Safety and efficacy of CRISPR-mediated genome ablation of VEGFA as a treatment for choroidal neovascularization in nonhuman primate eyes

灵长类动物 清脆的 非人灵长类 脉络膜新生血管 生物 烧蚀 基因组 医学 计算生物学 眼科 遗传学 黄斑变性 进化生物学 神经科学 基因 内科学
作者
Tzu-Ni Sin,Nicole Tng,Jack Dragoli,Sruthi Ramesh Kumar,Carol Villafuerte-Trisolini,Sook Hyun Chung,Lien Tu,Sophie M Le,Jae Ho Shim,Kathryn L. Pepple,Resmi Ravindran,Imran Khan,Ala Moshiri,Sara M. Thomasy,Glenn Yiu
出处
期刊:Molecular Therapy [Elsevier BV]
被引量:1
标识
DOI:10.1016/j.ymthe.2024.09.027
摘要

CRISPR-based genome editing enables permanent suppression of angiogenic factors like vascular endothelial growth factor (VEGF) as potential treatment for choroidal neovascularization (CNV) - a major cause of blindness in age-related macular degeneration. We previously designed adeno-associated viral (AAV) vectors with S. pyogenes Cas 9 (SpCas9) and guide RNAs (gRNAs) to target conserved sequences in VEGFA across mouse, rhesus macaque, and human, with successful suppression of VEGF and laser-induced CNV in mice. Here, we advanced the platform to nonhuman primates and found that subretinal AAV8-SpCas9 with gRNAs targeting VEGFA may reduce VEGF and CNV severity as compared to SpCas9 without gRNAs. However, all eyes that received AAV8-SpCas9 regardless of gRNA presence developed subfoveal deposits, concentric macular rings, and outer retinal disruption that worsened at higher dose. Immunohistochemistry showed subfoveal accumulation of retinal pigment epithelial cells, collagen, and vimentin, disrupted photoreceptor structure, and retinal glial and microglial activation. Subretinal AAV8-SpCas9 triggered aqueous elevations in CCL2, but minimal systemic humoral or cellular responses against AAV8, SpCas9, or GFP reporter. Our findings suggest that CRISPR-mediated VEGFA ablation in NHP eyes may suppress VEGF and CNV, but can also lead to unexpected subretinal fibrosis, photoreceptor damage, and retinal inflammation despite minimal systemic immune responses.
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