Intravitreal delivery of AAV8 retinoschisin results in cell type-specific gene expression and retinal rescue in the Rs1-KO mouse

IF 4.5 3区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Gene Therapy Pub Date : 2009-05-21 DOI:10.1038/gt.2009.61
T K Park, Z Wu, S Kjellstrom, Y Zeng, R A Bush, P A Sieving, P Colosi
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引用次数: 132

Abstract

X-linked juvenile retinoschisis (XLRS) is a neurodevelopmental abnormality caused by retinoschisin gene mutations. XLRS is characterized by splitting through the retinal layers and impaired synaptic transmission of visual signals resulting in impaired acuity and a propensity to retinal detachment. Several groups have treated murine retinoschisis models successfully using adeno-associated virus (AAV) vectors. Owing to the fragile nature of XLRS retina, translating this therapy to the clinic may require an alternative to invasive subretinal vector administration. Here we show that all layers of the retinoschisin knockout (Rs1-KO) mouse retina can be transduced efficiently with AAV vectors administered by simple vitreous injection. Retinoschisin expression was restricted to the neuroretina using a new vector that uses a 3.5-kb human retinoschisin promoter and an AAV type 8 capsid. Intravitreal administration to Rs1-KO mice resulted in robust retinoschisin expression with a retinal distribution similar to that observed in wild-type retina, including the expression by the photoreceptors lying deep in the retina. No off-target expression was observed. Rs1-KO mice treated with this vector showed a decrease in the schisis cavities and had improved retinal signaling evaluated by recording the electroretinogram 11–15 weeks after the application.

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在 Rs1-KO 小鼠体内静脉注射 AAV8 视黄红素可实现细胞类型特异性基因表达和视网膜拯救
X 连锁幼年视网膜裂孔症(XLRS)是一种由视网膜裂孔基因突变引起的神经发育异常。XLRS 的特征是视网膜层分裂,视觉信号的突触传递受损,导致视力受损和视网膜脱离倾向。一些研究小组利用腺相关病毒(AAV)载体成功治疗了小鼠视网膜裂孔模型。由于 XLRS 视网膜的脆弱性,将这种疗法应用于临床可能需要一种替代侵入性视网膜下载体给药的方法。在这里,我们展示了视网膜鞘磷脂基因敲除(Rs1-KO)小鼠视网膜的所有层都能通过简单的玻璃体注射有效地转导AAV载体。视网膜鞘磷脂的表达被限制在神经视网膜上,使用的新载体使用了 3.5-kb 的人类视网膜鞘磷脂启动子和 AAV 8 型囊壳。对Rs1-KO小鼠进行玻璃体内给药后,视网膜上的视黄红素表达很强,其分布与野生型视网膜上观察到的分布相似,包括位于视网膜深部的光感受器的表达。没有观察到脱靶表达。用这种载体治疗的 Rs1-KO 小鼠显示裂隙腔减少,并在应用载体 11-15 周后通过记录视网膜电图评估视网膜信号的改善情况。
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来源期刊
Gene Therapy
Gene Therapy 医学-生化与分子生物学
CiteScore
9.70
自引率
2.00%
发文量
67
审稿时长
4-8 weeks
期刊介绍: Gene Therapy covers both the research and clinical applications of novel therapeutic techniques based on a genetic component. Over the last few decades, significant advances in technologies ranging from identifying novel genetic targets that cause disease through to clinical studies, which show therapeutic benefit, have elevated this multidisciplinary field to the forefront of modern medicine.
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