电生理学
新皮层
神经科学
生物
膜片钳
转录组
电池类型
单细胞分析
细胞
基因表达
基因
遗传学
作者
Cathryn R. Cadwell,Athanasia Palasantza,Xiaolong Jiang,Philipp Berens,Qiaolin Deng,Marlene Yilmaz,Jacob Reimer,Shan Shen,Matthias Bethge,Kimberley F. Tolias,Rickard Sandberg,Andreas S. Tolias
摘要
Patch-seq reveals new neuronal subtypes by combining electrophysiological and RNA-seq data on single neurons in situ. Despite the importance of the mammalian neocortex for complex cognitive processes, we still lack a comprehensive description of its cellular components. To improve the classification of neuronal cell types and the functional characterization of single neurons, we present Patch-seq, a method that combines whole-cell electrophysiological patch-clamp recordings, single-cell RNA-sequencing and morphological characterization. Following electrophysiological characterization, cell contents are aspirated through the patch-clamp pipette and prepared for RNA-sequencing. Using this approach, we generate electrophysiological and molecular profiles of 58 neocortical cells and show that gene expression patterns can be used to infer the morphological and physiological properties such as axonal arborization and action potential amplitude of individual neurons. Our results shed light on the molecular underpinnings of neuronal diversity and suggest that Patch-seq can facilitate the classification of cell types in the nervous system.
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