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Biology subjects

Kleberg, L.

Publications and source records attributed to Kleberg, L..

4 recordsLinked to original sources

CD11c+ Memory B Cell Differentiation Across Blood and Tonsil Follows Origin-Specific Routes Revealed by CD24/CD27 Profiling

Atypical B cells (ABCs) are observed across infections, yet their ontogeny and differentiation remain unclear. Using high-dimensional flow cytometry, single-cell transcriptomics, V(D)J sequencing, and functional assays in human malaria and healthy donors, we identified markers of cellular origin while tracking ABC differentiation. Early ABCs express CD11c and arise predominantly from memory B cells. Two intermediate states originate from germinal center-derived and marginal zone-like B cells. Pseudotime and lineage analyses reveal trajectories marked by progressive CD24 and CD27 loss, recapitulated in vitro, defining bona fide differentiation programs. Differentiation culminates in late ABCs lacking CD24, CD27, and CD21, with high CD11c, T-bet, and NKG7, partly overlapping with double-negative 2 cells. Early- and intermediate stages show greater plasma-cell differentiation potential and cytokine production capacity, whereas later stages acquire antigen-presentation transcriptomic signatures and microbial-particle association, defining stage-dependent functions that reconcile conflicting ABC roles. Comparable ABC populations occur in healthy blood and tonsils, with tissue-associated class switching and CD86 expression consistent with recent T-cell interaction. This framework consolidates ABC definitions onto a single differentiation axis and clarifies cellular origins. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=112 SRC="FIGDIR/small/676235v2_ufig1.gif" ALT="Figure 1"> View larger version (38K): org.highwire.dtl.DTLVardef@140364corg.highwire.dtl.DTLVardef@accbb5org.highwire.dtl.DTLVardef@720dc3org.highwire.dtl.DTLVardef@1e591f3_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗

Previous malaria exposure attenuates monocyte-driven inflammation and shapes B cell immunity

Clinical immunity to malaria develops after repeated malaria episodes. In this process, the inflammatory response is modulated to respond less vigorously upon reinfection. Monocytes are a major source of pro-inflammatory mediators during blood-stage infection and are known to adapt to repeated pathogen exposure. Here, we investigated the impact of previous malaria exposure on monocytes during blood-stage malaria by comparing the response in previously exposed and primary infected individuals. We observed reduced levels of the proinflammatory chemokine CXCL10 in previously exposed individuals, linked to changes in CD16+ monocytes. Similarly, BAFF levels were lower in these individuals and associated with modulation of monocyte and dendritic cells. This affected the BAFF-BAFF-R axis, crucial for B cell responses, correlating with increasing parasite-specific antibody levels. Collectively, we present novel insights into how previous malaria exposure shapes monocyte responses during acute malaria and how these in turn correlate with modulation of the B cell compartment and humoral immune response.

immunology↗

IMMUNOPHENOTYPING AND FUNCTIONAL ANALYSIS OF NK CELL SUBSETS IN Mycobacterium tuberculosis-INFECTED INDIVIDUALS

Infection with Mycobacterium tuberculosis remains a global health challenge, with diverse clinical outcomes ranging from latent TB (LTB) infection to active TB disease (ATB). We conducted a comprehensive analysis of NK cell subsets and function in individuals with LTB, ATB, and healthy controls to elucidate their potential association with TB pathogenesis. Peripheral blood mononuclear cells (PBMCs) were isolated from Mtb-infected individuals and analyzed by mass cytometry and flow cytometry. We identified distinct NK cell subsets and evaluated their functional responses to stimulation. Our findings revealed comparable frequencies of total and NK cell subsets across LTB, ATB, and controls. Functional assays demonstrated similar degranulation, cytokine production, and proliferation capabilities among NK cell subsets across the three groups. This study provides insights into the heterogeneity of NK cell responses in TB and highlights the need for standardized methodologies with well-characterized cohorts controlling for donor background. Further investigations are warranted to delineate the specific roles of NK cells in TB immunity and pathogenesis.

immunology↗

Regulation of B cell function and expression of CD11c, T-bet, and FcLR5 after infection and in response to different activation pathways

CD11c, FcRL5, or T-bet are commonly expressed by B cells expanding during inflammation, where they can make up >30% of mature B cells. However, the association between the proteins and differentiation and function in the host response remain largely unclear. We have assessed the co-expression of CD11c, T-bet and FcRL5 in an in vitro B cell culture system to determine how stimulation via the B cell receptor (BCR), toll-like receptor 9 (TLR9), and different cytokines influence CD11c, T-bet, and FcRL5 expression. We observed different expression dynamics for all markers, but a largely overlapping regulation of CD11c and FcRL5 in response to BCR and TLR9 activation, while T-bet was strongly dependent on IFN-{gamma} signalling. Investigating plasma cell differentiation and antigen-presenting cell (APC) functions, there was no association between marker expression and antibody secretion or T cell help. Rather the functions were associated with TLR9-signalling and B cell-derived IL-6 production, respectively. These results suggest that the expression of CD11c, FcRL5, and T-bet and plasma cell differentiation and improved APC functions occur in parallel and are regulated by similar activation signals, but that they are not interdependent.

immunology↗