Systemic Administration of a Recombinant AAV1 Vector Encoding IGF-1 Improves Disease Manifestations in SMA Mice

被引:40
作者
Tsai, Li-Kai [1 ,2 ]
Chen, Chien-Lin [1 ,2 ]
Ting, Chen-Hung [3 ]
Lin-Chao, Sue [3 ]
Hwu, Wuh-Liang [4 ]
Dodge, James C. [5 ]
Passini, Marco A. [5 ]
Cheng, Seng H. [5 ]
机构
[1] Natl Taiwan Univ Hosp, Dept Neurol, Taipei 100, Taiwan
[2] Natl Taiwan Univ, Coll Med, Taipei 10764, Taiwan
[3] Acad Sinica, Inst Mol Biol, Taipei, Taiwan
[4] Natl Taiwan Univ Hosp, Dept Med Genet, Taipei 100, Taiwan
[5] Genzyme, Framingham, MA USA
关键词
SPINAL MUSCULAR-ATROPHY; GROWTH-FACTOR-I; MOUSE MODEL; SURVIVAL; EXPRESSION; DELIVERY; PHENOTYPE; ACID;
D O I
10.1038/mt.2014.84
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Spinal muscular atrophy is a progressive motor neuron disease caused by a deficiency of survival motor neuron. In this study, we evaluated the efficacy of intravenous administration of a recombinant adeno-associated virus (AAV1) vector encoding human insulin-like growth factor-1 (IGF-1) in a severe mouse model of spinal muscular atrophy. Measurable quantities of human IGF-1 transcripts and Protein were detected in the liver (up to 3 months postinjection) and in the serum indicating that IGF-1 was secreted from the liver into systemic circulation. Spinal muscular atrophy mice administered AAV1-IGF-1 on postnatal day 1 exhibited a lower extent of motor neuron degeneration, cardiac and muscle atrophy as well as a greater extent of innervation at the neuromuscular junctions compared to untreated controls at day 8 posttreatment. Importantly, treatment with AAV1-IGF-1 prolonged the animals' lifespan, increased their body weights and improved their motor coordination. Quantitative polymerase chain reaction and western blot analyses showed that AAV1-mediated expression of IGF-1 led to an increase in survival motor neuron transcript and protein levels in the spinal cord, brain, muscles, and heart. These data indicate that systemically delivered AAV1-IGF-1 can correct several of the biochemical and behavioral deficits in spinal muscular atrophy mice through increasing tissue levels of survival motor neuron.
引用
收藏
页码:1450 / 1459
页数:10
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