4.8 Article

Single Cell Analysis of Blood Mononuclear Cells Stimulated Through Either LPS or Anti-CD3 and Anti-CD28

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FRONTIERS IN IMMUNOLOGY
卷 12, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fimmu.2021.636720

关键词

immune responses; single cell profiling; immune cell activation; LPS; antiCD3/CD28; CITE-seq; peripheral blood mononuclear cells

资金

  1. Chan-Zuckerberg Initiative
  2. Silicon Valley Community Foundation [2018182753 (5022)]
  3. Jackson Laboratory funds
  4. RO-1 NIA
  5. NIAID

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This study introduced a cost-effective high-throughput multiplexed single-cell RNA-seq method to examine the immune cell responses to classic T cell and monocyte activators. The results demonstrated that anti-CD3/CD28 treatment activated various lymphocyte classes, while LPS specifically targeted monocytes.
Immune cell activation assays have been widely used for immune monitoring and for understanding disease mechanisms. However, these assays are typically limited in scope. A holistic study of circulating immune cell responses to different activators is lacking. Here we developed a cost-effective high-throughput multiplexed single-cell RNA-seq combined with epitope tagging (CITE-seq) to determine how classic activators of T cells (anti-CD3 coupled with anti-CD28) or monocytes (LPS) alter the cell composition and transcriptional profiles of peripheral blood mononuclear cells (PBMCs) from healthy human donors. Anti-CD3/CD28 treatment activated all classes of lymphocytes either directly (T cells) or indirectly (B and NK cells) but reduced monocyte numbers. Activated T and NK cells expressed senescence and effector molecules, whereas activated B cells transcriptionally resembled autoimmune disease- or age-associated B cells (e.g., CD11c, T-bet). In contrast, LPS specifically targeted monocytes and induced two main states: early activation characterized by the expression of chemoattractants and a later pro-inflammatory state characterized by expression of effector molecules. These data provide a foundation for future immune activation studies with single cell technologies ().

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