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Multiplexed, Patterned-Paper Immunoassay for Detection of Malaria and Dengue Fever

机译:用于检测疟疾和登革热的多模式花纸免疫测定

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Multiplex assays detect the presence of more than one analyte in a sample. For diagnostic applications, multiplexed tests save healthcare providers time and resources by performing many assays in parallel, minimizing the amount of sample needed and improving the quality of information acquired regarding the health status of a patient. These advantages are of particular importance for those diseases that present with general, overlapping symptoms, which makes presumptive treatments inaccurate and may put the patient at risk For example, malaria and dengue fever are febrile illnesses transmitted through mosquito bites, and these common features make it difficult to obtain an accurate diagnosis by symptoms alone. In this manuscript, we describe the development of a multiplexed, patterned paper immunoassay for the detection of biomarkers of malaria and dengue fever: malaria HRP2, malaria pLDH, and dengue NS1 type 2. In areas coendemic for malaria and dengue fever, this assay could be used as a rapid, point-of-care diagnostic to determine the cause of a fever of unknown origin. The reagents required for each paper-based immunoassay are separated spatially within a three-dimensional device architecture, which allows the experimental conditions to be adjusted independently for each assay. We demonstrate the analytical performances of paper-based assays for each biomarker and we show that there is no significant difference in performance between the multiplexed immunoassay and those immunoassays performed in singleplex. Additionally, we spiked individual analytes into lysed human blood to demonstrate specificity in a clinically relevant sample matrix. Our results suggest multiplex paper-based devices can be an essential component of diagnostic assays used at the point-of-care.
机译:多重分析可检测样品中不止一种分析物的存在。对于诊断应用,多重测试通过并行执行许多化验,减少所需样本量并提高获取的有关患者健康状况的信息质量,从而节省了医疗服务提供者的时间和资源。这些优点对于那些表现出普遍性,重叠症状的疾病尤其重要,这些疾病会使推定的治疗方法不正确,并可能使患者处于危险之中。例如,疟疾和登革热是通过蚊虫叮咬传播的高热疾病,这些共同特征使疟疾和登革热成为可能。仅凭症状很难获得准确的诊断。在本手稿中,我们描述了一种用于检测疟疾和登革热的生物标志物的多重,有图案的纸质免疫分析方法的开发:疟疾HRP2,疟疾pLDH和2型登革热NS1。可以用作快速即时诊断,以确定原因不明的发烧原因。每种纸质免疫测定所需的试剂在三维设备结构中在空间上分开,从而可以针对每种测定独立调整实验条件。我们证明了每种生物标记物的纸本化验方法的分析性能,并且我们证明了多重免疫法和单重体免疫法之间在性能上没有显着差异。此外,我们将单独的分析物掺入裂解的人血中,以证明其在临床相关样品基质中的特异性。我们的结果表明,多种基于纸张的设备可能是即时诊断所用诊断分析的重要组成部分。

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