Cargando…

SYBR Green Real-Time PCR-RFLP Assay Targeting the Plasmodium Cytochrome B Gene – A Highly Sensitive Molecular Tool for Malaria Parasite Detection and Species Determination

A prerequisite for reliable detection of low-density Plasmodium infections in malaria pre-elimination settings is the availability of ultra-sensitive and high-throughput molecular tools. We developed a SYBR Green real-time PCR restriction fragment length polymorphism assay (cytb-qPCR) targeting the...

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Weiping, Morris, Ulrika, Aydin-Schmidt, Berit, Msellem, Mwinyi I., Shakely, Delér, Petzold, Max, Björkman, Anders, Mårtensson, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361616/
https://www.ncbi.nlm.nih.gov/pubmed/25774805
http://dx.doi.org/10.1371/journal.pone.0120210
_version_ 1782361669575376896
author Xu, Weiping
Morris, Ulrika
Aydin-Schmidt, Berit
Msellem, Mwinyi I.
Shakely, Delér
Petzold, Max
Björkman, Anders
Mårtensson, Andreas
author_facet Xu, Weiping
Morris, Ulrika
Aydin-Schmidt, Berit
Msellem, Mwinyi I.
Shakely, Delér
Petzold, Max
Björkman, Anders
Mårtensson, Andreas
author_sort Xu, Weiping
collection PubMed
description A prerequisite for reliable detection of low-density Plasmodium infections in malaria pre-elimination settings is the availability of ultra-sensitive and high-throughput molecular tools. We developed a SYBR Green real-time PCR restriction fragment length polymorphism assay (cytb-qPCR) targeting the cytochrome b gene of the four major human Plasmodium species (P. falciparum, P. vivax, P. malariae, and P. ovale) for parasite detection and species determination with DNA extracted from dried blood spots collected on filter paper. The performance of cytb-qPCR was first compared against four reference PCR methods using serially diluted Plasmodium samples. The detection limit of the cytb-qPCR was 1 parasite/μl (p/μl) for P. falciparum and P. ovale, and 2 p/μl for P. vivax and P. malariae, while the reference PCRs had detection limits of 0.5–10 p/μl. The ability of the PCR methods to detect low-density Plasmodium infections was then assessed using 2977 filter paper samples collected during a cross-sectional survey in Zanzibar, a malaria pre-elimination setting in sub-Saharan Africa. Field samples were defined as ‘final positive’ if positive in at least two of the five PCR methods. Cytb-qPCR preformed equal to or better than the reference PCRs with a sensitivity of 100% (65/65; 95%CI 94.5–100%) and a specificity of 99.9% (2910/2912; 95%CI 99.7–100%) when compared against ‘final positive’ samples. The results indicate that the cytb-qPCR may represent an opportunity for improved molecular surveillance of low-density Plasmodium infections in malaria pre-elimination settings.
format Online
Article
Text
id pubmed-4361616
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-43616162015-03-23 SYBR Green Real-Time PCR-RFLP Assay Targeting the Plasmodium Cytochrome B Gene – A Highly Sensitive Molecular Tool for Malaria Parasite Detection and Species Determination Xu, Weiping Morris, Ulrika Aydin-Schmidt, Berit Msellem, Mwinyi I. Shakely, Delér Petzold, Max Björkman, Anders Mårtensson, Andreas PLoS One Research Article A prerequisite for reliable detection of low-density Plasmodium infections in malaria pre-elimination settings is the availability of ultra-sensitive and high-throughput molecular tools. We developed a SYBR Green real-time PCR restriction fragment length polymorphism assay (cytb-qPCR) targeting the cytochrome b gene of the four major human Plasmodium species (P. falciparum, P. vivax, P. malariae, and P. ovale) for parasite detection and species determination with DNA extracted from dried blood spots collected on filter paper. The performance of cytb-qPCR was first compared against four reference PCR methods using serially diluted Plasmodium samples. The detection limit of the cytb-qPCR was 1 parasite/μl (p/μl) for