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de Kroon, A. C.

Publications and source records attributed to de Kroon, A. C..

2 recordsLinked to original sources

Immuno-functionomics reveals geographical variation and a role for TLR8 in mRNA vaccine responses

The innate immune system plays a pivotal role in pathogen defense via pattern recognition receptor sensing, initiating responses upon infection or vaccination. Understanding its functional capacity is crucial for deciphering correlates of vaccine efficacy and understanding responses to infection. In this study, we developed a holistic approach to study immune function, generating >3100 readouts across 16 cell types, 18 pattern recognition receptors and 11 produced cytokines using spectral flow cytometry. To explore geographical variation, we studied the immune system of Europeans, urban, and rural Indonesians. We found differences in immune responses, such as increased IL1{beta} production in rural Indonesians and impaired IFN{gamma} production by innate lymphocytes after TLR8 stimulation. In Europeans vaccinated with mRNA-1273, baseline IFN{gamma} production by innate lymphocytes correlated with SARS-CoV-2 Spike-specific immune responses. In vitro mRNA vaccine stimulation also induced IFN{gamma} production, which was TLR8-dependent and reduced in rural Indonesians. This study highlights functional immune diversity and TLR8s potential role in mRNA vaccine responses. SummaryWe developed an approach to study the function capacity of the immune system, exploring geographical variation and mRNA vaccine responses. This revealed TLR8s potential role in responding to mRNA vaccines, and an impairment in this pathway in rural Indonesians.

immunology↗

Combinatorial multimer staining and spectral flow cytometry facilitate quantification and characterization of polysaccharide-specific B cell immunity

Bacterial capsular polysaccharides are important vaccine immunogens. However, the study of polysaccharide-specific immune responses has been hindered by technical restrictions. Here, we developed and validated a high-throughput method to analyse antigen-specific B cells using combinatorial staining with fluorescently-labelled capsular polysaccharide multimers. Concurrent staining of 25+ cellular markers further enables the in-depth characterization of polysaccharide-specific cells. We used this assay to simultaneously analyse 14 Streptococcus pneumoniae or 5 Streptococcus agalactiae serotype-specific B cell populations. The phenotype of polysaccharide-specific B cells was associated with serotype specificity, vaccination history and donor population. For example, we observed a link between non-class switched (IgM+) memory B cells and vaccine-inefficient S. pneumoniae serotypes 1 and 3. Moreover, B cells had increased activation in donors from South Africa, which has high-incidence of S. agalactiae invasive disease, compared to European donors. This assay allows for the characterization of heterogeneity in B cell immunity that may underlie immunization efficacy.

immunology↗