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BDNF-treated retinal progenitor sheets transplanted to degenerate rats: Improved restoration of visual function.

机译:BDNF处理的视网膜祖细胞片移植变性大鼠:改善视觉功能。

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摘要

The aim of this study was to evaluate the functional efficacy of retinal progenitor cell (RPC) containing sheets with BDNF microspheres following subretinal transplantation in a rat model of retinal degeneration. Sheets of E19 RPCs derived from human placental alkaline phosphatase (hPAP) expressing transgenic rats were coated with poly-lactide-co-glycolide (PLGA) microspheres containing brain-derived neurotrophic factor (BDNF) and transplanted into the subretinal space of S334ter line 3 rhodopsin retinal degenerate rats. Controls received transplants without BDNF or BDNF microspheres alone. Visual function was monitored using optokinetic head-tracking behavior. Visually evoked responses to varying light intensities were recorded from the superior colliculus (SC) by electrophysiology at 60days after surgery. Frozen sections were studied by immunohistochemistry for photoreceptor and synaptic markers. Visual head tracking was significantly improved in rats that received BDNF-coated RPC sheets. Relatively more BDNF-treated transplanted rats (80%) compared to non-BDNF transplants (57%) responded to a "low light" intensity of 1cd/m(2) in a confined SC area. With bright light, the onset latency of SC responses was restored to a nearly normal level in BDNF-treated transplants. No significant improvement was observed in the BDNF-only and no surgery transgenic control rats. The bipolar synaptic markers mGluR6 and PSD-95 showed normal distribution in transplants and abnormal distribution of the host retina, both with or without BDNF treatment. Red-green cones were significantly reduced in the host retina overlying the transplant in the BDNF-treated group. In summary, BDNF coating improved the functional efficacy of RPC grafts. The mechanism of the BDNF effects-either promoting functional integration between the transplant and the host retina and/or synergistic action with other putative humoral factors released by the RPCs-still needs to be elucidated.
机译:这项研究的目的是评估在视网膜变性的大鼠模型中,视网膜下移植后,含有BDNF微球的视网膜祖细胞(RPC)片的功能功效。将表达人胎盘碱性磷酸酶(hPAP)的转基因大鼠衍生的E19 RPC薄片涂以含有脑源性神经营养因子(BDNF)的聚丙交酯-共-乙交酯(PLGA)微球,并移植到S334ter 3号视紫红质的视网膜下间隙。视网膜变性大鼠。对照组接受的移植物没有单独使用BDNF或BDNF微球。使用视动头部追踪行为监测视觉功能。在手术后60天,通过电生理学从上丘(SC)记录视觉诱发的对不同光强度的反应。通过免疫组织化学研究冷冻切片的感光细胞和突触标记。在接受BDNF涂层的RPC床单的大鼠中,视觉头部追踪得到了显着改善。相对于非BDNF移植(57%),更多的BDNF处理的移植大鼠(80%)对有限的SC区域中1cd / m(2)的“弱光”强度有反应。在明亮的光线下,在BDNF处理的移植物中,SC反应的潜伏期恢复到接近正常水平。在仅BDNF和无手术转基因对照大鼠中未观察到显着改善。双极性突触标记物mGluR6和PSD-95在移植中均显示正常分布,而无论是否接受BDNF治疗,其宿主视网膜分布均异常。在BDNF治疗组中,覆盖移植的宿主视网膜中的红绿色视锥细胞明显减少。总之,BDNF涂层改善了RPC移植物的功能功效。仍需要阐明BDNF效应的机制-促进移植物与宿主视网膜之间的功能整合和/或与RPCs释放的其他假定的体液因子的协同作用-仍然需要阐明。

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