O'Connor Daniel, Clutterbuck Elizabeth A, Thompson Amber J, Snape Matthew D, Ramasamy Maheshi N, Kelly Dominic F, Pollard Andrew J
Department of Paediatrics, Oxford Vaccine Group, University of Oxford, Churchill Hospital, Oxford, UK.
NIHR Oxford Biomedical Research Centre, Oxford, UK.
Genome Med. 2017 Jan 30;9(1):11. doi: 10.1186/s13073-017-0400-x.
Neisseria meningitidis is a globally important cause of meningitis and septicaemia. Twelve capsular groups of meningococci are known, and quadrivalent vaccines against four of these (A, C, W and Y) are available as plain-polysaccharide and protein-polysaccharide conjugate vaccines. Here we apply contemporary methods to describe B-cell responses to meningococcal polysaccharide and conjugate vaccines.
Twenty adults were randomly assigned to receive either a meningococcal plain-polysaccharide or conjugate vaccine; one month later all received the conjugate vaccine. Blood samples were taken pre-vaccination and 7, 21 and 28 days after vaccination; B-cell responses were assessed by ELISpot, serum bactericidal assay, flow cytometry and gene expression microarray.
Seven days after an initial dose of either vaccine, a gene expression signature characteristic of plasmablasts was detectable. The frequency of newly generated plasma cells (CXCR3HLA-DR) and the expression of transcripts derived from IGKC and IGHG2 correlated with immunogenicity. Notably, using an independent dataset, the expression of glucosamine (N-acetyl)-6-sulfatase was found to reproducibly correlate with the magnitude of immune response. Transcriptomic and flow cytometric data revealed depletion of switched memory B cells following plain-polysaccharide vaccine.
These data describe distinct gene signatures associated with the production of high-avidity antibody and a plain-polysaccharide-specific signature, possibly linked to polysaccharide-induced hyporesponsiveness.
脑膜炎奈瑟菌是全球范围内引起脑膜炎和败血症的重要病因。已知脑膜炎球菌有12个荚膜群,针对其中4种(A、C、W和Y)的四价疫苗有普通多糖疫苗和蛋白-多糖结合疫苗。在此,我们应用当代方法来描述B细胞对脑膜炎球菌多糖疫苗和结合疫苗的反应。
20名成年人被随机分配接受脑膜炎球菌普通多糖疫苗或结合疫苗;1个月后所有人都接受结合疫苗。在接种疫苗前以及接种后7天、21天和28天采集血样;通过酶联免疫斑点法、血清杀菌试验、流式细胞术和基因表达微阵列评估B细胞反应。
在初次接种任何一种疫苗7天后,可检测到浆母细胞特征性的基因表达特征。新产生的浆细胞(CXCR3HLA-DR)频率以及源自IGKC和IGHG2的转录本表达与免疫原性相关。值得注意的是,使用一个独立数据集发现,氨基葡萄糖(N-乙酰)-6-硫酸酯酶的表达与免疫反应强度可重复性相关。转录组学和流式细胞术数据显示,普通多糖疫苗接种后转换记忆B细胞减少。
这些数据描述了与高亲和力抗体产生相关的独特基因特征以及普通多糖疫苗特异性特征,可能与多糖诱导的低反应性有关。