T98G cells
SUPPRESSION OF MANGANESE SUPEROXIDE DISMUTASE ACTIVITY IN ROTENONE TREATED HUMAN GLIOBLASTOMA T98G CELLS REDUCES CELL VIABILITY
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Long-Term Infection and Shedding of Human Cytomegalovirus in T98G Glioblastoma Cells
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HMGB1-Induced p62 Overexpression Promotes Snail-Mediated Epithelial-Mesenchymal Transition in Glioblastoma Cells via the Degradation of GSK-3β
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EZH2 promotes metabolic reprogramming in glioblastomas through epigenetic repression of EAF2-HIF1α signaling
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E series prostaglandins alter the proliferative, apoptotic and migratory properties of T98G human glioma cells in vitro
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Karenitecin (BNP1350) radiosensitizes glioma cells with an associated increase in caspase activation and reactive oxygen species.
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Changes in the expression of proteins associated with aerobic glycolysis and cell migration are involved in tumorigenic ability of two glioma cell lines
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Improved Simultaneous Estimation of Location and System Reliability via Shrinkage Ideas
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Overexpression of miR-100 inhibits cell proliferation, migration, and chemosensitivity in human glioblastoma through FGFR3
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Nuclear translocation of fibroblast growth factor-2 (FGF2) is regulated by Karyopherin-β2 and Ran GTPase in human glioblastoma cells
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Tumor regression following intravenous administration of lactoferrin- and lactoferricin-bearing dendriplexes
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Carnosine selectively inhibits migration of IDH-wildtype glioblastoma cells in a co-culture model with fibroblasts
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692H Huaitong Wu.pdf
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Potential targets of TMEM176A in the growth of glioblastoma cells
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Maintenance of Large Numbers of Virus Genomes in Human Cytomegalovirus-Infected T98G Glioblastoma Cells
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The role of mitochondrial function in gold nanoparticle mediated radiosensitisation
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Disruption of NF-κB signaling by fluoxetine attenuates MGMT expression in glioma cells
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Effects of ionizing radiation on the viability and proliferative behavior of the human glioblastoma T98G cell line
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The histone demethylase JMJD2A promotes glioma cell growth via targeting Akt-mTOR signaling
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MiRNA 329 targeting E2F1 inhibits cell proliferation in glioma cells
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