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Protection by Natural Human Immunoglobulin M Antibody to Meningococcal Serogroup B Capsular Polysaccharide in the Infant Rat Protection Assay Is Independent of Complement-Mediated Bacterial Lysis

机译:在婴儿大鼠保护实验中,天然人免疫球蛋白M抗体对脑膜炎球菌血清B群荚膜多糖的保护作用独立于补体介导的细菌裂解

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Neisseria meningitidis, an important cause of bacterial meningitis and septicemia worldwide, is associated with high mortality and serious sequelae. Natural immunity against meningococcal disease develops with age, but the specificity and functional activity of natural antibodies associated with protection are poorly understood. We addressed this question by using a selected subset of prevaccination sera (n = 26) with convergent or discrepant serum bactericidal activity (SBA) and infant rat protective activity (IRPA) against the serogroup B meningococcal strain 44/76-SL (B:15:P1.7,16) from Icelandic teenagers (B. A. Perkins et al., J. Infect. Dis. 177:683-691, 1998). The sera were analyzed by opsonophagocytic activity (OPA) assay, immunoblotting, immunoglobulin G (IgG) quantitation against live meningococcal cells by flow cytometry, and enzyme immunosorbent assay (EIA). High levels of SBA and OPA were reflected in distinct IgG binding to major outer membrane proteins and/or lipopolysaccharide in immunoblots. However, we could not detect any specific antibody patterns on blots that could explain IRPA. Only IgM antibody to group B capsular polysaccharide (B-PS), measured by EIA, correlated positively (r = 0.76, P < 0.001) with IRPA. Normal human sera (NHS; n = 20) from healthy Finnish children of different ages (7, 14, and 24 months and 10 years) supported this finding and showed an age-related increase in IRPA that coincided with the acquisition of B-PS specific IgM antibody. The protection was independent of complement-mediated bacterial lysis, as detected by the inability of NHS to augment SBA in the presence of human or infant rat complement and the equal protective activity of NHS in rat strains with fully functional or C6-deficient complement.
机译:脑膜炎奈瑟氏菌是全世界细菌性脑膜炎和败血病的重要病因,与高死亡率和严重后遗症有关。对脑膜炎球菌疾病的天然免疫力随着年龄的增长而发展,但是与保护相关的天然抗体的特异性和功能活性却鲜为人知。我们通过选择选定的预疫苗血清子集( n = 26)解决了这个问题,该血清具有收敛或不一致的血清杀菌活性(SBA)和对B型脑膜炎球菌菌株44 //的幼鼠保护活性(IRPA) 76-SL(B:15:P1.7,16)来自冰岛的青少年(BA Perkins等人,J.Infect.Dis.177:683-691,1998)。通过调理吞噬细胞活性(OPA),免疫印迹,流式细胞术对活脑膜炎球菌细胞的免疫球蛋白G(IgG)定量和酶免疫吸附测定(EIA)来分析血清。 SBA和OPA的高水平反映在免疫印迹中与主要外膜蛋白和/或脂多糖的独特IgG结合上。但是,我们无法在可以解释IRPA的印迹上检测到任何特异性抗体模式。通过EIA测得,只有Bg荚膜多糖(B-PS)的IgM抗体与IRPA正相关( r = 0.76, P <0.001)。来自不同年龄(7、14、24个月和10岁)的健康芬兰儿童的正常人血清(NHS; n = 20)支持这一发现,并显示出与年龄相关的IRPA升高,同时获得B-PS特异性IgM抗体。这种保护作用独立于补体介导的细菌裂解,这可以通过在人类或婴儿大鼠补体存在下NHS无法增强SBA以及NHS在具有完全功能或C6缺陷补体的大鼠品系中的同等保护活性来检测。

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