首页> 外文期刊>Frontiers in Immunology >Neoglycoconjugate of Tetrasaccharide Representing One Repeating Unit of the Streptococcus pneumoniae Type 14 Capsular Polysaccharide Induces the Production of Opsonizing IgG1 Antibodies and Possesses the Highest Protective Activity As Compared to Hexa- and Octasaccharide Conjugates
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Neoglycoconjugate of Tetrasaccharide Representing One Repeating Unit of the Streptococcus pneumoniae Type 14 Capsular Polysaccharide Induces the Production of Opsonizing IgG1 Antibodies and Possesses the Highest Protective Activity As Compared to Hexa- and Octasaccharide Conjugates

机译:代表肺炎链球菌 14型荚膜多糖的一个重复单元的四糖新糖缀合物诱导调理性IgG1抗体的产生,与六糖和八糖缀合物相比,具有最高的保护活性。

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Identifying protective synthetic oligosaccharide (OS) epitopes of Streptococcus pneumoniae capsular polysaccharides (CPs) is an indispensable step in the development of third-generation carbohydrate pneumococcal vaccines. Synthetic tetra-, hexa-, and octasaccharide structurally related to CP of S. pneumoniae type 14 were coupled to bovine serum albumin (BSA), adjuvanted with aluminum hydroxide, and tested for their immunogenicity in mice upon intraperitoneal prime-boost immunizations. Injections of the conjugates induced production of opsonizing anti-OS IgG1 antibodies (Abs). Immunization with the tetra- and octasaccharide conjugates stimulated the highest titers of the specific Abs. Further, the tetrasaccharide ligand demonstrated the highest ability to bind OS and CP Abs. Murine immune sera developed against tetra- and octasaccharide conjugates promoted pathogen opsonization to a higher degree than antisera against conjugated hexasaccharide. For the first time, the protective activities of these glycoconjugates were demonstrated in mouse model of generalized pneumococcal infections. The tetrasaccharide conjugate possessed the highest protective activities. Conversely, the octasaccharide conjugate had lower protective activities and the lowest one showed the hexasaccharide conjugate. Sera against all of the glycoconjugates passively protected naive mice from pneumococcal infections. Given that the BSA-tetrasaccharide induced the most abundant yield of specific Abs and the best protective activity, this OS may be regarded as the most promising candidate for the development of conjugated vaccines against S. pneumoniae type 14 infections.
机译:鉴定肺炎链球菌荚膜多糖(CP)的保护性合成寡糖(OS)表位是开发第三代碳水化合物肺炎球菌疫苗的必不可少的步骤。在结构上与14型肺炎链球菌CP相关的合成的四糖,六糖和八糖与牛血清白蛋白(BSA)偶联,辅以氢氧化铝,并在腹膜内初免加强免疫后在小鼠中测试其免疫原性。缀合物的注射诱导调理抗OS IgG1抗体(Abs)的产生。用四糖和八糖缀合物免疫可刺激特定抗体的最高滴度。此外,四糖配体表现出最高的结合OS和CP Abs的能力。抗四糖和八糖共轭物的鼠免疫血清比抗共轭六糖抗血清更能促进病原体的调理作用。这些糖结合物的保护活性首次在广义肺炎球菌感染的小鼠模型中得到证实。四糖缀合物具有最高的保护活性。相反,八糖缀合物具有较低的保护活性,而最低的八糖缀合物具有六糖缀合物。对抗所有糖缀合物的血清可被动保护天真小鼠免受肺炎球菌感染。鉴于BSA-四糖可诱导出最高的特异性Abs产量和最佳的保护活性,因此该OS可被视为开发针对14型肺炎链球菌感染的结合疫苗的最有希望的候选者。

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