An Optimized Flow Cytometric Method to Demonstrate the Differentiation Stage-Dependent Ca2+ Flux Responses of Peripheral Human B Cells

Int J Mol Sci. 2023 May 22;24(10):9107. doi: 10.3390/ijms24109107.

Abstract

Calcium (Ca2+) flux acts as a central signaling pathway in B cells, and its alterations are associated with autoimmune dysregulation and B-cell malignancies. We standardized a flow-cytometry-based method using various stimuli to investigate the Ca2+ flux characteristics of circulating human B lymphocytes from healthy individuals. We found that different activating agents trigger distinct Ca2+ flux responses and that B-cell subsets show specific developmental-stage dependent Ca2+ flux response patterns. Naive B cells responded with a more substantial Ca2+ flux to B cell receptor (BCR) stimulation than memory B cells. Non-switched memory cells responded to anti-IgD stimulation with a naive-like Ca2+ flux pattern, whereas their anti-IgM response was memory-like. Peripheral antibody-secreting cells retained their IgG responsivity but showed reduced Ca2+ responses upon activation, indicating their loss of dependence on Ca2+ signaling. Ca2+ flux is a relevant functional test for B cells, and its alterations could provide insight into pathological B-cell activation development.

Keywords: B-cell activation; B-lymphocyte subsets; BCR responsivity; calcium flux response.

MeSH terms

  • Antibody-Producing Cells
  • B-Lymphocyte Subsets* / metabolism
  • B-Lymphocytes*
  • Cell Differentiation
  • Humans
  • Receptors, Antigen, B-Cell / metabolism

Substances

  • Receptors, Antigen, B-Cell