Vaccine. 2013 Oct 1;31(42):4827-33. doi: 10.1016/j.vaccine.2013.07.078. Epub 2013 Aug 17.
Glycoconjugate vaccines are among the most effective and safest vaccines ever developed. Diphtheria toxoid (DT), tetanus toxoid (TT) and CRM197 have been mostly used as protein carriers in licensed vaccines. We evaluated the immunogenicity of serogroup A, C, W-135 and Y meningococcal oligosaccharides conjugated to CRM197, DT and TT in naïve mice. The three carriers were equally efficient in inducing an immune response against the carbohydrate moiety in immunologically naïve mice. The effect of previous exposure to different dosages of the carrier protein on the anti-carbohydrate response was studied using serogroup A meningococcal (MenA) saccharide conjugates as a model. CRM197 showed a strong propensity to positively prime the anti-carbohydrate response elicited by its conjugates or those with the antigenically related carrier DT. Conversely in any of the tested conditions TT priming did not result in enhancement of the anti-carbohydrate response elicited by the corresponding conjugates. Repeated exposure of mice to TT or to CRM197 before immunization with the respective MenA conjugates resulted in a drastic suppression of the anti-carbohydrate response in the case of TT conjugate and only in a slight reduction in the case of CRM197. The effect of carrier priming on the anti-MenA response of DT-based conjugates varied depending on their carbohydrate to protein ratio. These data may have implications for human vaccination since conjugate vaccines are widely used in individuals previously immunized with DT and TT carrier proteins.
糖缀合物疫苗是迄今为止开发的最有效和最安全的疫苗之一。白喉类毒素 (DT)、破伤风类毒素 (TT) 和 CRM197 已被广泛用作已许可疫苗中的蛋白载体。我们评估了 A、C、W-135 和 Y 群脑膜炎球菌寡糖与 CRM197、DT 和 TT 缀合后在无免疫小鼠中的免疫原性。在无免疫的小鼠中,这三种载体在诱导针对碳水化合物部分的免疫应答方面同样有效。使用 A 群脑膜炎球菌(MenA)糖缀合物作为模型,研究了先前接触不同剂量载体蛋白对碳水化合物反应的影响。CRM197 表现出强烈的倾向,可正向增强其缀合物或与抗原相关载体 DT 的缀合物所引起的抗碳水化合物反应。相反,在任何测试条件下,TT 引发均不会导致相应缀合物所引起的抗碳水化合物反应增强。在分别用 MenA 缀合物免疫之前,重复暴露于 TT 或 CRM197 会导致 TT 缀合物的抗碳水化合物反应急剧抑制,而仅对 CRM197 产生轻微降低。载体引发对基于 DT 的缀合物的抗-MenA 反应的影响取决于其碳水化合物与蛋白质的比例。由于这些数据可能对人类疫苗接种产生影响,因为缀合物疫苗已广泛用于先前用 DT 和 TT 载体蛋白免疫的个体中。