Unpacking WHO and CDC Bottle Bioassay Methods: A Comprehensive Literature Review and Protocol Analysis Revealing Key Outcome Predictors

G. Praulins, Annabel Murphy-Fegan, Jack Gillespie, Frank Mechan, Katherine Gleave, Rosemary Lees
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Abstract

Background Resistance monitoring is a key element in controlling vector-borne diseases. The World Health Organization (WHO) and Centres for Disease Control and Prevention (CDC) have each developed bottle bioassay methods for determining insecticide susceptibility in mosquito vectors which are used globally. Methods This study aimed to identify variations in bottle bioassay methodologies and assess the potential impact on the data that is generated. Our approach involved a systematic examination of existing literature and protocols from WHO and CDC, with a focus on the specifics of reported methodologies, variation between versions, and reported outcomes. Building on this, we experimentally evaluated the impact of several variables on bioassay results. Results Our literature review exposed a significant inconsistency in the how bioassay methods are reported, hindering reliable interpretation of data and the ability to compare results between studies. The experimental research provided further insight by specifically identifying two key factors that influence the outcomes of bioassays: mosquito dry weight and relative humidity (RH). This finding not only advances our comprehension of these assays but also underscores the importance of establishing precisely defined methodologies for resistance monitoring. The study also demonstrates the importance of controlling bioassay variables, noting the significant influence of wing length, as an indicator of mosquito size, on mortality rates in standardized bioassays. Conclusions Generating data with improved protocol consistency and precision will not only deepen our understanding of resistance patterns but also better inform vector control measures. We call for continued research and collaboration to refine and build consensus on bioassay techniques, to help bolster the global effort against vector-borne diseases like malaria.
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解读世界卫生组织和中国疾病预防控制中心的瓶式生物测定方法:揭示关键结果预测因素的全面文献综述和方案分析
背景 抗药性监测是控制病媒传播疾病的关键因素。世界卫生组织(WHO)和疾病控制与预防中心(CDC)分别开发了瓶式生物测定方法,用于确定蚊媒对杀虫剂的敏感性,并在全球范围内使用。方法 本研究旨在确定瓶式生物测定方法的差异,并评估其对所生成数据的潜在影响。我们的研究方法包括对现有文献以及世界卫生组织和中国疾病预防控制中心的规程进行系统检查,重点关注所报告方法的具体内容、不同版本之间的差异以及所报告的结果。在此基础上,我们通过实验评估了几个变量对生物测定结果的影响。结果 我们的文献综述发现,生物测定方法的报告方式存在严重的不一致性,这妨碍了数据的可靠解读以及比较不同研究结果的能力。实验研究通过具体确定影响生物测定结果的两个关键因素:蚊子干重和相对湿度(RH),提供了进一步的见解。这一发现不仅加深了我们对这些检测方法的理解,还强调了建立精确定义的抗药性监测方法的重要性。研究还证明了控制生物测定变量的重要性,注意到作为蚊子大小指标的翅膀长度对标准化生物测定中死亡率的显著影响。结论 通过提高规程的一致性和精确性来生成数据,不仅能加深我们对抗药性模式的了解,还能更好地为病媒控制措施提供信息。我们呼吁继续开展研究与合作,以完善生物测定技术并达成共识,从而帮助全球抗击疟疾等病媒传播疾病。
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