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AAV9载体经脑室内、鞘内和鼻内给药途径对小鼠I型粘多糖贮积症神经疾病进行基因治疗的比较有效性

Comparative Effectiveness of Intracerebroventricular, Intrathecal, and Intranasal Routes of AAV9 Vector Administration for Genetic Therapy of Neurologic Disease in Murine Mucopolysaccharidosis Type I.

作者信息

Belur Lalitha R, Romero Megan, Lee Junggu, Podetz-Pedersen Kelly M, Nan Zhenhong, Riedl Maureen S, Vulchanova Lucy, Kitto Kelley F, Fairbanks Carolyn A, Kozarsky Karen F, Orchard Paul J, Frey William H, Low Walter C, McIvor R Scott

机构信息

Department of Genetics, Cell Biology and Development, Center for Genome Engineering, University of Minnesota, Minneapolis, MN, United States.

Department of Neurosurgery and Graduate Program in Neuroscience, University of Minnesota, Minneapolis, MN, United States.

出版信息

Front Mol Neurosci. 2021 May 10;14:618360. doi: 10.3389/fnmol.2021.618360. eCollection 2021.

Abstract

Mucopolysaccharidosis type I (MPS I) is an inherited metabolic disorder caused by deficiency of the lysosomal enzyme alpha-L-iduronidase (IDUA). The two current treatments [hematopoietic stem cell transplantation (HSCT) and enzyme replacement therapy (ERT)], are insufficiently effective in addressing neurologic disease, in part due to the inability of lysosomal enzyme to cross the blood brain barrier. With a goal to more effectively treat neurologic disease, we have investigated the effectiveness of AAV-mediated IDUA gene delivery to the brain using several different routes of administration. Animals were treated by either direct intracerebroventricular (ICV) injection, by intrathecal (IT) infusion into the cerebrospinal fluid, or by intranasal (IN) instillation of AAV9-IDUA vector. AAV9-IDUA was administered to IDUA-deficient mice that were either immunosuppressed with cyclophosphamide (CP), or immunotolerized at birth by weekly injections of human iduronidase. In animals treated by ICV or IT administration, levels of IDUA enzyme ranged from 3- to 1000-fold that of wild type levels in all parts of the microdissected brain. In animals administered vector intranasally, enzyme levels were 100-fold that of wild type in the olfactory bulb, but enzyme expression was close to wild type levels in other parts of the brain. Glycosaminoglycan levels were reduced to normal in ICV and IT treated mice, and in IN treated mice they were normalized in the olfactory bulb, or reduced in other parts of the brain. Immunohistochemical analysis showed extensive IDUA expression in all parts of the brain of ICV treated mice, while IT treated animals showed transduction that was primarily restricted to the hind brain with some sporadic labeling seen in the mid- and fore brain. At 6 months of age, animals were tested for spatial navigation, memory, and neurocognitive function in the Barnes maze; all treated animals were indistinguishable from normal heterozygous control animals, while untreated IDUA deficient animals exhibited significant learning and spatial navigation deficits. We conclude that IT and IN routes are acceptable and alternate routes of administration, respectively, of AAV vector delivery to the brain with effective IDUA expression, while all three routes of administration prevent the emergence of neurocognitive deficiency in a mouse MPS I model.

摘要

I型黏多糖贮积症(MPS I)是一种遗传性代谢紊乱疾病,由溶酶体酶α-L-艾杜糖醛酸酶(IDUA)缺乏引起。目前的两种治疗方法[造血干细胞移植(HSCT)和酶替代疗法(ERT)]在治疗神经系统疾病方面效果不佳,部分原因是溶酶体酶无法穿过血脑屏障。为了更有效地治疗神经系统疾病,我们研究了通过几种不同给药途径将腺相关病毒(AAV)介导的IDUA基因递送至大脑的有效性。通过直接脑室内(ICV)注射、鞘内(IT)注入脑脊液或经鼻(IN)滴注AAV9-IDUA载体对动物进行治疗。将AAV9-IDUA给予IDUA缺陷小鼠,这些小鼠要么用环磷酰胺(CP)进行免疫抑制,要么在出生时通过每周注射人艾杜糖醛酸酶进行免疫耐受。在通过ICV或IT给药治疗的动物中,在显微解剖的大脑所有部位,IDUA酶水平为野生型水平的3至1000倍。在经鼻给予载体的动物中,嗅球中的酶水平为野生型的100倍,但大脑其他部位的酶表达接近野生型水平。在ICV和IT治疗的小鼠中,糖胺聚糖水平降至正常,在IN治疗的小鼠中,嗅球中的糖胺聚糖水平恢复正常,而大脑其他部位的糖胺聚糖水平降低。免疫组织化学分析显示,ICV治疗的小鼠大脑所有部位均有广泛的IDUA表达,而IT治疗的动物显示转导主要局限于后脑,中脑和前脑有一些散在标记。在6个月大时,对动物进行巴恩斯迷宫中的空间导航、记忆和神经认知功能测试;所有治疗的动物与正常杂合对照动物无差异,而未治疗的IDUA缺陷动物表现出明显的学习和空间导航缺陷。我们得出结论,IT和IN途径分别是将AAV载体递送至大脑并有效表达IDUA的可接受和替代给药途径,而所有三种给药途径均可防止小鼠MPS I模型中出现神经认知缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1389/8141728/42d18f6f7b6c/fnmol-14-618360-g001.jpg

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