AAVrh.10-Mediated APOE2 Central Nervous System Gene Therapy for APOE4-Associated Alzheimer's Disease

载脂蛋白E 中枢神经系统 遗传增强 基因传递 生物 载体(分子生物学) 医学 阿尔茨海默病 神经退行性变 疾病 病毒载体 生物信息学 神经科学 病理 基因 遗传学 重组DNA
作者
Jonathan B. Rosenberg,Michael G. Kaplitt,Bishnu P. De,Alvin Chen,Thomas Flagiello,Christiana O. Salami,Eduard Pey,Lingzhi Zhao,Rodolfo J Ricart Arbona,Sébastien Monette,Jonathan P. Dyke,Douglas Ballon,Stephen M. Kaminsky,Dolan Sondhi,Gregory A. Petsko,Steven M. Paul,Ronald G. Crystal
出处
期刊:Human gene therapy. Clinical development [Mary Ann Liebert, Inc.]
卷期号:29 (1): 24-47 被引量:122
标识
DOI:10.1089/humc.2017.231
摘要

Alzheimer's disease (AD) is a progressive degenerative neurological disorder affecting nearly one in nine elderly people in the United States. Population studies have shown that an inheritance of the apolipoprotein E (APOE) variant APOE4 allele increases the risk of developing AD, whereas APOE2 homozygotes are protected from late-onset AD. It was hypothesized that expression of the "protective" APOE2 variant by genetic modification of the central nervous system (CNS) of APOE4 homozygotes could reverse or prevent progressive neurologic damage. To assess the CNS distribution and safety of APOE2 gene therapy for AD in a large-animal model, intraparenchymal, intracisternal, and intraventricular routes of delivery to the CNS of nonhuman primates of AAVrh.10hAPOE2-HA, an AAVrh.10 serotype coding for an HA-tagged human APOE2 cDNA sequence, were evaluated. To evaluate the route of delivery that achieves the widest extent of APOE2 expression in the CNS, the expression of APOE2 in the CNS was evaluated 2 months following vector administration for APOE2 DNA, mRNA, and protein. Finally, using conventional toxicology assays, the safety of the best route of delivery was assessed. The data demonstrated that while all three routes are capable of mediating ApoE2 expression in AD relevant regions, intracisternal delivery of AAVrh.10hAPOE2-HA safely mediated wide distribution of ApoE2 with the least invasive surgical intervention, thus providing the optimal strategy to deliver vector-mediated human APOE2 to the CNS.
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