首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Zebrafish In Situ Spinal Cord Preparation for Electrophysiological Recordings from Spinal Sensory and Motor Neurons
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Zebrafish In Situ Spinal Cord Preparation for Electrophysiological Recordings from Spinal Sensory and Motor Neurons

机译:斑马鱼原位脊髓制备的脊髓感觉和运动神经元的电生理记录。

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摘要

Zebrafish, first introduced as a developmental model, have gained popularity in many other fields. The ease of rearing large numbers of rapidly developing organisms, combined with the embryonic optical clarity, served as initial compelling attributes of this model. Over the past two decades, the success of this model has been further propelled by its amenability to large-scale mutagenesis screens and by the ease of transgenesis. More recently, gene-editing approaches have extended the power of the model.For neurodevelopmental studies, the zebrafish embryo and larva provide a model to which multiple methods can be applied. Here, we focus on methods that allow the study of an essential property of neurons, electrical excitability. Our preparation for the electrophysiological study of zebrafish spinal neurons involves the use of veterinarian suture glue to secure the preparation to a recording chamber. Alternative methods for recording from zebrafish embryos and larvae involve the attachment of the preparation to the chamber using a fine tungsten pin,,,,. A tungsten pin is most often used to mount the preparation in a lateral orientation, although it has been used to mount larvae dorsal-side up. The suture glue has been used to mount embryos and larvae in both orientations. Using the glue, a minimal dissection can be performed, allowing access to spinal neurons without the use of an enzymatic treatment, thereby avoiding any resultant damage. However, for larvae, it is necessary to apply a brief enzyme treatment to remove the muscle tissue surrounding the spinal cord. The methods described here have been used to study the intrinsic electrical properties of motor neurons, interneurons, and sensory neurons at several developmental stages,,,.
机译:斑马鱼最初作为一种发展模型而引入,在许多其他领域中已广受欢迎。饲养大量快速发展的生物的难易程度与胚胎的光学清晰度相结合,成为该模型的最初引人注目的属性。在过去的二十年中,该模型的成功之处在于它可用于大规模诱变筛选,并且易于转基因。最近,基因编辑方法扩展了该模型的功能。对于神经发育研究,斑马鱼的胚胎和幼虫提供了可以应用多种方法的模型。在这里,我们集中于允许研究神经元的基本性质,电兴奋性的方法。我们用于斑马鱼脊神经神经电生理研究的准备工作涉及使用兽医缝线胶将准备工作固定到记录室。从斑马鱼的胚胎和幼虫记录的替代方法包括使用细的钨针将制剂附着在腔室上。钨钉最常用于将制剂以横向放置,尽管它已用于将幼虫背侧安装。缝线胶已用于在两个方向上固定胚胎和幼虫。使用胶水,可以进行最小限度的解剖,无需使用酶处理即可进入脊神经元,从而避免了由此造成的损害。但是,对于幼虫,有必要进行简短的酶处理以去除脊髓周围的肌肉组织。这里描述的方法已经被用来研究运动神经元,中间神经元和感觉神经元在几个发育阶段的内在电特性。

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