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Evaluation of two lead malaria transmission blocking vaccine candidate antibodies in natural parasite-vector combinations

机译:在天然寄生虫-载体组合中评估两种主要的疟疾传播阻断疫苗候选抗体

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摘要

Transmission blocking vaccines (TBV) which aim to control malaria by inhibiting human-to-mosquito transmission show considerable promise though their utility against naturally circulating parasites remains unknown. The efficacy of two lead candidates targeting Pfs25 and Pfs230 antigens to prevent onwards transmission of naturally occurring parasites to a local mosquito strain is assessed using direct membrane feeding assays and murine antibodies in Burkina Faso. The transmission blocking activity of both candidates depends on the level of parasite exposure (as assessed by the mean number of oocysts in control mosquitoes) and antibody titers. A mathematical framework is devised to allow the efficacy of different candidates to be directly compared and determine the minimal antibody titers required to halt transmission in different settings. The increased efficacy with diminishing parasite exposure indicates that the efficacy of vaccines targeting either Pfs25 or Pfs230 may increase as malaria transmission declines. This has important implications for late-stage candidate selection and assessing how they can support the drive for malaria elimination.
机译:尽管通过阻断人类到蚊子传播来控制疟疾的阻断传播疫苗(TBV)仍具有广阔的前景,尽管它们对自然循环寄生虫的效用尚不清楚。在布基纳法索,使用直接膜饲喂测定法和鼠类抗体评估了靶向Pfs25和Pfs230抗原的两个候选候选物预防自然寄生虫向局部蚊子传播的功效。两种候选物的传播阻断活性取决于寄生虫暴露水平(通过对照蚊子中卵囊的平均数评估)和抗体滴度。设计了数学框架以允许直接比较不同候选物的功效,并确定在不同情况下停止传播所需的最小抗体滴度。随着寄生虫暴露减少,功效增加表明,针对Pfs25或Pfs230的疫苗的功效可能会随着疟疾传播的减少而提高。这对后期候选人的选择以及评估他们如何支持消除疟疾的努力具有重要意义。

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