生存素
胶质瘤
癌症研究
遗传增强
报告基因
医学
溶瘤病毒
细胞培养
发起人
基因表达
生物
基因
肿瘤细胞
生物化学
遗传学
作者
Winan J. van Houdt,Yosef S. Haviv,Baogen Lu,Minghui Wang,Ángel A. Rivera,Ilya V. Ulasov,Martine L.M. Lamfers,Daniel Rein,Maciej S. Lesniak,Gene P. Siegal,Clemens M.F. Dirven,David T. Curiel,Zeng B. Zhu
出处
期刊:Journal of Neurosurgery
[American Association of Neurological Surgeons]
日期:2006-04-01
卷期号:104 (4): 583-592
被引量:88
标识
DOI:10.3171/jns.2006.104.4.583
摘要
Object Malignant brain tumors have been proved to be resistant to standard treatments and therefore require new therapeutic strategies. Survivin, a recently described member of the inhibitor of apoptosis protein family, is overexpressed in several human brain tumors, primarily gliomas, but is downregulated in normal tissues. The authors hypothesized that the expression of tumor-specific survivin could be exploited for treatment of gliomas by targeting the tumors with gene therapy vectors. Methods Following confirmation of survivin expression in glioma cell lines, an adenoviral vector containing the survivin promoter and the reporter gene luciferase was tested in established and primary glioma cells, normal astrocytic cells, and normal human brain tissues. High levels of reporter gene expression were observed in established tumor and primary tumor cell lines and low levels of expression in astrocytes and normal human brain tissue. To test oncolytic potency, the authors constructed survivin promoter–based conditionally replicative adenoviruses (CRAds), composed of survivin promoter–regulated E1 gene expression and an RGD-4C capsid modification. These CRAds could efficiently replicate within and kill a variety of established glioma tumor cells, but were inactive in a normal human liver organ culture. Finally, survivin promoter–based CRAds significantly inhibited the growth of glioma xenografts in vivo. Conclusions Together these data indicate that the survivin promoter is a promising tumor-specific promoter for transcriptional targeting of adenovirus-based vectors and CRAds for malignant gliomas. The strategy of using survivin–CRAds may thus translate into an experimental therapeutic approach that can be used in human clinical trials.
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