Department of Neurology, University of Pittsburgh, Pittsburgh, PA 15213, USA.
Gene Ther. 2009 Sep;16(9):1130-7. doi: 10.1038/gt.2009.71. Epub 2009 May 28.
One of the major challenges in the treatment of primary muscle disorders, which often affect many muscle groups, is achieving efficient, widespread transgene expression in muscle. In utero gene transfer can potentially address this problem by accomplishing the gene delivery when the tissue mass is small and the immune system is immature. Earlier studies with systemic in utero adeno-associated viral (AAV) vector serotype 1 gene delivery to embryonic day 16 (E-16) pups resulted in high levels of transduction in diaphragm and intercostal muscles, but no detectable transgene expression in limb muscles. Recently, newer AAV serotypes, such as AAV8, have shown widespread and high transgene expression in skeletal muscles and diaphragm by systemic delivery in adult and neonatal mice. We tested AAV8 vector gene delivery by intraperitoneal administration in E-16 mice in utero. Using an AAV8 vector carrying a lacZ reporter gene, we observed high-level transduction of diaphragm and intercostal muscles and more moderate transduction of multiple limb muscles and heart. Our current studies show the potential of AAV8 to achieve widespread muscle transduction in utero and suggest its therapeutic potential for primary muscle disorders.
在治疗常影响多个肌肉群的原发性肌肉疾病时,一个主要挑战是在肌肉中实现高效、广泛的转基因表达。在子宫内进行基因转移可以通过在组织质量较小且免疫系统不成熟时完成基因传递来解决这个问题。早期的研究表明,通过向胚胎第 16 天(E-16)幼仔进行全身腺相关病毒(AAV)血清型 1 基因传递,可在膈肌和肋间肌中实现高水平的转导,但在肢体肌肉中无法检测到转基因表达。最近,新型 AAV 血清型,如 AAV8,通过在成年和新生小鼠中进行全身给药,已显示出在骨骼肌和膈肌中广泛和高水平的转基因表达。我们通过在子宫内对 E-16 小鼠进行腹腔内 AAV8 载体基因传递来进行测试。使用携带 lacZ 报告基因的 AAV8 载体,我们观察到膈肌和肋间肌的高水平转导,以及多个肢体肌肉和心脏的中等水平转导。我们目前的研究表明 AAV8 具有在子宫内实现广泛肌肉转导的潜力,并表明其在治疗原发性肌肉疾病方面的潜在应用。