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Reuse of malaria rapid diagnostic tests for amplicon deep sequencing to estimate Plasmodium falciparum transmission intensity in western Uganda

机译:重复利用疟疾快速诊断试验,用于扩增子深度测序,以估算乌干达西部疟原虫疟原虫传输强度

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Molecular techniques are not routinely employed for malaria surveillance, while cross-sectional, community-based parasite surveys require significant resources. Here, we describe a novel use of malaria rapid diagnostic tests (RDTs) collected at a single facility as source material for sequencing to esimtate malaria transmission intensity across a relatively large catchment area. We extracted Plasmodium falciparum DNA from RDTs, then amplified and sequenced a region of the apical membrane antigen 1 (pfama1) using targeted amplicon deep sequencing. We determined the multiplicity of infection (MOI) for each sample and examined associations with demographic, clinical, and spatial factors. We successfully genotyped 223 of 287 (77.7%) of the samples. We demonstrated an inverse relationship between the MOI and elevation with individuals presenting from the highest elevation villages harboring infections approximately half as complex as those from the lowest (MOI 1.85 vs. 3.51, AOR 0.25, 95% CI 0.09–0.65, p?=?0.004). This study demonstrates the feasibility and validity of using routinely-collected RDTs for molecular surveillance of malaria and has real-world utility, especially as the cost of high-throughpout sequencing continues to decline.
机译:分子技术不常规用于疟疾监测,而横截面,基于社区的寄生虫调查需要大量资源。在此,我们描述了在单个设施中收集的疟疾快速诊断测试(RDT)的新用途,作为源材料,用于在相对大的集水区横跨相对大的集水区测序以挖掘疟疾传输强度。我们从RDT中提取了疟原虫DNA,然后使用靶向扩增子深度测序扩增并测序顶端膜抗原1(PFAMA1)的区域。我们确定了每个样品的多种感染(MOI)并检查了与人口统计学,临床,空间因素的关联。我们成功分为287的样品223(77.7%)。我们展示了MOI与呈现出从最高海拔村庄的人之间的逆关系,这些人从最低的最低(MOI 1.85与3.51,AOR 0.25,95%CI 0.09-0.65,P?=? 0.004)。本研究表明,使用常规收集的RDT的可行性和有效性用于疟疾的分子监测,并且具有现实世界的效用,特别是随着高速排序的成本继续下降。

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