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亚细胞片钳技术用于皮质突触的单个末梢刺激和同时的突触前和突触后记录。

Subcellular patch-clamp techniques for single-bouton stimulation and simultaneous pre- and postsynaptic recording at cortical synapses.

机构信息

IST Austria (Institute of Science and Technology Austria), Klosterneuburg, Austria.

出版信息

Nat Protoc. 2021 Jun;16(6):2947-2967. doi: 10.1038/s41596-021-00526-0. Epub 2021 May 14.

DOI:10.1038/s41596-021-00526-0
PMID:33990799
Abstract

Rigorous investigation of synaptic transmission requires analysis of unitary synaptic events by simultaneous recording from presynaptic terminals and postsynaptic target neurons. However, this has been achieved at only a limited number of model synapses, including the squid giant synapse and the mammalian calyx of Held. Cortical presynaptic terminals have been largely inaccessible to direct presynaptic recording, due to their small size. Here, we describe a protocol for improved subcellular patch-clamp recording in rat and mouse brain slices, with the synapse in a largely intact environment. Slice preparation takes ~2 h, recording ~3 h and post hoc morphological analysis 2 d. Single presynaptic hippocampal mossy fiber terminals are stimulated minimally invasively in the bouton-attached configuration, in which the cytoplasmic content remains unperturbed, or in the whole-bouton configuration, in which the cytoplasmic composition can be precisely controlled. Paired pre-postsynaptic recordings can be integrated with biocytin labeling and morphological analysis, allowing correlative investigation of synapse structure and function. Paired recordings can be obtained from mossy fiber terminals in slices from both rats and mice, implying applicability to genetically modified synapses. Paired recordings can also be performed together with axon tract stimulation or optogenetic activation, allowing comparison of unitary and compound synaptic events in the same target cell. Finally, paired recordings can be combined with spontaneous event analysis, permitting collection of miniature events generated at a single identified synapse. In conclusion, the subcellular patch-clamp techniques detailed here should facilitate analysis of biophysics, plasticity and circuit function of cortical synapses in the mammalian central nervous system.

摘要

严格的突触传递研究需要通过同时记录突触前末梢和突触后靶神经元来分析单位突触事件。然而,这仅在少数模型突触中得到了实现,包括鱿鱼巨突触和哺乳动物的壶腹状膝状核。由于皮质突触前末梢体积小,因此很难对其进行直接的突触前记录。在这里,我们描述了一种改进的在大鼠和小鼠脑片上进行亚细胞膜片钳记录的方案,使突触处于基本完整的环境中。切片制备需要约 2 小时,记录约 3 小时,事后形态学分析需要 2 天。以最小侵入性的方式在附着于末梢的结构中刺激单个海马苔藓纤维末梢,此时细胞质内容物保持未受干扰,或者在整个末梢结构中,可以精确控制细胞质组成。可以将配对的突触前-后记录与生物胞素标记和形态学分析相结合,允许对突触结构和功能进行相关研究。可以从大鼠和小鼠脑片中的苔藓纤维末梢获得配对记录,这意味着该方法适用于基因修饰的突触。还可以同时进行轴突束刺激或光遗传学激活,以比较同一靶细胞中的单位和复合突触事件。最后,配对记录可以与自发事件分析相结合,允许在单个鉴定的突触上收集微事件。总之,这里详细介绍的亚细胞膜片钳技术应该有助于分析哺乳动物中枢神经系统中皮质突触的生物物理学、可塑性和电路功能。

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