Single-Cell Mass Cytometry of Differential Immune and Drug Responses Across a Human Hematopoietic Continuum

质量细胞仪 流式细胞术 造血细胞 免疫学 免疫系统 生物 细胞仪 细胞生物学 药品 造血 计算生物学 干细胞 药理学 遗传学 表型 基因
作者
Sean C. Bendall,Erin F. Simonds,Peng Qiu,El-ad David Amir,Peter O. Krutzik,Rachel Finck,Robert V. Bruggner,Rachel Melamed,Angelica Trejo,Olga Ornatsky,Robert Balderas,Sylvia K. Plevritis,Karen Sachs,Dana Pe’er,Scott D. Tanner,Garry P. Nolan
出处
期刊:Science [American Association for the Advancement of Science]
卷期号:332 (6030): 687-696 被引量:2351
标识
DOI:10.1126/science.1198704
摘要

Flow cytometry is an essential tool for dissecting the functional complexity of hematopoiesis. We used single-cell "mass cytometry" to examine healthy human bone marrow, measuring 34 parameters simultaneously in single cells (binding of 31 antibodies, viability, DNA content, and relative cell size). The signaling behavior of cell subsets spanning a defined hematopoietic hierarchy was monitored with 18 simultaneous markers of functional signaling states perturbed by a set of ex vivo stimuli and inhibitors. The data set allowed for an algorithmically driven assembly of related cell types defined by surface antigen expression, providing a superimposable map of cell signaling responses in combination with drug inhibition. Visualized in this manner, the analysis revealed previously unappreciated instances of both precise signaling responses that were bounded within conventionally defined cell subsets and more continuous phosphorylation responses that crossed cell population boundaries in unexpected manners yet tracked closely with cellular phenotype. Collectively, such single-cell analyses provide system-wide views of immune signaling in healthy human hematopoiesis, against which drug action and disease can be compared for mechanistic studies and pharmacologic intervention.
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