scholarly journals Molecular methods for tracking residual Plasmodium falciparum transmission in a close-to-elimination setting in Zanzibar

2020 ◽  
Author(s):  
Benjamin Grossenbacher ◽  
Aurel Holzschuh ◽  
Natalie Hofmann ◽  
Kali Abdullah Omar ◽  
Logan Stuck ◽  
...  

Abstract Background Molecular detection of low-density Plasmodium falciparum infections is essential for surveillance studies conducted to inform malaria control strategies in close-to-elimination settings. Molecular monitoring of residual malaria infections usually requires a large study size, therefore sampling and diagnostic processes need to be economical and optimized for high-throughput. A method comparison was undertaken to identify the most efficient diagnostic procedure for processing large collections of community samples with optimal test sensitivity, simplicity, and minimal costs. Methods In a reactive case detection study conducted on Zanzibar, parasitaemia of 4590 individuals of all ages was investigated by a highly sensitive quantitative (q) PCR that targets multiple var gene copies per parasite genome. To reduce cost, a first round of positivity screening was performed on pools of dried blood spots from five individuals. Ten cycles of a pre-PCR were performed directly on the filter paper punches, followed by qPCR. In a second round, samples of positive pools were individually analysed by pre-PCR and qPCR. Results Prevalence in household members and neighbors of index cases was 1.7% (78/4590) with a geometric mean parasite density of 58 parasites/µl blood. Using qPCR as gold standard, diagnostic sensitivity of rapid diagnostic tests (RDTs) was 37% (29/78). Infections positive by qPCR but negative by RDT had mean densities of 15 parasites/µl blood. Conclusion The approach of pre-screening reactive case detection samples in pools of five was ideal for a low prevalence setting such as in Zanzibar. Performing direct PCR on filter paper punches saves substantial time and justifies the higher cost for a polymerase suitable for amplifying DNA directly from whole blood. Molecular monitoring in community samples provided a more accurate picture of infection prevalence, as it identified a potential reservoir of infection that was largely missed by RDT. The developed qPCR-based methodology for screening large sample sets represents primarily a research tool that should inform the design of malaria elimination strategies. It may also prove beneficial for diagnostic tasks in surveillance-response activities.

2019 ◽  
Author(s):  
Benjamin Grossenbacher ◽  
Aurel Holzschuh ◽  
Natalie Hofmann ◽  
Kali Abdullah Omar ◽  
Logan Stuck ◽  
...  

Abstract Background Molecular detection of low-density Plasmodium falciparum infections is essential for surveillance studies conducted to inform malaria control strategies in close-to-elimination settings. Molecular monitoring of residual malaria infections usually requires a large study size, therefore sampling and diagnostic processes need to be economical and optimized for high-throughput. In a method comparison, we aimed at identifying the most efficient diagnostic procedure for processing large collections of community samples with optimal test sensitivity, simplicity, and minimal costs.Methods In a reactive case detection study conducted on Zanzibar, parasitemia of 4590 individuals of all ages was investigated by a highly sensitive quantitative (q) PCR that targets multiple var gene copies per parasite genome. To reduce cost, a first round of positivity screening was performed on pools of dried blood spots from five individuals. Ten cycles of a pre-PCR were performed directly on the filter paper punches, followed by qPCR. In a second round, samples of positive pools were individually analyzed by pre-PCR and qPCR.Results Prevalence in household members and neighbors of index cases was 1.7% (78/4590) with a geometric mean parasite density of 58 parasites/µl blood. Using qPCR as gold standard, diagnostic sensitivity of rapid diagnostic tests (RDTs) was 37% (29/78). Infections positive by qPCR but negative by RDT had mean densities of 15 parasites/µl blood. Conclusion The approach of pre-screening reactive case detection samples in pools of five was ideal for a low prevalence setting such as in Zanzibar. Performing direct PCR on filter paper punches saves substantial time and justifies the higher cost for a polymerase suitable for amplifying DNA directly from whole blood. Molecular monitoring in community samples provided a more accurate picture of infection prevalence compared to RDT results alone, by identifying a reservoir of infection which is largely missed by RDT. qPCR as a research and surveillance tool can great benefits the evaluation of strategies or programs to eliminate malaria.


2020 ◽  
Vol 97 ◽  
pp. 337-346 ◽  
Author(s):  
Logan Stuck ◽  
Bakar S. Fakih ◽  
Abdul-wahid H. Al-mafazy ◽  
Natalie E. Hofmann ◽  
Aurel Holzschuh ◽  
...  

2018 ◽  
Vol 17 (1) ◽  
Author(s):  
Ebenezer K. Aidoo ◽  
Yaw A. Afrane ◽  
Maxwell Gesuge Machani ◽  
Winnie Chebore ◽  
Bernard Walter Lawson ◽  
...  

2017 ◽  
Vol 50 (7-8) ◽  
pp. 431-435 ◽  
Author(s):  
Ana Carolina Breier ◽  
Jaqueline Cé ◽  
Jamila Mezzalira ◽  
Vanessa V. Daitx ◽  
Vitoria C. Moraes ◽  
...  

1996 ◽  
Vol 52 (4) ◽  
pp. 308-309
Author(s):  
B. Schweiger ◽  
C. Kücherer ◽  
C. Fleischer ◽  
H. v. Spreckelsen ◽  
P. Zablocki-Kaiser ◽  
...  

1986 ◽  
Vol 8 (2) ◽  
pp. 211-213 ◽  
Author(s):  
Y. Bergqvist ◽  
Ö. Ericsson ◽  
M. Rais

Author(s):  
Colleen M. Leonard ◽  
Hussein Mohammed ◽  
Mekonnen Tadesse ◽  
Jessica N. McCaffery ◽  
Doug Nace ◽  
...  

Plasmodium falciparum and Plasmodium vivax are co-endemic in Ethiopia. This study investigated whether mixed infections were missed by microscopy from a 2017 therapeutic efficacy study at two health facilities in Ethiopia. All patients (N = 304) were initially classified as having single-species P. falciparum (n = 148 samples) or P. vivax infections (n = 156). Dried blood spots were tested for Plasmodium antigens by bead-based multiplex assay for pan-Plasmodium aldolase, pan-Plasmodium lactate dehydrogenase, P. vivax lactate dehydrogenase, and histidine-rich protein 2. Of 304 blood samples, 13 (4.3%) contained both P. falciparum and P. vivax antigens and were analyzed by polymerase chain reaction for species-specific DNA. Of these 13 samples, five were confirmed by polymerase chain reaction for P. falciparum/P. vivax co-infection. One sample, initially classified as P. vivax by microscopy, was found to only have Plasmodium ovale DNA. Plasmodium falciparum/P. vivax mixed infections can be missed by microscopy even in the context of a therapeutic efficacy study with multiple trained readers.


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