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Physical characterization and formulation development of a recombinant pneumolysoid protein-based pneumococcal vaccine

机译:重组基于肺气溶胶蛋白的肺炎球菌疫苗的物理表征和制剂开发

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Streptococcus pneumoniae is a major cause of death in children worldwide. There are more than 90 known pneumococcus serotypes that vary by geographical location. Pneumolysin is a protein toxin produced by virtually all invasive strains of S. pneumoniae and is considered an important virulence factor. Pneumolysin is immunogenic and has the potential to be a new vaccine antigen offering broad serotype-independent coverage. To develop a stable vaccine formulation, the conformational stability of a recombinant pneumolysin mutant (pneumolysoid L460D) was characterized by various techniques. Three data visualization diagrams were constructed to summarize the biophysical data of the L460D pneumolysoid; the protein is most stable in solution at pH 6-7, and loses conformational integrity above 48°C. Excipient screening assays were performed and sugars such as trehalose and sucrose stabilized the pneumolysin mutant with respect to improving thermal transition temperatures and minimizing aggregation. In addition, the protein antigen showed efficient binding to aluminum hydroxide adjuvant. The conformational stability of the L460D pneumolysoid on the surface of alhydrogel adjuvant was little affected by adsorption, either with or without excipients. These studies provide important preformulation characterization information useful for the development of a stable pneumolysin mutant-based vaccine.
机译:肺炎链球菌是全世界儿童死亡的主要原因。有90多种已知的肺炎球菌血清型,随地理位置而异。肺炎球菌溶血素是几乎由所有肺炎链球菌的侵袭性菌株产生的蛋白质毒素,被认为是重要的毒力因子。肺炎球菌溶血素具有免疫原性,有可能成为一种新型疫苗抗原,提供广泛的血清型非依赖性覆盖。为了开发稳定的疫苗制剂,通过多种技术表征了重组肺炎球菌溶血素突变体(肺炎球菌样L460D)的构象稳定性。构造了三个数据可视化图以总结L460D气溶体的生物物理数据。该蛋白质在pH 6-7的溶液中最稳定,在48°C以上失去构象完整性。进行了赋形剂筛选测定,并且糖如海藻糖和蔗糖在改善热转变温度和最小化聚集方面稳定了肺炎球菌溶血素突变体。另外,蛋白质抗原显示出与氢氧化铝佐剂的有效结合。在有或没有赋形剂的情况下,L460D气溶脂质在水凝胶佐剂表面的构象稳定性几乎不受吸附的影响。这些研究提供了重要的预制剂表征信息,可用于开发稳定的基于肺炎球菌溶血素突变体的疫苗。

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