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首页> 外文期刊>Gene therapy >Hydrostatic isolated limb perfusion with adeno-associated virus vectors enhances correction of skeletal muscle in Pompe disease.
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Hydrostatic isolated limb perfusion with adeno-associated virus vectors enhances correction of skeletal muscle in Pompe disease.

机译:静水隔离肢体灌注腺相关病毒载体增强了骨骼肌在Pompe疾病中的校正。

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摘要

Glycogen storage disease type II (Pompe disease; MIM 232300) stems from the inherited deficiency of acid-alpha-glucosidase (GAA; acid maltase; EC 3.2.1.20), which primarily involves cardiac and skeletal muscles. We hypothesized that hydrostatic isolated limb perfusion (ILP) administration of an adeno-associated virus (AAV) vector containing a muscle-specific promoter could achieve relatively higher transgene expression in the hindlimb muscles of GAA-knockout (GAA-KO) mice, in comparison with intravenous (IV) administration. ILP administration of AAV2/8 vectors encoding alkaline phosphatase or human GAA-transduced skeletal muscles of the hindlimb widely, despite the relatively low number of vector particles administered (1 x 10(1)(1)), and IV administration of an equivalent vector dose failed to transduce skeletal muscle detectably. Similarly, ILP administration of fewer vector particles of the AAV2/9 vector encoding human GAA (3 x 10(1)) transduced skeletal muscles of the hindlimb widely and significantly reduced glycogen content to, in comparison with IV administration. The only advantage for IV administration was moderately high-level transduction of cardiac muscle, which demonstrated compellingly that ILP administration sequestered vector particles within the perfused limb. Reduction of glycogen storage in the extensor digitorum longus demonstrated the potential advantage of ILP-mediated delivery of AAV vectors in Pompe disease, because type II myofibers are resistant to enzyme replacement therapy. Thus, ILP will enhance AAV transduction of multiple skeletal muscles while reducing the required dosages in terms of vector particle numbers.
机译:糖原储存疾病II型(Pompe疾病; MIM 232300)源于酸-α-葡糖苷酶的遗传缺乏症(GAA;酸麦芽糖酶; EC 3.2.1.20),其主要涉及心肌和骨骼肌。我们假设静水压分离的肢体灌注(ILP)施用含有肌肉特异性启动子的腺相关病毒(AAV)载体可以在GaA淘汰(Gaa-Ko)小鼠的Hindlimb肌肉中获得相对较高的转基因表达用静脉内(IV)给药。尽管施用了相对较少数量的载体颗粒(1×10(1))和IV施用等当量载体,但是ILP2 / 8载体的AAV2 / 8载体广泛地编码了Hindlimb的骨磷酸酶或人Gaa转导的骨骼肌。剂量未能检测到骨骼肌。类似地,与IV施用相比,ILP施用较少的AAV2 / 9载体的载体颗粒(3×10(1))的转导的HINDLIMB的骨骼肌,与IV给药相比,糖原含量显着降低。 IV施用的唯一优点是心肌的适度转导,这使得ILP给予灌注肢体内的载体颗粒的ILP施用。延伸点Digitorum onalus中的糖原储存的还原证明了ILP介导的AAV载体在POPPE疾病中递送的潜在优势,因为II型肌纤维对酶替代疗法具有抗性。因此,ILP将增强多个骨骼肌的AAV转导,同时在载体粒子数方面减少所需的剂量。

著录项

  • 来源
    《Gene therapy 》 |2010年第12期| 共6页
  • 作者

    Sun B; Li S; Bird A; Koeberl DD;

  • 作者单位

    Division of Medical Genetics Department of Pediatrics Duke University Medical Center Durham NC 27710 USA.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 治疗学 ;
  • 关键词

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