Adenoviral TNF-α gene therapy and radiation damage tumor vasculature in a human malignant glioma xenograft

被引:0
|
作者
M-J Staba
HJ Mauceri
DW Kufe
DE Hallahan
RR Weichselbaum
机构
[1] University of Chicago Hospitals,Department of Pediatric Hematology/Oncology
[2] University of Chicago Hospitals,Department of Radiation and Cellular Oncology
[3] Laboratory of Pharmacology,undefined
[4] Dana Farber Cancer Institute,undefined
[5] Harvard University,undefined
来源
Gene Therapy | 1998年 / 5卷
关键词
gene therapy; malignant glioma; radiation; tumor necrosis factor-α; recombinant adenovirus;
D O I
暂无
中图分类号
学科分类号
摘要
We evaluated the antitumor effects of ionizing radiation and tumor necrosis factor-α (TNF-α) gene therapy in human malignant glioma (D54) xenografts. An adenoviral vector (Ad5) containing DNA sequences of the Egr-1 promoter was linked to a cDNA encoding the TNF-α gene (Ad.Egr-TNF). Athymic nude mice bearing D54 xenografts received intratumoral injections of Ad.Egr-TNF or the null vector (Ad.null), with and without fractionated radiation, 5 gray (Gy) per day for 6 days, a total dose of 30 Gy. Administration of Ad.Egr-TNF and 30 Gy resulted in complete tumor regression in 71% of xenografts compared with xenografts treated with radiation alone (7.4%, P = 0.006), Ad.Egr-TNF alone (0%, P = 0.012) or Ad.null with 30 Gy (0%, P = 0.002). Combined treatment with Ad.Egr-TNF and 30 Gy significantly reduced mean fractional tumor volumes compared with radiation alone (P = 0.002), Ad.Egr-TNF alone (P = 0.002) and Ad.null plus 30 Gy (P = 0.018). Histopathologic analyses of glioma xenografts treated with Ad.Egr-TNF and radiation revealed tumor vessel thrombosis by day 4 and necrosis by day 7. Thrombosis was not observed in tumors treated with Ad.Egr-TNF alone and was significantly reduced in all other treatment groups. These studies suggest that in the D54 glioma xenograft model, the antitumor effects of combining radiation and Ad.Egr-TNF are mediated, in part, by the destruction of the tumor microvasculature.
引用
收藏
页码:293 / 300
页数:7
相关论文
共 50 条
  • [31] Systemic gene therapy in human xenograft tumor models by liposomal delivery of the E1A gene
    Ueno, NT
    Bartholomeusz, C
    Xia, WY
    Anklesaria, P
    Bruckheimer, EM
    Mebel, E
    Paul, R
    Li, S
    Yo, GH
    Huang, L
    Hung, MC
    [J]. CANCER RESEARCH, 2002, 62 (22) : 6712 - 6716
  • [32] A model using radiation and a new tumor necrosis factor-α (TNF-α) gene construct for treatment of glioblastomas
    Baher, AG
    Andres, MA
    Holbeck, JC
    Fodor, I
    Slater, JM
    Gridley, DS
    [J]. CANCER GENE THERAPY, 1998, 5 (06) : S18 - S18
  • [33] EXPERIMENTAL STUDIES ON RADIATION-INDUCIBLE HUMAN TNF GENE THERAPY FOR CANCER
    曹雪涛
    章卫平
    王建莉
    黄欣
    秦志海
    [J]. Chinese Journal of Cancer Research, 1997, (03) : 16 - 19
  • [34] Targeting of neuropilin-1 to improve the anti-vascular effect of photodynamic therapy in xenograft human malignant glioma
    Bechet, D.
    Tirand, L.
    Plenat, F.
    Thomas, N.
    Bastogne, T.
    Guillemin, F.
    Barberi-Heyob, M.
    [J]. EJC SUPPLEMENTS, 2008, 6 (09): : 25 - 26
  • [35] Type I collagen gene suppresses tumor growth and invasion of malignant human glioma cells
    Honma, Kimi
    Miyata, Teruo
    Ochiya, Takahiro
    [J]. CANCER CELL INTERNATIONAL, 2007, 7 (1)
  • [36] Type I collagen gene suppresses tumor growth and invasion of malignant human glioma cells
    Kimi Honma
    Teruo Miyata
    Takahiro Ochiya
    [J]. Cancer Cell International, 7
  • [37] Basic study on gene therapy of human malignant glioma by use of the cationic multilamellar liposome-entrapped human interferon β gene
    Yagi, K
    Ohishi, N
    Hamada, A
    Shamoto, M
    Ohbayashi, M
    Ishida, N
    Nagata, A
    Kanazawa, S
    Nishikimi, M
    [J]. HUMAN GENE THERAPY, 1999, 10 (12) : 1975 - 1982
  • [38] Radio-responsive gene therapy for malignant glioma cells without the radiosensitive promoter: Caspase-3 gene therapy combined with radiation
    Tsurushima, Hideo
    Yuan, Xuan
    Dillehay, Larry E.
    Leong, Kam W.
    [J]. CANCER LETTERS, 2007, 246 (1-2) : 318 - 323
  • [39] Ionizing radiation and TNF-α and stimulated expression of α1-antichymotrypsin gene in human squamous carcinoma cells
    Patel, S
    Wang, FH
    Whiteside, TL
    Kasid, U
    [J]. ACTA ONCOLOGICA, 1998, 37 (05) : 475 - 478
  • [40] Functional Analysis of a Human Tumor Necrosis Factor α (TNF-α) Promoter Polymorphism Related to Joint Damage in Rheumatoid Arthritis
    Eric L. Kaijzel
    Michiel V. van Krugten
    Brigitta M. N. Brinkman
    Tom W. J. Huizinga
    Tahar van der Straaten
    J. Mieke W. Hazes
    H. W. Loems Ziegler-Heitbrock
    Sergei A. Nedospasov
    Ferdinand C. Breedveld
    Cornelis L. Verweij
    [J]. Molecular Medicine, 1998, 4 : 724 - 733