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新型 Pde6b 缺陷型大鼠视网膜变性模型的特征及腺相关病毒(AAV)基因治疗的作用。

Characterization of a novel Pde6b-deficient rat model of retinal degeneration and treatment with adeno-associated virus (AAV) gene therapy.

机构信息

University of Iowa Institute for Vision Research, University of Iowa, Iowa City, IA, 52242, USA.

Department of Ophthalmology and Visual Sciences, Carver College of Medicine, University of Iowa, Iowa City, IA, 52242, USA.

出版信息

Gene Ther. 2023 Apr;30(3-4):362-368. doi: 10.1038/s41434-022-00365-y. Epub 2022 Sep 29.

Abstract

In humans, mutations in the beta subunit of cGMP-phosphodiesterase type 6 (PDE6B) cause autosomal recessive retinitis pigmentosa (RP), which typically has an aggressive clinical course of early-onset severe vision loss due to rapid photoreceptor degeneration. In this study, we describe the generation of a novel Pde6b-deficient rat model using CRISPR-Cas9 genome editing. We characterize the model at multiple time points using clinical imaging modalities as well as histology with immunohistochemistry to show rapid photoreceptor degeneration compared to wild-type and heterozygous animals. We describe the manufacture of two different adeno-associated viral (AAV) vectors (AAV2/1, AAV2/5) under current Good Manufacturing Practices (cGMP) and demonstrate their ability to drive human PDE6B expression in vivo. We further demonstrate the ability of AAV-mediated subretinal gene therapy to delay photoreceptor loss in Pde6b-deficient rats compared to untreated controls. However, severe progressive photoreceptor loss was noted even in treated eyes, likely due to the aggressive nature of the disease. These data provide useful preclinical data to guide the development of potential human gene therapy for PDE6B-associated RP. In addition, the rapid photoreceptor degeneration of the Pde6b-deficient rat with intact inner retina may provide a useful model for the study of cell replacement strategies.

摘要

在人类中,cGMP-磷酸二酯酶 6 型(PDE6B)β亚基的突变导致常染色体隐性遗传视网膜色素变性(RP),其典型的临床病程为早期发生严重的视力丧失,原因是感光细胞迅速退化。在这项研究中,我们使用 CRISPR-Cas9 基因组编辑技术生成了一种新型的 PDE6b 缺陷型大鼠模型。我们使用临床成像方式以及免疫组织化学方法在多个时间点对该模型进行了特征描述,结果显示与野生型和杂合型动物相比,感光细胞迅速退化。我们描述了在现行良好生产规范(cGMP)下两种不同的腺相关病毒(AAV)载体(AAV2/1、AAV2/5)的制造,并证明了它们在体内驱动人 PDE6B 表达的能力。我们进一步证明了 AAV 介导的视网膜下基因治疗能够延缓 PDE6b 缺陷型大鼠的感光细胞丢失,与未治疗的对照组相比。然而,即使在治疗的眼中也观察到严重的进行性感光细胞丢失,这可能是由于疾病的侵袭性所致。这些数据提供了有用的临床前数据,可用于指导针对 PDE6B 相关 RP 的潜在人类基因治疗的开发。此外,完整的内视网膜中 PDE6b 缺陷型大鼠的快速感光细胞退化可能为细胞替代策略的研究提供有用的模型。

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