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PMID: 25515709 已发表 · ppublish 英语

Long-term correction of Sandhoff disease following intravenous delivery of rAAV9 to mouse neonates.

Walia Jagdeep S, Altaleb Naderah, Bello Alexander, Kruck Christa, LaFave Matthew C, Varshney Gaurav K, Burgess Shawn M, Chowdhury Biswajit, Hurlbut David, Hemming Richard, Kobinger Gary P, Triggs-Raine Barbara

摘要

G(M2) gangliosidoses are severe neurodegenerative disorders resulting from a deficiency in β-hexosaminidase A activity and lacking effective therapies. Using a Sandhoff disease (SD) mouse model (Hexb(-/-)) of the G(M2) gangliosidoses, we tested the potential of systemically delivered adeno-associated virus 9 (AAV9) expressing Hexb cDNA to correct the neurological phenotype. Neonatal or adult SD and normal mice were intravenously injected with AAV9-HexB or -LacZ and monitored for serum β-hexosaminidase activity, motor function, and survival. Brain G(M2) ganglioside, β-hexosaminidase activity, and inflammation were assessed at experimental week 43, or an earlier humane end point. SD mice injected with AAV9-LacZ died by 17 weeks of age, whereas all neonatal AAV9-HexB-treated SD mice survived until 43 weeks (P < 0.0001) with only three exhibiting neurological dysfunction. SD mice treated as adults with AAV9-HexB died between 17 and 35 weeks. Neonatal SD-HexB-treated mice had a significant increase in brain β-hexosaminidase activity, and a reduction in G(M2) ganglioside storage and neuroinflammation compared to adult SD-HexB- and SD-LacZ-treated groups. However, at 43 weeks, 8 of 10 neonatal-HexB injected control and SD mice exhibited liver or lung tumors. This study demonstrates the potential for long-term correction of SD and other G(M2) gangliosidoses through early rAAV9 based systemic gene therapy.

文献信息
期刊
Molecular therapy : the journal of the American Society of Gene Therapy
期刊简称
Mol Ther
发表日期
2015-11-16
收录日期
2015-02-27
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
100890581
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