Allen Institute for Brain Science, Seattle, United States.
Byte Physics, Berlin, Germany.
Elife. 2021 Aug 13;10:e65482. doi: 10.7554/eLife.65482.
The Patch-seq approach is a powerful variation of the patch-clamp technique that allows for the combined electrophysiological, morphological, and transcriptomic characterization of individual neurons. To generate Patch-seq datasets at scale, we identified and refined key factors that contribute to the efficient collection of high-quality data. We developed patch-clamp electrophysiology software with analysis functions specifically designed to automate acquisition with online quality control. We recognized the importance of extracting the nucleus for transcriptomic success and maximizing membrane integrity during nucleus extraction for morphology success. The protocol is generalizable to different species and brain regions, as demonstrated by capturing multimodal data from human and macaque brain slices. The protocol, analysis and acquisition software are compiled at https://githubcom/AllenInstitute/patchseqtools. This resource can be used by individual labs to generate data across diverse mammalian species and that is compatible with large publicly available Patch-seq datasets.
贴附式测序方法是一种强大的膜片钳技术的变体,它允许对单个神经元进行电生理、形态和转录组学的综合特征分析。为了大规模生成贴附式测序数据集,我们确定并改进了有助于高效收集高质量数据的关键因素。我们开发了带有分析功能的膜片钳电生理学软件,这些功能专门设计用于自动化采集和在线质量控制。我们认识到提取细胞核对于转录组成功的重要性,以及在提取细胞核时最大限度地保持细胞膜完整性对于形态学成功的重要性。该方案具有通用性,可以应用于不同的物种和脑区,如从人类和猕猴脑切片中捕获多模态数据所示。该方案、分析和采集软件已在 https://github.com/AllenInstitute/patchseqtools 上编译。该资源可供各个实验室使用,以生成来自不同哺乳动物物种的数据,并且与大型公共可用的贴附式测序数据集兼容。