AAV5-hFVIII-SQ载体在小鼠和非人灵长类动物肝脏中基因组加工动力学的分子分析。

Molecular Therapy. Methods & Clinical Development Pub Date : 2021-12-21 eCollection Date: 2022-03-10 DOI:10.1016/j.omtm.2021.12.004
Choong-Ryoul Sihn, Britta Handyside, Su Liu, Lening Zhang, Ryan Murphy, Bridget Yates, Lin Xie, Richard Torres, Chris B Russell, Charles A O'Neill, Erno Pungor, Stuart Bunting, Sylvia Fong
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引用次数: 10

摘要

valoccogene roxaparvovec (AAV5-hFVIII- sq)是一种基于腺相关病毒血清型5 (AAV5)的基因治疗载体,含有一个由肝脏选择性启动子控制的b结构域缺失的人凝血因子VIII (hFVIII)基因。AAV5- hfviii - sq目前正在临床研究中,用于治疗严重a型血友病。全长AAV5- hfviii - sq >4.9 kb,超过AAV5的最佳包装限制。给药后,载体必须经历一系列基因组加工、组装和修复步骤,形成全长环状片段,介导靶组织中FVIII的长期表达。为了了解超大AAV5-hFVIII-SQ载体基因组加工成圆形片段的动力学,我们在小鼠和非人灵长类动物模型的肝脏中,在多个时间点表征了AAV5-hFVIII-SQ基因组在给药后6个月的各种分子形式。给药后1周开始在肝组织中检测到全长圆形发作。6个月后,环状片段的数量(主要是头部到尾部的结构)增加,而缺乏反向末端重复序列的DNA物种优先被降解。在注射AAV5-hFVIII-SQ的小鼠和非人灵长类动物中,双工、圆形、全长基因组水平与hFVIII-SQ RNA转录物水平显著相关。总之,我们发现AAV5-hFVIII-SQ转导后肝脏中全长圆形发作的形成与FVIII的长期表达有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Molecular analysis of AAV5-hFVIII-SQ vector-genome-processing kinetics in transduced mouse and nonhuman primate livers.

Molecular analysis of AAV5-hFVIII-SQ vector-genome-processing kinetics in transduced mouse and nonhuman primate livers.

Molecular analysis of AAV5-hFVIII-SQ vector-genome-processing kinetics in transduced mouse and nonhuman primate livers.

Molecular analysis of AAV5-hFVIII-SQ vector-genome-processing kinetics in transduced mouse and nonhuman primate livers.

Valoctocogene roxaparvovec (AAV5-hFVIII-SQ) is an adeno-associated virus serotype 5 (AAV5)-based gene therapy vector containing a B-domain-deleted human coagulation factor VIII (hFVIII) gene controlled by a liver-selective promoter. AAV5-hFVIII-SQ is currently under clinical investigation as a treatment for severe hemophilia A. The full-length AAV5-hFVIII-SQ is >4.9 kb, which is over the optimal packaging limit of AAV5. Following administration, the vector must undergo a number of genome-processing, assembly, and repair steps to form full-length circularized episomes that mediate long-term FVIII expression in target tissues. To understand the processing kinetics of the oversized AAV5-hFVIII-SQ vector genome into circular episomes, we characterized the various molecular forms of the AAV5-hFVIII-SQ genome at multiple time points up to 6 months postdose in the liver of murine and non-human primate models. Full-length circular episomes were detected in liver tissue beginning 1 week postdosing. Over 6 months, quantities of circular episomes (in a predominantly head-to-tail configuration) increased, while DNA species lacking inverted terminal repeats were preferentially degraded. Levels of duplex, circular, full-length genomes significantly correlated with levels of hFVIII-SQ RNA transcripts in mice and non-human primates dosed with AAV5-hFVIII-SQ. Altogether, we show that formation of full-length circular episomes in the liver following AAV5-hFVIII-SQ transduction was associated with long-term FVIII expression.

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