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PubMed:12186474 JSONTXT

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DisGeNET

Id Subject Object Predicate Lexical cue
T0 451-489 gene:1525 denotes Coxsackievirus and adenovirus receptor
T1 687-697 disease:C0025286 denotes meningioma
T2 451-489 gene:1525 denotes Coxsackievirus and adenovirus receptor
T3 687-697 disease:C1762616 denotes meningioma
T4 491-494 gene:1525 denotes CAR
T5 687-697 disease:C0025286 denotes meningioma
T6 491-494 gene:1525 denotes CAR
T7 687-697 disease:C1762616 denotes meningioma
R1 T0 T1 associated_with Coxsackievirus and adenovirus receptor,meningioma
R2 T2 T3 associated_with Coxsackievirus and adenovirus receptor,meningioma
R3 T4 T5 associated_with CAR,meningioma
R4 T6 T7 associated_with CAR,meningioma

DisGeNET5_gene_disease

Id Subject Object Predicate Lexical cue
12186474-6#16#19#gene1525 1173-1176 gene1525 denotes CAR
12186474-6#90#100#diseaseC0025286 1247-1257 diseaseC0025286 denotes meningioma
12186474-6#90#100#diseaseC1762616 1247-1257 diseaseC1762616 denotes meningioma
16#19#gene152590#100#diseaseC0025286 12186474-6#16#19#gene1525 12186474-6#90#100#diseaseC0025286 associated_with CAR,meningioma
16#19#gene152590#100#diseaseC1762616 12186474-6#16#19#gene1525 12186474-6#90#100#diseaseC1762616 associated_with CAR,meningioma

PubMed_Structured_Abstracts

Id Subject Object Predicate Lexical cue
T1 88-407 OBJECTIVE denotes Due to their surgical inaccessibility or aggressive behavior, some meningiomas cannot be cured with current treatment strategies. Gene therapy is an emerging strategy for the treatment of brain tumors, which the authors investigated to determine whether adenoviruses could be used for gene transfer in meningioma cells.
T2 417-1735 METHODS denotes The presence of the high-affinity Coxsackievirus and adenovirus receptor (CAR) for adenovirus type 5, as well as endothelial growth factor receptor (EGFR) and alpha, integrins (ITGAVs), were analyzed in primary tumors by using immunohistochemical studies and in primary meningioma cell cultures by using fluorescence-activated cell sorting. Targeting of adenoviruses to EGFR was achieved using bispecific antibodies, whereas targeting of adenoviruses to the ITGAVs was accomplished by insertion of an RGD (arginine-glycine-aspartic acid) motif in the adenovirus fiber H1 loop. Gene transfer efficiency of untargeted and targeted vectors was compared in primary cell cultures and in spheroids derived from patients' resected tumor material. The presence of CARs was observed in all tumors and in all but one of the derived primary meningioma cells. The higher expression of EGFRs and ITGAVs indicated that these receptors could be used as alternative targets to redirect the adenoviruses. Redirection of adenoviruses to the EGFRs or integrins enhanced gene transfer threefold (range two-sevenfold) for EGFRs in primary meningioma cells and ninefold (range three-23-fold) for integrins (p = 0.002, analysis of variance). The effect of adenovirus targeting was confirmed in spheroids composed of primary meningioma cells.
T3 1749-1946 CONCLUSIONS denotes Gene transfer with adenoviruses targeted to tumor-specific receptors is very effective in primary meningioma cells and spheroids. These vectors are promising agents for gene therapy of meningiomas.