Leiden University Center for Infectious Diseases, Leiden University Medical Center, Leiden, The Netherlands.
AIMM Therapeutics, Amsterdam, The Netherlands.
Commun Biol. 2023 Oct 28;6(1):1095. doi: 10.1038/s42003-023-05444-3.
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 Dutch donors. This assay allows for the characterization of heterogeneity in B cell immunity that may underlie immunization efficacy.
细菌荚膜多糖是重要的疫苗免疫原。然而,由于技术限制,对多糖特异性免疫反应的研究一直受到阻碍。在这里,我们开发并验证了一种高通量方法,使用荧光标记的荚膜多糖多聚体组合染色来分析抗原特异性 B 细胞。同时对 25 种细胞标志物进行染色,进一步实现了对多糖特异性细胞的深入特征分析。我们使用该检测方法同时分析了 14 种肺炎链球菌或 5 种 B 型流感嗜血杆菌血清型特异性 B 细胞群体。多糖特异性 B 细胞的表型与血清型特异性、疫苗接种史和供体人群有关。例如,我们观察到与疫苗效率低下的肺炎链球菌血清型 1 和 3 相关的非类别转换(IgM)记忆 B 细胞。此外,与荷兰供体相比,来自南非的供体中 B 细胞的激活增加,南非侵袭性疾病的发病率很高。该检测方法可用于分析 B 细胞免疫的异质性,这可能是免疫效力的基础。