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腺病毒介导的低氧靶向胞嘧啶脱氨酶基因治疗增强肿瘤异种移植中的放射治疗。

Adenovirus-mediated hypoxia-targeting cytosine deaminase gene therapy enhances radiotherapy in tumour xenografts.

作者信息

Liu J, Harada H, Ogura M, Shibata T, Hiraoka M

机构信息

Department of Radiation Oncology and Image-Applied Therapy, Kyoto University Graduate School of Medicine, 54 Shogoin Kawahara-cho, Sakyo-ku, Kyoto 606-8507, Japan.

出版信息

Br J Cancer. 2007 Jun 18;96(12):1871-8. doi: 10.1038/sj.bjc.6603812. Epub 2007 May 22.

Abstract

Hypoxia is closely associated with the radioresistance of tumours; therefore, targeting hypoxic areas is very important for cancer therapy. The aim of this study is to establish such a targeting strategy by applying a bacterial cytosine deaminase (BCD)/5-fluorocytosine (5-FC) gene therapy system and to examine whether the strategy enhances the efficacy of radiotherapy in a tumour xenograft. The hypoxia-responsive promoter 5HREp, in which five copies of the hypoxia-response element (HRE) enhance transcription from a cytomegalovirus minimal promoter, was employed to induce the expression of BCD under hypoxic conditions. The adenoviral vector Ad/5HREp-BCD, encoding the gene 5HREp-BCD, robustly induced BCD expression under hypoxic conditions and this led to significant cytotoxicity in combination with 5-FC in vitro. Intratumoral Ad/5HREp-BCD administration resulted in the expression of BCD at the border between normoxic and necrotic regions. The BCD/5-FC gene therapy enhanced the therapeutic effects of both single (12.5 Gy) and fractionated (3 Gy x 5 days) radiotherapy with few side effects and significantly increased tumour growth doubling time by up to 2.4-fold (P<0.01) and 2.5-fold (P<0.05), respectively. All of these results suggest that the present BCD/5-FC gene therapy has the ability to specifically target hypoxic tumour cells and significantly improves the control of tumour growth after radiotherapy.

摘要

缺氧与肿瘤的放射抗性密切相关;因此,靶向缺氧区域对癌症治疗非常重要。本研究的目的是通过应用细菌胞嘧啶脱氨酶(BCD)/5-氟胞嘧啶(5-FC)基因治疗系统建立这样一种靶向策略,并研究该策略是否能增强肿瘤异种移植中放射治疗的疗效。缺氧反应性启动子5HREp,其中包含五个缺氧反应元件(HRE)拷贝,可增强来自巨细胞病毒最小启动子的转录,用于在缺氧条件下诱导BCD的表达。编码基因5HREp-BCD的腺病毒载体Ad/5HREp-BCD在缺氧条件下强烈诱导BCD表达,这在体外与5-FC联合使用时导致显著的细胞毒性。瘤内注射Ad/5HREp-BCD导致BCD在正常氧合区域和坏死区域之间的边界处表达。BCD/5-FC基因治疗增强了单次(12.5 Gy)和分次(3 Gy×5天)放射治疗的疗效,副作用较少,肿瘤生长倍增时间分别显著增加至2.4倍(P<0.01)和2.5倍(P<0.05)。所有这些结果表明,目前的BCD/5-FC基因治疗能够特异性靶向缺氧肿瘤细胞,并显著改善放射治疗后对肿瘤生长的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b4c/2359966/7b37a4009f5f/6603812f1.jpg

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