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Single-cell resolution of plasma cell fate programming in health and disease

机译:单细胞的浆细胞的命运编程在健康和疾病

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摘要

Long considered a homogeneous population dedicated to antibody secretion, plasma cell phenotypic and functional heterogeneity is increasingly recognized. Plasma cells were first segregated based on their maturation level, but the complexity of this subset might well be underestimated by this simple dichotomy. Indeed, in the last decade new functions have been attributed to plasma cells including but not limited to cytokine secretion. However, a proper characterization of plasma cell heterogeneity has remained elusive partly due to technical issues and cellular features that are specific to this cell type. Cell intrinsic and cell extrinsic signals could be at the origin of this heterogeneity. Recent advances in technologies such as single cell RNA-seq, ATAC-seq, or ChIP-seq on low cell numbers helped to elucidate the fate decision in other cell lineages and similar approaches could be implemented to evaluate the heterogeneous fate of activated B cells in health and disease. Here, we summarized published work shedding some lights on the stimuli and genetic program shaping B-cell terminal differentiation at the single cell level in mice and men. We also discuss the fate and heterogeneity of plasma cells during immune responses, vaccination, and in the frame of human plasma cell disorders.
机译:长期以来被认为是一个齐次人口专用抗体分泌,浆细胞表型功能异质性越来越公认的。根据他们的成熟水平,但是很可能是这个子集的复杂性低估了这个简单的二分法。在过去的十年中新的功能归因于浆细胞包括但不局限于细胞因子的分泌。浆细胞异质性的特征仍然是难以捉摸的部分原因是技术问题和细胞的特性细胞类型。信号可以在原点非均质性。如单细胞RNA-seq、ATAC-seq或ChIP-seq低细胞数量有助于阐明在其他细胞谱系和命运的决定类似的方法可以实现评估异构激活B的命运细胞在健康和疾病。出版工作减少一些灯刺激和遗传程序塑造b细胞终端分化在单细胞水平在小鼠和人。异质性的浆细胞在免疫反应,疫苗接种,在人类的框架浆细胞疾病。

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