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High-throughput malaria serosurveillance using a one-step multiplex bead assay

BACKGROUND: Serological data indicating the presence and level of antibodies against infectious disease antigens provides indicators of exposure and transmission patterns in a population. Laboratory testing for large-scale serosurveys is often hindered by time-consuming immunoassays that employ mult...

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Autores principales: Rogier, Eric, van den Hoogen, Lotus, Herman, Camelia, Gurrala, Kevin, Joseph, Vena, Stresman, Gillian, Presume, Jacquelin, Romilus, Ithamare, Mondelus, Gina, Elisme, Tamara, Ashton, Ruth, Chang, Michelle, Lemoine, Jean F., Druetz, Thomas, Eisele, Thomas P., Existe, Alexandre, Boncy, Jacques, Drakeley, Chris, Udhayakumar, Venkatachalam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6894145/
https://www.ncbi.nlm.nih.gov/pubmed/31801556
http://dx.doi.org/10.1186/s12936-019-3027-0
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author Rogier, Eric
van den Hoogen, Lotus
Herman, Camelia
Gurrala, Kevin
Joseph, Vena
Stresman, Gillian
Presume, Jacquelin
Romilus, Ithamare
Mondelus, Gina
Elisme, Tamara
Ashton, Ruth
Chang, Michelle
Lemoine, Jean F.
Druetz, Thomas
Eisele, Thomas P.
Existe, Alexandre
Boncy, Jacques
Drakeley, Chris
Udhayakumar, Venkatachalam
author_facet Rogier, Eric
van den Hoogen, Lotus
Herman, Camelia
Gurrala, Kevin
Joseph, Vena
Stresman, Gillian
Presume, Jacquelin
Romilus, Ithamare
Mondelus, Gina
Elisme, Tamara
Ashton, Ruth
Chang, Michelle
Lemoine, Jean F.
Druetz, Thomas
Eisele, Thomas P.
Existe, Alexandre
Boncy, Jacques
Drakeley, Chris
Udhayakumar, Venkatachalam
author_sort Rogier, Eric
collection PubMed
description BACKGROUND: Serological data indicating the presence and level of antibodies against infectious disease antigens provides indicators of exposure and transmission patterns in a population. Laboratory testing for large-scale serosurveys is often hindered by time-consuming immunoassays that employ multiple tandem steps. Some nations have recently begun using malaria serosurveillance data to make inferences about the malaria exposure in their populations, and serosurveys have grown increasingly larger as more accurate estimates are desired. Presented here is a novel approach of antibody detection using bead-based immunoassay that involves incubating all assay reagents concurrently overnight. RESULTS: A serosurvey in was performed in Haiti in early 2017 with both sera (n = 712) and dried blood spots (DBS, n = 796) collected for the same participants. The Luminex(®) multiplex bead-based assay (MBA) was used to detect total IgG against 8 malaria antigens: PfMSP1, PvMSP1, PmMSP1, PfCSP, PfAMA1, PfLSA1, PfGLURP-R0, PfHRP2. All sera and DBS samples were assayed by MBA using a standard immunoassay protocol with multiple steps, as well a protocol where sample and all reagents were incubated together overnight—termed here the OneStep assay. When compared to a standard multi-step assay, this OneStep assay amplified the assay signal for IgG detection for all 8 malaria antigens. The greatest increases in assay signal were seen at the low- and mid-range IgG titers and were indicative of an enhancement in the analyte detection, not simply an increase in the background signal of the assay. Seroprevalence estimates were generally similar for this sample Haitian population for all antigens regardless of serum or DBS sample type or assay protocol used. CONCLUSIONS: When using the MBA for IgG detection, overnight incubation for the test sample and all assay reagents greatly minimized hands-on time for laboratory staff. Enhanced IgG signal was observed with the OneStep assay for all 8 malaria antigens employed in this study, and seroprevalence estimates for this sample population were similar regardless of assay protocol used. This overnight incubation protocol has the potential to be deployed for large-scale malaria serosurveys for the high-throughput and timely collection of antibody data, particularly for malaria seroprevalence estimates.
