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首页> 外文期刊>Plasmid: An International Journal Devoted to Extrachromosomal Gene Systems >Eukaryotic expression vectors bearing genes encoding cytotoxic proteins for cancer gene therapy
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Eukaryotic expression vectors bearing genes encoding cytotoxic proteins for cancer gene therapy

机译:带有编码细胞毒性蛋白的基因的真核表达载体,用于癌症基因治疗

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摘要

Cancer gene therapy is a promising direction for the treatment of cancer patients. A primary goal of all cancer therapies is to selectively target and kill tumour cells. Such therapies are administered via different approaches, including both viral and non-viral delivery; however, both methods have advantages and disadvantages. Transcriptional targeting enables genes encoding toxic proteins to be expressed directly in cancer cells. Numerous vectors have been created with the purpose of killing cancer cells, and some have successfully suppressed malignant tumours. Data concerning the function of vectors bearing genes that encode cytotoxic proteins under the control of different promoters, including tissue/tumour specific and constitutive promoters, is summarised here. This review focuses on vectors that bear genes encoding diphtheria toxin, Pseudomonas exotoxin A, caspases, gef, streptolysin, and melittin. Data describing the efficacy of such vectors have been summarised. Notably, there are vectors that killed cancer cell lines originating from the same type of cancer with differential efficiency. Thus, there is differential inhibition of cancer cell growth dependent on the cell line. In this review, the constructs employing genes whose expression induces cell death and the efficiency with which they suppress cancer cell growth will be summarised.
机译:癌症基因疗法是治疗癌症患者的有希望的方向。所有癌症疗法的主要目标是选择性靶向并杀死肿瘤细胞。此类疗法可通过不同的方法进行管理,包括病毒和非病毒递送。但是,这两种方法都有优点和缺点。转录靶向可使编码毒性蛋白的基因直接在癌细胞中表达。为了杀死癌细胞,已经创建了许多载体,并且一些已经成功地抑制了恶性肿瘤。此处总结了有关带有在不同启动子(包括组织/肿瘤特异性启动子和组成型启动子)控制下编码细胞毒性蛋白的基因的载体功能的数据。这篇综述着重于带有编码白喉毒素,假单胞菌外毒素A,胱天蛋白酶,gef,链球菌溶血素和蜂毒肽的基因的载体。描述这些载体功效的数据已经总结。值得注意的是,存在以不同的效率杀死源自相同类型癌症的癌细胞系的载体。因此,存在依赖于细胞系的癌细胞生长的差异抑制。在这篇综述中,将总结采用其表达诱导细胞死亡的基因的构建体以及它们抑制癌细胞生长的效率。

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