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Condensation of Plasmid DNA Enhances Mitochondrial Association in Skeletal Muscle Following Hydrodynamic Limb Vein Injection

机译:流体动力肢静脉注射后质粒DNA的浓缩增强骨骼肌线粒体缔合。

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摘要

Mitochondrial gene therapy and diagnosis have the potential to provide substantial medical benefits. However, the utility of this approach has not yet been realized because the technology available for mitochondrial gene delivery continues to be a bottleneck. We previously reported on mitochondrial gene delivery in skeletal muscle using hydrodynamic limb vein (HLV) injection. HLV injection, a useful method for nuclear transgene expression, involves the rapid injection of a large volume of naked plasmid DNA (pDNA). Moreover, the use of a condensed form of pDNA enhances the nuclear transgene expression by the HLV injection. The purpose of this study was to compare naked pDNA and condensed pDNA for mitochondrial association in skeletal muscle, when used in conjunction with HLV injection. PCR analysis showed that the use of condensed pDNA rather than naked pDNA resulted in a more effective mitochondrial association with pDNA, suggesting that the physicochemical state of pDNA plays a key role. Moreover, no mitochondrial toxicities in skeletal muscle following the HLV injection of condensed pDNA were confirmed, as evidenced by cytochrome c oxidase activity and mitochondrial membrane potential. These findings have the potential to contribute to the development for in vivo mitochondrial gene delivery system.
机译:线粒体基因治疗和诊断具有提供大量医学益处的潜力。但是,该方法的实用性尚未实现,因为可用于线粒体基因传递的技术仍然是瓶颈。我们先前曾报道过使用水动力肢体静脉(HLV)注射在骨骼肌中线粒体基因的传递。 HLV注射是核转基因表达的一种有用方法,涉及快速注射大量裸质粒DNA(pDNA)。此外,通过HLV注射,浓缩形式的pDNA的使用可增强核转基因表达。这项研究的目的是比较与HLV注射剂一起使用时裸露的pDNA和浓缩的pDNA与骨骼肌线粒体缔合的关系。 PCR分析表明,使用浓缩的pDNA而不是裸pDNA可以使线粒体与pDNA的结合更有效,这表明pDNA的理化状态起着关键作用。此外,通过细胞色素C氧化酶活性和线粒体膜电位的证实,在HLV注射缩合的pDNA后,未证实骨骼肌中的线粒体毒性。这些发现可能有助于体内线粒体基因传递系统的发展。

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