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Trans-ocular Electric Current In Vivo Enhances AAV-Mediated Retinal Gene Transduction after Intravitreal Vector Administration

机译:在玻璃体内载体给药后Vivo中的透眼电流增强了AAV介导的视网膜基因转导

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摘要

Adeno-associated virus (AAV) vector-mediated gene delivery is a promising approach for therapy, but implementation in the eye currently is hampered by the need for delivering the vector underneath the retina, using surgical application into the subretinal space. This limits the extent of the retina that is treated and may cause surgical injury. Vector delivery into the vitreous cavity would be preferable because it is surgically less invasive and would reach more of the retina. Unfortunately, most conventional, non-modified AAV vector serotypes penetrate the retina poorly from the vitreous; this limits efficient transduction and expression by target cells (retinal pigment epithelium and photoreceptors). We developed a method of applying a small and safe electric current across the intact eye in vivo for a brief period following intravitreal vector administration. This significantly improved AAV-mediated transduction of retinal cells in wild-type mice following intravitreal delivery, with gene expression in retinal pigment epithelium and photoreceptor cells. The low-level current had no adverse effects on retinal structure and function. This method should be generally applicable for other AAV serotypes and may have broad application in both basic research and clinical studies.
机译:腺相关病毒(AAV)载体介导的基因传递是一种有前途的治疗方法,但是目前需要通过外科手术将其传递到视网膜下空间,将其传递到视网膜下方,这阻碍了眼内的实现。这限制了所治疗的视网膜的范围,并可能导致手术损伤。将载体递送到玻璃体腔中将是优选的,因为其在外科手术中具有较小的侵入性并且将到达更多的视网膜。不幸的是,大多数传统的,未修饰的AAV载体血清型均无法从玻璃体穿透视网膜。这限制了靶细胞(视网膜色素上皮和感光细胞)的有效转导和表达。在玻璃体内载体给药后的短时间内,我们开发了一种在整个完整的眼睛上施加小的安全电流的方法。玻璃体内给药后,这大大改善了野生型小鼠中AAV介导的视网膜细胞转导,并在视网膜色素上皮和感光细胞中表达了基因。低电平电流对视网膜结构和功能没有不利影响。该方法通常应适用于其他AAV血清型,并可能在基础研究和临床研究中广泛应用。

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