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研究一种针对A群和C群脑膜炎球菌病的二价单分子糖缀合物疫苗中碳水化合物抗原的免疫显性。

Investigating the immunodominance of carbohydrate antigens in a bivalent unimolecular glycoconjugate vaccine against serogroup A and C meningococcal disease.

作者信息

Adamo Roberto, Nilo Alberto, Harfouche Carole, Brogioni Barbara, Pecetta Simone, Brogioni Giulia, Balducci Evita, Pinto Vittoria, Filippini Sara, Mori Elena, Tontini Marta, Romano Maria Rosaria, Costantino Paolo, Berti Francesco

机构信息

Novartis Vaccines and Diagnostics, Research Center, Via Fiorentina 1, 53100, Siena, Italy.

出版信息

Glycoconj J. 2014 Dec;31(9):637-47. doi: 10.1007/s10719-014-9559-1. Epub 2014 Sep 26.

DOI:10.1007/s10719-014-9559-1
PMID:25256065
Abstract

Multicomponent constructs, obtained by coupling different glycans to the carrier protein, have been proposed as a way to co-deliver multiple surface carbohydrates targeting different strains of one pathogen and reduce the number of biomolecules in the formulation of multivalent vaccines. To assess the feasibility of this approach for anti-microbial vaccines and investigate the potential immunodominance of one carbohydrate antigen over the others in these constructs, we designed a bivalent unimolecular vaccine against serogroup A (MenA) and C (MenC) meningococci, with the two different oligomers conjugated to same molecule of carrier protein (CRM197). The immune response elicited in mice by the bivalent MenAC construct was compared with the ones induced by the monovalent MenA and MenC vaccines and their combinations. After the second dose, the bivalent construct induced good levels of anti-MenA and anti-MenC antibodies with respect to the controls. However, the murine sera from the MenAC construct exhibited good anti-MenC bactericidal activity, and very low anti-MenA functionality when compared to the monovalent controls. This result was explained with the diverse relative avidities against MenA and MenC polysaccharides, which were measured in the generated sera. The immunodominant effect of the MenC antigen was fully overcome following the third immunization, when sera endowed with higher avidity and excellent bactericidal activity against both MenA and MenC expressing strains were elicited. Construction of multicomponent glycoconjugate vaccines against microbial pathogens is a feasible approach, but particular attention should be devoted to study and overcome possible occurrence of immune interference among the carbohydrates.

摘要

通过将不同聚糖与载体蛋白偶联获得的多组分构建体,已被提议作为一种共同递送针对一种病原体不同菌株的多种表面碳水化合物并减少多价疫苗制剂中生物分子数量的方法。为了评估这种方法用于抗微生物疫苗的可行性,并研究这些构建体中一种碳水化合物抗原相对于其他抗原的潜在免疫优势,我们设计了一种针对A群(MenA)和C群(MenC)脑膜炎球菌的二价单分子疫苗,将两种不同的寡聚物偶联到同一分子的载体蛋白(CRM197)上。将二价MenAC构建体在小鼠中引发的免疫反应与单价MenA和MenC疫苗及其组合诱导的免疫反应进行了比较。在第二次给药后,与对照组相比,二价构建体诱导了良好水平的抗MenA和抗MenC抗体。然而,与单价对照相比,来自MenAC构建体的小鼠血清表现出良好的抗MenC杀菌活性,而抗MenA功能非常低。这一结果可以用所产生血清中对MenA和MenC多糖的不同相对亲和力来解释。在第三次免疫后,MenC抗原的免疫优势效应被完全克服,此时产生的血清对表达MenA和MenC的菌株具有更高的亲和力和优异的杀菌活性。构建针对微生物病原体的多组分糖缀合物疫苗是一种可行的方法,但应特别注意研究和克服碳水化合物之间可能出现的免疫干扰。

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