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超声微泡空化促进腺相关病毒介导的跨圆窗膜的耳蜗基因转染。

Ultrasound-microbubble cavitation facilitates adeno-associated virus mediated cochlear gene transfection across the round-window membrane.

作者信息

Zhang Zhen, Chen Zhengnong, Fan Liqiang, Landry Thomas, Brown Jeremy, Yu Zhiping, Yin Shankai, Wang Jian

机构信息

Otolaryngology Research Institute, 6th Affiliated Hospital Jiao Tong University Shanghai China.

Shanghai Key Laboratory of Sleep Disordered Breathing, 6th Affiliated Hospital, Jiao Tong University Shanghai China.

出版信息

Bioeng Transl Med. 2020 Oct 3;6(1):e10189. doi: 10.1002/btm2.10189. eCollection 2021 Jan.

Abstract

The round window of the cochlea provides an ideal route for delivering medicines and gene therapy reagents that can cross the round window membrane (RWM) into the inner ear. Recombinant adeno-associated viruses (rAAVs) have several advantages and are recommended as viral vectors for gene transfection. However, rAAVs cannot cross an intact RWM. Consequently, ultrasound-mediated microbubble (USMB) cavitation is potentially useful, because it can sonoporate the cell membranes, and increase their permeability to large molecules. The use of USMB cavitation for drug delivery across the RWM has been tested in a few animal studies but has not been used in the context of AAV-mediated gene transfection. The currently available large size of the ultrasound probe appears to be a limiting factor in the application of this method to the RWM. In this study, we used home-made ultrasound probe with a decreased diameter to 1.5 mm, which enabled the easy positioning of the probe close to the RWM. In guinea pigs, we used this probe to determine that (1) USMB cavitation caused limited damage to the outer surface layer or the RWM, (2) an eGFP-gene carrying rAAV could effectively pass the USMB-treated RWM and reliably transfect cochlear cells, and (3) the hearing function of the cochlea remained unchanged. Our results suggest that USMB cavitation of the RWM is a good method for rAAV-mediated cochlear gene transfection with clear potential for clinical translation. We additionally discuss several advantages of the small probe size.

摘要

耳蜗圆窗为输送可穿过圆窗膜(RWM)进入内耳的药物和基因治疗试剂提供了理想途径。重组腺相关病毒(rAAV)具有多种优势,被推荐作为基因转染的病毒载体。然而,rAAV无法穿过完整的RWM。因此,超声介导的微泡(USMB)空化可能有用,因为它可使细胞膜形成声孔,并增加其对大分子的通透性。USMB空化用于经RWM给药已在一些动物研究中得到测试,但尚未用于AAV介导的基因转染。目前可用的大尺寸超声探头似乎是该方法应用于RWM的一个限制因素。在本研究中,我们使用了自制的直径减小至1.5毫米的超声探头,这使得探头能够轻松定位在靠近RWM的位置。在豚鼠中,我们使用该探头确定:(1)USMB空化对RWM的外表面层造成的损伤有限;(2)携带eGFP基因的rAAV能够有效穿过经USMB处理的RWM,并可靠地转染耳蜗细胞;(3)耳蜗的听力功能保持不变。我们的结果表明,RWM的USMB空化是rAAV介导的耳蜗基因转染的一种良好方法,具有明确的临床转化潜力。我们还讨论了小探头尺寸的几个优点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8c6/7823126/35d7e66b7a5f/BTM2-6-e10189-g001.jpg

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