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Fusigenic viral liposome for gene therapy in cardiovascular diseases.

机译:用于心血管疾病基因治疗的融合型病毒脂质体。

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摘要

To improve the efficiency of liposome-mediated DNA transfer as a tool for gene therapy, we have developed a fusigenic liposome vector based on principles of viral cell fusion. The fusion proteins of hemagglutinating virus of Japan (HVJ; also Sendai virus) are complexed with liposomes that encapsulate oligodeoxynucleotide or plasmid DNA. Subsequent fusion of HVJ-liposomes with plasma membranes introduces the DNA directly into the cytoplasm. In addition, a DNA-binding nuclear protein is incorporated into the HVJ-liposome particle to enhance plasmid transgene expression. The fusigenic viral liposome vector has proven to be efficient for the intracellular introduction of oligodeoxynucleotide, as well as intact genes up to 100 kbp, both in vitro and in vivo. Many animal tissues have been found to be suitable targets for fusigenic viral liposome DNA transfer. In the cardiovascular system, we have documented successful cytostatic gene therapy in models of vascular proliferative disease using antisense oligodeoxynucleotides against cell cycle genes, double-stranded oligodeoxynucleotides as "decoys" to trap the transcription factor E2F, and expression of a transgene encoding the constitutive endothelial cell form of nitric oxide synthase. Similar strategies are also effective for the genetic engineering of vein grafts and for the treatment of a mouse model of immune-mediated glomerular disease.
机译:为了提高脂质体介导的DNA转移作为基因治疗工具的效率,我们基于病毒细胞融合的原理开发了一种融合型脂质体载体。日本的血凝病毒(HVJ;也是仙台病毒)的融合蛋白与包裹寡聚脱氧核苷酸或质粒DNA的脂质体复合。 HVJ-脂质体与质膜的随后融合将DNA直接引入细胞质。另外,将结合DNA的核蛋白掺入HVJ-脂质体颗粒中以增强质粒转基因表达。融合病毒性脂质体载体已被证明可有效地在体内和体外对寡聚脱氧核苷酸以及高达100 kbp的完整基因进行细胞内导入。已经发现许多动物组织是融合病毒性脂质体DNA转移的合适靶标。在心血管系统中,我们已经证明了使用针对细胞周期基因的反义寡聚脱氧核苷酸,双链寡聚脱氧核苷酸作为“诱饵”来捕获转录因子E2F以及编码组成型内皮细胞的转基因的表达,在血管增生性疾病模型中成功地进行了细胞抑制基因治疗一氧化氮合酶的细胞形式。类似的策略对于静脉移植物的基因工程和免疫介导的肾小球疾病的小鼠模型的治疗也是有效的。

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