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首页> 外文期刊>Brain research >An alpha-synuclein AAV gene silencing vector ameliorates a behavioral deficit in a rat model of Parkinson's disease, but displays toxicity in dopamine neurons
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An alpha-synuclein AAV gene silencing vector ameliorates a behavioral deficit in a rat model of Parkinson's disease, but displays toxicity in dopamine neurons

机译:α-突触核蛋白AAV基因沉默载体可减轻帕金森氏病大鼠模型的行为缺陷,但对多巴胺神经元具有毒性

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Effects of silencing ectopically expressed hSNCA in rat substantia nigra (SN) were examined as a novel therapeutic approach to Parkinson's disease (PD), AAV-hSNCA with or without an AAV harboring a short-hairpin (sh)RNA targeting hSNCA or luciferase was injected into one SN. At 9 weeks, hSNCA-expressing rats had reduced SN dopamine (DA) neurons and exhibited a forelimb deficit. AAV-shRNA-SNCA silenced hSNCA and protected against the forelimb deficit. However, AAV-shRNA-SNCA also led to DA neuron loss suggesting undesirable effects of chronic shRNA expression. Effects on nigrostriatal-projecting neurons were examined using a retrograde tract tracer. Loss of striatal-projecting DA neurons was evident in the vector injection site, whereas DA neurons outside this site were lost in hSNCA-expressing rats, but not in hSNCA-silenced rats. These observations suggest that high levels of shRNA-SNCA were toxic to DA neurons, while neighboring neurons exposed to lower levels were protected by hSNCA gene silencing. Also, data collected on DA levels suggest that neurons other than or in addition to nigrostriatal DA neurons contributed to protection of forelimb use. Our observations suggest that while hSNCA gene silencing in DA neurons holds promise as a novel PD therapy, further development of silencing technology is required.
机译:研究了沉默异位表达的hSNCA在大鼠黑质(SN)中的作用,作为治疗帕金森氏病(PD),AAV-hSNCA的新治疗方法,无论是否注射带有靶向hSNCA的短发夹(sh)RNA的AAV或荧光素酶进入一个SN。在第9周,表达hSNCA的大鼠的SN多巴胺(DA)神经元减少,并表现出前肢赤字。 AAV-shRNA-SNCA使hSNCA沉默并保护其免受前肢缺陷的影响。但是,AAV-shRNA-SNCA也导致DA神经元丢失,提示慢性shRNA表达有不良影响。使用逆行道示踪剂检查对黑质纹状体投射神经元的影响。在载体注射部位,纹状体投射的DA神经元明显丢失,而在表达hSNCA的大鼠中,该部位以外的DA神经元丢失,而在沉默hSNCA的大鼠中则没有。这些观察结果表明,高水平的shRNA-SNCA对DA神经元有毒性,而暴露于较低水平的邻近神经元则受到hSNCA基因沉默的保护。同样,有关DA水平的数据表明,除黑纹状体DA神经元以外的神经元或除黑纹状体DA神经元外的神经元都有助于保护前肢。我们的观察结果表明,尽管DA神经元中的hSNCA基因沉默有望成为一种新型的PD治疗方法,但仍需要进一步开发沉默技术。

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