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通过完整的圆窗膜在小鼠中进行耳蜗基因递送。

Cochlear gene delivery through an intact round window membrane in mouse.

作者信息

Jero J, Mhatre A N, Tseng C J, Stern R E, Coling D E, Goldstein J A, Hong K, Zheng W W, Hoque A T, Lalwani A K

机构信息

Laboratory of Molecular Otology, Epstein Laboratories, Department of Otolaryngology-Head and Neck Surgery, University of California San Francisco, San Francisco, CA 94143, USA.

出版信息

Hum Gene Ther. 2001 Mar 20;12(5):539-48. doi: 10.1089/104303401300042465.

Abstract

Cochlear gene transfer studies in animal models have utilized mainly two delivery methods: direct injection through the round window membrane (RWM) or intracochlear infusion through a cochleostomy. However, the surgical trauma, inflammation, and hearing loss associated with these methods lead us to investigate a less invasive delivery method. Herein, we studied the feasibility of a vector transgene-soaked gelatin sponge, Gelfoam, for transgene delivery into the mouse cochlea through an intact RWM. The Gelfoam absorbed with liposomes and adenovirus, but not with adeno-associated virus (AAV), was successful in mediating transgene expression across an intact RWM in a variety of cochlear tissues. The Gelfoam technique proved to be an easy, atraumatic, and effective, but vector-dependent, method of delivering transgenes through an intact RWM. Compared with the more invasive gene delivery methods, this technique represents a safer and a more clinically viable route of cochlear gene delivery in humans.

摘要

动物模型中的耳蜗基因转移研究主要采用了两种递送方法

通过圆窗膜(RWM)直接注射或通过耳蜗造口术进行耳蜗内输注。然而,与这些方法相关的手术创伤、炎症和听力损失促使我们研究一种侵入性较小的递送方法。在此,我们研究了一种载体转基因浸泡的明胶海绵(Gelfoam)通过完整的RWM将转基因递送至小鼠耳蜗的可行性。吸收了脂质体和腺病毒但未吸收腺相关病毒(AAV)的Gelfoam成功地在各种耳蜗组织中通过完整的RWM介导了转基因表达。Gelfoam技术被证明是一种通过完整的RWM递送转基因的简便、无创且有效的方法,但该方法依赖于载体。与侵入性更强的基因递送方法相比,该技术代表了一种在人类中更安全且临床上更可行的耳蜗基因递送途径。

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