首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Broad Functional Correction of Molecular Impairments by Systemic Delivery of scAAVrh74-hSGSH Gene Delivery in MPS IIIA Mice
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Broad Functional Correction of Molecular Impairments by Systemic Delivery of scAAVrh74-hSGSH Gene Delivery in MPS IIIA Mice

机译:通过系统递送MPA IIIA小鼠中的scAAVrh74-hSGSH基因递送对分子损伤进行广泛的功能校正。

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Mucopolysaccharidosis (MPS) IIIA is a neuropathic lysosomal storage disease caused by deficiency in N-sulfoglucosamine sulfohydrolase (SGSH). Genome-wide gene expression microarrays in MPS IIIA mice detected broad molecular abnormalities (greater than or equal to twofold, false discovery rate <= 10) in numerous transcripts (314) in the brain and blood (397). Importantly, 22 dysregulated blood transcripts are known to be enriched in the brain and linked to broad neuronal functions. To target the root cause, we used a self-complementary AAVrh74 vector to deliver the human SGSH gene into 4-6 weeks old MPS IIIA mice by an intravenous injection. The treatment resulted in global central nervous system (CNS) and widespread somatic restoration of SGSH activity, clearance of CNS and somatic glycosaminoglycan storage, improved behavior performance, and significantly extended survival. The scAAVrh74-hSGSH treatment also led to the correction of the majority of the transcriptional abnormalities in the brain (95.9%) and blood (97.7%), of which 182 and 290 transcripts were normalized in the brain and blood, respectively. These results demonstrate that a single systemic scAAVrh74-hSGSH delivery mediated efficient restoration of SGSH activity and resulted in a near complete correction of MPS IIIA molecular pathology. This study also demonstrates that blood transcriptional profiles reflect the biopathological status of MPS IIIA, and also respond well to effective treatments.
机译:粘多糖贮积病(MPS)IIIA是一种神经性溶酶体贮积病,由N-磺基葡萄糖胺硫酸水解酶(SGSH)缺乏引起。 MPS IIIA小鼠中的全基因组基因表达微阵列检测到大脑和血液中的大量转录物(314)中存在广泛的分子异常(大于或等于两倍,错误发现率<= 10)。重要的是,已知22种失调的血液转录物在大脑中富集并与广泛的神经元功能相关。为了找到根本原因,我们使用了一种自我互补的AAVrh74载体,通过静脉注射将人SGSH基因递送到4-6周龄的MPS IIIA小鼠中。该治疗导致全球中枢神经系统(CNS)以及SGSH活性的广泛体细胞恢复,CNS的清除和体糖胺聚糖的储存,改善的行为表现并显着延长了生存期。 scAAVrh74-hSGSH治疗还可以纠正大部分大脑和血液中的转录异常(95.9%)(97.7%),其中分别在大脑和血液中使182和290个转录本正常化。这些结果表明,单一的系统性scAAVrh74-hSGSH传递介导了SGSH活性的有效恢复,并导致了MPS IIIA分子病理学的几乎完全纠正。这项研究还表明,血液转录谱反映了MPS IIIA的生物病理状况,并且对有效的治疗方法也反应良好。

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