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通过高内涵筛选分析突触小体中的突触小泡内吞作用。

Analysis of synaptic vesicle endocytosis in synaptosomes by high-content screening.

机构信息

Cell Signalling Unit, Children's Medical Research Institute, University of Sydney, Westmead, New South Wales, Australia.

出版信息

Nat Protoc. 2012 Jul 5;7(8):1439-55. doi: 10.1038/nprot.2012.070.

Abstract

Small molecules modulating synaptic vesicle endocytosis (SVE) may ultimately be useful for diseases where pathological neurotransmission is implicated. Only a small number of specific SVE modulators have been identified to date. Slow progress is due to the laborious nature of traditional approaches to study SVE, in which nerve terminals are identified and studied in cultured neurons, typically yielding data from 10-20 synapses per experiment. We provide a protocol for a quantitative, high-throughput method for studying SVE in thousands of nerve terminals. Rat forebrain synaptosomes are attached to 96-well microplates and depolarized; SVE is then quantified by uptake of the dye FM4-64, which is imaged by high-content screening. Synaptosomes that have been frozen and stored can be used in place of fresh synaptosomes, reducing the experimental time and animal numbers required. With a supply of frozen synaptosomes, the assay can be performed within a day, including data analysis.

摘要

小分子调节突触小泡内吞作用(SVE)可能最终对涉及病理性神经传递的疾病有用。迄今为止,只鉴定出少数特定的 SVE 调节剂。进展缓慢是由于传统研究 SVE 的方法繁琐,其中神经末梢在培养的神经元中被鉴定和研究,通常每个实验产生 10-20 个突触的数据。我们提供了一种用于在数千个神经末梢中研究 SVE 的定量、高通量方法的方案。大鼠大脑突触体附着在 96 孔微孔板上并去极化;然后通过摄取染料 FM4-64 来定量 SVE,通过高内涵筛选对其进行成像。可以使用冷冻和储存的突触体代替新鲜的突触体,从而减少所需的实验时间和动物数量。有了冷冻突触体的供应,该测定可以在一天内完成,包括数据分析。

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