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Volumn 16, Issue 14, 2002, Pages 1979-1981
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Modulation of the tumor vasculature functionality by ionizing radiation accounts for tumor radiosensitization and promotes gene delivery.
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Author keywords
[No Author keywords available]
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Indexed keywords
CAV1 PROTEIN, MOUSE;
CAVEOLIN;
CAVEOLIN 1;
ENDOTHELIAL NITRIC OXIDE SYNTHASE;
INDUCIBLE NITRIC OXIDE SYNTHASE;
LIPOSOME;
NITRIC OXIDE;
NITRIC OXIDE SYNTHASE;
NOS3 PROTEIN, MOUSE;
OXYGEN;
ADJUVANT THERAPY;
ANIMAL;
ARTERIOLE;
ARTICLE;
BIOLOGICAL MODEL;
BIOSYNTHESIS;
CIRCULATION;
ENDOTHELIUM;
EXPERIMENTAL NEOPLASM;
GENE THERAPY;
GENETIC TRANSFECTION;
IONIZING RADIATION;
METABOLISM;
MICROCIRCULATION;
MOUSE;
PATHOPHYSIOLOGY;
PHYSIOLOGY;
RADIATION DOSE;
RADIATION EXPOSURE;
VASCULARIZATION;
VASODILATATION;
ANIMALS;
ARTERIOLES;
BLOOD CIRCULATION;
CAVEOLIN 1;
CAVEOLINS;
ENDOTHELIUM;
GENE THERAPY;
LIPOSOMES;
MICE;
MICROCIRCULATION;
MODELS, BIOLOGICAL;
NEOPLASMS, EXPERIMENTAL;
NITRIC OXIDE;
NITRIC OXIDE SYNTHASE;
NITRIC OXIDE SYNTHASE TYPE II;
NITRIC OXIDE SYNTHASE TYPE III;
OXYGEN;
RADIATION TOLERANCE;
RADIATION, IONIZING;
RADIOTHERAPY, ADJUVANT;
TRANSFECTION;
VASODILATION;
MLCS;
MLOWN;
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EID: 0036884118
PISSN: None
EISSN: 15306860
Source Type: Journal
DOI: 10.1096/fj.02-0487fje Document Type: Article |
Times cited : (90)
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References (0)
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