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环介导等温扩增技术在桑给巴尔进行无症状疟疾集中大规模筛查中的现场应用:一个疟疾消除前的地区

Field deployment of loop-mediated isothermal amplification for centralized mass-screening of asymptomatic malaria in Zanzibar: a pre-elimination setting.

作者信息

Morris Ulrika, Khamis Mwinyi, Aydin-Schmidt Berit, Abass Ali K, Msellem Mwinyi I, Nassor Majda H, González Iveth J, Mårtensson Andreas, Ali Abdullah S, Björkman Anders, Cook Jackie

机构信息

Malaria Research, Department of Microbiology, Tumor and Cell Biology, Karolinska Institutet, Nobelsväg 16, 171 77, Stockholm, Sweden.

Zanzibar Malaria Elimination Programme (ZAMEP), Ministry of Health, Zanzibar, Tanzania.

出版信息

Malar J. 2015 May 17;14:205. doi: 10.1186/s12936-015-0731-2.

Abstract

BACKGROUND

Molecular tools for detection of low-density asymptomatic Plasmodium infections are needed in malaria elimination efforts. This study reports results from the hitherto largest implementation of loop-mediated isothermal amplification (LAMP) for centralized mass screening of asymptomatic malaria in Zanzibar.

METHODS

Healthy individuals present and willing to participate in randomly selected households in 60 villages throughout Zanzibar were screened for malaria by rapid diagnostic tests (RDT). In 50% of the study households, participants were asked to provide 60 μL of finger-prick blood for additional LAMP screening. LAMP was conducted in two centralized laboratories in Zanzibar, by trained technicians with limited or no previous experience of molecular methods. The LAMP assay was performed with Loopamp(TM) MALARIA Pan/Pf Detection Kit (Eiken Chemical Company, Japan). Samples positive for Plasmodium genus (Pan)-LAMP were re-tested using Plasmodium falciparum-specific LAMP kits.

RESULTS

Paired RDT and LAMP samples were available from 3983 individuals. The prevalence of asymptomatic malaria was 0.5% (CI 95% 0.1-0.8) and 1.6% (CI 95% 1.1-2.2) by RDT and Pan-LAMP, respectively. LAMP detected 3.4 (CI 95% 2.2-5.2) times more Plasmodium positive samples than RDT. DNA contamination was experienced, but solved by repetitive decontamination of all equipment and reagents.

CONCLUSIONS

LAMP is a simple and sensitive molecular tool, and has potential in active surveillance and mass-screening programmes for detection of low-density asymptomatic malaria in pre-elimination settings. However, in order to deploy LAMP more effectively in field settings, protocols may need to be adapted for processing larger numbers of samples. A higher throughput, affordable closed system would be ideal to avoid contamination.

摘要

背景

在疟疾消除工作中,需要用于检测低密度无症状疟原虫感染的分子工具。本研究报告了迄今为止在桑给巴尔最大规模实施的环介导等温扩增技术(LAMP)用于无症状疟疾集中大规模筛查的结果。

方法

在桑给巴尔60个村庄随机选取的家庭中,对健康且愿意参与的个体用快速诊断检测(RDT)进行疟疾筛查。在50%的研究家庭中,要求参与者提供60微升指尖血用于额外的LAMP筛查。LAMP检测在桑给巴尔的两个集中实验室进行,由之前对分子方法经验有限或没有经验的技术人员操作。使用Loopamp™疟疾泛/恶性疟原虫检测试剂盒(日本荣研化学株式会社)进行LAMP检测。对疟原虫属(泛)-LAMP检测呈阳性的样本,使用恶性疟原虫特异性LAMP试剂盒重新检测。

结果

获得了3983名个体的配对RDT和LAMP样本。通过RDT和泛-LAMP检测,无症状疟疾的患病率分别为0.5%(95%置信区间0.1 - 0.8)和1.6%(95%置信区间1.1 - 2.2)。LAMP检测出的疟原虫阳性样本比RDT多3.4倍(95%置信区间2.2 - 5.2)。出现了DNA污染情况,但通过对所有设备和试剂进行反复去污得以解决。

结论

LAMP是一种简单且灵敏的分子工具,在消除疟疾前阶段用于检测低密度无症状疟疾的主动监测和大规模筛查项目中具有潜力。然而,为了在现场环境中更有效地应用LAMP,可能需要调整方案以处理更多样本。一个更高通量、价格可承受的封闭系统将是避免污染的理想选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1466/4440539/c7697b60fa51/12936_2015_731_Fig1_HTML.jpg

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