Université Côte d'Azur, CNRS, Institute of Molecular Cellular Pharmacology, F-06560 Valbonne, France.
Université Côte d'Azur, INSERM, CNRS, Institute of Molecular Cellular Pharmacology, F-06560 Valbonne, France.
Genome Res. 2020 Nov;30(11):1633-1642. doi: 10.1101/gr.262717.120. Epub 2020 Sep 24.
To gain better insight into the dynamic interaction between cells and their environment, we developed the agonist-induced functional analysis and cell sorting (aiFACS) technique, which allows the simultaneous recording and sorting of cells in real-time according to their immediate and individual response to a stimulus. By modulating the aiFACS selection parameters, testing different developmental times, using various stimuli, and multiplying the analysis of readouts, it is possible to analyze cell populations of any normal or pathological tissue. The association of aiFACS with single-cell transcriptomics allows the construction of functional tissue cartography based on specific pharmacological responses of cells. As a proof of concept, we used aiFACS on the dissociated mouse brain, a highly heterogeneous tissue, enriching it in interneurons by stimulation with KCl or with AMPA, an agonist of the glutamate receptors, followed by sorting based on calcium levels. After AMPA stimulus, single-cell transcriptomics of these aiFACS-selected interneurons resulted in a nine-cluster classification. Furthermore, we used aiFACS on interneurons derived from the brain of the -KO mouse, a rodent model of fragile X syndrome. We showed that these interneurons manifest a generalized defective response to AMPA compared with wild-type cells, affecting all the analyzed cell clusters at one specific postnatal developmental time.
为了更深入地了解细胞与其环境之间的动态相互作用,我们开发了激动剂诱导的功能分析和细胞分选(aiFACS)技术,该技术允许根据细胞对刺激的即时和个体反应实时进行细胞的同时记录和分选。通过调节 aiFACS 的选择参数、测试不同的发育时间、使用各种刺激物以及对读出值进行多重分析,可以分析任何正常或病理组织的细胞群体。aiFACS 与单细胞转录组学的结合允许根据细胞的特定药理反应构建功能组织图谱。作为概念验证,我们在分离的小鼠脑中使用了 aiFACS,这是一种高度异质的组织,通过用 KCl 或 AMPA(谷氨酸受体的激动剂)刺激来富集中间神经元,然后根据钙水平进行分选。在 AMPA 刺激后,对这些经 aiFACS 分选的中间神经元进行单细胞转录组学分析,结果分为九个聚类。此外,我们还在脆性 X 综合征啮齿动物模型 -KO 小鼠的大脑衍生的中间神经元上使用了 aiFACS。我们表明,与野生型细胞相比,这些中间神经元对 AMPA 的反应普遍存在缺陷,影响到一个特定的出生后发育时间的所有分析细胞簇。