Simonson J G, Siebeling R J
Department of Microbiology, Louisiana State University, Baton Route 70803.
Infect Immun. 1993 May;61(5):2053-8. doi: 10.1128/iai.61.5.2053-2058.1993.
Opaque colony morphology has been correlated to Vibrio vulnificus virulence. However, the number of capsular serotypes expressed by virulent isolates is unknown. In an effort to produce anticapsule sera, capsular polysaccharide (CPS) from three opaque V. vulnificus strains was purified and characterized. Purified CPSs were acidic and contained considerable amounts of hexosamine and trace quantities of protein and nucleic acid. CPS purified from strain C7184 was poorly immunogenic for rabbits and mice, since repeated injection produced little detectable anticapsular antibody. To improve immunogenicity, CPS-protein conjugates were prepared from adipic acid hydrazide derivatives of CPS purified from each strain and carbodiimide as a coupling reagent. The immunogenicity of C7184 CPS was enhanced by conjugation to keyhole limpet hemocyanin, since injection into mice elicited production of anticapsular antibodies, the level of which was dependent on the dose and time since initial immunization. Injection of rabbits with CPS-protein conjugates also produced anticapsular antibodies. Staphylococcus aureus cells armed with each of the three anticapsular antibodies coagglutinated only the homologous opaque strain, indicating the existence of at least three capsular types. Further screening of 32 opaque and translucent V. vulnificus isolates revealed only three cross-reacting strains. These results suggest the presence of numerous V. vulnificus capsular types.
不透明菌落形态与创伤弧菌的毒力相关。然而,毒力分离株所表达的荚膜血清型数量尚不清楚。为了制备抗荚膜血清,对三株不透明创伤弧菌菌株的荚膜多糖(CPS)进行了纯化和表征。纯化后的CPS呈酸性,含有大量的己糖胺以及微量的蛋白质和核酸。从C7184菌株纯化得到的CPS对兔和小鼠的免疫原性较差,因为重复注射几乎检测不到抗荚膜抗体。为提高免疫原性,用己二酸酰肼衍生物对各菌株纯化得到的CPS与碳二亚胺作为偶联剂制备CPS-蛋白质偶联物。通过与钥孔戚血蓝蛋白偶联,C7184 CPS的免疫原性得到增强,因为注射到小鼠体内可引发抗荚膜抗体的产生,其水平取决于初始免疫后的剂量和时间。用CPS-蛋白质偶联物注射兔子也产生了抗荚膜抗体。用三种抗荚膜抗体中的每一种武装的金黄色葡萄球菌细胞仅对同源不透明菌株发生协同凝集,表明至少存在三种荚膜类型。对32株不透明和半透明创伤弧菌分离株的进一步筛选仅发现了三株交叉反应菌株。这些结果表明存在多种创伤弧菌荚膜类型。