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Persistent episomal transgene expression in liver following delivery of a scaffold/matrix attachment region containing non-viral vector

机译:交付包含非病毒载体的支架/基质附着区后,肝脏中持续的游离型转基因表达

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摘要

An ideal gene therapy vector should enable persistent transgene expression without limitations of safety and reproducibility. Here we report the development of a non-viral episomal plasmid DNA (pDNA) vector that appears to fulfil these criteria. This pDNA vector combines a scaffold/matrix attachment region (S/MAR) with a human liver-specific promoter (alpha1-antitrypsin (AAT)) in such a way that long-term expression is enabled in murine liver following hydrodynamic injection. Long-term expression is demonstrated by monitoring the longitudinal luciferase expression profile for up to 6 months by means of in situ bioluminescent imaging. All relevant control pDNA constructs expressing luciferase are unable to sustain significant transgene expression beyond 1 week post-administration. We establish that this shutdown of expression is due to promoter methylation. In contrast, the S/MAR element appears to inhibit methylation of the AAT promoter thereby preventing transgene silencing. Although this vector appears to be maintained as an episome throughout, we have no evidence for its establishment as a replicating entity. We conclude that the combination of a mammalian, tissue-specific promoter with the S/MAR element is sufficient to drive long-term episomal pDNA expression of genes in vivo.
机译:理想的基因治疗载体应能够持续表达转基因而不受安全性和再现性的限制。在这里,我们报告了似乎满足这些标准的非病毒游离质粒DNA(pDNA)载体的开发。该pDNA载体将支架/基质附着区(S / MAR)与人肝特异性启动子(α1-抗胰蛋白酶(AAT))结合在一起,从而使得在流体动力注射后能够在鼠肝中长期表达。通过原位生物发光成像监测纵向荧光素酶表达谱长达6个月,证明了长期表达。表达萤光素酶的所有相关对照pDNA构建体在给药后1周后均无法维持明显的转基因表达。我们建立这种表达的关闭是由于启动子甲基化。相反,S / MAR元件似乎抑制AAT启动子的甲基化,从而防止转基因沉默。尽管此载体似乎始终保持为附加体,但我们没有证据表明其可作为复制实体。我们得出的结论是,哺乳动物的组织特异性启动子与S / MAR元件的结合足以驱动体内基因的长期游离型pDNA表达。

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