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首页> 外文期刊>BioMed research international >Combinatorial Control of Transgene Expression by Hypoxia-Responsive Promoter and MicroRNA Regulation for Neural Stem Cell-Based Cancer Therapy
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Combinatorial Control of Transgene Expression by Hypoxia-Responsive Promoter and MicroRNA Regulation for Neural Stem Cell-Based Cancer Therapy

机译:低氧反应性启动子和MicroRNA调控神经干细胞为基础的癌症治疗的转基因表达的组合控制。

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Owing to their strong migratory capacity, tumor tropism, and tumor inhibitory effect, neural stem cells (NSCs) have recently emerged as one of the most attractive gene delivery vectors for cancer therapy. However, further animal studies found that proportional NSC vectors were distributed to nontarget organs after intravenous injection and the nonspecific transgene expression led to significant cytotoxic effects in these organs. Hence, an expression cassette that controls the transgene expression within NSC vectors in a tumor site-specific manner is desired. Considering hypoxia as a hallmark of tumor microenvironment, we have developed a novel NSC vector platform coupling transcriptional targeting with microRNA (miRNA) regulation for tumor hypoxia targeting. This combinatorial vector employed a hypoxia-responsive promoter and repeated targeting sequences of an miRNA that is enriched in NSCs but downregulated upon hypoxia induction to control the transgene expression. This resulted in significantly improved hypoxic selectivity over the use of a control vector without miRNA regulation. Thus, incorporating miRNA regulation into a transcriptional targeting vector adds an extra layer of security to prevent off-target transgene expression and should be useful for the development of NSC vectors with high targeting specifcity for cancer therapy.
机译:由于其强大的迁移能力,肿瘤嗜性和肿瘤抑制作用,神经干细胞(NSC)最近已成为癌症治疗中最有吸引力的基因传递载体之一。然而,进一步的动物研究发现,在静脉注射后,成比例的NSC载体被分配到了非靶器官,并且非特异性转基因表达在这些器官中导致了明显的细胞毒性作用。因此,需要以肿瘤部位特异性方式控制NSC载体内转基因表达的表达盒。考虑到缺氧是肿瘤微环境的标志,我们已经开发了一种新型的NSC载体平台,将转录靶向与microRNA(miRNA)调控相结合,以进行肿瘤低氧靶向。该组合载体使用了低氧反应性启动子和miRNA的重复靶向序列,该miRNA富含NSC,但在低氧诱导后被下调以控制转基因表达。与使用没有miRNA调控的对照载体相比,这导致低氧选择性大大提高。因此,将miRNA调控整合到转录靶向载体中可增加一层额外的安全性,以防止脱靶转基因表达,对于开发具有高靶向特异性的NSC载体用于癌症治疗应是有用的。

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