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A novel polyclonal antibody-based sandwich ELISA for detection of Plasmodium vivax developed from two lactate dehydrogenase protein segments

BACKGROUND: Immunoassays for Plasmodium detection are, presently, most frequently based on monoclonal antibodies (MAbs); Polyclonal antibodies (PAbs), which are cheaper to develop and manufacture, are much less frequently used. In the present study we describe a sandwich ELISA assay which is capable...

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Autores principales: Sousa, Luciana Pereira, Mariuba, Luis André Morais, Holanda, Rudson Jesus, Pimentel, João Paulo, Almeida, Maria Edilene Martins, Chaves, Yury Oliveira, Borges, Davi, Lima, Emerson, Crainey, James Lee, Orlandi, Patricia Puccinelli, Lacerda, Marcus Vinicius, Nogueira, Paulo Afonso
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3913629/
https://www.ncbi.nlm.nih.gov/pubmed/24475751
http://dx.doi.org/10.1186/1471-2334-14-49
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author Sousa, Luciana Pereira
Mariuba, Luis André Morais
Holanda, Rudson Jesus
Pimentel, João Paulo
Almeida, Maria Edilene Martins
Chaves, Yury Oliveira
Borges, Davi
Lima, Emerson
Crainey, James Lee
Orlandi, Patricia Puccinelli
Lacerda, Marcus Vinicius
Nogueira, Paulo Afonso
author_facet Sousa, Luciana Pereira
Mariuba, Luis André Morais
Holanda, Rudson Jesus
Pimentel, João Paulo
Almeida, Maria Edilene Martins
Chaves, Yury Oliveira
Borges, Davi
Lima, Emerson
Crainey, James Lee
Orlandi, Patricia Puccinelli
Lacerda, Marcus Vinicius
Nogueira, Paulo Afonso
author_sort Sousa, Luciana Pereira
collection PubMed
description BACKGROUND: Immunoassays for Plasmodium detection are, presently, most frequently based on monoclonal antibodies (MAbs); Polyclonal antibodies (PAbs), which are cheaper to develop and manufacture, are much less frequently used. In the present study we describe a sandwich ELISA assay which is capable of detecting P. vivax Lactate Dehydrogenase (LDH) in clinical blood samples, without cross reacting with those infected with P. falciparum. METHODS: Two recombinant proteins were produced from different regions of the P. vivax LDH gene. Two sandwich ELISA assay were then designed: One which uses mouse anti-LDH 1-43aa PAbs as primary antibodies (“Test 1”) and another which uses anti-LDH 35-305aa PAbs (“Test 2”) as the primary antibodies. Rabbit anti-LDH 1-43aa PAbs were used as capture antibodies in both ELISA assays. Blood samples taken from P. vivax and P. falciparum infected patients (confirmed by light microscopy) were analysed using both tests. RESULTS: “Test 2” performed better at detecting microscopy-positive blood samples when compared to “Test 1”, identifying 131 of 154 positive samples (85%); 85 positives (55%) were identified using “test 1”. “Test 1” produced one false positive sample (from the 20 malaria-free control) blood samples; “test 2” produced none. Kappa coefficient analysis of the results produced a value of 0.267 when microscope-positive blood smears were compared with “test 1”, but 0.734 when microscope-positive blood smears were compared with the results from “test 2”. Positive predictive value (PPV) and negative predictive value (NPV) were observed to be 98% and 22% respectively, for “Test 1”, and 99% and 45%, for “test 2”. No cross reactivity was detected with P. falciparum positive blood samples (n = 15) with either test assay. CONCLUSION: Both tests detected P. vivax infected blood and showed no evidence of cross-reacting with P. falciparum. Further studies will need to be conducted to establish the full potential of this technique for malaria diagnostics. As well as representing a promising new cost-effective novel technique for P. vivax diagnosis and research, the method for developing this assay also highlights the potential for PAb-based strategies for diagnostics in general.
