Ting Jonathan T, Daigle Tanya L, Chen Qian, Feng Guoping
Human Cell Types Department, Allen Institute for Brain Science, 551 N 34th Street, Seattle, WA, 98103, USA,
Methods Mol Biol. 2014;1183:221-42. doi: 10.1007/978-1-4939-1096-0_14.
The development of the living acute brain slice preparation for analyzing synaptic function roughly a half century ago was a pivotal achievement that greatly influenced the landscape of modern neuroscience. Indeed, many neuroscientists regard brain slices as the gold-standard model system for detailed cellular, molecular, and circuitry level analysis and perturbation of neuronal function. A critical limitation of this model system is the difficulty in preparing slices from adult and aging animals, and over the past several decades few substantial methodological improvements have emerged to facilitate patch clamp analysis in the mature adult stage. In this chapter we describe a robust and practical protocol for preparing brain slices from mature adult mice that are suitable for patch clamp analysis. This method reduces swelling and damage in superficial layers of the slices and improves the success rate for targeted patch clamp recordings, including recordings from fluorescently labeled populations in slices derived from transgenic mice. This adult brain slice method is suitable for diverse experimental applications, including both monitoring and manipulating neuronal activity with genetically encoded calcium indicators and optogenetic actuators, respectively. We describe the application of this adult brain slice platform and associated methods for screening kinetic properties of Channelrhodopsin (ChR) variants expressed in genetically defined neuronal subtypes.
大约半个世纪前,用于分析突触功能的活急性脑片制备技术的发展是一项具有关键意义的成就,极大地影响了现代神经科学的格局。的确,许多神经科学家将脑片视为用于详细的细胞、分子和电路水平分析以及对神经元功能进行扰动的金标准模型系统。该模型系统的一个关键局限性在于从成年和老龄动物制备脑片存在困难,并且在过去几十年中,几乎没有出现实质性的方法改进来促进在成年成熟阶段进行膜片钳分析。在本章中,我们描述了一种从成年成熟小鼠制备适合膜片钳分析的脑片的可靠且实用的方案。该方法减少了脑片表层的肿胀和损伤,并提高了靶向膜片钳记录的成功率,包括从转基因小鼠来源的脑片中荧光标记群体进行的记录。这种成年脑片方法适用于多种实验应用,分别包括使用基因编码钙指示剂和光遗传学驱动器监测和操纵神经元活动。我们描述了这个成年脑片平台的应用以及相关方法,用于筛选在基因定义的神经元亚型中表达的通道视紫红质(ChR)变体的动力学特性。