首页> 外文期刊>Journal of neurotrauma >Post-injury delivery of rAAV2-CNTF combined with short-term pharmacotherapy is neuroprotective and promotes extensive axonal regeneration after optic nerve trauma.
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Post-injury delivery of rAAV2-CNTF combined with short-term pharmacotherapy is neuroprotective and promotes extensive axonal regeneration after optic nerve trauma.

机译:rAAV2-CNTF的损伤后分娩与短期药物治疗相结合具有神经保护作用,并促进视神经损伤后广泛的轴突再生。

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Recombinant adeno-associated viral (rAAV) vectors expressing neurotrophic genes reduce neuronal death and promote axonal regeneration in central nervous system (CNS) injury models. Currently, however, use of rAAV to treat clinical neurotrauma is problematic because there is a delay in the onset of transgene expression. Using the adult rat retina and optic nerve (ON), we have tested whether rAAV gene therapy administered at the time of injury combined with short-term pharmacotherapy has synergistic effects that enhance neuronal survival and regeneration. The ON was transected and a 1.5 cm segment of autologous peripheral nerve (PN) was grafted onto the cut end. At this time, bicistronic rAAV2 encoding ciliary neurotrophic factor (CNTF) and green fluorescent protein (rAAV2-CNTF-GFP) was injected into the injured eye. To provide interim support for axotomized retinal ganglion cells (RGCs) during vector integration and therapeutic transgene expression, rCNTF protein and a cyclic adenosine monophosphate (cAMP) analogue (CPT-cAMP) were injected intravitreally 3 and 10 days postoperatively. For comparison, another rAAV2-CNTF-GFP group received two intravitreal saline injections 3 and 10 days after the PN-ON surgery. A further PN graft group received only postoperative intravitreal injections of rCNTF plus CPT-cAMP. After 4 weeks, regenerating RGCs were retrogradely labelled by applying fluorogold to the distal end of each PN graft. Compared to saline-injected animals, both RGC survival and axonal regrowth were significantly higher in the rCNTF and CPT-cAMP injected rAAV2-CNTF-GFP group; approximately one third of the RGC population survived axotomy, and 27% of these regrew an axon. These values were also higher than those obtained in rats that received only rCNTF plus CPT-cAMP injections. Therefore, we show for the first time that rAAV-mediated gene delivery at the time of, or just after, neurotrauma is most successful when combined with temporary post-injury trophic support, and is potentially a viable treatment strategy for patients after acute CNS injury.
机译:表达神经营养性基因的重组腺相关病毒(rAAV)载体可减少神经元死亡并促进中枢神经系统(CNS)损伤模型中的轴突再生。然而,目前,使用rAAV治疗临床神经创伤是有问题的,因为转基因表达的开始存在延迟。我们使用成年大鼠的视网膜和视神经(ON),测试了在受伤时进行的rAAV基因治疗与短期药物治疗相结合是否具有协同作用,可以增强神经元的存活和再生。将ON切开,并将1.5cm的自体周围神经(PN)节段移植到切割端。此时,将编码睫状神经营养因子(CNTF)和绿色荧光蛋白(rAAV2-CNTF-GFP)的双顺反子rAAV2注射到受伤的眼睛中。为了在载体整合和治疗性转基因表达期间为轴突切除的视网膜神经节细胞(RGC)提供临时支持,在术后3和10天玻璃体内注射rCNTF蛋白和环状单磷酸腺苷(cAMP)类似物。为了进行比较,另一个rAAV2-CNTF-GFP组在PN-ON手术后3天和10天接受了两次玻璃体内盐水注射。另一个PN移植组仅接受术后玻璃体内注射rCNTF加CPT-cAMP。 4周后,通过在每个PN移植物的远端应用荧光金,对再生的RGC进行逆行标记。与注射盐水的动物相比,在rCNTF和CPT-cAMP注射的rAAV2-CNTF-GFP组中,RGC存活率和轴突再生长均显着更高;大约三分之一的RGC人口幸免于轴突切开术,其中27%的人再生出轴突。这些值也高于仅接受rCNTF加CPT-cAMP注射的大鼠所获得的值。因此,我们首次证明在与创伤后暂时的营养支持相结合时,rAAV介导的基因创伤在神经创伤发生时或刚发生时最成功,并且对于急性中枢神经系统损伤后的患者可能是可行的治疗策略。

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