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通过高碘酸盐活化O-乙酰化、非O-乙酰化和化学去O-乙酰化多糖制备的脑膜炎奈瑟菌W135群多糖-破伤风类毒素结合疫苗的比较

Comparison of Neisseria meningitidis serogroup W135 polysaccharide-tetanus toxoid conjugate vaccines made by periodate activation of O-acetylated, non-O-acetylated and chemically de-O-acetylated polysaccharide.

作者信息

Gudlavalleti Seshu K, Lee Che-Hung, Norris Scott E, Paul-Satyaseela Maneesh, Vann Willie F, Frasch Carl E

机构信息

Laboratory of Bacterial Polysaccharides, Center for Biologics Evaluation and Research, Food and Drug Administration, Bethesda, MD 20892, USA.

出版信息

Vaccine. 2007 Nov 14;25(46):7972-80. doi: 10.1016/j.vaccine.2007.06.018. Epub 2007 Jun 29.

Abstract

Polysaccharide (PS) and tetanus toxoid (TT) protein conjugate vaccines were prepared using O-acetylated (OAc+), O-acetyl negative (OAc(-)) and chemically de-O-acetylated (de-OAc) meningococcal W135 PS. The PSs were activated by periodate oxidation and coupled to hydrazine derivatized TT. High performance anion exchange chromatography of acid hydrolysates of periodate activated W135 PSs, showed that galactose residues in OAc+ PS were more sensitive to the periodate oxidation step than they were in the OAc(-) PS or de-OAc PS. Mouse antisera against OAc(-)-TT conjugate vaccines recognized both OAc(-) and OAc+ PS by ELISAs and had high bactericidal titers against both OAc+ and OAc(-) W135 strains. Purified high molecular weight (HMW) conjugates showed higher PS to protein ratios in OAc(-)-TT(HMW) and de-OAc-TT(HMW) indicating better conjugation efficiency than OAc+-TT(HMW) conjugate. Antisera against the HMW fractions gave higher bactericidal titers than antisera against unfractionated conjugates. Inhibition ELISAs indicated that OAc(-) and OAc+ HMW conjugates induced antibodies that bound both OAc+ and OAc(-) PS. Thus, for W135, PS O-acetylation does not contribute a dominant immunogenic epitope. The OAc(-) PS may be a good starting material for preparing W135 PS-TT conjugate vaccines using periodate oxidation.

摘要

使用O - 乙酰化(OAc +)、O - 乙酰基阴性(OAc(-))和化学脱O - 乙酰化(de - OAc)的脑膜炎球菌W135多糖(PS)制备多糖(PS)与破伤风类毒素(TT)蛋白结合疫苗。PS通过高碘酸盐氧化活化,并与肼衍生化的TT偶联。高碘酸盐活化的W135 PS酸水解产物的高效阴离子交换色谱显示,OAc + PS中的半乳糖残基比OAc(-) PS或de - OAc PS中的半乳糖残基对高碘酸盐氧化步骤更敏感。针对OAc(-)-TT结合疫苗的小鼠抗血清通过酶联免疫吸附测定(ELISA)识别OAc(-)和OAc + PS,并且对OAc +和OAc(-) W135菌株均具有高杀菌效价。纯化的高分子量(HMW)结合物在OAc(-)-TT(HMW)和de - OAc - TT(HMW)中显示出更高的PS与蛋白质比率,表明其结合效率优于OAc + - TT(HMW)结合物。针对HMW级分的抗血清比针对未分级结合物的抗血清具有更高的杀菌效价。抑制ELISA表明,OAc(-)和OAc + HMW结合物诱导的抗体可结合OAc +和OAc(-) PS。因此,对于W135而言,PS的O - 乙酰化并不贡献主要的免疫原性表位。OAc(-) PS可能是使用高碘酸盐氧化制备W135 PS - TT结合疫苗的良好起始材料。

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