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Improving Malaria Diagnosis via Latex Immunoagglutination Assay in Microfluidic Device

机译:通过微流体装置乳胶免疫凝集测定改善疟疾诊断

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Attempt to improve latex immunoagglutination assay, a rapid method in medical diagnostics, reporting as quantitative results was interested in this study by using microfluidic device. Sensitized latex was produced by physical adsorption of human polyclonal IgG antibody to Plasmodium falciparum malaria parasite onto carboxylated polystyrene particle. Conventional latex agglutination assay was firstly performed to verify specific interaction of antibody on the bead surface versus antigen in malaria plasma. The agglutinate size around 30 μm was observed under optical microscope. The proportion of the plasma and the particle was optimized, and an appropriate ratio was applied in microfluidic device. Three patterns of the device were used with the agglutinate size comparison after 10 min as followed: rapid mixing > U-shaped loop > straight capillary Y-junction patterns. However, compared with patient plasma, small agglutinates were also observed when using normal serum.
机译:试图改善乳胶免疫凝集测定,在医学诊断中的快速方法,作为定量结果的报告对本研究感兴趣的是使用微流体装置。通过对羧基化的聚苯乙烯寄生虫对疟原虫疟原虫疟原虫的人多克隆IgG抗体物理吸附来产生敏化乳胶。首先进行常规的胶乳凝集测定以验证抗体对疟疾等离子体中抗原对抗原的特异性相互作用。在光学显微镜下观察到凝集大小约为30μm。优化了血浆和颗粒的比例,并在微流体装置中施加适当的比例。 10分钟后,使用三种图案与凝集尺寸比较,如下所示:快速混合> U形环>直毛细管Y型接线图案。然而,与患者血浆相比,使用正常血清时,还观察到小凝集物。

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