Michon Francis, Uitz Catherine, Sarkar Arun, D'Ambra Anello J, Laude-Sharp Maryline, Moore Samuel, Fusco Peter C
Department of Vaccine Research, BioVeris Corporation, Gaithersburg, MD 20877, USA.
Clin Vaccine Immunol. 2006 Aug;13(8):936-43. doi: 10.1128/CVI.00122-06.
Recent efforts toward developing vaccines against group B streptococci (GBS) have focused on increasing the immunogenicity of GBS polysaccharides by conjugation to carrier proteins. However, partial depolymerization of GBS polysaccharides for the production of vaccines is a difficult task because of their acid-labile, antigenically critical sialic acids. Here we report a method for the partial depolymerization of type II and III polysaccharides by mild deaminative cleavage to antigenic fragments with reducing-terminal 2,5-anhydro-d-mannose residues. Through the free aldehydes of their newly formed end groups, the fragments were conjugated to tetanus toxoid by reductive amination. The resulting conjugates stimulated the production in animals of high-titer type II- and III-specific antibodies which induced opsonophagocytic killing of type II and III strains of group B streptococci. For the type II conjugates, immunogenicity increased as oligosaccharide size decreased, whereas for type III conjugates, the size of the oligosaccharides did not significantly influence immunogenicity. When oligosaccharides of defined size were conjugated through sialic acid residues, the resulting cross-linkages were shown to affect immunogenicity. When oligosaccharides were conjugated through terminal aldehyde groups generated by deamination, modification of the exocyclic chain of sialic acid did not influence immunogenicity.
近期研发抗B族链球菌(GBS)疫苗的努力主要集中在通过与载体蛋白偶联来提高GBS多糖的免疫原性。然而,由于GBS多糖中酸不稳定且具有抗原关键作用的唾液酸,对其进行部分解聚以用于疫苗生产是一项艰巨的任务。在此,我们报告一种通过温和的脱氨基裂解将II型和III型多糖部分解聚为具有还原端2,5-脱水-D-甘露糖残基的抗原片段的方法。通过其新形成端基的游离醛基,这些片段通过还原胺化与破伤风类毒素偶联。所得偶联物刺激动物产生高滴度的II型和III型特异性抗体,这些抗体可诱导对B族链球菌II型和III型菌株的调理吞噬杀伤作用。对于II型偶联物,免疫原性随着寡糖尺寸的减小而增加,而对于III型偶联物,寡糖的尺寸对免疫原性没有显著影响。当特定尺寸的寡糖通过唾液酸残基偶联时,所产生的交联显示会影响免疫原性。当寡糖通过脱氨基产生的末端醛基偶联时,唾液酸外环链的修饰不影响免疫原性。