McNamara David T, Kasehagen Laurin J, Grimberg Brian T, Cole-Tobian Jennifer, Collins William E, Zimmerman Peter A
Cente for Global Health and Diseases, Case Western Researve University School of Medicine, Cleveland, OH 44106, USA.
Am J Trop Med Hyg. 2006 Mar;74(3):413-21.
Improving strategies for diagnosing infection by the four human Plasmodium species parasites is important as field-based epidemiologic and clinical studies focused on malaria become more ambitious. Expectations for malaria diagnostic assays include rapid processing with minimal expertise, very high specificity and sensitivity, and quantitative evaluation of parasitemia to be delivered at a very low cost. Toward fulfilling many of these expectations, we have developed a post-polymerase chain reaction (PCR)/ligase detection reaction-fluorescent microsphere assay (LDR-FMA). This assay, which uses Luminex FlexMAP microspheres, provides simultaneous, semi-quantitative detection of infection by all four human malaria parasite species at a sensitivity and specificity equal to other PCR-based assays. In blinded studies using P. falciparum-infected blood from in vitro cultures, we identified infected and uninfected samples with 100% concordance. Additionally, in analyses of P. falciparum in vitro cultures and P. vivax-infected monkeys, comparisons between parasitemia and LDR-FMA signal intensity showed very strong positive correlations (r > 0.95). Application of this multiplex Plasmodium species LDR-FMA diagnostic assay will increase the speed, accuracy, and reliability of diagnosing human Plasmodium species infections in epidemiologic studies of complex malaria-endemic settings.
随着以疟疾为重点的现场流行病学和临床研究目标变得更加宏大,改进四种人类疟原虫寄生虫感染的诊断策略至关重要。对疟疾诊断检测的期望包括以最少的专业知识进行快速处理、非常高的特异性和敏感性,以及以非常低的成本对寄生虫血症进行定量评估。为了实现其中许多期望,我们开发了一种聚合酶链反应(PCR)后/连接酶检测反应-荧光微球检测法(LDR-FMA)。该检测法使用Luminex FlexMAP微球,能够同时对所有四种人类疟原虫寄生虫感染进行半定量检测,其灵敏度和特异性与其他基于PCR的检测法相当。在使用体外培养的恶性疟原虫感染血液进行的盲法研究中,我们以100%的一致性鉴定出感染和未感染的样本。此外,在对恶性疟原虫体外培养物和间日疟原虫感染猴子的分析中,寄生虫血症与LDR-FMA信号强度之间的比较显示出非常强的正相关性(r>0.95)。这种多重疟原虫种类LDR-FMA诊断检测法的应用将提高在复杂疟疾流行地区的流行病学研究中诊断人类疟原虫种类感染的速度、准确性和可靠性。