Byrne Leah C, Day Timothy P, Visel Meike, Strazzeri Jennifer A, Fortuny Cécile, Dalkara Deniz, Merigan William H, Schaffer David V, Flannery John G
Helen Wills Neuroscience Institute, University of California, Berkeley, Berkeley, California, USA.
Center for Visual Science, David and Ilene Flaum Eye Institute, University of Rochester Medical Center, Rochester, New York, USA.
JCI Insight. 2020 May 21;5(10):135112. doi: 10.1172/jci.insight.135112.
Efficient adeno-associated virus-mediated (AAV-mediated) gene delivery remains a significant obstacle to effective retinal gene therapies. Here, we apply directed evolution - guided by deep sequencing and followed by direct in vivo secondary selection of high-performing vectors with a GFP-barcoded library - to create AAV viral capsids with the capability to deliver genes to the outer retina in primates. A replication-incompetent library, produced via providing rep in trans, was created to mitigate risk of AAV propagation. Six rounds of in vivo selection with this library in primates - involving intravitreal library administration, recovery of genomes from outer retina, and extensive next-generation sequencing of each round - resulted in vectors with redirected tropism to the outer retina and increased gene delivery efficiency to retinal cells. These viral vectors expand the toolbox of vectors available for primate retina, and they may enable less invasive delivery of therapeutic genes to patients, potentially offering retina-wide infection at a similar dosage to vectors currently in clinical use.
高效的腺相关病毒介导(AAV介导)的基因递送仍然是有效的视网膜基因治疗的一个重大障碍。在此,我们应用定向进化——以深度测序为指导,随后通过对带有绿色荧光蛋白条形码文库的高性能载体进行直接体内二次筛选——来创建能够将基因递送至灵长类动物外视网膜的AAV病毒衣壳。通过反式提供rep产生了一个无复制能力的文库,以降低AAV传播的风险。在灵长类动物中使用该文库进行了六轮体内筛选——包括玻璃体内注射文库、从外视网膜回收基因组以及对每一轮进行广泛的下一代测序——产生了具有重定向嗜性至外视网膜且提高了对视网膜细胞基因递送效率的载体。这些病毒载体扩展了可用于灵长类视网膜的载体工具箱,并且它们可能使向患者递送治疗性基因的侵入性更小,有可能以与目前临床使用的载体相似的剂量实现全视网膜感染。