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用重组3型腺相关病毒载体特异性高效转导耳蜗内毛细胞

Specific and efficient transduction of Cochlear inner hair cells with recombinant adeno-associated virus type 3 vector.

作者信息

Liu Yuhe, Okada Takashi, Sheykholeslami Kianoush, Shimazaki Kuniko, Nomoto Tatsuya, Muramatsu Shin-Ichi, Kanazawa Takeharu, Takeuchi Koichi, Ajalli Rahim, Mizukami Hiroaki, Kume Akihiro, Ichimura Keiichi, Ozawa Keiya

机构信息

Division of Genetic Therapeutics, Center for Molecular Medicine, Jichi Medical School, Minami-kawachi, Kawachi, Tochigi, Japan.

出版信息

Mol Ther. 2005 Oct;12(4):725-33. doi: 10.1016/j.ymthe.2005.03.021.

Abstract

Recombinant adeno-associated virus (AAV) vectors are of interest for cochlear gene therapy because of their ability to mediate the efficient transfer and long-term stable expression of therapeutic genes in a wide variety of postmitotic tissues with minimal vector-related cytotoxicity. In the present study, seven AAV serotypes (AAV1-5, 7, 8) were used to construct vectors. The expression of EGFP by the chicken beta-actin promoter associated with the cytomegalovirus immediate-early enhancer in cochlear cells showed that each of these serotypes successfully targets distinct cochlear cell types. In contrast to the other serotypes, the AAV3 vector specifically transduced cochlear inner hair cells with high efficiency in vivo, while the AAV1, 2, 5, 7, and 8 vectors also transduced these and other cell types, including spiral ganglion and spiral ligament cells. There was no loss of cochlear function with respect to evoked auditory brain-stem responses over the range of frequencies tested after the injection of AAV vectors. These findings are of value for further molecular studies of cochlear inner hair cells and for gene replacement strategies to correct recessive genetic hearing loss due to monogenic mutations in these cells.

摘要

重组腺相关病毒(AAV)载体因其能够在多种有丝分裂后组织中介导治疗性基因的高效转移和长期稳定表达,且载体相关细胞毒性最小,而在耳蜗基因治疗中备受关注。在本研究中,使用了七种AAV血清型(AAV1 - 5、7、8)构建载体。鸡β - 肌动蛋白启动子与巨细胞病毒立即早期增强子相关联在耳蜗细胞中对EGFP的表达表明,这些血清型中的每一种都成功靶向了不同的耳蜗细胞类型。与其他血清型相比,AAV3载体在体内高效特异性转导耳蜗内毛细胞,而AAV1、2、5、7和8载体也转导这些及其他细胞类型,包括螺旋神经节和螺旋韧带细胞。在注射AAV载体后所测试的频率范围内,诱发听觉脑干反应方面耳蜗功能没有丧失。这些发现对于耳蜗内毛细胞的进一步分子研究以及纠正这些细胞中单基因突引起的隐性遗传性听力损失的基因替代策略具有价值。

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