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Adenovirus-mediated p53 gene delivery potentiates the radiation-induced growth inhibition of experimental brain tumors.

作者信息

Badie B, Kramar M H, Lau R, Boothman D A, Economou J S, Black K L

机构信息

Department of Neurological Surgery, University of Wisconsin, Madison 53792, USA.

出版信息

J Neurooncol. 1998 May;37(3):217-22. doi: 10.1023/a:1005924925149.

DOI:10.1023/a:1005924925149
PMID:9524079
Abstract

Patients with malignant gliomas continue to have very poor prognosis even after surgical resection, radiation and chemotherapy. Because these tumors often have alterations in the p53 tumor suppressor gene, which plays a key role in the cellular response to DNA damaging agents, we investigated the role of p53 gene therapy in conjunction with ionizing radiation in a rat brain tumor model. Exposure of cultured rat 9L gliosarcoma cells, which contain a mutant p53 gene, to a recombinant adenovirus-vector bearing the wild-type p53 gene (Adp53), induced apoptosis within 24 hours. Although ionizing radiation had no additional effect on apoptosis within this time frame, it caused G1 arrest in non-apoptotic cells after Adp53 therapy. In contrast, wild-type 9L cells demonstrated little G1 arrest after X-irradiation. When animals bearing brain tumors were irradiated after intratumoral Adp53 injections, more than 85% reduction in tumor size was noted. Moreover, the group of rats receiving both radiation and Adp53 therapy had a significant increase in survival as compared to animals receiving either therapy alone. These results support the use of p53 gene therapy as an adjunct to radiation in treatment of malignant brain tumors.

摘要

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本文引用的文献

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Cancer Res. 1996 Feb 15;56(4):694-9.
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Cell cycle synchrony unmasks the influence of p53 function on radiosensitivity of human glioblastoma cells.细胞周期同步化揭示了p53功能对人胶质母细胞瘤细胞放射敏感性的影响。
Cancer Res. 1996 Feb 1;56(3):500-6.
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Ataxia-telangiectasia and cellular responses to DNA damage.共济失调毛细血管扩张症与细胞对DNA损伤的反应。
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