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Field evaluation of a real time loop-mediated isothermal amplification assay (RealAmp) for malaria diagnosis in Cruzeiro do Sul Acre Brazil

机译:实时环路介导的等温扩增测定(RealAmp)现场评估用于巴西阿克雷克鲁塞罗的疟疾诊断

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摘要

Conventional molecular methods, such as nested polymerase chain reaction (PCR), are very sensitive for detection of malaria parasites, but require advanced laboratory equipment and trained personnel. (RealAmp), a loop-mediated isothermal amplification-based molecular tool (LAMP), facilitates rapid target amplification at a single temperature setting, reducing the need for sophisticated equipment. We evaluated the performance of a field-adapted RealAmp assay for malaria diagnosis in Cruzeiro do Sul, Acre State, Brazil, a remote area in Brazil with limited laboratory capabilities. We enrolled 1,000 patients with fever (axillary temperature ≥ 37.5 C) or history of fever in last 24 h presenting for malaria diagnosis from February through June 2015. DNA was extracted from dried blood spots using a boil and spin method (heat treatment) at the sample processing site, and also using commercial kits at a Brazilian national reference laboratory. RealAmp was performed for Plasmodium genus, P. falciparum, and P. vivax identification. In addition, Giemsa-stained blood smears were prepared and examined by two independent well-trained study microscopists. A combination of Real-time PCR and nested PCR was used as reference test. The sensitivity and specificity of RealAmp in the field site laboratory were 94.1% (95% confidence interval [CI]: 90.1–96.8) and 83.9% (95% CI: 81.1–86.4), respectively. The sensitivity and specificity of local microscopy were 87.7% (95% CI: 82.6–91.7) and 98.9% (95% CI: 97.8–99.4), respectively, while study microscopy showed sensitivity of 96.4% (95% CI: 93.0–98.4) and specificity of 98.2% (95% CI: 97.0–99.0). None of the three tests detected 20 P. falciparum and P. vivax mixed infections identified by the reference test. Our findings highlight that it is possible to implement simple molecular tests in facilities with limited resources such as Cruzeiro do Sul in Brazil. RealAmp sensitivity was similar to that of microscopy performed by skilled professionals; both RealAmp and study microscopy performed poorly in detection of mixed infection. Attempts to develop and evaluate simpler molecular tools should continue, especially for the detection of malaria infection in remote areas.
机译:常规分子方法,例如巢式聚合酶链反应(PCR),对于检测疟原虫非常敏感,但需要先进的实验室设备和训练有素的人员。 (RealAmp)是一种基于环介导的基于等温扩增的分子工具(LAMP),可在单个温度设置下促进快速靶扩增,从而减少了对复杂设备的需求。我们评估了现场适应性RealAmp测定法在巴西阿克雷州南克鲁兹罗多南部的实验室诊断能力有限的疟疾诊断中的性能。我们招募了1,000名最近24小时内发烧(腋窝温度≥37.5 C)或有发烧史的患者,用于诊断从2000年2月至2015年6月为疟疾。在该处使用煮沸和旋转方法(热处理)从干血斑中提取DNA。样品处理现场,并在巴西国家参考实验室使用商业试剂盒。 RealAmp用于疟原虫属,恶性疟原虫和间日疟原虫鉴定。此外,还准备了吉姆萨染色的血液涂片,并由两名独立的训练有素的研究显微学家检查。实时荧光定量PCR和巢式PCR的组合用作参考测试。在现场实验室中,RealAmp的敏感性和特异性分别为94.1%(95%置信区间[CI]:90.1-96.8)和83.9%(95%CI:81.1-86.4)。局部显微镜的敏感性和特异性分别为87.7%(95%CI:82.6–91.7)和98.9%(95%CI:97.8-99.4),而研究显微镜的敏感性为96.4%(95%CI:93.0-98.4)。 )和98.2%的特异性(95%CI:97.0-99.0)。三种测试均未检测到参考测试确定的20株恶性疟原虫和间日疟原虫混合感染。我们的发现突出表明,可以在资源有限的设施(例如巴西的Cruzeiro do Sul)中进行简单的分子测试。 RealAmp的灵敏度与熟练专业人员进行的显微镜检查相似。 RealAmp和研究显微镜在混合感染的检测中均表现不佳。应继续尝试开发和评估更简单的分子工具,尤其是在偏远地区检测疟疾感染时。

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