Beninati Concetta, Arseni Simona, Mancuso Giuseppe, Magliani Walter, Conti Stefania, Midiri Angelina, Biondo Carmelo, Polonelli Luciano, Teti Giuseppe
Dipartimento di Patologia e Microbiologia Sperimentale, Università degli Studi di Messina, Messina, Italy.
J Immunol. 2004 Feb 15;172(4):2461-8. doi: 10.4049/jimmunol.172.4.2461.
Use of the serogroup B meningococcal capsular polysaccharide (MenB CP) as a vaccine is hampered by the presence of epitopes that cross-react with human polysialic acid. As non-cross-reactive, protective capsular epitopes have also been described, we set out to develop protein mimics of one of such epitopes using as a template a highly protective mAb (mAb Seam 3) raised against a chemically modified form of the MenB CP (N-Pr MenB CP). Using phage display, anti-idiotypic single-chain Ab fragments (scFvs) were obtained from spleen cells of mice immunized with the Seam 3 mAb. Two Seam 3-specific scFvs competed with N-Pr MenB CP for binding to either mAb Seam 3 or rabbit Abs present in typing sera. Moreover, in mice and rabbits the scFvs elicited the production of Abs reacting with both N-Pr MenB CP and whole meningococci, but not with human polysialic acid. These scFv-induced Ab responses were boostable and of the Th1 type, as shown by a predominance of IgG2a. In addition, passive immunization with sera from scFv-immunized animals partially protected neonatal mice from experimental infection with group B meningococci. In conclusion, we have produced anti-idiotypic scFvs that mimic a protective MenB CP epitope and may be useful in the development of an alternative group B meningococcal vaccine.
B群脑膜炎球菌荚膜多糖(MenB CP)作为疫苗使用时,会受到与人类多聚唾液酸发生交叉反应的表位的阻碍。由于也已描述了非交叉反应性的保护性荚膜表位,我们着手以针对化学修饰形式的MenB CP(N-Pr MenB CP)产生的高度保护性单克隆抗体(单克隆抗体Seam 3)为模板,开发此类表位之一的蛋白质模拟物。利用噬菌体展示技术,从用Seam 3单克隆抗体免疫的小鼠脾细胞中获得了抗独特型单链抗体片段(scFv)。两种Seam 3特异性scFv与N-Pr MenB CP竞争结合单克隆抗体Seam 3或分型血清中存在的兔抗体。此外,在小鼠和兔子中,scFv诱导产生了与N-Pr MenB CP和完整脑膜炎球菌发生反应,但不与人类多聚唾液酸发生反应的抗体。如IgG2a占优势所示,这些scFv诱导的抗体反应是可增强的且属于Th1型。此外,用来自scFv免疫动物的血清进行被动免疫可部分保护新生小鼠免受B群脑膜炎球菌的实验性感染。总之,我们制备了模拟保护性MenB CP表位的抗独特型scFv,其可能有助于开发替代的B群脑膜炎球菌疫苗。