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Tol2介导的基因转移及耳基板的卵内电穿孔:一种用于研究鸡内耳胚胎发育和再生的强大且通用的方法。

Tol2-mediated gene transfer and in ovo electroporation of the otic placode: a powerful and versatile approach for investigating embryonic development and regeneration of the chicken inner ear.

作者信息

Freeman Stephen, Chrysostomou Elena, Kawakami Koichi, Takahashi Yoshiko, Daudet Nicolas

机构信息

UCL Ear Institute, University College London, London, UK.

出版信息

Methods Mol Biol. 2012;916:127-39. doi: 10.1007/978-1-61779-980-8_10.

Abstract

The vertebrate inner ear is composed of several specialized epithelia containing mechanosensory "hair" cells, sensitive to sound and head movements. In mammals, the loss of hair cells for example during aging or after noise trauma is irreversible and results in permanent sensory deficits. By contrast, avian, fish, and amphibians can efficiently regenerate lost hair cells following trauma. The chicken inner ear is a classic model system to investigate the cellular and molecular mechanisms of inner ear development and regeneration, yet it suffered until recently from a relative lack of flexible tools for genetic studies. With the introduction of in ovo electroporation and of Tol2 transposon vectors for gene transfer in avian cells, the field of experimental possibilities has now expanded significantly in this model. Here we provide a general protocol for in ovo electroporation of the chicken otic placode and illustrate how this approach, combined with Tol2 vectors, can be used to drive long-term and inducible gene expression in the embryonic chicken inner ear. This method will be particularly useful to investigate the function of candidate genes regulating progenitor cell behavior and sensory cell differentiation in the inner ear.

摘要

脊椎动物的内耳由几个特殊的上皮组织组成,这些组织含有对声音和头部运动敏感的机械感觉“毛”细胞。在哺乳动物中,例如在衰老过程中或噪声损伤后毛细胞的损失是不可逆的,并导致永久性的感觉缺陷。相比之下,鸟类、鱼类和两栖动物在受到创伤后能够有效地再生失去的毛细胞。鸡内耳是研究内耳发育和再生的细胞及分子机制的经典模型系统,但直到最近,它在基因研究方面相对缺乏灵活的工具。随着卵内电穿孔技术以及用于禽类细胞基因转移的Tol2转座子载体的引入,这个模型的实验可能性领域现在已经显著扩大。在这里,我们提供了一种对鸡耳基板进行卵内电穿孔的通用方案,并说明了如何将这种方法与Tol2载体相结合,用于在胚胎鸡内耳中驱动长期和可诱导的基因表达。该方法对于研究调节内耳祖细胞行为和感觉细胞分化的候选基因的功能将特别有用。

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