Lockyer Kay, Gao Fang, Francis Robert J, Eastwood David, Khatri Bhagwati, Stebbings Richard, Derrick Jeremy P, Bolgiano Barbara
Division of Bacteriology, National Institute for Biological Standards and Control (NIBSC), Blanche Lane, South Mimms, Hertfordshire EN6 3QG, UK.
Division of Bacteriology, National Institute for Biological Standards and Control (NIBSC), Blanche Lane, South Mimms, Hertfordshire EN6 3QG, UK.
Vaccine. 2020 Mar 17;38(13):2859-2869. doi: 10.1016/j.vaccine.2020.02.012. Epub 2020 Feb 20.
To examine the link between meningococcal C (MenC) vaccine size and immunogenic response, a panel of MenC glycoconjugate vaccines were prepared differing in chain length, molar mass and hydrodynamic volume. The preparations consisted of different lengths of MenC polysaccharide (PS) covalently linked to monomeric purified tetanus toxoid (TT) carrier protein using the coupling reagent ethylcarbodiimide hydrochloride (EDC). Size exclusion chromatography with multi-angle light scattering (SEC-MALS) and viscometry analysis confirmed that the panel of MenC-TT conjugates spanned masses of 191,500 to 2,348,000 g/mol, and hydrodynamic radii ranging from 12.1 to 47.9 nm. The two largest conjugates were elliptical in shape, whereas the two smallest conjugates were more spherical. The larger conjugates appeared to fit a model described by multiple TTs with cross-linked PS, typical of lattice-like networks described previously for TT conjugates, while the smaller conjugates were found to fit a monomeric or dimeric TT configuration. The effect of vaccine conjugate size on immune responses was determined using a two-dose murine immunization. The two larger panel vaccine conjugates produced higher anti-MenC IgG1 and IgG2b titres after the second dose. Larger vaccine conjugate size also stimulated greater T-cell proliferative responses in an in vitro recall assay, although cytokines indicative of a T-helper response were not measurable. In conclusion, larger MenC-TT conjugates up to 2,348,000 g/mol produced by EDC chemistry correlate with greater humoral and cellular murine immune responses. These observations suggest that conjugate size can be an important modulator of immune response.
为研究脑膜炎球菌C(MenC)疫苗大小与免疫原性反应之间的联系,制备了一组链长、摩尔质量和流体力学体积不同的MenC糖缀合物疫苗。制剂由不同长度的MenC多糖(PS)组成,使用偶联剂盐酸乙二胺(EDC)与单体纯化破伤风类毒素(TT)载体蛋白共价连接。多角度光散射尺寸排阻色谱法(SEC-MALS)和粘度分析证实,该组MenC-TT缀合物的质量范围为191,500至2,348,000 g/mol,流体力学半径范围为12.1至47.9 nm。两种最大的缀合物呈椭圆形,而两种最小的缀合物更接近球形。较大的缀合物似乎符合多个TT与交联PS描述的模型,这是先前针对TT缀合物描述的晶格状网络的典型特征,而较小的缀合物则符合单体或二聚体TT构型。使用两剂量小鼠免疫法确定疫苗缀合物大小对免疫反应的影响。在第二次给药后,两种较大的疫苗缀合物产生了更高的抗MenC IgG1和IgG2b滴度。在体外回忆试验中,较大的疫苗缀合物大小也刺激了更大的T细胞增殖反应,尽管指示T辅助反应的细胞因子无法测量。总之,通过EDC化学方法制备的高达2,348,000 g/mol的较大MenC-TT缀合物与更大的体液和细胞小鼠免疫反应相关。这些观察结果表明,缀合物大小可能是免疫反应的重要调节因子。