An empty E1, E3, E4 adenovirus vector protects photoreceptors from light-induced degeneration.

Hiroyasu Takita, Shin Yoneya, Peter L Gehlbach, Lisa L Wei, Keisuke Mori
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引用次数: 2

Abstract

We have previously identified a neuroprotective effect associated with empty (E1(-), E3(-), E4(-)) adenovirus vector delivery in a model of light-induced, photoreceptor cell death. In this study, we further characterize this protective effect in light-injured retina and investigate its molecular basis. Dark-adapted BALB/c mice, aged 6-8 weeks, were exposed to standardized, intense fluorescent light for 96 or 144 h. Prior to dark adaptation, all mice received intravitreous injection of 1 x 10(9) particles of an empty (E1(-), E3(-), E4(-)) adenovirus vector in one eye and vehicle in the other. Following light challenge of 96 or 144 h, histopathological analysis and quantitative photoreceptor cell counts were conducted. Semiquantitative assessment of messenger ribonucleic acid (mRNA) for the apoptosis related genes: p50, p65, IkBa, caspase-1, caspase-3, Bad, c-Jun, Bax, Bak, Bcl-2, c-Fos, and p53 using quantitative reverse transcriptase polymerase chain reaction was performed on eyes following 12 h of light exposure. Following 96 h of light exposure, the photoreceptor cell density for E1(-), E3(-), E4(-) adenovirus vector and vehicle-injected eyes were 87.5 +/- 9.5 and 79.3 +/- 10.1, respectively, (p = 0.79). After 144 h of light exposure, the photoreceptor cell density was preserved in vector-injected eyes as compared to vehicle treated eyes, 68.9 +/- 10.0 and 49.2 +/- 4.6, respectively (p = 0.016). Relative mRNA levels of c-Fos and c-Jun at 12-h light exposure after injection differed significantly between vector- and vehicle-injected eyes (p = 0.036, 0.016, respectively). The expression of the other apoptosis-related genes evaluated was not significantly affected. This study investigates the molecular basis of photoreceptor neuroprotective pathway induction associated with E1(-), E3(-), E4(-) adenovirus vectors. The results indicate that empty adenovirus vectors protect photoreceptors from light-induced degeneration by the modulation of apoptotic pathways. Gene expression changes suggest that the suppression of c-Fos and c-Jun upregulation contributes significantly to the neuroprotective effect. Understanding the molecular basis of the neuroprotective pathway induction in photoreceptors is critical to the development of novel therapies for retinal degenerations.

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空的E1, E3, E4腺病毒载体保护光感受器免受光诱导变性。
我们之前已经在光诱导的光感受器细胞死亡模型中发现了与空(E1(-), E3(-), E4(-))腺病毒载体递送相关的神经保护作用。在本研究中,我们进一步表征了这种对光损伤视网膜的保护作用,并探讨了其分子基础。将6-8周龄BALB/c小鼠暴露在标准化的强荧光下96或144小时。在黑暗适应之前,所有小鼠在一只眼睛和另一只眼睛中分别接受1 × 10(9)个空(E1(-), E3(-), E4(-))腺病毒载体的玻璃体内注射。光刺激96或144 h后,进行组织病理学分析和定量光感受器细胞计数。光照12 h后,采用定量逆转录酶聚合酶链反应半定量评价眼部凋亡相关基因:p50、p65、IkBa、caspase-1、caspase-3、Bad、c-Jun、Bax、Bak、Bcl-2、c-Fos和p53的信使核糖核酸(mRNA)。光照96 h后,E1(-)、E3(-)、E4(-)腺病毒载体和载体注射眼的光感受器细胞密度分别为87.5 +/- 9.5和79.3 +/- 10.1,p = 0.79。暴露144 h后,载体注射眼的光感受器细胞密度保持在68.9 +/- 10.0和49.2 +/- 4.6 (p = 0.016)。载体注射眼与载体注射眼在光照12 h时c-Fos和c-Jun的相对mRNA水平差异有统计学意义(p分别为0.036、0.016)。其他细胞凋亡相关基因的表达无明显影响。本研究探讨E1(-)、E3(-)、E4(-)腺病毒载体诱导光感受器神经保护通路的分子基础。结果表明,空腺病毒载体通过调节凋亡通路保护光感受器免受光诱导变性。基因表达变化提示c-Fos的抑制和c-Jun的上调对神经保护作用有重要作用。了解光感受器神经保护通路诱导的分子基础对视网膜变性的新疗法的发展至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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