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在原代人视网膜模型中进行 AAV 衣壳生物工程改造。

AAV capsid bioengineering in primary human retina models.

机构信息

Translational Vectorology Research Unit, Faculty of Medicine and Health, Children's Medical Research Institute, The University of Sydney, Westmead, Australia.

Infection, Immunity and Inflammation Teaching and Research Department, Great Ormond Street Institute of Child Health, University College London, London, UK.

出版信息

Sci Rep. 2023 Dec 11;13(1):21946. doi: 10.1038/s41598-023-49112-2.

Abstract

Adeno-associated viral (AAV) vector-mediated retinal gene therapy is an active field of both pre-clinical as well as clinical research. As with other gene therapy clinical targets, novel bioengineered AAV variants developed by directed evolution or rational design to possess unique desirable properties, are entering retinal gene therapy translational programs. However, it is becoming increasingly evident that predictive preclinical models are required to develop and functionally validate these novel AAVs prior to clinical studies. To investigate if, and to what extent, primary retinal explant culture could be used for AAV capsid development, this study performed a large high-throughput screen of 51 existing AAV capsids in primary human retina explants and other models of the human retina. Furthermore, we applied transgene expression-based directed evolution to develop novel capsids for more efficient transduction of primary human retina cells and compared the top variants to the strongest existing benchmarks identified in the screening described above. A direct side-by-side comparison of the newly developed capsids in four different in vitro and ex vivo model systems of the human retina allowed us to identify novel AAV variants capable of high transgene expression in primary human retina cells.

摘要

腺相关病毒 (AAV) 载体介导的视网膜基因治疗是临床前和临床研究的活跃领域。与其他基因治疗的临床靶点一样,通过定向进化或合理设计开发的新型生物工程 AAV 变体具有独特的理想特性,正在进入视网膜基因治疗的转化计划。然而,越来越明显的是,需要开发预测性临床前模型,在进行临床研究之前对这些新型 AAV 进行开发和功能验证。为了研究原代视网膜外植体培养是否可以用于 AAV 衣壳的开发,以及在何种程度上可以用于 AAV 衣壳的开发,本研究在原代人视网膜外植体和其他人类视网膜模型中对 51 种现有的 AAV 衣壳进行了大规模高通量筛选。此外,我们应用基于转基因表达的定向进化来开发新型衣壳,以提高对原代人视网膜细胞的转导效率,并将最佳变体与上述筛选中确定的最强现有基准进行比较。在人视网膜的四个不同的体外和离体模型系统中对新开发的衣壳进行直接并排比较,使我们能够鉴定出能够在原代人视网膜细胞中实现高转基因表达的新型 AAV 变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a809/10713676/072a21675e0a/41598_2023_49112_Fig1_HTML.jpg

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