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- Title
Recruitment of plasma cells from IL-21-dependent and IL-21-independent immune reactions to the bone marrow.
- Authors
Ferreira-Gomes, Marta; Chen, Yidan; Durek, Pawel; Rincon-Arevalo, Hector; Heinrich, Frederik; Bauer, Laura; Szelinski, Franziska; Guerra, Gabriela Maria; Stefanski, Ana-Luisa; Niedobitek, Antonia; Wiedemann, Annika; Bondareva, Marina; Ritter, Jacob; Lehmann, Katrin; Hardt, Sebastian; Hipfl, Christian; Hein, Sascha; Hildt, Eberhard; Matz, Mareen; Mei, Henrik E.
- Abstract
Bone marrow plasma cells (BMPC) are the correlate of humoral immunity, consistently releasing antibodies into the bloodstream. It remains unclear if BMPC reflect different activation environments or maturation of their precursors. Here we define human BMPC heterogeneity and track the recruitment of antibody-secreting cells (ASC) from SARS-CoV-2 vaccine immune reactions to the bone marrow (BM). Trajectories based on single-cell transcriptomes and repertoires of peripheral and BM ASC reveal sequential colonisation of BMPC compartments. In activated B cells, IL-21 suppresses CD19 expression, indicating that CD19low-BMPC are derived from follicular, while CD19high-BMPC originate from extrafollicular immune reactions. In primary immune reactions, both CD19low- and CD19high-BMPC compartments are populated. In secondary immune reactions, most BMPC are recruited to CD19high-BMPC compartments, reflecting their origin from extrafollicular reactivations of memory B cells. A pattern also observable in vaccinated-convalescent individuals and upon diphtheria/tetanus/pertussis recall-vaccination. Thus, BMPC diversity reflects the evolution of a given humoral immune response. The mechanisms driving B cell differentiation into resident bone marrow plasma cells (BMPC) remain unclear. Here the authors use single cell sequencing and BMPC phenotyping to infer developmental pathways and regulation by IL-21 in germinal centres to promote maintenance of BMPC after vaccination in humans.
- Subjects
BONE marrow; PLASMA cells; BONE marrow cells; B cell differentiation; IMMUNOLOGIC memory; OVARIAN follicle; IMMUNOGLOBULINS
- Publication
Nature Communications, 2024, Vol 15, Issue 1, p1
- ISSN
2041-1723
- Publication type
Article
- DOI
10.1038/s41467-024-48570-0