P. falciparum and P. ovale, and 2 p/μl for P. vivax and P. malariae, while the reference PCRs had detection limits of 0.5–10 p/μl. The ability of the PCR methods to detect low-density Plasmodium infections was then assessed using 2977 filter paper samples collected during a cross-sectional survey in Zanzibar, a malaria pre-elimination setting in sub-Saharan Africa. Field samples were defined as ‘final positive’ if positive in at least two of the five PCR methods. Cytb-qPCR preformed equal to or better than the reference PCRs with a sensitivity of 100% (65/65; 95%CI 94.5–100%) and a specificity of 99.9% (2910/2912; 95%CI 99.7–100%) when compared against ‘final positive’ samples. The results indicate that the cytb-qPCR may represent an opportunity for improved molecular surveillance of low-density Plasmodium infections in malaria pre-elimination settings. Public Library of Science 2015-03-16 /pmc/articles/PMC4361616/ /pubmed/25774805 http://dx.doi.org/10.1371/journal.pone.0120210 Text en © 2015 Xu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Xu, Weiping
Morris, Ulrika
Aydin-Schmidt, Berit
Msellem, Mwinyi I.
Shakely, Delér
Petzold, Max
Björkman, Anders
Mårtensson, Andreas
SYBR Green Real-Time PCR-RFLP Assay Targeting the Plasmodium Cytochrome B Gene – A Highly Sensitive Molecular Tool for Malaria Parasite Detection and Species Determination
title SYBR Green Real-Time PCR-RFLP Assay Targeting the Plasmodium Cytochrome B Gene – A Highly Sensitive Molecular Tool for Malaria Parasite Detection and Species Determination
title_full SYBR Green Real-Time PCR-RFLP Assay Targeting the Plasmodium Cytochrome B Gene – A Highly Sensitive Molecular Tool for Malaria Parasite Detection and Species Determination
title_fullStr SYBR Green Real-Time PCR-RFLP Assay Targeting the Plasmodium Cytochrome B Gene – A Highly Sensitive Molecular Tool for Malaria Parasite Detection and Species Determination
title_full_unstemmed SYBR Green Real-Time PCR-RFLP Assay Targeting the Plasmodium Cytochrome B Gene – A Highly Sensitive Molecular Tool for Malaria Parasite Detection and Species Determination
title_short SYBR Green Real-Time PCR-RFLP Assay Targeting the Plasmodium Cytochrome B Gene – A Highly Sensitive Molecular Tool for Malaria Parasite Detection and Species Determination
title_sort sybr green real-time pcr-rflp assay targeting the plasmodium cytochrome b gene – a highly sensitive molecular tool for malaria parasite detection and species determination
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361616/
https://www.ncbi.nlm.nih.gov/pubmed/25774805
http://dx.doi.org/10.1371/journal.pone.0120210
work_keys_str_mv AT xuweiping sybrgreenrealtimepcrrflpassaytargetingtheplasmodiumcytochromebgeneahighlysensitivemoleculartoolformalariaparasitedetectionandspeciesdetermination
AT morrisulrika sybrgreenrealtimepcrrflpassaytargetingtheplasmodiumcytochromebgeneahighlysensitivemoleculartoolformalariaparasitedetectionandspeciesdetermination
AT aydinschmidtberit sybrgreenrealtimepcrrflpassaytargetingtheplasmodiumcytochromebgeneahighlysensitivemoleculartoolformalariaparasitedetectionandspeciesdetermination
AT msellemmwinyii sybrgreenrealtimepcrrflpassaytargetingtheplasmodiumcytochromebgeneahighlysensitivemoleculartoolformalariaparasitedetectionandspeciesdetermination
AT shakelydeler sybrgreenrealtimepcrrflpassaytargetingtheplasmodiumcytochromebgeneahighlysensitivemoleculartoolformalariaparasitedetectionandspeciesdetermination
AT petzoldmax sybrgreenrealtimepcrrflpassaytargetingtheplasmodiumcytochromebgeneahighlysensitivemoleculartoolformalariaparasitedetectionandspeciesdetermination
AT bjorkmananders sybrgreenrealtimepcrrflpassaytargetingtheplasmodiumcytochromebgeneahighlysensitivemoleculartoolformalariaparasitedetectionandspeciesdetermination
AT martenssonandreas sybrgreenrealtimepcrrflpassaytargetingtheplasmodiumcytochromebgeneahighlysensitivemoleculartoolformalariaparasitedetectionandspeciesdetermination