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Properties and techniques of intravascular rAAV6 gene delivery to striated muscle.

机译:血管内rAAV6基因传递至横纹肌的特性和技术。

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摘要

A growing body of research supports the development of recombinant adeno-associated viral vectors (rAAV) for delivery of gene expression cassettes to striated musculature as a method of treating severe neuromuscular conditions. However, it is unclear whether delivery protocols that achieve extensive gene transfer in mice can be adapted to produce similarly extensive gene transfer in larger mammals and ultimately patients. In order to further understand vascular rAAV gene delivery properties, and potentials for enhancement, we examined rAAV6 reporter gene transduction in adult mouse and canine musculature. A dose escalation study of IV-injected rAAV6 into mice clarified that once an apparent dose threshold is surpassed, transgene expression levels in muscles increase logarithmically over a linear range of doses. Furthermore, including empty capsids (carrying no vector genome) at a subthreshold vector genome dose enhances transgene expression levels greater than 10-fold, on a muscle- and capsid serotype-specific basis. An equivalent addition of genome-carrying rAAV6 capsids increases transgene expression above that produced by empty capsids only 2-4 fold. We therefore conclude that much of the logarithmic expression increase beyond the dose threshold is due to capsid concentration. Comparisons between transgene expression levels and vector genome presence in muscle tissue indicate that empty capsids effect expression increases largely by intracellular mechanisms in target cells. We also tested techniques for delivering rAAV6 to canine striated muscle via intravascular infusion. We found that a simple procedure incorporating acute (a) occlusion of limb blood flow, (b) exsanguination via compression bandage, and (c) vector "dwell" time of 20 minutes, markedly enhances the transduction of limb muscles, compared with a simple bolus limb infusion of vector. A complementary method whereby vector is infused into the jugular vein leads to efficient transduction of cardiomyocytes and to a lesser degree the diaphragm. These results establish that for efficient rAAV transduction of striated muscle, a capsid concentration-dependent dose threshold must be overcome, and that rAAV-mediated gene delivery is a viable approach to achieving systemic transduction of striated musculature in mammals approaching the dimensions of newborn humans.
机译:越来越多的研究支持重组腺相关病毒载体(rAAV)的开发,该技术可将基因表达盒递送至横纹肌,作为治疗严重神经肌肉疾病的方法。然而,尚不清楚在小鼠中实现广泛基因转移的递送方案是否可以适应于在较大的哺乳动物以及最终患者中产生类似的广泛基因转移。为了进一步了解血管rAAV基因的传递特性和增强潜力,我们研究了成年小鼠和犬肌肉组织中rAAV6报告基因的转导。静脉注射rAAV6进入小鼠的剂量递增研究表明,一旦超过表观剂量阈值,肌肉中转基因表达水平在剂量的线性范围内呈对数增加。此外,在肌肉和衣壳血清型特异性的基础上,以亚阈值载体基因组剂量包括空衣壳(不携带载体基因组)可提高转基因表达水平,使其大于10倍。携带基因组的rAAV6衣壳的同等添加可提高转基因表达,使其高于空衣壳仅产生2-4倍的转基因表达。因此,我们得出结论,对数表达的增加超出剂量阈值的大部分是由于衣壳浓度引起的。肌肉组织中转基因表达水平和载体基因组存在之间的比较表明,空衣壳效应表达在靶细胞中通过细胞内机制大大增加。我们还测试了通过血管内输注将rAAV6递送至犬横纹肌的技术。我们发现,一个简单的程序结合了急性(a)肢体血流阻塞,(b)通过压迫绷带放血和(c)小于20分钟的向量“停留”时间,与使用a肢体肌肉相比,显着增强了肢体肌肉的传导。简单推注肢体输注的载体。一种将载体注入颈静脉的补充方法可导致心肌细胞的高效转导,并减少膜片的转导。这些结果表明,对于横纹肌的有效rAAV转导,必须克服衣壳浓度依赖性的剂量阈值,并且rAAV介导的基因传递是在哺乳动物中达到接近新生人类尺寸的横纹肌系统进行系统转导的可行方法。

著录项

  • 作者

    Schultz, Brian Richard.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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