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Kuijper, L. H.

Publications and source records attributed to Kuijper, L. H..

2 recordsLinked to original sources

Characterization of a heterogenous activated B cell compartment arising early after antigen exposure preceding long-lived memory B cell formation

Once formed, plasma cells and memory B cells (MBCs) are difficult to eradicate, posing a problem in the context of unwanted antibody responses. Characterizing early B cell differentiation stages after antigen encounter is thus crucial to target and prevent unwanted antibody formation. Here, we unravelled in-depth antigen-specific B cell responses longitudinally after SARS-CoV-2 mRNA vaccination in healthy individuals using multiparameter spectral flow cytometry. The early antigen-specific B cell response was dominated by spike-specific IgG+ CD27+ CD71+ activated B cells (ActBCs), previously assigned as germinal center-derived and DN2 extrafollicular B cells. Within the early IgG+ ActBC compartment, six distinct clusters were identified with specific contraction dynamics, whereby some of these clusters were more closely related to pre-ASCs and others more to long-lived MBCs. Some of the highly contracting ActBC clusters expressed CD11c, a marker previously used to define atypical B cells. The transient presence of different ActBC clusters could also be observed in total B cells when gated in an antigen- independent manner. Our results thus delineate the early stages of the antigen-specific B cell response, with a further dissection of the CD71+ ActBC compartment. Detection of ActBC clusters early after antigen encounter in total B cells opens avenues for future evaluation of their potential to serve as a proxy for antigen-reactive B cells in autoimmunity or other unwanted B cell responses.

immunology↗

Deep profiling of antigen-specific B cells from different pathogens identifies novel compartments in the IgG memory B cell and antibody-secreting cell lineages

A better understanding of the bifurcation of human B cell differentiation into memory B cells (MBC) and antibody-secreting cells (ASC) and identification of MBC and ASC precursors is crucial to optimize vaccination strategies or block undesired antibody responses. To unravel the dynamics of antigen-induced B cell responses, we compared circulating B cells reactive to SARS-CoV-2 (Spike, RBD and Nucleocapsid) in COVID-19 convalescent individuals to B cells specific to Influenza-HA, RSV-F and TT, induced much longer ago. High-dimensional spectral flow cytometry indicated that the decision point between ASC- and MBC-formation lies in the CD43+CD71+IgG+ Activated B cell compartment, showing properties indicative of recent germinal center activity and recent antigen encounter. Within this Activated B cells compartment, CD86+ B cells exhibited close phenotypical similarity with ASC, while CD86- B cells were closely related to IgG+ MBCs. Additionally, different activation stages of the IgG+ MBC compartment could be further elucidated. The expression of CD73 and CD24, regulators of survival and cellular metabolic quiescence, discerned activated MBCs from resting MBCs. Activated MBCs (CD73-CD24lo) exhibited phenotypical similarities with CD86- IgG+ Activated B cells and were restricted to SARS-CoV-2 specificities, contrasting with the resting MBC compartment (CD73-/CD24hi) that exclusively encompassed antigen-specific B cells established long ago. Overall, these findings identify novel stages for IgG+ MBC and ASC formation and bring us closer in defining the decision point for MBC or ASC differentiation. ImportanceIn this study, researchers aimed to better understand human B cell differentiation and their role in establishing long-lived humoral immunity. Using high-dimensional flow cytometry, they studied B cells reactive to three SARS-CoV-2 antigens in individuals convalescent for COVID-19, and compared their phenotypes to B cells reactive to three distinct protein antigens derived from vaccines or viruses encountered months to decades before. Their findings showed that Activated B cells reflect recent germinal center graduates that may have diverse fates; with some feeding the pool of antibody-secreting cells and others fueling the resting memory B cell compartment. Activated B cells gradually differentiate into resting memory B cells through an activated MBC phase. Increased expression of the cellular metabolic regulators CD73 and CD24 in resting memory B cells distinguishes them from the activated memory B cells phase, and is likely involved in sustaining a durable memory of humoral immunity. These findings are crucial for the development of vaccines that provide lifelong protection and may show potential to define reactive B cells in diseases where the cognate-antigen is still unknown such as in autoimmunity, cancers, or novel viral outbreaks.

immunology↗