon
    • The Journal of Korean Medicine
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    • v.26 no.2 s.62
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    • pp.1-12
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    • 2005
  • Objectives: Malignant gliomas are often treated with cisplatin (cis-diamminedichloroplatinum(II), CDDP) and radiation but results remain unsatisfactory. Since malignant glioma displays moderate resistance to conventional therapy, a new treatment modality is needed to improve the outcome of patients with these tumors. The aim of this study was to investigate the effects of the combined use of Jongjihwan(JJH) and cisplatin(CDDP) on cultured malignant glioma cells, A172. Methodss & Results: The combined use of cisplatin and Jeongjihwan had synergistic effects on Al72 cells during 24 hr-incubation, This treatment resulted in a decrease of cell viability, Which was revealed as apoptosis Characterized by activation of caspase-3 protease as well as cleavage of poly ADP-ribose polymerase (PARP) with change of mitochondria membrane potential transition. The expression of members of the Bcl-2 protein family was modulated during co-treatment with Jeongjihwan and cisplatin. Activation of caspase-3 and mitochondrial alterations were central to co-treatment with Jeongjihwan and cisplatin-induced apoptosis. Conclusions: We conclude that co-treatment with Jeongjihwan and cisplatin-induced activation of the mitochondrial pathway enables cell death. Also, we suggest the combined theory of JJH and cisplatin could be a useful method for glioblastoma.

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A Study on the Synthesis and Its Biodistribution of C-11 and F-18 Labelled Choline (C-11 및 F-18 표지 콜린의 합성과 체내동태에 관한 연구)

  • Yang, Seung-Dae;Kim, Sang-Wook;Suh, Yong-Sup;Chun, Kwon-Soo;Ahn, Soon-Hyuk;Hur, Min-Goo;Lim, Sang-Moo;Hong, Sung-Woon;Yu, Kook-Hyun
    • The Korean Journal of Nuclear Medicine
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    • v.35 no.3
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    • pp.185-191
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    • 2001
  • Objectives: Recently, $[methyl-^{11}C]-({\beta}$-Hydroxyethyl)trimethylammonium ($[^{11}C]$choline) Has been discovered to be a very effective tracer in imaging various human tumors using positron omission tomography. Because of the short half-life of C-11, it is very difficult to use in a routine imaging procedure and needs a frequent synthesis of $[^{11}C]$choline. This can be supplemented by the substitution of $[^{11}C]$choline with $[methyl-^{18}F]$fluorocholine. Here, we would like to report ceil uptake and biodistribution of $[^{11}C]$choline and $[^{18}F]$fluorocholine as a basic study. Methods: $[^{11}C]$Choline was prepared by the treatment of $[^{11}C]CH_3I$ with N,N-dimethylaminoethanol and $[^{18}F]$fluorocholine was synthesized from reaction of $CH_2Br[^{18}F]F$ with N,N-dimethylaminoethanol. The radiochemical purity was checked by high performance liquid chromatography (HPLC). The blodistribution of $[^{11}C]$choline and $[^{18}F]$fluorocholine was determined in balb/c mouse at 5 min, 20 min, 40 min and 80 min. The cell uptake was measured using glioma (9L) and colon adenocarcinoma (SW620). Results: The radiochemical purity was more than 98% after purification. In the liver, uptake did not change over time; the uptake was 20%ID/g for $[^{11}C]$choline and 13%ID/g for $[^{18}F]$fluorocholine. In the kidney, radioactivity decreased over time; the uptake was 15%ID/g for $[^{11}C]$choline and 20%ID/g for $[^{18}F]$fluorocholine, 80 min post-injection. The cell uptake of $[^{11}C]$choline was 4.93% for glioma (9L) and 18.69% for colon adenocarcinoma (SW620). For $[^{18}F]$fluorocholine, 1.77% for glioma (9L) and 2.77% for colon adenocarcinoma (SW620). Conclusion: $[^{11}C]$Choline and $[^{18}F]$fluorocholine showed a different cell uptake tendency, depending on cancer cell line.

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Alleviating Effects of Euphorbiae humifusae L. Extract on the Neurotoxicity Induced by Lead (납의 신경독성에 대한 지금초 추출물의 독성경감 효과)

  • Lee, Sang-Hee;Seo, Young-Mi
    • Korean Journal of Clinical Laboratory Science
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    • v.50 no.4
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    • pp.501-510
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    • 2018
  • This study examined the neurotoxicity induced by lead acetate (LA) on cultured C6 glioma cells and the protective effects of Euphorbiae humifusae L. (EH) extract against LA-induced cytotoxicity. In this study, LA exhibited neurotoxicity in a dose-dependent manner compared to the control, and was determined to be highly-toxic according to the toxic criteria. The $XTT_{50}$ value of LA was calculated at a concentration of $38.6{\mu}M$ after C6 glioma cells were incubated for 72 hours in the media containing $30{\sim}50{\mu}M$ of LA, respectively. In addition, LA-induced neurotoxicity was suggested to correlate with the level of oxidative stress because vitamin E, an antioxidant, increased the cell viability damaged by LA-induced cytotoxicity. The EH extract effectively prevented cell injury from LA-induced cytotoxicity via its antioxidative effects, such as inhibitory ability of lipid peroxidation, superoxide dismutase-like activity and 1,1-diphenyl-2-picrylhydrazyl-radical scavenging activity. These antioxidative effects may result in components, such as polyphenol or flavonoids including gallic acid or quercetin. In conclusion, natural resources, such as EH extracts, may be a useful putative agent for the treatment of diseases associated with oxidative stress, such as lead neurotoxicity.

Different Cytokine Dependency of Proneural to Mesenchymal Glioma Stem Cell Transition in Tumor Microenvironments (종양미세환경에서 이질적인 사이토카인에 의한 PN-MES 뇌종양줄기세포 전이 조절)

  • Lee, Seon Yong;Kim, Hyunggee
    • Journal of Life Science
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    • v.29 no.5
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    • pp.530-536
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    • 2019
  • Glioblastoma (GBM) is the most incurable brain cancer derived from the transformed glial cells. Standard anti-GBM treatment, including surgery and chemoradiotherapy, does not ensure good prognosis for the patients with GBM, because successful therapy is often impeded by presence of glioma stem cells (GSCs). GSCs, which is generally divided into proneural (PN) and mesenchymal (MES) subtype, are understood as subpopulation of cancer cells responsible for GBM initiation, progression and recurrence after standard treatments. In the present study, we demonstrate that PN subtype GSCs differentially transit to MES subtype GSCs by specific cytokines. The expression of CD44, a marker of MES subtype GSCs, was observed when GSC11 PN subtype GSCs were exposed to tumor necrosis factor alpha ($TNF-{\alpha}$) cytokine and GSC23 PN subtype GSCs were treated to transforming growth factor beta 1 ($TGF-{\beta}1$) cytokine. Ivy glioblastoma atlas project (Ivy GAP) bioinformatics database showed that $TNF-{\alpha}$ and $TGF-{\beta}1$ were highly expressed in necrotic region and perivascular region, respectively. In addition, $TNF-{\alpha}$ signaling was relatively upregulated in necrotic region, while $TGF-{\beta}$ signaling was increased in perivascular region. Taken together, our observations suggest that MES subtype GSCs can be derived from various PN subtype GSCs by multimodal cytokine stimuli provided by neighboring tumor microenvironment.