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High-throughput Plasmodium falciparum hrp2 and hrp3 gene deletion typing by digital PCR to monitor malaria rapid diagnostic test efficacy

Most rapid diagnostic tests for Plasmodium falciparum malaria target the Histidine-Rich Proteins 2 and 3 (HRP2 and HRP3). Deletions of the hrp2 and hrp3 genes result in false-negative tests and are a threat for malaria control. A novel assay for molecular surveillance of hrp2/hrp3 deletions was deve...

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Autores principales: Vera-Arias, Claudia A, Holzschuh, Aurel, Oduma, Colins O, Badu, Kingsley, Abdul-Hakim, Mutala, Yukich, Joshua, Hetzel, Manuel W, Fakih, Bakar S, Ali, Abdullah, Ferreira, Marcelo U, Ladeia-Andrade, Simone, Sáenz, Fabián E, Afrane, Yaw, Zemene, Endalew, Yewhalaw, Delenasaw, Kazura, James W, Yan, Guiyun, Koepfli, Cristian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9246365/
https://www.ncbi.nlm.nih.gov/pubmed/35762586
http://dx.doi.org/10.7554/eLife.72083
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author Vera-Arias, Claudia A
Holzschuh, Aurel
Oduma, Colins O
Badu, Kingsley
Abdul-Hakim, Mutala
Yukich, Joshua
Hetzel, Manuel W
Fakih, Bakar S
Ali, Abdullah
Ferreira, Marcelo U
Ladeia-Andrade, Simone
Sáenz, Fabián E
Afrane, Yaw
Zemene, Endalew
Yewhalaw, Delenasaw
Kazura, James W
Yan, Guiyun
Koepfli, Cristian
author_facet Vera-Arias, Claudia A
Holzschuh, Aurel
Oduma, Colins O
Badu, Kingsley
Abdul-Hakim, Mutala
Yukich, Joshua
Hetzel, Manuel W
Fakih, Bakar S
Ali, Abdullah
Ferreira, Marcelo U
Ladeia-Andrade, Simone
Sáenz, Fabián E
Afrane, Yaw
Zemene, Endalew
Yewhalaw, Delenasaw
Kazura, James W
Yan, Guiyun
Koepfli, Cristian
author_sort Vera-Arias, Claudia A
collection PubMed
description Most rapid diagnostic tests for Plasmodium falciparum malaria target the Histidine-Rich Proteins 2 and 3 (HRP2 and HRP3). Deletions of the hrp2 and hrp3 genes result in false-negative tests and are a threat for malaria control. A novel assay for molecular surveillance of hrp2/hrp3 deletions was developed based on droplet digital PCR (ddPCR). The assay quantifies hrp2, hrp3, and a control gene with very high accuracy. The theoretical limit of detection was 0.33 parasites/µl. The deletion was reliably detected in mixed infections with wild-type and hrp2-deleted parasites at a density of >100 parasites/reaction. For a side-by-side comparison with the conventional nested PCR (nPCR) assay, 248 samples were screened in triplicate by ddPCR and nPCR. No deletions were observed by ddPCR, while by nPCR hrp2 deletion was observed in 8% of samples. The ddPCR assay was applied to screen 830 samples from Kenya, Zanzibar/Tanzania, Ghana, Ethiopia, Brazil, and Ecuador. Pronounced differences in the prevalence of deletions were observed among sites, with more hrp3 than hrp2 deletions. In conclusion, the novel ddPCR assay minimizes the risk of false-negative results (i.e., hrp2 deletion observed when the sample is wild type), increases sensitivity, and greatly reduces the number of reactions that need to be run.
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spelling pubmed-92463652022-07-01 High-throughput Plasmodium falciparum hrp2 and hrp3 gene deletion typing by digital PCR to monitor malaria rapid diagnostic test efficacy Vera-Arias, Claudia A Holzschuh, Aurel Oduma, Colins O Badu, Kingsley Abdul-Hakim, Mutala Yukich, Joshua Hetzel, Manuel W Fakih, Bakar S Ali, Abdullah Ferreira, Marcelo U Ladeia-Andrade, Simone Sáenz, Fabián E Afrane, Yaw Zemene, Endalew Yewhalaw, Delenasaw Kazura, James W Yan, Guiyun Koepfli, Cristian eLife Microbiology and Infectious Disease Most rapid diagnostic tests for Plasmodium falciparum malaria target the Histidine-Rich Proteins 2 and 3 (HRP2 and HRP3). Deletions of the hrp2 and hrp3 genes result in false-negative tests and are a threat for malaria control. A novel assay for molecular surveillance of hrp2/hrp3 deletions was developed based on droplet digital PCR (ddPCR). The assay quantifies hrp2, hrp3, and a control gene with very high accuracy. The theoretical limit of detection was 0.33 parasites/µl. The deletion was reliably detected in mixed infections with wild-type and hrp2-deleted parasites at a density of >100 parasites/reaction. For a side-by-side comparison with the conventional nested PCR (nPCR) assay, 248 samples were screened in triplicate by ddPCR and nPCR. No deletions were observed by ddPCR, while by nPCR hrp2 deletion was observed in 8% of samples. The ddPCR assay was applied to screen 830 samples from Kenya, Zanzibar/Tanzania, Ghana, Ethiopia, Brazil, and Ecuador. Pronounced differences in the prevalence of deletions were observed among sites, with more hrp3 than hrp2 deletions. In conclusion, the novel ddPCR assay minimizes the risk of false-negative results (i.e., hrp2 deletion observed when the sample is wild type), increases sensitivity, and greatly reduces the number of reactions that need to be run. eLife Sciences Publications, Ltd 2022-06-28 /pmc/articles/PMC9246365/ /pubmed/35762586 http://dx.doi.org/10.7554/eLife.72083 Text en © 2022, Vera-Arias et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Microbiology and Infectious Disease
Vera-Arias, Claudia A
Holzschuh, Aurel
Oduma, Colins O
Badu, Kingsley
Abdul-Hakim, Mutala
Yukich, Joshua
Hetzel, Manuel W
Fakih, Bakar S
Ali, Abdullah
Ferreira, Marcelo U
Ladeia-Andrade, Simone
Sáenz, Fabián E
Afrane, Yaw
Zemene, Endalew
Yewhalaw, Delenasaw
Kazura, James W
Yan, Guiyun
Koepfli, Cristian
High-throughput Plasmodium falciparum hrp2 and hrp3 gene deletion typing by digital PCR to monitor malaria rapid diagnostic test efficacy
title High-throughput Plasmodium falciparum hrp2 and hrp3 gene deletion typing by digital PCR to monitor malaria rapid diagnostic test efficacy
title_full High-throughput Plasmodium falciparum hrp2 and hrp3 gene deletion typing by digital PCR to monitor malaria rapid diagnostic test efficacy
title_fullStr High-throughput Plasmodium falciparum hrp2 and hrp3 gene deletion typing by digital PCR to monitor malaria rapid diagnostic test efficacy
title_full_unstemmed High-throughput Plasmodium falciparum hrp2 and hrp3 gene deletion typing by digital PCR to monitor malaria rapid diagnostic test efficacy
title_short High-throughput Plasmodium falciparum hrp2 and hrp3 gene deletion typing by digital PCR to monitor malaria rapid diagnostic test efficacy
title_sort high-throughput plasmodium falciparum hrp2 and hrp3 gene deletion typing by digital pcr to monitor malaria rapid diagnostic test efficacy
topic Microbiology and Infectious Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9246365/
https://www.ncbi.nlm.nih.gov/pubmed/35762586
http://dx.doi.org/10.7554/eLife.72083
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