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spelling pubmed-68941452019-12-11 High-throughput malaria serosurveillance using a one-step multiplex bead assay Rogier, Eric van den Hoogen, Lotus Herman, Camelia Gurrala, Kevin Joseph, Vena Stresman, Gillian Presume, Jacquelin Romilus, Ithamare Mondelus, Gina Elisme, Tamara Ashton, Ruth Chang, Michelle Lemoine, Jean F. Druetz, Thomas Eisele, Thomas P. Existe, Alexandre Boncy, Jacques Drakeley, Chris Udhayakumar, Venkatachalam Malar J Methodology BACKGROUND: Serological data indicating the presence and level of antibodies against infectious disease antigens provides indicators of exposure and transmission patterns in a population. Laboratory testing for large-scale serosurveys is often hindered by time-consuming immunoassays that employ multiple tandem steps. Some nations have recently begun using malaria serosurveillance data to make inferences about the malaria exposure in their populations, and serosurveys have grown increasingly larger as more accurate estimates are desired. Presented here is a novel approach of antibody detection using bead-based immunoassay that involves incubating all assay reagents concurrently overnight. RESULTS: A serosurvey in was performed in Haiti in early 2017 with both sera (n = 712) and dried blood spots (DBS, n = 796) collected for the same participants. The Luminex(®) multiplex bead-based assay (MBA) was used to detect total IgG against 8 malaria antigens: PfMSP1, PvMSP1, PmMSP1, PfCSP, PfAMA1, PfLSA1, PfGLURP-R0, PfHRP2. All sera and DBS samples were assayed by MBA using a standard immunoassay protocol with multiple steps, as well a protocol where sample and all reagents were incubated together overnight—termed here the OneStep assay. When compared to a standard multi-step assay, this OneStep assay amplified the assay signal for IgG detection for all 8 malaria antigens. The greatest increases in assay signal were seen at the low- and mid-range IgG titers and were indicative of an enhancement in the analyte detection, not simply an increase in the background signal of the assay. Seroprevalence estimates were generally similar for this sample Haitian population for all antigens regardless of serum or DBS sample type or assay protocol used. CONCLUSIONS: When using the MBA for IgG detection, overnight incubation for the test sample and all assay reagents greatly minimized hands-on time for laboratory staff. Enhanced IgG signal was observed with the OneStep assay for all 8 malaria antigens employed in this study, and seroprevalence estimates for this sample population were similar regardless of assay protocol used. This overnight incubation protocol has the potential to be deployed for large-scale malaria serosurveys for the high-throughput and timely collection of antibody data, particularly for malaria seroprevalence estimates. BioMed Central 2019-12-04 /pmc/articles/PMC6894145/ /pubmed/31801556 http://dx.doi.org/10.1186/s12936-019-3027-0 Text en © The Author(s) 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Methodology
Rogier, Eric
van den Hoogen, Lotus
Herman, Camelia
Gurrala, Kevin
Joseph, Vena
Stresman, Gillian
Presume, Jacquelin
Romilus, Ithamare
Mondelus, Gina
Elisme, Tamara
Ashton, Ruth
Chang, Michelle
Lemoine, Jean F.
Druetz, Thomas
Eisele, Thomas P.
Existe, Alexandre
Boncy, Jacques
Drakeley, Chris
Udhayakumar, Venkatachalam
High-throughput malaria serosurveillance using a one-step multiplex bead assay
title High-throughput malaria serosurveillance using a one-step multiplex bead assay
title_full High-throughput malaria serosurveillance using a one-step multiplex bead assay
title_fullStr High-throughput malaria serosurveillance using a one-step multiplex bead assay
title_full_unstemmed High-throughput malaria serosurveillance using a one-step multiplex bead assay
title_short High-throughput malaria serosurveillance using a one-step multiplex bead assay
title_sort high-throughput malaria serosurveillance using a one-step multiplex bead assay
topic Methodology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6894145/
https://www.ncbi.nlm.nih.gov/pubmed/31801556
http://dx.doi.org/10.1186/s12936-019-3027-0
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