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spelling pubmed-39136292014-02-05 A novel polyclonal antibody-based sandwich ELISA for detection of Plasmodium vivax developed from two lactate dehydrogenase protein segments Sousa, Luciana Pereira Mariuba, Luis André Morais Holanda, Rudson Jesus Pimentel, João Paulo Almeida, Maria Edilene Martins Chaves, Yury Oliveira Borges, Davi Lima, Emerson Crainey, James Lee Orlandi, Patricia Puccinelli Lacerda, Marcus Vinicius Nogueira, Paulo Afonso BMC Infect Dis Research Article BACKGROUND: Immunoassays for Plasmodium detection are, presently, most frequently based on monoclonal antibodies (MAbs); Polyclonal antibodies (PAbs), which are cheaper to develop and manufacture, are much less frequently used. In the present study we describe a sandwich ELISA assay which is capable of detecting P. vivax Lactate Dehydrogenase (LDH) in clinical blood samples, without cross reacting with those infected with P. falciparum. METHODS: Two recombinant proteins were produced from different regions of the P. vivax LDH gene. Two sandwich ELISA assay were then designed: One which uses mouse anti-LDH 1-43aa PAbs as primary antibodies (“Test 1”) and another which uses anti-LDH 35-305aa PAbs (“Test 2”) as the primary antibodies. Rabbit anti-LDH 1-43aa PAbs were used as capture antibodies in both ELISA assays. Blood samples taken from P. vivax and P. falciparum infected patients (confirmed by light microscopy) were analysed using both tests. RESULTS: “Test 2” performed better at detecting microscopy-positive blood samples when compared to “Test 1”, identifying 131 of 154 positive samples (85%); 85 positives (55%) were identified using “test 1”. “Test 1” produced one false positive sample (from the 20 malaria-free control) blood samples; “test 2” produced none. Kappa coefficient analysis of the results produced a value of 0.267 when microscope-positive blood smears were compared with “test 1”, but 0.734 when microscope-positive blood smears were compared with the results from “test 2”. Positive predictive value (PPV) and negative predictive value (NPV) were observed to be 98% and 22% respectively, for “Test 1”, and 99% and 45%, for “test 2”. No cross reactivity was detected with P. falciparum positive blood samples (n = 15) with either test assay. CONCLUSION: Both tests detected P. vivax infected blood and showed no evidence of cross-reacting with P. falciparum. Further studies will need to be conducted to establish the full potential of this technique for malaria diagnostics. As well as representing a promising new cost-effective novel technique for P. vivax diagnosis and research, the method for developing this assay also highlights the potential for PAb-based strategies for diagnostics in general. BioMed Central 2014-01-30 /pmc/articles/PMC3913629/ /pubmed/24475751 http://dx.doi.org/10.1186/1471-2334-14-49 Text en Copyright © 2014 Sousa et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Sousa, Luciana Pereira
Mariuba, Luis André Morais
Holanda, Rudson Jesus
Pimentel, João Paulo
Almeida, Maria Edilene Martins
Chaves, Yury Oliveira
Borges, Davi
Lima, Emerson
Crainey, James Lee
Orlandi, Patricia Puccinelli
Lacerda, Marcus Vinicius
Nogueira, Paulo Afonso
A novel polyclonal antibody-based sandwich ELISA for detection of Plasmodium vivax developed from two lactate dehydrogenase protein segments
title A novel polyclonal antibody-based sandwich ELISA for detection of Plasmodium vivax developed from two lactate dehydrogenase protein segments
title_full A novel polyclonal antibody-based sandwich ELISA for detection of Plasmodium vivax developed from two lactate dehydrogenase protein segments
title_fullStr A novel polyclonal antibody-based sandwich ELISA for detection of Plasmodium vivax developed from two lactate dehydrogenase protein segments
title_full_unstemmed A novel polyclonal antibody-based sandwich ELISA for detection of Plasmodium vivax developed from two lactate dehydrogenase protein segments
title_short A novel polyclonal antibody-based sandwich ELISA for detection of Plasmodium vivax developed from two lactate dehydrogenase protein segments
title_sort novel polyclonal antibody-based sandwich elisa for detection of plasmodium vivax developed from two lactate dehydrogenase protein segments
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3913629/
https://www.ncbi.nlm.nih.gov/pubmed/24475751
http://dx.doi.org/10.1186/1471-2334-14-49
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