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Changing Viral Tropism Using Immunoliposomes Alters the Stability of Gene Expression: Implications for Viral Vector Design

机译:使用免疫脂质体改变病毒趋向改变基因表达的稳定性:对病毒载体设计的启示

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摘要

Many strategies for redirecting the tropism of murine Moloney leukemia virus (MMLV) have been described. Preformed virion-liposome complexes, termed virosomes, have been reported to be relatively stable. Virosomes mediate envelope-independent transduction that allows efficient superinfection of resistant cell lines; however, virosome-mediated transduction behaves in a non–target-specific manner. We developed a novel method using antibodies to direct MMLV to vascular endothelium. We have given the term immunovirosomes to the complexes formed between viruses, liposomes, and antibodies. These immunovirosomes improve the transduction efficiency of the viruses and alter their tropism. We have shown improved transduction when immunovirosomes were targeted at the endocytic receptors CD71 and CD62E/P and rather less good delivery when targeted at CD106. The enhancement of the transduction efficiency was transient, however, suggesting that rerouting the entry pathway of viruses alters the expression properties of the viruses.
机译:已经描述了许多重定向鼠莫洛尼白血病病毒(MMLV)嗜性的策略。据报道,预制的病毒体-脂质体复合物称为病毒体,是相对稳定的。病毒体介导不依赖包膜的转导,从而使抗性细胞系有效地被双重感染。然而,病毒体介导的转导以非靶标特异性方式表现。我们开发了一种使用抗体将MMLV引导至血管内皮的新方法。我们将术语免疫病毒体指病毒,脂质体和抗体之间形成的复合物。这些免疫病毒体提高了病毒的转导效率并改变了它们的向性。我们已经显示,当免疫病毒体靶向内吞受体CD71和CD62E / P时,转导得到改善,而靶向CD106时,传递则不太好。但是,转导效率的提高是短暂的,这表明改变病毒的进入途径的路径会改变病毒的表达特性。

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