Development of an opsonophagocytic killing assay for group a streptococcus

化脓性链球菌 抗血清 抗体 生物 链球菌 抗原 微生物学 免疫系统 免疫学 病毒学 细菌 金黄色葡萄球菌 遗传学
作者
Scott Jones,Nicole J. Moreland,Marta Zancolli,Jeremy M. Raynes,Jacelyn M. S. Loh,Pierre R. Smeesters,Shiranee Sriskandan,Jonathan R. Carapetis,John D. Fraser,David Green
出处
期刊:Vaccine [Elsevier BV]
卷期号:36 (26): 3756-3763 被引量:24
标识
DOI:10.1016/j.vaccine.2018.05.056
摘要

Group A Streptococcus (GAS) or Streptococcus pyogenes is responsible for an estimated 500,000 deaths worldwide each year. Protection against GAS infection is thought to be mediated by phagocytosis, enhanced by bacteria-specific antibody. There are no licenced GAS vaccines, despite many promising candidates in preclinical and early stage clinical development, the most advanced of which are based on the GAS M-protein. Vaccine progress has been hindered, in part, by the lack of a standardised functional assay suitable for vaccine evaluation. Current assays, developed over 50 years ago, rely on non-immune human whole blood as a source of neutrophils and complement. Variations in complement and neutrophil activity between donors result in variable data that is difficult to interpret. We have developed an opsonophagocytic killing assay (OPKA) for GAS that utilises dimethylformamide (DMF)-differentiated human promyelocytic leukemia cells (HL-60) as a source of neutrophils and baby rabbit complement, thus removing the major sources of variation in current assays. We have standardised the OPKA for several clinically relevant GAS strain types (emm1, emm6 and emm12) and have shown antibody-specific killing for each emm-type using M-protein specific rabbit antisera. Specificity was demonstrated by pre-incubation of the antisera with homologous M-protein antigens that blocked antibody-specific killing. Additional qualifications of the GAS OPKA, including the assessment of the accuracy, precision, linearity and the lower limit of quantification, were also performed. This GAS OPKA assay has the potential to provide a robust and reproducible platform to accelerate GAS vaccine development.

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