FEBS Letters · 2004 · 52 citations · 13 references
Endothelial CellsRadiation EffectApoptosisCell DeathGreen Fluorescent ProteinRadiation BiologyGliomaTumor BiologyRadiation MedicineRadiation OncologyCancer ResearchRadiation TherapyOncogenic AgentCell BiologyTumor MicroenvironmentIntegrin AlphavTumor SuppressorMedicineCancer Growth
We demonstrate that human umbilical vein endothelial cells (HUVEC) grown in co-culture (CC) with U87 glioblastoma cells transfected with green fluorescent protein (GFP-U87) exhibit resistance to radiation-mediated apoptosis. cDNA macroarray analysis reveals increases in the accumulation of RNAs for HUVEC genes encoding cell adhesion molecules, growth factor-related proteins, and cell cycle regulatory/DNA repair proteins. An increase in protein expression of integrin alphav, integrin beta1, MAPK(p42), Rad51, DNA-PK(CS), and ataxia telangiectasia gene (ATM) was detected in HUVEC grown in CC with GFP-U87 cells compared with HUVEC grown in mono-culture. Treatment with anti-VEGF antibody decreases the expression of integrin alphav, integrin beta1, DNA-PK(CS) and ATM with a corresponding increase in ionizing radiation (IR)-induced apoptosis. These data support the concept that endothelial cells growing in the tumor microenvironment may develop resistance to cytotoxic therapies due to the up-regulation by tumor cells of endothelial cells genes associated with survival.
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Fan Yuan, Yi Chen, Marc Dellian et al. · Proceedings of the National Academy of Sciences · 1996 · 719 citations · Full text
Combined effects of angiostatin and ionizing radiation in antitumour therapy
Helena J. Mauceri, Nader Hanna, Michael A. Beckett et al. · Nature · 1998 · 670 citations
Dominant-negative inhibition of Flk-1 suppresses the growth of many tumor types in vivo.
B Millauer, M P Longhi, Karl H. Plate et al. · PubMed · 1996 · 424 citations
Pathology, Cancer Biology, Glioma +18