Selection of rAAV vectors that cross the human blood-brain barrier and target the central nervous system using a transwell model.

Molecular Therapy. Methods & Clinical Development Pub Date : 2022-09-07 eCollection Date: 2022-12-08 DOI:10.1016/j.omtm.2022.09.002
Ren Song, Katja Pekrun, Themasap A Khan, Feijie Zhang, Sergiu P Paşca, Mark A Kay
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引用次数: 6

Abstract

A limitation for recombinant adeno-associated virus (rAAV)-mediated gene transfer into the central nervous system (CNS) is the low penetration of vectors across the human blood-brain barrier (BBB). High doses of intravenously delivered vector are required to reach the CNS, which has resulted in varying adverse effects. Moreover, selective transduction of various cell types might be important depending on the disorder being treated. To enhance BBB penetration and improve CNS cell selectivity, we screened an AAV capsid-shuffled library using an in vitro transwell BBB system with separate layers of human endothelial cells, primary astrocytes and/or human induced pluripotent stem cell-derived cortical neurons. After multiple passages through the transwell, we identified chimeric AAV capsids with enhanced penetration and improved transduction of astrocytes and/or neurons compared with wild-type capsids. We identified the amino acids (aa) from regions 451-470 of AAV2 associated with the capsids selected for neurons, and a combination of aa from regions 413-496 of AAV-rh10 and 538-598 of AAV3B/LK03 associated with capsids selected for astrocytes. A small interfering RNA screen identified several genes that affect transcytosis of AAV across the BBB. Our work supports the use of a human transwell system for selecting enhanced AAV capsids targeting the CNS and may allow for unraveling the underlying molecular mechanisms of BBB penetration.

Abstract Image

Abstract Image

Abstract Image

利用transwell模型选择跨越人血脑屏障靶向中枢神经系统的rAAV载体。
重组腺相关病毒(rAAV)介导的基因转移到中枢神经系统(CNS)的一个限制是载体穿过人血脑屏障(BBB)的渗透率低。需要高剂量的静脉注射载体才能到达中枢神经系统,这导致了不同的不良反应。此外,各种细胞类型的选择性转导可能是重要的,这取决于所治疗的疾病。为了增强血脑屏障的穿透性和提高中枢神经系统细胞的选择性,我们使用体外transwell血脑屏障系统筛选了一个AAV衣壳洗刷文库,该系统含有不同层的人内皮细胞、原代星形胶质细胞和/或人诱导多能干细胞衍生的皮质神经元。在transwell中多次传代后,我们鉴定出与野生型衣壳相比,嵌合AAV衣壳对星形细胞和/或神经元的穿透和转导能力增强。我们鉴定了与神经元衣壳相关的AAV2的451-470区氨基酸(aa),以及与星形胶质细胞衣壳相关的AAV-rh10的413-496区和AAV3B/LK03的538-598区氨基酸的组合。一个小的干扰RNA筛选发现了几个影响AAV跨血脑屏障胞吞作用的基因。我们的工作支持使用人类transwell系统来选择靶向中枢神经系统的增强型AAV衣壳,并可能允许揭示血脑屏障渗透的潜在分子机制。
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